Croatian Center of Renewable Energy SourcesNews and Events July 08, 2013 |
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President Obama Touts Renewable Energy, Efficiency in Climate Plan
President Obama announced on June 25 his climate
action plan, which includes significant goals related to renewable
energy and energy efficiency. The plan directs the U.S. Department of
the Interior to issue permits by 2020 for enough renewable energy
projects on public lands to power 6 million homes, while also
designating the first-ever hydropower project for priority permitting,
setting a new goal to install 100 megawatts of renewable energy on
federally assisted housing by 2020, and maintaining the existing
commitment to deploy renewable energy projects on military
installations. The plan also expands the president's Better Buildings
Challenge to help a wide range of buildings become at least 20% more
energy efficient by 2020; sets a goal to reduce carbon emissions by at
least 3 billion metric tons by 2030 through efficiency standards for
appliances and federal buildings; and commits to partnering with
industry and stakeholders to develop fuel economy standards for
heavy-duty vehicles.
"A low-carbon, clean energy economy can be an
engine of growth for decades to come," said President Obama. "And I want
America to build that engine."
The president's climate action plan also directs
the U.S. Environmental Protection Agency to establish carbon pollution
standards for both new and existing power plants, while making up to $8
billion in loan guarantees available for advanced fossil energy
projects. It also leverages new opportunities to reduce emissions of
highly potent greenhouse gases known as hydrofluorocarbons, directs
agencies to develop a comprehensive methane strategy, and commits to
protecting our forests and critical landscapes. The climate action plan
also commits the United States to lead international efforts to address
climate change, while proposing a number of actions to help prepare the
United States for the impacts of climate change. See the president's announcement, the associated White House fact sheet, and a set of infographics on the climate action plan.
Energy Department Invests $13 Million in Next-Generation Biofuels
The Energy Department on July 1 announced its
investment of $13 million in four research and development projects that
aim to accelerate the deployment and cut the cost of next-generation
biofuels. The projects—located in Oklahoma, Tennessee, Utah, and
Wisconsin—support the Energy Department goal of producing
cost-competitive drop-in biofuels at $3 per gallon by 2017. Drop-in
biofuels are made from non-food sources but are almost indistinguishable
from conventional fuels. They can include bio-oil, a biobased crude oil
substitute that can be processed in a refinery, as well as biobased
substitutes for gasoline, diesel fuel, and jet fuel.
The four selected projects include an effort by
Ceramatec of Salt Lake City, Utah, to use an electrochemical process to
remove oxygen from bio-oil, making it more suitable for processing in a
refinery; a project led by the Energy Department's Oak Ridge National
Laboratory to use a microbial electrolysis process to remove the
hydrogen from the water found in bio-oil, making the bio-oil production
process more efficient and the bio-oil less corrosive; an investigation
by the University of Oklahoma in Norman into the use of heat and
solvents to convert biomass into a refinery-compatible intermediate
chemical; and an effort by Virent, Inc., of Madison, Wisconsin, to
develop an innovative separation process that will work with the
company's proprietary process to convert biomass into drop-in fuels. The
Energy Department's Idaho National Laboratory will help with feedstock
pre-processing for the Virent project. See the Energy Department Progress Alert.
Interior Department Approves a 500-MW Wind Project in Arizona
The U.S. Department of the Interior (DOI)
announced on June 28 that it has approved a 500-megawatt (MW) wind
energy project in Arizona. The Mohave County Wind Farm will be located
on federal lands in northwestern Arizona, about 40 miles northwest of
Kingman. Proposed by BP Wind Energy North America, Inc., the wind farm
will consist of up to 243 wind turbines. The decision paves the way for
right-of-way grants for the use of approximately 37,800 acres of federal
land, while providing a 1.2-mile buffer zone to protect nearby nesting
locations for golden eagles and assuring that no turbine will be erected
within a quarter-mile of private property. See the DOI fact sheet
DOI has approved 46 wind, solar, and geothermal
utility-scale projects on public lands since 2009, including associated
transmission corridors and infrastructure to connect to established
power grids. When built, these projects could provide enough electricity
to power more than 4.4 million homes and support more than 17,000
construction and operations jobs. DOI's Bureau of Land Management has
identified 14 additional renewable energy proposals that are slated for
review this year and next. See the DOI press release.
Interior Dept., NREL Developing Modular Hybrid Power Systems for Villages
The Energy Department's National Renewable
Energy Laboratory (NREL) is working with the U.S. Department of the
Interior (DOI) on designing a modular, expandable, and replicable
small-scale power system for villages that draws partly on renewable
energy sources. The initiative, called the "Remote Community Renewable
Energy Partnership," aims to deploy small-scale power systems to
isolated, off-the-grid villages in remote Alaska and to U.S. island
territories. The power systems will draw on either wind or solar power
with a diesel generator as a backup power source. By mid-2014, NREL
intends to complete the design of the modular power systems and then
partner with willing villages to pilot test the new modular systems. The
modular approach is meant to encourage deployment while minimizing the
engineering and construction costs for each project. See the DOI blog.
