Work begins on largest North American fuel cell – Natural Gas to Electricity

See on Scoop.itGreen Energy Technologies & Development

Dominion, one of the US’ largest energy companies, and FuelCell Energy Inc have begun construction of the largest fuel cell power project in North America.

Duane Tilden‘s insight:

>Dominion Bridgeport Fuel Cell, which is being built next to the Interstate 95 motorway and the Northeast rail corridor, will produce 14.9 megawatts of clean energy, enough to power approximately 15,000 homes. It will use an electro-chemical process that converts natural gas into electricity.<

 

See on www.renewableenergyfocus.com

An Important, and Sometimes Overlooked, Energy Efficiency Tool

An Important, and Sometimes Overlooked, Energy Efficiency Tool.

Power plant cancellations: Green Energy Act looms behind gas plant mess | Toronto Star

See on Scoop.itGreen & Sustainable News

The Green Energy Act stripped Ontarians of their right to appeal decisions on locating energy facilities.

Duane Tilden‘s insight:

>Former premier Dalton McGuinty told a legislative committee this week that “there was a faulty selection process for gas plant sites and they were wrongly located and had to be shut down.”

But that faulty process was the result of his much-ballyhooed Green Energy Act. And the cost of the faulty process and the subsequent shutdown of the Oakville and Mississauga sites will be $585 million or more.

[…]

The result is that Ontario electricity rates, at one time among the lowest in North America, are now some of the highest. Ontario residential customers are paying about three times more for electricity than they did when McGuinty took office. Ontario industry, which used to benefit from low electricity costs, is suffering.<

See on www.thestar.com

Utility project moves forward with CHP

See on Scoop.itGreen Energy Technologies & Development

DOVER – The Delaware Economic Development Office on Thursday gave provisional approval to a $15.5 million grant request by a Pennsylvania-based consortium of investors and stakeholders who want to build a $1.1 billion gas-fired CHP (combined heat…

Duane Tilden‘s insight:

The gas-fired power plant will produce twice as much energy as the fiber-optic data center needs, leaving half the power available to flow into the grid to be sold to the Delaware Municipal Electric Corporation, a wholesale utility that powers Newark, New Castle, Middletown, Clayton, Smyrna, Dover, Milford, Lewes and Seaford.

“Newark is very pleased [about the probable partnership],” said City Manager Carol Houck. “We believe it was bring with it many benefits.”

Gene Kern, CEO of The Data Centers, said there are advantages to a data center having its own power supply.  First, electricity is the biggest expense for the fiber-optic data center. Second, local power outages will have no impact on fiber-optic service.

See on www.newarkpostonline.com

USDA Renews Dairy Energy Pact – Domestic Fuel

See on Scoop.itGreen & Sustainable News

Agriculture Secretary Vilsack today renewed a historic agreement with U.S. dairy producers to accelerate the adoption of innovative waste-to-energy projects and energy efficiency improvements on U.S. dairy farms…

Duane Tilden‘s insight:

USDA support for agricultural and waste-to-energy research has played a key role in the agreement’s success to date. Since signing the MOU, USDA has made nearly 180 awards that helped finance the development, construction, and biogas production of anaerobic digester systems with Rural Development programs, such as the Rural Energy for America Program (REAP), Bioenergy Program for Advanced Biofuels, Business and Industry Guaranteed Loan Program, Value Added Producer Grants, amongst others. These systems capture methane and produce renewable energy for on-farm use and sale onto the electric grid. Additionally, during this period, USDA awarded approximately 140 REAP loans and grants to help dairy farmers develop other types of renewable energy and energy efficiency systems at their operations.

See on domesticfuel.com

Aemetis Announces Restart of 60 Million Gallon Per Year Keyes Biofuels Plant – WSJ.com

See on Scoop.itGreen Energy Technologies & Development

Aemetis, Inc. (OTCQB: AMTX), an advanced fuels and renewable chemicals company, announced today that the Aemetis 60 million gallon per year capacity ethanol facility in Keyes, California has completed planned maintenance and preparations for the production of Advanced Biofuel under recent EPA rulings, and is now restarting production.

Duane Tilden‘s insight:

The plant will start up using corn as the principal feedstock, with grain sorghum or a feedstock blend used after startup to maximize operating income. In December 2012, the Environmental Protection Agency (EPA) approved the use of grain sorghum feedstock along with biogas in a combined heat and power system to produce an Advanced Biofuel containing approximately 50% lower carbon content than gasoline. Advanced Biofuel generates D5 Renewable Identification Numbers (RINs) that have traded at a premium to traditional ethanol D6 RINs.

[…]  “About $5 million of capital investment and new working capital has been invested since mid-January for maintenance and to enable the plant to produce Advanced Biofuel in a flexible configuration that enables the use of multiple feedstocks and energy sources.”

McAfee added, “The Keyes plant has sustainable cost advantages in Advanced Biofuels production. The plant’s location enables both rail and ocean shipping access to advanced biofuel feedstock from lower-cost supply sources. The Keyes plant is also equipped with an energy-efficient Combined Heat and Power (CHP) system to reduce energy costs and decrease the carbon content of fuel. By using grain sorghum feedstock and sourcing biogas for the CHP system instead of natural gas, the Keyes facility is now able to produce Advanced Biofuel to support EPA requirements for advanced fuels.”

