101-Year-Old Toledo Museum of Art Building Goes Temporarily “Off the Grid” After 20 Years of Implementing Green Initiatives – absolutearts.com

See on Scoop.itGreen Building Operations – Systems & Controls, Maintenance & Commissioning

Museum briefly becomes a provider, rather than user, of electricity

Duane Tilden‘s insight:

>TOLEDO, OHIO–On Tuesday, May 21 the Toledo Museum of Art achieved a milestone in its 20-year effort to reduce energy consumption: its 101-year-old Beaux Arts main building stopped drawing power from the electrical grid and actually started returning power to the system. The ongoing process, which incorporates using sustainable energy practices such as solar power, energy-efficient lighting, micro turbines and chillers, has resulted in hundreds of thousands of dollars in cost savings over the years.

[…]

Bernhard cited lighting as a good example. The first generation of LED lights weren’t suitable for illuminating and protecting art, so they were bypassed at the time. Now that the technology has dramatically improved, LED fixtures are now being introduced into the galleries, where lights frequently burn out from continual usage. The new lights not only save energy but last much longer, decreasing labor costs associated with the constant replacement of bulbs. The lighting in the renovated lot is also provided by new LED fixtures, which provide greater illumination while using less electricity

Bintz and Bernard also added new micro turbines and chillers to the power plant at TMA’s world-famous TMA Glass Pavilion during last year’s energy upgrade. The heat from the building’s working glass hot shop is recycled into the rest of the building during cold months. While generating electricity, the micro turbine waste heat is used to heat the building in the colder months and generate chilled water for air conditioning in the summer.<

See on www.absolutearts.com

Waste Management’s Hidden Value Driver Doesn’t Stink – DailyFinance

See on Scoop.itGreen Energy Technologies & Development

One thing has plagued mankind from the very first man caves tens of thousands of years ago to the streets of modern day cities: waste. Where do you

Duane Tilden‘s insight:

>Waste Management has quietly become a leader in waste to energy (WtE) and landfill gas to energy (LGTE) technologies. […] The company, using various sources of waste as feedstock, generates up to 550 MW of renewable energy each year – enough to power almost 1.2 million homes. Internal goals call for increasing that figure to 915 MW (2 million homes) by the end of the decade.

Waste to energy

Waste Management’s waste to energy services ignite solid and municipal waste to produce syngas, which is burned to spin turbines and, alas, create renewable electricity. Wheelabrator, the company’s subsidiary, operates 17 WtE facilities in the United States that can convert over 8 million tons of waste into 333 MW each year. That is second only to Covanta, which owns 44 facilities that convert over 20 million tons of waste into 9 million MWh of electricity each year – equivalent to 8% of all renewable energy in the United States.<

See on www.dailyfinance.com

Solar Air Conditioning: A technological development opportunity in renewable energy (2010) | Solarthermalworld

See on Scoop.itGreen Energy Technologies & Development

This presentation comes from Puerto Rico’s Universidad del Turabo, and explores the benefits of solar thermal air conditioning, the technology that makes this application possible, and how its use can be expanded in Puerto Rico and the Caribbean.

Duane Tilden‘s insight:

Interesting technologies in Solar and Waste-Heat powered A/C

See on solarthermalworld.org

GE Gas Engines to Power Alternative Energy Projects

See on Scoop.itGreen Energy Technologies & Development

GE to Supply Jenbacher J620 Engines to Power GWED’s Waste-to-Energy Projects – […] to power a series of Advanced Recycling and Energy Conversion (AREC) plants that GWE’s development subsidiary, Green Waste Energy Development (GWED), plans to build around the world.

Duane Tilden‘s insight:

>GWED uses C6 Technologies’ proprietary and patent-pending, non-burn waste-advanced pyrolysis technology in its AREC projects. The C6 technology can transform a wide range of wastes into “syngas,” which then can be used in gas engines to generate cleaner electricity or produce greener transportation fuels including diesel and jet fuel. C6T licenses its technology to developers worldwide.

Under terms of the agreement, GE will provide GWED with Jenbacher J620 gas engines, which will use the syngas produced at GWED’s waste-gasification facilities to generate renewable electricity. Each installed gas engine will generate nearly 2MWof reliable on-site power. GE also will provide technical support for GWED’s installed engine fleet.<

See on www.onlinetes.com

Energy Institute offers free online energy management training

See on Scoop.itGreen Building Operations – Systems & Controls, Maintenance & Commissioning

The free module covers the role of an energy manager, developing an energy policy and investment in energy efficiency.

Duane Tilden‘s insight:

>The first module of a new e-learning course on energy management, which is currently being developed by the Energy Institute (EI), the professional body for the energy industry, is now available free of charge.<

for course click this link:  http://bit.ly/14KLPzZ

See on www.offshore-publication.com

DPR Construction’s Phoenix Office First Net-Zero Energy Commercial Building in Arizona

See on Scoop.itGreen Building Design – Architecture & Engineering

PHOENIX, May 17, 2013 (BUSINESS WIRE) — DPR Construction (DPR), a national technical builder specializing in highly complex and sustainable projects, announced today the achievement of net-zero energy consumption in its Phoenix Regional Office.