EPA Strengthens Energy Star Requirements for Refrigerators and Freezers
The U.S. Environmental Protection Agency (EPA)
announced on June 27 that it has revised its Energy Star requirements
for residential refrigerators and freezers. The updated requirements
raise the bar for energy efficiency in these products and, for the first
time, encourage manufacturers to include optional "connected" features.
These features would offer consumers more ways to reduce the energy
consumption of their refrigerators and freezers, help lower their
utility bills, and better protect the environment and the climate.
Under the new standards, Energy Star-certified
refrigerators and freezers will use at least 10% less energy than models
meeting 2014 federal minimum efficiency standards. If all refrigerators
and freezers sold in the United States were to meet the updated
requirements, the energy cost savings would grow to more than $890
million each year while reducing annual greenhouse gas emissions by the
equivalent of taking more than one million vehicles off the road. By
recycling an old refrigerator and replacing it with a new Energy
Star-certified refrigerator, consumers can save from $150–$1,100 on
energy costs over the product's lifetime. To earn the Energy Star label,
product performance must be certified by an EPA-recognized third party,
based on testing in an EPA-recognized laboratory. The updated Energy
Star refrigerator and freezer specification will go into effect on
September 15, 2014.
Certain Energy Star refrigerators and freezers
with connected features will provide consumers new convenience and
energy-saving opportunities. These products will allow consumers to view
real-time energy use, receive energy-related messages—such as an alert
when the door has been left open—and manage appliance settings remotely.
Refrigerators and freezers with connected functionality will also be
"smart grid"-ready, meaning that with consumer permission, they will be
able to respond to utility signals, including curtailing operations
during more expensive peak demand times. See the EPA press release and the Energy Star's new specification for residential refrigerators and freezers.
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CROATIAN CENTER of RENEWABLE ENERGY SOURCES (CCRES)special thanks to U.S. Department of Energy | USA.gov |
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L.A. Rooftop Solar Project Goes Online in San Fernando Valley
With 1 billion square feet of rooftop space and
more than 300 days of sunshine, Los Angeles has all the makings of a
leading solar hub. Now, an innovative program is leveraging these
resources to accelerate the county’s transition to the forefront of
solar innovation.
On June 26, the Los Angeles Feed-in Tariff
program—the largest rooftop solar program in the nation—celebrated the
completion of its first solar installation. The program incentivizes
businesses to install solar arrays on rooftops across Los Angeles to
generate clean, renewable electricity. Participating business are
offered a 20-year contract to sell the solar energy they produce to the
Los Angeles Department of Water and Power at a set price. For the
complete story, see the Energy Blog.
CCRES BonusEnergy Department Announces Investment to Accelerate Next Generation BiofuelsFollowing last week's rollout of President Obama's plan to cut carbon pollution, the Energy Department today announced four research and development projects to bring next generation biofuels on line faster and drive down the cost of producing gasoline, diesel and jet fuels from biomass. The projects—located in Oklahoma, Tennessee, Utah, and Wisconsin—represent a $13 million Energy Department investment."By partnering with private industry, universities and our national labs, we can increase America's energy security, bolster rural economic development, and cut harmful carbon pollution from our cars, trucks and planes," said Energy Secretary Ernest Moniz. "As the President made clear in his plan to cut carbon pollution, partnerships like these will help move our economy towards cleaner, more efficient forms of energy that lower our reliance on foreign oil." In the United States, the transportation sector accounts for two-thirds of total U.S. oil consumption and one-third of our nation's total greenhouse gas emissions. Hydrocarbon-based biofuels made from non-food feedstocks, waste materials, and algae can directly replace gasoline and other fuels in our gas tanks and refineries. The Energy Department continues to take steps to speed the development of clean, renewable biofuels, with the goal of producing cost-competitive drop-in biofuels at $3 per gallon by 2017. The research projects announced today build on the Obama Administration's broader efforts to accelerate the next generation of biofuels by bringing down costs, improving performance and identifying effective, non-food feedstocks and conversion technologies. These projects will help maximize the amount of renewable carbon and hydrogen that can be converted to fuels from biomass and improve the separation processes in bio-oil production to remove non-fuel components—further lowering production costs. The projects selected for negotiation include: Ceramatec (up to $3.3 million; Salt Lake City, Utah): Ceramatec will utilize an efficient electrochemical deoxygenation process to develop cost-effective technology to separate oxygen from bio-oil. This project will help produce hydrocarbon products suitable for further processing in conventional petroleum refineries. Oak Ridge National Laboratory (up to $2.1 