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Tuesday, June 4, 2013

Making Green Energy Work for Your Business

Verizon Press Release:

June 4, 2013

Making Green Energy Work for Your Business

Author: John Columbus
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On April 30th, Verizon announced a $100 million investment into onsite solar and fuel cell power – with technologies from ClearEdge Power and Sun Power.  Today, Verizon is announcing the addition of Bloom Energy to that initiative for fuel cell systems that will help power network and data center facilities in California.
When any of us makes a green lifestyle choice – to walk, ride a bike; to go solar at home; or drive a hybrid – we typically make those decisions with sustainability in mind.  Conscious choices made to help preserve the resources necessary to sustain our lives and those of future generations.
For companies that choose to make green investments in their operations, there’s another important set of considerations to be addressed.  How will expenditures like these benefit your customers and your business?  For Verizon, investing in clean green solar and fuel cell energy systems adds resiliency to our daily operation while reducing our carbon footprint – and in the long run it will also be beneficial to our bottom line.  A good green investment is one that helps your business do well by doing the right thing. 
You can view an infographic of how green energy is working for Verizon here.
For example, the business is able to attain a return on its green energy investment in 10 years, according to our Chief Sustainability Officer in an interview with Reuters.  While producing more than 90 million kilowatt hours of clean energy for Verizon at 19 Verizon facilities in seven states, the systems will offset 15,000 metric tons of CO2, or the carbon emissions of more than 3,000 passenger vehicles every year.
Bloom Energy Fuel Cells
If you would like to learn more about how you can make green energy work for your business, please follow us @VerizonGreen

Verizon Adds Bloom Energy Fuel Cell Systems to Green Energy Project at Three Company Facilities in California

Verizon Press Release:

June 4, 2013

Verizon Adds Bloom Energy Fuel Cell Systems to Green Energy Project at Three Company Facilities in California

Systems Will Contribute to On-Site Generation of More Than 90 Million Kilowatt Hours of Clean Energy Through Fuel Cell and Solar Systems at 19 Company Locations in 7 States 
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NEW YORK – Verizon announced on Tuesday (June 4) an agreement to install Bloom Energy fuel cell systems at three of its California-based locations: two call-switching centers in Los Angeles and San Francisco and a data center in San Jose.  Bloom Energy’s solid oxide fuel cells are expected to generate more than 16 million kilowatt hours of clean electricity for Verizon in the Golden State each year.
The installation is part of Verizon’s plan to invest $100 million in a solar and fuel-cell energy project that will help power 19 of the company’s facilities in California and six other states across the country: Arizona, Maryland, Massachusetts, New Jersey, New York and North Carolina.  When completed next year, the project will enable Verizon to generate more than 90 million kilowatt hours of its own green energy annually.  The project will also eliminate more than 15,000 metric tons of CO2 annually, which is equivalent to the CO2 emissions from more than 1.6 million gallons of gasoline consumed. 
Green Energy Biz Infographic
(To view an infographic, “Making Green Energy Work for Your Business,” click here.  For photos of Bloom Energy fuel cells and Verizon’s onsite energy project, click here.)
“Bloom is aligned with Verizon in the belief that the world’s biggest challenges deserve bigger solutions,” said Matt Ross, chief marketing officer, Bloom Energy.  “At Bloom we are excited to be helping Verizon meet the 21st century challenge of deploying a clean, reliable, efficient energy platform for their operations.”
Verizon has a history of adopting new technologies to revolutionize the information and communication infrastructure. The company’s distributed-generation strategy – generating power on site at the point of consumption, using advanced renewable and clean energy technologies – will accelerate Verizon’s progress toward its goal of cutting its worldwide carbon intensity by 50 percent by 2020.  Carbon intensity is a measure of the carbon emissions the company produces for each terabyte of data flowing through its networks.
“The ability to power our facilities and operations with our own on-site alternative energy sources helps Verizon meet our long-term sustainability goals, while also enhancing the resiliency of our networks and reliability of our services,” said James Gowen, Verizon’s chief sustainability officer. “This is more than the right thing to do for the environment; it is also the right thing to do for our customers and our business.”
A History of Sustainability
Verizon has long been focused on energy efficiency and instituting sustainable real estate practices.  As an early adopter of fuel cell technologies, Verizon currently operates one of the largest fuel cell sites of its kind that helps power an environmentally friendly call-switching center and office building in Garden City, N.Y.  Verizon also uses 26 solar-assisted cell sites in remote areas in the western United States to help power a portion of the nation’s largest and most reliable wireless network serving those areas. 
ENERGY STAR Partner of the Year
Last month, Verizon’s sustainable real estate practices were recognized once again when the company was named an ENERGY STAR Partner of the Year for its operation of 128 ENERGY STAR-certified Verizon Wireless stores.  In addition, more than 130 Verizon Wireless retail stores nationwide have earned the U.S. Green Building Council’s LEED (Leadership in Energy and Environmental Design) certification through 2012.
For more information about how Verizon is growing its business by applying innovative technologies to solve important social issues, visit http://responsibility.verizon.com/.
About Verizon
Verizon Communications Inc. (NYSE, Nasdaq: VZ), headquartered in New York, is a global leader in delivering broadband and other wireless and wireline communications services to consumer, business, government and wholesale customers.  Verizon Wireless operates America’s most reliable wireless network, with nearly 99 million retail connections nationwide.  Verizon also provides converged communications, information and entertainment services over America’s most advanced fiber-optic network, and delivers integrated business solutions to customers in more than 150 countries, including all of the Fortune 500.  A Dow 30 company with nearly $116 billion in 2012 revenues, Verizon employs a diverse workforce of 181,900.  For more information, visit about.verizon.com.
About Bloom Energy
Bloom Energy is a provider of breakthrough solid oxide fuel cell technology generating clean, highly-efficient on-site power from multiple fuel sources. The company was founded in 2001 with a mission to make clean, reliable energy affordable for everyone in the world. Bloom Energy Servers are currently producing power for several Fortune 500 companies including Google, Walmart, AT&T, eBay, Staples, The Coca-Cola Company, as well as notable non-profit organizations such as Caltech and Kaiser Permanente. The company is headquartered in Sunnyvale, CA. For more information, visitwww.bloomenergy.com.
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Johnson Controls, Building Efficiency Leader, Achieves LEED® Platinum Certification for Hong Kong office space