Duane Tilden‘s insight:

>The renovated 16,533-square-foot office building is located in Phoenix’s Discovery Triangle at the corner of 44th Street and Van Buren. In less than 10 months, the team, which included national design firm SmithGroupJJR and global consulting firm DNV KEMA Energy and Sustainability, researched, designed, permitted, and built a highly-efficient, modern workplace with a number of innovative sustainability features including:

— 87 operable windows working in tandem with the energy monitoring system to open and close based on the relative indoor and outdoor temperatures

— 87-foot zinc clad solar chimney which creates a convection current to release hot air out of the building while drawing cooler air in

— Shower towers that act as evaporative coolers by working together with the operable windows and solar chimney to regulate building temperatures

— Twelve eight-foot Isis(R) Big Ass(R) Fans that enable free air flow within the office

— 82 strategically positioned Solatubes(R) that nearly eliminate the need for artificial daytime lighting […]<

See on www.marketwatch.com

US team’s battery ‘breakthrough’

See on Scoop.itGreen Energy Technologies & Development

Researchers believe they have found a way to radically shrink the size of batteries while offering the same amount of power and faster recharges than at present.

Duane Tilden‘s insight:

>The scientists’ “breakthrough” involved finding a new way to integrate the anode and cathode at the microscale.

“The battery electrodes have small intertwined fingers that reach into each other,” project leader Prof William King told the BBC.

“That does a couple of things. It allows us to make the battery have a very high surface area even though the overall battery volume is extremely small.

A cross-section of the battery reveals the 3D-design of the research project’s anodes and cathodes

“And it gets the two halves of the battery very close together so the ions and electrons do not have far to flow.

“Because we’ve reduced the flowing distance of the ions and electrons we can get the energy out much faster.”<

See on www.bbc.co.uk

New Study: Distributed Solar Energy Provides $34 Million in Benefits to Arizona Ratepayers | SEIA

See on Scoop.itGreen & Sustainable News

WASHINGTON, DC – A study released today shows that distributed solar generation (DG) and net energy metering will provide Arizona Public Service (APS) customers with $34 million in annual benefits.

Duane Tilden‘s insight:

>The study found that for each dollar of cost, DG provides $1.54 worth of benefits to APS customers. The net benefits for APS customers will amount to $34 million per year beginning in 2015. Benefits include savings on expensive and polluting conventional power and power plants; reduced investments in transmission and distribution infrastructure; reduced electricity lost during transportation over power lines, as distributed solar power is generated and consumer locally; and savings on the cost of meeting renewable energy requirements.

“This study clearly shows that solar offers concrete net benefits to all APS ratepayers, regardless of whether or not they have installed solar” said Carrie Cullen Hitt, senior vice president of state affairs at the Solar Energy Industries Association (SEIA). “It’s essential that we keep smart policies like net metering in place so that Arizona can continue to benefit from its abundant solar resources.”<

See on www.seia.org

Transactive, distributed energy markets hold promise | Intelligent Utility

See on Scoop.itGreen Energy Technologies & Development

Transactive energy markets hold the promise to achieve economic efficiency and reliability across the bulk power system and distribution networks.  This research area was identified in the Caltech Resnick Sustainability Institute’s Grid2020 report released last fall, and was the topic of the third discussion of the series in April 2013.

Duane Tilden‘s insight:

>Significant untapped potential exists to leverage a new class of flexible mixed distributed assets (e.g., distributed generation, responsive demand, storage, power electronics and electric vehicles), what has been called DR 2.0, to manage the power system. But, this requires changes in both market designs and grid operations.  […]

Current wholesale market rules are significant barriers to participation as they effectively do not distinguish a 500 MW power plant from a 5kW electric vehicle battery. This is very unfortunate, as the technology to tap these smaller resources and create significant value for customers is available today. Heather Sanders, Director, DER Policy at CAISO shared that, “a challenge is to create market participation rules that meet operators’ needs for reliability, but also facilitate customer value opportunities.” <

See on www.intelligentutility.com

Two liquid air projects through to feasibility stage of competition | News | gasworld

See on Scoop.itGreen Energy Technologies & Development

Highview Power Storage, an award-winning UK developer of utility scale liquid air energy storage technologies, has had two multi-MW projects successfully put through to the feasibility stage of DECC’s Energy Storage Technology Demonstration…

See on www.gasworld.com

>Project one involves the National Grid, Costain and Highview, for a proposed utility-scale demonstration project of a fully integrated liquid air energy storage plant of up to 6MW output, hosted by National Grid’s Grain Liquefied Natural Gas (LNG) site at the Isle of Grain in Kent.

The plant would have around five hours of operation (30MWhs), making it the largest demonstration of new energy storage technology in the UK.<