million; Oak Ridge, Tennessee): Oak Ridge National Laboratory will use a microbial electrolysis process to efficiently remove the hydrogen from the water found in bio-oil. This technology will help reduce the corrosivity of bio-oil and improve the efficiency of converting hydrogen and biomass to biofuels. The University of Tennessee-Knoxville, Georgia Institute of Technology, Pall Corporation, OmniTech International, and FuelCellsEtc will also participate in this project. University of Oklahoma (up to $4 million; Norman, Oklahoma): The University of Oklahoma will investigate two methods—thermal fractionation and supercritical solvent extraction—to maximize the amount of renewable carbon and hydrogen that can be extracted from biomass and converted to a refinery-compatible intermediate and suitable for final upgrading to a transportation fuel. The multidisciplinary research team includes experts in catalysis, separation, life-cycle analysis and techno-economic assessment. Virent, Inc. (up to $4 million; Madison, Wisconsin): Virent will develop an innovative separation process which uses its BioForming® technology to efficiently convert carbon from lignocellulosic biomass into hydrocarbon fuels. Virent will work to improve the overall carbon conversion efficiency of biomass—helping to reduce the cost of producing hydrocarbon biofuels that work with our existing transportation fuel infrastructure and are capable of meeting the Renewable Fuel Standard. Idaho National Laboratory will also bring their feedstock pre-processing capabilities to the project. Croatian Center of Renewable Energy Sources (CCRES) |
Monday, July 8, 2013
News and Events by CCRES July 08, 2013
Friday, June 21, 2013
News and Events by CCRES June 21, 2013
Croatian Center of Renewable Energy SourcesNews and Events June 21, 2013Drivers Can Compare Gasoline and Electric Fuel Prices with eGallon
The Energy Department on June 11 launched the
eGallon—a way for consumers to compare the costs of fueling electric
vehicles versus driving on gasoline. The current national average
eGallon price is about $1.14, meaning that a typical electric vehicle
could travel as far on $1.14 worth of electricity as a similar vehicle
could travel on a gallon of gasoline.
On Energy.gov/eGallon,
consumers can see the latest eGallon price for their state and compare
it to the price of gasoline. Over time, consumers will notice that the
eGallon price will be far more stable and predictable than gasoline
prices. That’s because the eGallon price depends on electricity prices,
which historically are very stable; gasoline prices depend on the global
oil market, which can be very unstable and are often influenced by
unpredictable international events.
The eGallon provides a metric that is easily
comparable to the traditional gallon of unleaded fuel. That comparison
is made by calculating how much it would cost to drive an electric
vehicle the same distance a similar conventional vehicle could travel on
a gallon of gasoline. For example, if gasoline costs $3.60 per gallon
in your state and the eGallon price for your state is $1.20, that means
that for $1.20 worth of electricity you can drive the same distance as
you could for $3.60 worth of gasoline. The eGallon price varies from
state to state based on the price of electricity. See the Energy
Department press release.
Energy Department Invests in Next Generation Efficient Lighting
The Energy Department on June 4 announced five
manufacturing research and development projects to support
energy-efficient lighting products. The projects will focus on reducing
manufacturing costs, while continuing to improve the quality and
performance of light-emitting diodes (LEDs) and organic light-emitting
diodes (OLEDs). The Energy Department’s $10 million investment is
matched dollar for dollar by private sector funding.
According to a new report by the Energy
Department, LED lamps and fixtures installed in the United States have
increased tenfold over the last two years—from 4.5 million units in 2010
to 49 million units in 2012. These installations, which include common
indoor and outdoor applications such as recessed lighting and
streetlights, are expected to save about $675 million in annual energy
costs. During the same period, the cost of an LED replacement bulb has
fallen by about 54%. Switching entirely to LED lights over the next two
decades could save the United States $250 billion in energy costs and
reduce electricity consumption for lighting by nearly 50%. By 2030, LED
lighting is projected to represent about 75% of all lighting sales,
saving enough energy to power approximately 26 million U.S. households.
Projects selected include: Cree Inc.
(Durham, North Carolina) will develop a modular design for LED lights
that can link together multiple units to fit larger areas; Eaton
Corporation (Menomonee Falls, Wisconsin) will develop an innovative
manufacturing process that streamlines the LED fixture design and
removes unnecessary materials and parts; LEDWorks, (Rochester, New York)
will develop and demonstrate new spray-printing equipment that reduces
overall manufacturing costs and could help support cost-competitive mass
production; Philips Lumileds (San Jose, California) will develop an
alternative to the standard flip-chip device that grows an LED face-down
on the sapphire substrate; and PPG Industries, Inc. (Pittsburgh,
Pennsylvania) will develop a cost-effective manufacturing process to
help commercialize an integrated substrate that includes the glass
foundation as well as the other necessary layers. See the Energy
Department Press Release.