Johnson Controls Press Release:

Johnson Controls, Building Efficiency Leader, Achieves LEED® Platinum Certification for Hong Kong office space
Building technology reduces energy use by 28 percent and water consumption by 40 percent
SINGAPORE – June 3, 2013 – Johnson Controls, a global leader in delivering solutions that increase energy efficiency in buildings, has earned a top sustainability rating for its new Hong Kong office east of Kowloon Peninsula, receiving a LEED® Platinum certification. The new leased office space has 55,000 square feet and houses more than 300 employees.

"LEED has proven to save money, reduce waste and protect the environment. We have experienced the positive impact of LEED at our own facilities as well as delivered these same benefits to our customers around the world." said Ricky Chan, general manager for Johnson Controls Building Efficiency Hong Kong.

Johnson Controls now has more than 2.5 million square feet of certified green building space around the world and has impacted 23 million square feet of building space for its customers.  Examples of customers in Asia include the Guiyang Convention & Exhibition Center (China), Nanjing Atlas Copco R&D Center (China) and PoMo (Singapore).

Johnson Controls adopted a comprehensive technology and building controls strategy to achieve substantial savings at the building, located on the 12th and 13th floors of the Octa Tower. Features include:  
  • 32 percent reduction in heating, ventilation and air conditioning (HVAC) energy consumption
  • 28 percent reduction in total energy usage
  • 40 percent saving in water consumption
Johnson Controls used its own building management system, Metasys®, to enable lighting and temperature-zoning control, using sensors to optimize energy consumption throughout the office. The information gathered from the building management system is displayed on a green kiosk for employees and visitors to monitor real-time energy use and the building’s total carbon footprint. In addition, through a web-based interface on their computers, employees can control the lighting and the temperature settings for their environment.

These efforts align with Johnson Controls’ core values of sustainability and innovation, and are part of its ongoing commitment to the vision of creating a more comfortable, safe and sustainable world. Johnson Controls has been a leader in energy-efficient buildings by working with the U.S. Green Building Council to help establish the criteria for the original LEED rating system.