Energy Department Offers $9 Million to Advance Hydrogen Technologies
The Energy Department on June 11 announced up to
$9 million in new funding to accelerate the development of hydrogen and
fuel cell technologies for use in vehicles, backup power systems, and
hydrogen refueling components. The Energy Department will fund up to
eight projects from industry, academia, and national labs. These
investments will strengthen U.S. leadership in cost-effective hydrogen
and fuel cell technologies and help industry bring these technologies
into the marketplace at lower cost.
Projects selected for funding will demonstrate,
deploy, and validate hydrogen and fuel cell technologies in real-world
environments. These efforts aim to reduce the costs of hydrogen and fuel
cells industry-wide, expand critical infrastructure, and build a solid
domestic supplier base. Selected projects will represent a wide variety
of applications with potential for widespread commercialization.
Topic areas include fuel cell medium-duty
trucks; advanced hydrogen refueling components; rooftop installations of
hydrogen-fuel-cell-backup power systems; and hydrogen meter research
and development. See the Energy Department Progress Alert.
New Building Performance Database Launched by Energy Department
The Energy Department on June 17 launched the
new Buildings Performance Database, the largest free, publicly available
database of residential and commercial building energy performance
information. This database will allow users to access energy performance
data and perform statistical analyses on more than 60,000 commercial
and residential buildings across the country, and new records are being
added regularly. The database includes buildings' location; age; size
and function; electricity and fuel consumption; equipment information
and operational characteristics. The data can also be used to compare
performance trends among similar buildings, identify and prioritize
cost-saving energy efficiency improvements, and assess the range of
likely savings from these improvements. An application programming
interface (API) will allow external software developers to incorporate
analytical results from the database into their own tools and services.
The database tools have been designed to meet
the content and usability needs of public agencies, building owners and
managers, contractors, energy efficiency program administrators, and
financial institutions, with over 1,000 users testing the site since
March 2013. The Department hopes that public and private stakeholders
will continue to submit data and expand the resource. All data is made
anonymous and protected by stringent privacy and security protocols.
Currently, commercial and residential buildings
account for approximately 70% of the electricity consumption in the
nation. The database strengthens the Department's commitment to provide
U.S. industry, state and local governments, and researchers with
innovative energy data tools that can help cut energy waste and save
money. The database was developed for the Department's Building
Technologies Office by Lawrence Berkeley National Laboratory and
Building Energy Inc. See the Energy Department Progress Alert.
DOI Announces First Offshore Renewable Energy Lease Sale
The U.S. Department of the Interior (DOI) and
its Bureau of Ocean Energy Management (BOEM) on June 4 announced that
BOEM will hold the first-ever competitive lease sale for wind energy on
the U.S. Outer Continental Shelf. The auction, scheduled to take place
on July 31, will offer 164,750 acres offshore Rhode Island and
Massachusetts for commercial wind energy leasing. The area being
auctioned is located 9.2 nautical miles south of the Rhode Island
coastline.
The area has the potential for an installed
capacity of 3,395 megawatts, according to a report recently released by
the Department of Energy's National Renewable Energy Laboratory. This
total could supply enough electricity to power more than 1 million
homes.
BOEM issued a revised environmental assessment
(EA) for commercial wind lease issuance within the Wind Energy Area
offshore of Rhode Island and Massachusetts. The EA considers reasonable
foreseeable environmental and socioeconomic impacts from issuing
renewable energy leases. The EA also considers the impacts of conducting
site characterization such as surveys and assessment activities such as
installation and operation of meteorological towers and buoys. As a
result of the analysis in the revised EA, BOEM issued a "Finding of No
Significant Impact," which concluded that reasonably foreseeable
environmental effects associated with the commercial wind lease would
not significantly impact the environment. See the DOI press release, the final sale notice in the Federal Register, and BOEM's EA and Finding of No Significant Impact
DOI Approves Three Renewable Energy Projects in Arizona and Nevada
The U.S. Department of the Interior (DOI) on
June 3 announced the approval of three major renewable energy projects
in Arizona and Nevada that are expected to deliver up to 520 megawatts
(MW) to the electricity grid. When built, the projects will generate
enough power for nearly 200,000 homes.
The 350-megawatt Midland Solar Energy Project
and the 70-megawatt New York Canyon Geothermal Project are located in
Nevada. The Midland Solar Project will be built on private lands about 7
miles southwest from Boulder City, Nevada, and will cross 76 acres of
federal transmission corridor. The New York Canyon Geothermal Project
and electrical transmission facility will be built on 15,135 acres of
land managed by the DOI's Bureau of Land Management (BLM) about 25 miles
east of Lovelock, Nevada, in Pershing County.
The 100-megawatt Quartzsite Solar Energy
Project, located on 1,600 acres of BLM-managed lands in La Paz County,
Arizona, will use concentrating solar power (CSP) technology with
integrated thermal energy storage technology. CSP technologies use
mirrors in heliostats to reflect and concentrate sunlight onto a central
tower to produce heat, where liquid molten salt captures and stores the
thermal energy which is then used to produce electricity. CSP systems
are distinguished from other solar energy technologies by their ability
to store energy as heat so that consumer demand can be met even when the
sun is not shining, including during the night.
The BLM has identified an additional 15 active
renewable energy proposals slated for review this year and next. BLM
identified these projects through a process that emphasizes early
consultation and collaboration with its sister agencies at DOI—the
Bureau of Indian Affairs, the U.S. Fish and Wildlife Service, and the
National Park Service. See the DOI press release and the BLM website.
NREL Highlights 2012 Utility Green Power Leaders
The Energy Department’s National Renewable
Energy Laboratory (NREL) on June 5 released its assessment of leading
utility green power programs. Under these voluntary programs,
residential and commercial consumers can choose to help support
additional electricity production from renewable resources such as wind
and solar. The top 10 programs support more than 4.2 million megawatt
hours /year (MWh/year) of voluntary green power.
Using information provided by utilities, NREL
has developed "Top 10" rankings of utility green power programs for 2012
in the following categories: total sales of renewable energy to program
participants; total number of customer participants; the percentage of
customer participation; green power sales as a percentage of total
utility retail electricity sales; and the lowest price premium charged
for a green power program using new renewable resources.
Ranked by renewable energy sales in terms of
MWh/year, Portland General Electric (Oregon) overtook Austin Energy in
Austin, Texas, in 2012, selling the largest amount of renewable energy
in the nation through its voluntary green power program. Dominion
Virginia Power and Oklahoma Gas & Electric are new to the top
renewable energy sales list. Ranked by the percentage of customer
participation, the top utilities are City of Palo Alto Utilities
(California), followed by Portland General Electric, Madison Gas and
Electric Company (Wisconsin), Sacramento Municipal Utility District, the
City of Naperville (Illinois) and Pacific Power (Oregon). In addition,
six utilities provided green power supply that included at least 2%
solar. See the NREL press release and the Green Power website.
Federal and Industry Partners Issue Challenge to Manufacturers
A coalition that includes the U.S. federal
government and more than 200 major commercial building partners has
recently challenged U.S. manufacturers to build wireless sub-meters that
cost less than $100 apiece. The U.S. Federal Energy Management Program
and U.S. General Services Administration are among the organizations
issuing the challenge.
A group of at least 18 manufacturers has already
agreed to take up the challenge, pledging to produce devices that will
meet the specifications outlined by the Energy Department and its
private sector partners that have signed letters of intent to purchase
the wireless sub-meters. The Energy Department worked with members of
its Better Buildings Alliance and federal agencies to develop a
performance-based manufacturing specification, and will offer third
party verification that the wireless building metering systems meet the
performance specifications.
Electricity sub-meters provide building
operators with the information they need to identify opportunities for
savings. For example, a large commercial building might pay $10,000 a
month or more for electricity, but not have any way to detect which
systems are consuming the most electricity. A wireless sub-meter could
be installed at various electrical panels throughout the building to
give a more detailed picture of where the electricity is being used,
thereby helping to identify savings. It might also allow commercial
building operators to bill individual tenants for their electricity
usage, creating an incentive for energy efficiency. Wireless sub-meters
typically cost about $1,000 per installation now, so the goal is to
reduce the cost by about 90%. The Department’s Washington, D.C.
headquarters, the James A. Forrestal Building, will be used as a testing
facility. See the Energy Department press release and the Better Buildings Alliance website.
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CROATIAN CENTER of RENEWABLE ENERGY SOURCES (CCRES)special thanks to U.S. Department of Energy | USA.gov |
Building a 21st Century Electric Grid
As part of President Obama’s initiative to make
America a magnet for jobs by building a 21st century infrastructure, on
June 7 he signed a Presidential Memorandum that will speed the
modernization of the nation’s electric grid. This will help make
electricity more reliable, save consumers money on their energy bills,
and support homegrown American clean energy jobs and industries by
making renewable energy easier to access across the country.
Transmission projects often cover hundreds of
miles and involve multiple federal, tribal, state and local
jurisdictions with diverse interests and responsibilities. Collaborating
early to minimize duplication and delays is vital to getting critical
projects to construction to better serve American homes and businesses.
The June 7 Presidential Memorandum directs federal agencies to create an
integrated pre-application process across the federal government to
help identify and address issues before the formal permit application
process begins, and streamline the coordination of permitting processes
across the federal, state, and tribal governments.
The memorandum also directs agencies to identify
and improve the use of energy corridors on federal lands that are most
suitable for siting electric transmission projects, to help expedite
permitting while improving environmental and community outcomes. These
energy corridors are designed to reduce regulatory conflicts, minimize
negative impacts on natural and cultural resources and address concerns
of local communities, decreasing the potential for permitting delays.