About Johnson Controls
Johnson Controls is a global diversified technology and industrial leader serving customers in more than 150 countries. Our 168,000 employees create quality products, services and solutions to optimize energy and operational efficiencies of buildings; lead-acid automotive batteries and advanced batteries for hybrid and electric vehicles; and interior systems for automobiles. Our commitment to sustainability dates back to our roots in 1885, with the invention of the first electric room thermostat. Through our growth strategies and by increasing market share we are committed to delivering value to shareholders and making our customers successful. In 2013, Corporate Responsibility Magazine recognized Johnson Controls as the #14 company in its annual “100 Best Corporate Citizens” list. For additional information, please visit http://www.johnsoncontrols.com.

Europe takes aim at China's solar panels - Jun. 4, 2013

Europe takes aim at China's solar panels - Jun. 4, 2013

Monday, June 3, 2013

GE and BELECTRIC Partner to Power Tomorrow’s Green Energy

GE Press Release:


GE and BELECTRIC Partner to Power Tomorrow’s Green Energy

June 3, 2013
  • GE Signs Frame Agreement With BELECTRIC for Delivery of GE’s Latest 1,500-VDC ProSolar Central Inverter Technology
  • Agreement Marks Milestone to Join Forces in Developing Innovative Solar Solutions and Renewable Solutions for Utility Scale Projects
  • Start of a Global Partnership With the Aim to Install More than 100 Units by the End of the Year in Germany and Other Countries to Help Meet Worldwide Solar Energy Demand
PARIS—June 3, 2013—Less than one year after developing and delivering the first 1,500-VDC ProSolar central inverter technology to solar power plant system integrator BELECTRIC, GE’s Power Conversion (NYSE: GE) business has signed an agreement with the aim to install more than 100 of this type of new and innovative inverter by the end of the year. The agreement represents the first step by the companies to join forces in developing innovative solar solutions for the utility solar market.
The 1,500-VDC ProSolar central inverter helps to decrease system losses and balance of system costs as well as reduce operation and maintenance costs. This inverter technology is based on the GE 1,000-VDC ProSolar inverter solution which runs smoothly in many solar plants since 2009 with more than several hundred megawatts (MW) in total.
Central inverters convert DC power produced by solar panels to AC power, which is vital to making solar power a more economical alternative to fossil fuel technologies. Therewith central inverters are key components of photovoltaic (PV) plants.
“This success highlights GE’s expertise, and we are very pleased to cooperate closely with an innovative company like BELECTRIC”, says Stephan Reimelt, CEO of GE Energy in Germany. “Furthermore, this agreement underpins GE’s commitment to deliver innovative solutions and products that are tailored to the needs of the world and German Industry, also to support the successful implementation of the German ‘Energiewende.’”
BELECTRIC has proven its expertise and capabilities numerous times, having connected more than 1 GWp of utility-scale solar power plants all over the world. Since July 2012, the company has installed GE’s advanced central inverter utilizing PADCON’s 1,500-VDC system technology at three of its solar power plants in southern Germany. The plants deliver about 15 MWp of power, supplying more than 4,000 households and saving 10,000 tons of CO.
“Our solar plants in South Germany run highly efficient with the GE ProSolar central inverter; we are very happy with their performance and are meeting our goal to substantially stabilize the power grid,” says Bernard Beck, CEO of BELECTRIC. “We are now in a position to take this combined solution to BELECTRIC’s customers to make their power supply more intelligent, more economical, more reliable and more environmentally friendly.”
Inverter Technology – 1,500-VDC Capability
GE’s inverter technology has a long track record of extremely high reliability resulting from the company’s experience in the development of frequency converters for the wind energy, oil and gas as well as metals sectors and other industrial applications.
“The effort to lower the cost of energy production continues, as does the focus on renewable sources of energy. Our 1,500-VDC system is a valuable solution in meeting these efforts to achieve grid parity with photovoltaic systems in certain countries. GE offers customers technology options to support renewable energy policies and push projects that build long-term energy security using solar energy,” said Stefan Franko, leader of renewables for GE Power Conversion. “Reducing the costs of solar electricity generation through continuous innovation forms the basis for GE’s long-term technology development strategy.”
About BELECTRIC
BELECTRIC is one of the most successful international enterprises in the development and construction of utility scale ground-mounted solar power plants and roof-mounted photovoltaic systems. As an international company, BELECTRIC is represented in 20 countries. Its position as technology leader is a result of the high degree of vertical integration in the development and manufacturing processes. The combination of economical and ecological interests has always been the basis for the sustainable success of our nearly 2,000 employees. BELECTRIC demonstrates its great innovative spirit with over 100 patents pending. Alongside solar power generation, BELECTRIC Drive® concentrates on the combination of photovoltaics and e-mobility. Further information can be found at www.belectric.com.
About PADCON
PADCON GmbH has specialized in energy distribution systems, plant monitoring, and plant communication. The comprehensive product portfolio contains solutions for roof-mounted photovoltaic systems and for solar power plants worldwide. PADCON was founded in 2007 in Kitzingen, Germany, where it has since grown to 90 employees. High quality standards and the exclusive use of premium components guarantee a long service life, safe operation, and high levels of efficiency. The comprehensive PADCON range of products offers custom tailored components and solutions for every project. Incl. partial string combiner boxes, inverter stations for complete plant monitoring and solar power plant control.
About GE Power Conversion
GE’s Power Conversion business applies the science and systems of power conversion to help drive the electrification of the world’s energy infrastructure by designing and delivering advanced motor, drive and control technologies that evolve today’s industrial processes for a cleaner, more productive future. Serving specialized sectors such as energy, marine, oil and gas, renewables and industry, through customized solutions and advanced technologies, GE Power Conversion partners with customers to maximize efficiency. To learn more, please visit: www.gepowerconversion.com.
Follow GE’s Power Conversion business on Twitter @GE_PowerConvers and on LinkedIn.
About GE
GE (NYSE: GE) works on things that matter. The best people and the best technologies taking on the toughest challenges. Finding solutions in energy, health and home, transportation and finance. Building, powering, moving and curing the world. Not just imagining. Doing. GE works. For more information, visit the company's website at www.ge.com.
Follow GE’s Energy Management business on Twitter @GE_EnergyMgmt.