For these corridors, agencies will work together to integrate new and
innovative ways to avoid, minimize and mitigate the impact on
environmental and cultural resources. The memorandum also prioritizes
meaningful engagement with stakeholders and the public to arrive at the
best quality projects with the least conflicts and most support. For the
complete story, see the Energy Blog.
Croatian Center of Renewable Energy Sources (CCRES) |
Monday, May 20, 2013
CCRES Neighborhood Program
Did you ever stop to think about what makes your community a good place to live? On the other hand, it may be you don't think you live in a good community. If you don't think so, what is it about the community you don't like? Is it the people, the traffic and congestion, the housing, the services, a combination-what is it?
Being homeless for example can be a temporary point in time,
or it can be a long, lonely, fearful, stressful and hungry time. Not all people
that are living on the street are the ones that you see as you walk down the
street or pass at an intersection. There are many, some say well over a thousand,
which are on the street due to an issue that sent them to the streets that they
had no real control over.
The economy may have had a role; the loss of a house
due to a bad mortgage; job loss due to layoffs; the list goes on and on. We are
not here to expound on all of the people issues that plague our towns, we are
here for one simple purpose:
CCRES Neighborhood Program
CROATIAN CENTER of RENEWABLE ENERGY SOURCES believe that giving turns ordinary money into change, a change for the better.
That's why we ask each of our CCRES partner to think about what they can do in their community to give.
Whether it's volunteering for a community event, helping out a neighbor in need, or making a donation, the act itself doesn't matter. Even the smallest act of giving can spark change.
In neighborhoods all across the Croatia, the CCRES Neighborhood Program is also helping families and business owners make energy efficiency upgrades that are saving them money and improving the comfort of our buildings.
CCRES continues giving, we urge you to do the same. Ask yourself the question:
What can you do?
Here are a few ideas to get you started:
Offer your skills.
Consider offering your skills rather than goods. Help an elderly neighbor with household fixes, offer to repaint a community playground, rake leaves or mow the lawn of a neighbor who is unable to do it. Often these skills are needed just as much, if not more than money or goods.
Give to Charity.
It doesn't have to be about money.
Volunteer.
Inform yourself for volunteer activities in your community.
Check out for many well-known organizations.
Visit a nursing home.
Take some of your free time and visit a nursing home. Read a book with an elderly person, talk about topics in the news, play cards and bring a little joy into both of your lives. You will probably come out with a new friend!
Help a school in your community.
Offer to help distribute school lunches, check or grade papers for teachers, help during recess, or manage school activity functions.
Clean up your community.
Participate in a local environmental clean-up day or start your own with family and friends. Go to your local parks, beaches, or hiking trails and pick up litter.
Send Holiday mail for Croatian heroes.
During the holiday season you can send a card to a Croatian soldier through the partnership between CCRES and HVIDRA.
Volunteer at a church.
Offer to help with the day care, cleaning the church, bringing fresh flowers for the services, or offer to do office work at the church administration office.
Donate clothing.
Are your clothes too tight, too loose, tags still on something you never wore? Give it away. You can stop by your local RED CROSS or KARITAS , and many communities have drop-off boxes where you can leave your donated goods.
Give a new Toys .
Donate a brand new toy to your local children nursery to help bring joy to a child in need. Contact your children nursery to learn how you can donate.
Give to a local food bank.
You can donate a few of the canned goods you currently have in your pantry. With the recent economic crisis, food banks aren't being given as much from donors and more people are needing to be served. Contact your local food bank today to find out how you can donate or visit solarserdar.blogspot.com.
Donate books.
If you have books that have not been read in over a year, chances are you are not going to ever read them again. Give them away! Donate your used books to libraries, schools, or shelters so someone else can enjoy them like you once did.
Making a Donation to the CROATIAN CENTER of RENEWABLE ENERGY SOURCES.
Without generous private donations the CCRES would be unable to continue the valuable work it does in bringing objective information to an often overheated debate.
Making a donation is simple:
a cheque payable to CROATIAN CENTER of RENEWABLE ENERGY SOURCES can be posted to the following address:
CROATIAN CENTER of RENEWABLE ENERGY SOURCES
Medarska 24,
10 000 ,Zagreb,
CROATIA
or on:
CROATIAN CENTER of RENEWABLE ENERGY SOURCES
BANK ACCOUNT 2484008-1105745975
IBAN HR0324840081105745975
SWIFT RZBHHR2X
More info at: solarserdar@gmail.com
We also believe that the restoration of dignity is a
critical part of the solution. We look forward to your
questions and assistance.
Who are we and where did we come from:
We are a not for profit educational organization located in Zagreb. All
of the proceeds from this project will go towards our mission and the expansion
of our mission.
The area was selected for many reasons; first it will be the launching site for a
regional and national roll out when we are successful with the first site.
Second it is where we live currently and we see the issues every day here as
well as other places, but here is where we can be most effective at this time.
As an ongoing support we will partner with local
and region organizations, both for profit and those not for profit organization
that we can team with for solutions. We will also provide a job for our clients
both as staff at the locations as well as assistance to our partners when and
where it is available.
We are concerned business people, members of the community, former
homeless people, caring individuals and maybe your next door neighbor.
We have begun at 2011 an organization called CCRES, it is a not for profit
organization.
Combined with all of our resources we have many years of business, life, community,
and family experience.
All of which will be put to work on this project, we will succeed and we will
see this project to the successful completion of the opportunity to assist.
CCRES offers annual memberships for research
institutions, public and private sector organizations, individual
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By sharing best practices on things like workforce development and financing options, local efficiency programs can dramatically increase the number of Croatian homes that are energy efficient.
We will, with your help, make a difference in the community.
Thank you.
Sunday, May 5, 2013
HCOIE RADIONICA I STRUČNI SEMINAR
HCOIE RADIONICA I STRUČNI SEMINAR
HCOIE radionica i stručni seminar je dvodnevni događaj koji smo održali u prostorijama strukovnog Udruženja HCOIE na temu mogućnosti primjene
fotonaponskih, odnosno sustava za pretvorbu Sunčeve u električnu energiju, te pretvaranje solarne energije u toplinsku.
Ovakvim tipom radionica i seminara željeli smo upoznati stručne suradnike, članove, studente, male i srednje tvrtke, obrte, ali i druge pravne i fizičke
osobe koje su zainteresirane za proizvodnju energije Sunca s aktualnostima iz struke kako bismo doprinijeli povećanju kvalitete
obrazovanja te omogućili svima zainteresiranima priliku za širenje znanja.
Na radionici je bilo riječi o teoretskim osnovama i mogućnostima primjene istih, a potom su u praksi bili prikazani
najuspješniji primjeri iz prakse, odnosno ostvareni projekti, o čemu su
govorili predstavnici investitora, odnosno proizvođača i isporučitelja opreme.
Namjera je i ove radionice bila organizirati edukaciju na kojoj će se polaznicima omogućiti visok stupanj interakcije s predavačima te upoznavanje s opremom.
Ukoliko želite sudjelovati na nekoj od budućih HCOIE radionica i seminara, molimo popunite pristupnicu koja se nalazi na stranicama HCOIE nakon kojeg ćete biti obaviješteni o programu i datumima narednih
seminara i radionica.
HRVATSKI CENTAR OBNOVLJIVIH IZVORA ENERGIJE (HCOIE)
Friday, May 3, 2013
News and Events by CCRES May 03, 2013
Croatian Center of Renewable Energy SourcesNews and Events May 03, 2013 |
Energy Department Offers $13 Million to Advance Ocean Energy Technologies
The Energy Department on April 30 announced up
to $13 million in funding to develop and test advanced components and
technologies to boost the performance of marine and hydrokinetic (MHK)
energy systems. The Energy Department plans to select up to 10 awards
aimed at developing advanced controls, power systems, and device
structures specifically for MHK applications, which harness energy from
waves, tides, or currents.
Through the new funding opportunity, the Energy
Department intends to support projects that increase the power-to-weight
ratio of MHK devices or improve system reliability through investment
in three component technologies. The Department will select up to six
projects to develop advanced control systems, including software or
hardware, and perform numerical modeling or testing to assess
performance improvements; up to two awards will be selected that focus
on developing lighter, more compact, and more efficient power take-offs
(PTOs) to increase system and component reliability and modularity and
to make PTOs longer-lasting and easier to repair; and up to two projects
will develop and test an advanced device structure that minimizes the
loads transmitted to other components and increases the device’s ability
to withstand extreme conditions. See the funding opportunity announcement at the Water Power Program Financial Opportunities Webpage.
The Energy Department also launched a new Energy
101 video on a range of innovative MHK technologies and the
Department’s research and development efforts to improve performance and
lower costs. Additional information on these efforts is available
through Open Energy Information’s new Water Power Gateway. See the Progress Alert and the Water Power Gateway.
New Battery Design Could Help Solar and Wind Power the Grid
Researchers from the Energy Department's SLAC
National Accelerator Laboratory and Stanford University have designed a
low-cost, long-life “flow” battery that could enable solar and wind
energy to become major suppliers to the electrical grid. The research is
a product of the new Joint Center for Energy Storage Research (JCESR),
an Energy Department Energy Innovation Hub. Established last November
and led by Argonne National Laboratory with SLAC as a major partner,
JCESR is one of five such Hubs created by the Energy Department to
accelerate energy research.
While solar and wind power make a substantial
contribution to the nation’s energy supply, they also create significant
power fluctuations, which can sometimes exceed the tolerances of the
electrical grid. “Flow” batteries can smooth those fluctuations.