Saturday, June 1, 2013

Power grid getting smarter with big battery in Salem

Pacific Northwest National Laboratory News Release:


Power grid getting smarter with big battery in Salem

May 31, 2013 Share This!
Energy storage tested for Pacific Northwest Smart Grid Demonstration Project
  • Rows of battery racks at Portland General Electric’s Salem Smart Power Center in Salem, Ore. PGE is a participant in the Battelle-led Pacific Northwest Smart Grid Demonstration Project, which will use the center’s 5-megawatt energy storage system to test several smart grid technologies and approaches.
    Photo courtesy of Portland General Electric.
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SALEM, Ore. – Research conducted with a large new battery unveiled today in Oregon will help make the Northwest's and the nation's electric system smarter and more efficient, officials said at a ribbon-cutting ceremony.
Portland General Electric's 5-megawatt, lithium-ion energy storage system was shared with the public today at the utility's Salem Smart Power Center in South Salem, Ore. The energy storage facility is part of PGE's contribution to the Battelle-led Pacific Northwest Smart Grid Demonstration Project. Half of PGE's $23-million portion of the regional project was paid for with U.S. Department of Energy funds. The regional demonstration is a five-year, $178-million project that launched in 2010.
"The Pacific Northwest Smart Grid Demonstration Project is a successful public-private partnership involving 17 organizations across five Northwest states," said Patricia Hoffman, assistant secretary for DOE's Office of Electricity Delivery and Energy Reliability, which oversees regional smart grid demonstration projects. "It is a highly innovative project demonstrating transactive energy management, which is a promising, cost-effective way to integrate variable renewable energy, energy storage and demand response at scale. The celebration of the Salem Smart Power Center makes it clear that Oregon is helping to lead the way on energy storage commercialization and grid modernization."
Hoffman was a featured speaker at today's ceremony, as was Ron Melton, who directs the regional demonstration project for Battelle.
The battery is part of a highly reliable, localized power zone called a microgrid that will enable about 500 southeast Salem customers to tap into a power reserve during electricity disruptions such as blackouts. The battery and microgrid are examples of the innovative technologies and methods being tested through the Pacific Northwest Smart Grid Demonstration Project.
The energy storage system will respond to regional grid conditions with the help of a key aspect of the demonstration called transactive control. Transactive control is based on technology from DOE's Pacific Northwest National Laboratory, which is managed by Battelle. The technology helps power producers and users decide how much of the area's power will be consumed, when and where. This is done when producers and users automatically respond to signals representing future power costs and planned energy consumption. The cost signals originate at Battelle's Electricity Infrastructure Operations Center in Richland, Wash. They are updated every five minutes and sent to the project's participating utilities, including PGE.
The automated signals allow project participants to make local decisions on how their piece of the smart grid project can support local and regional grid needs. Participants are now gathering data to measure how the signal can help deliver electricity more effectively, help better integrate wind power onto the power grid and more. The Salem battery will use the signal to coordinate its charge and discharge cycles with the power grid's supply and demand.
"Two-way information exchange in the Pacific Northwest Smart Grid Demonstration Project allows grid operators to make the existing electric grid more efficient, while also exploring how using other technologies such as PGE's energy storage system, smart appliances and wind power can bolster the reliability of our system," said Carl Imhoff, who manages Battelle's Electricity Infrastructure Market Sector in Richland.
PGE's role