Typically, flow batteries pump two different liquids through an
interaction chamber where dissolved molecules undergo chemical reactions
that store or give up energy, and have a membrane that only allows ions
not involved in reactions to pass between the liquids while keeping the
active ions physically separated. The new flow battery uses a
simplified design without a membrane, and is a less expensive design
compared to other batteries, which may improve its scalability and
cost-effectiveness. In laboratory tests, it also demonstrated excellent
energy storage performance through the equivalent of more than five and a
half years of daily charge and discharge cycles. See the Energy Department press release and the JCESR website.
Report Assesses Potential U.S. Hydropower Upgrades
The Energy Department on April 22 announced a
new study outlining key improvements that can be made to hydropower
production in the United States to provide more efficient and
cost-effective electricity to homes and businesses. Developed with
funding from the Energy Department, the Electric Power Research
Institute's (EPRI) report, "Quantifying the Value of Hydropower in the
Electric Grid," identifies and assesses the quantifiable benefits from
potential improvements. The report cites potential upgrades such as
installing turbines that can operate with lower water levels, utilizing
new power plant designs that can increase revenue and efficiency, and
monetizing the services hydropower provides to the nation's electric
grid.
Hydropower supplies about 7% of U.S. electricity
generation and is currently the nation's largest source of renewable
electricity. Hydropower is widely valued for the ancillary services, or
flexibility, it provides to the power grid—allowing storage
capabilities, enabling fast stops and starts, and responding rapidly to
imbalances of supply and demand to maintain power system stability. For
example, pumped storage hydropower plants can pump water uphill when
electricity supply exceeds demand, such as during nighttime hours or
times when renewable energy sources are generating more power than
consumers are using. This ability to store energy until it is needed—and
to absorb excess renewable energy generation—lowers electricity prices
and enables the generation of more renewable electricity.
The researchers looked at improvements that
could boost the efficiency and output of hydropower plants and at pumped
storage hydropower systems, particularly in their potential to be
integrated with variable renewable sources such as wind and solar power.
According to the report, hydropower plants could see their largest
revenue and efficiency increases by deploying new hydropower
technologies, making operational improvements, utilizing hydropower's
flexibility more in grid resource planning, and monetizing the energy
storage capability of pumped storage. Among the key findings from the
report: relying more heavily on hydropower to address changes in
electricity supply and demand could provide more flexible reserve power
options and reduce wear and tear on conventional thermal-generating
equipment; and expanding the effective operating range of hydropower
units by reducing the minimum amount of water needed to use the turbines
stably can increase the production value of plants by 60%. EPRI also
published nine accompanying case studies and supplemental reports that
discuss the elements covered in the final report in greater detail. See
the Energy Department Progress Alert and the complete report
EIA Opens New State Energy Portal Online for Consumers
The U.S. Energy Information Administration (EIA)
announced on April 11 that it has launched a publicly available,
comprehensive online view of the U.S. government's national and state
energy data and information. The agency designed the new online portal
with a range of users in mind, including policy makers, energy analysts,
and the general public, who want to locate and compare state energy
data and rankings and customize their own maps and charts, using an
assortment of interactive tools.
Users can view an array of energy facilities and
resources, including information about renewable resource potential for
wind, solar, biomass, and geothermal energy. In addition to
customizable maps, the portal summarizes each state's ranking of its
energy production, consumption, prices, and more. The state energy
portal adds a unique visual dimension to each state's energy resources
and infrastructure. See the EIA press release and the state energy profile website.
|
CROATIAN CENTER of RENEWABLE ENERGY SOURCES (CCRES)special thanks to U.S. Department of Energy | USA.gov |
A Renewable Boost for Natural Gas
The race to transition to cleaner, greener
natural gas power plants is getting a boost from an unlikely
source—solar energy. A new system developed by the Energy Department's
Pacific Northwest National Laboratory (PNNL) converts natural gas and
sunlight into a more energy-rich fuel called syngas, which will allow
hybrid solar-gas power plants to use about 20% less natural gas to
produce the same amount of electricity while also lowering the plant's
greenhouse gas emissions.
The system works through concentrating solar
power, which uses a reflecting surface to concentrate the sun's rays
like a magnifying glass. In the case of the new system from PNNL, a
mirrored parabolic dish directs sunbeams to a central point, where a
device absorbs the solar heat to make syngas.
The four-foot-long, two-foot-wide device
contains a chemical reactor and several heat exchangers. The
concentrated sunlight heats up the natural gas flowing through the
reactor's channels, where a catalyst helps turn the natural gas into
syngas. The heat exchangers recycle leftover heat from the chemical
reaction gas, increasing the efficiency of the system. In fact, tests on
an early prototype of the device demonstrated that more than 60% of the
sunlight hitting the parabolic dish was converted into chemical energy
contained in the syngas. For the complete story, see the Energy Blog.
Croatian Center of Renewable Energy Sources (CCRES) |
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