As an investor-owned utility that serves about 830,000 customers in 52 Oregon cities, PGE is testing several smart-grid technologies in the Salem area for the demonstration project. Beyond the energy storage system unveiled today, PGE is working to integrate renewable power sources to the power grid. It is also implementing a demand-response program with residential and commercial customers to help meet peak demand. All these resources will be optimized with the automated transactive control signal.
"Together with our project partners and customers, we are demonstrating smart grid technologies to help Oregon and the nation learn how to build intelligent energy resources for the future while continuing to deliver long-term value for customers," said Jim Piro, PGE president and CEO. "We are proud of the collaboration, hard work and ingenuity that went into this project, and thank our Salem customers who volunteered to participate in this important study."
Building the business case
As a primary partner in the project, the Bonneville Power Administration is leading the development of a regional business case for investing in smart grid infrastructure and technologies.
"New, smarter technologies can help us make the most of the region's renewable resources, improve how we operate the power system and bolster its resilience," said Elliot Mainzer, BPA's deputy administrator. "We're looking closely at the benefits and economics so we can tell Northwest electric utilities and ratepayers which 'smart' investments will provide long-term value."
BPA is working to support utilities in the project as they unite to address both regional and utility requirements. Communication and collaboration between utilities is key to making this all work, especially considering that five states are involved, with everything from large investor-owned utilities to smaller publicly-owned utilities. They have varying goals, but are working together to enhance the economics, reliability and integration of renewables for the power system. BPA has taken a lead role in assuring that the utility perspective is addressed as well as the regional perspective so the needs of electricity consumers throughout the Northwest are met.
A regional collaboration
The Pacific Northwest Smart Grid Demonstration Project was co-funded by the American Recovery and Reinvestment Act through DOE, as well as the project's utility and vendor partners.
As part of the project, Battelle leads a collaborative group that includes the Bonneville Power Administration and 11 Northwest-based utilities:
  • Avista Utilities — Spokane, Wash.
  • Benton PUD — Kennewick, Wash.
  • City of Ellensburg — Ellensburg, Wash.
  • Flathead Electric Cooperative — Kalispell, Mont.
  • Idaho Falls Power — Idaho Falls, Idaho
  • Lower Valley Energy — Afton, Wyo.
  • Milton-Freewater City Light & Power — Milton-Freewater, Ore.
  • NorthWestern Energy — Butte, Mont.
  • Peninsula Light Company — Gig Harbor, Wash.
  • Portland General Electric — Portland, Ore.
  • University of Washington/Seattle City Light — Seattle, Wash.
The demonstration project also involves a diverse team of technology providers, including Alstom Grid, IBM/Netezza, 3TIER Inc. and Quality Logic Inc. Washington State University and Central Washington University are also directly involved.

Reporters who are attending today's event and need assistance on site should contact Franny White on her cell at (360) 333-4793. She will not have access to email during the event. Her colleague Geoff Harvey is also available to help from Richland at (509) 372-6083.
Battelle is the world's largest independent research and development organization. Headquartered in Columbus, Ohio, Battelle oversees 22,000 employees in more than 130 locations worldwide. Battelle has managed the U.S. Department of Energy's Pacific Northwest National Laboratory in Richland, Wash., since the laboratory's inception in 1965.
Interdisciplinary teams at Pacific Northwest National Laboratory address many of America's most pressing issues in energy, the environment and national security through advances in basic and applied science. PNNL employs 4,500 staff, has an annual budget of nearly $1 billion, and has been managed for the U.S. Department of Energy by Ohio-based Battelle since the laboratory's inception in 1965. For more information, visit the PNNL News Center, or follow PNNL on FacebookLinkedInand Twitter.

Algal Reaping | 2013-06-01 | Pollution Engineering

Algal Reaping | 2013-06-01 | Pollution Engineering