See on online.wsj.com

Waste and Recycling Industry – Landfill Gas Collection Almost 50% of Renewable Energy Supply USA

See on Scoop.itGreen & Sustainable News

WASHINGTON, April 18, 2013 /PRNewswire-USNewswire/ — The waste and recycling industry is continuing to reduce its release of greenhouse gases — even as waste volumes increase, according to the latest greenhouse gas inventory released by U.S. Environmental Protection Agency (EPA).

Duane Tilden‘s insight:

Despite the fact that we are landfilling 6 percent less than 20 years ago, we have greatly improved our ability to reduce methane emissions. As a result, these emissions declined by 30 percent during the same period. This has happened as a result of converting methane to energy, flaring of methane emissions and oxidation techniques.

There are 594 landfill gas-to-energy sites in the United States that generated 1,813 megawatts (MW) of energy and 312 million standard cubic feet a day (mmscfd) of gas. This is enough energy to directly power 1 million homes and heat 729,000, respectively.

Methane gas collected at landfills is used to power home, businesses and government facilities across the nation. Some of it is even used to fuel garbage trucks. Landfill-gas-to-energy projects and other forms of biomass-derived energy make up the almost half of the nation’s renewable energy supply, almost the same amount as is derived from solar, wind, geothermal and hydropower combined.

See on online.wsj.com

Ceramic Fuel Cells receives German order for micro combined heat and power units – Proactiveinvestors (AU)

See on Scoop.itGreen Energy Technologies & Development

Ceramic Fuel Cells (ASX: CFU) has received a binding order for 60 integrated micro combined heat and power (mCHP) units from German energy service provider EWE.

Duane Tilden‘s insight:

Integrated mCHP generators combine fuel-cell technology and a condensing boiler to meet all electricity and heat requirements for single-family homes and small office buildings.

Operating this new fleet will demonstrate the latest product improvements that Ceramic and its development partner Gebrüder Bruns Heiztechnik GmbH have incorporated, including enhanced overall control and thermal efficiency.

See on www.proactiveinvestors.com.au

Is Gasification Better Than Incineration? Read: Global Markets for Gasifiers – WSJ.com

See on Scoop.itGreen Energy Technologies & Development

NEW YORK, April 15, 2013 /PRNewswire/ — Reportlinker.com announces that a new market research report is available in its catalogue:

Global Markets for Gasifiers

Duane Tilden‘s insight:

INTRODUCTION

Gasification is a centuries–old thermochemical energy conversion technology that has slowly achieved modernity over the decades. The technology is undergoing its third evolutionary surge. Fuel shortages in WWII spurred widespread adoption for vehicle fuels. The oil crisis 1973 spurred a re–evaluation and renewed development. Rising oil prices, globally increasing fuel demand, and overwhelming scientific evidence of climate change have spurred this last leg to full industrialization.

The central concept of gasification is that by raising carbon–rich materials to high temperatures in an oxygen–deficient containment, the material will break down thermochemically instead of burning. If the same material is combusted (burned), it emits carbon monoxide and a host of pollutants, besides being incompletely consumed. If gasified, the products are hydrogen (H2), carbon monoxide (CO) and carbon dioxide (CO2). This is synthetic gas, simply called “syngas.” It can be burned, captured, stored, or its molecules rearranged to form fuels and chemical feedstocks.

The process is moderately more efficient than incineration, has significantly fewer emissions and waste, and the syngas can be shaped into a myriad of products for power production, chemical industries, liquid fuels, and heat.

Feedstock for gasification can be coal, the organic components of municipal waste, industrial waste streams, chemical feedstocks, forestry residues, forest products and crop residues, medical waste, unrecycled plastic or, in the case of plasma gasifiers, almost any nonradioactive material.

A gasifier is the central component of a gasification plant. Surrounding it are the feedstock conditioning and delivery systems, oxygen, steam and air input systems, waste removal components, syngas cooling and cleaning systems, power plants, heat recovery units, Fischer–Tropsch molecule rearrangers, and so on. This report focuses on the markets for gasifier units that are in place and will be installed by application segment and geographic location through the year 2017.

See on online.wsj.com

US president aims to add 40GW to 82GW of installed CHP capacity by 2020

See on Scoop.itGreen Energy Technologies & Development

Low gas prices, state incentives, environmental regulations and the retirement of old power plants helps fuel rising investment in combined heat and power (CHP) installations in the US, according to a Department of Energy (DOE) and Environmental Protection Agency (EPA) report.

 

Duane Tilden‘s insight:

Obama’s CHP initiative

The 40GW CHP expansion goal is based on a 2012 Executive Order from Obama which encourages the Departments of Energy, Commerce, and Agriculture, and the EPA […] to coordinate policies in order to encourage investment in industrial efficiency measures such as CHP.

The installation of a further 40MW of capacity would save about 1 quadrillion Btu of energy annually, eliminate over 150 million metric tons of CO2 emissions and save energy users some $10 billion a year.

Shale gas revolution helps spur CHP growth

Currently about 8 percent of US power generation capacity and 12 percent of MWh generated annually comes from CHP, according to the DOE report, while 87 percent of CHP installations support manufacturing plants.

The recent US shale gas revolution has helped spur renewed interest in the sector, after investment in new CHPs slowed down between 2004 and 2005, mainly due to volatile gas prices and an uncertain economic outlook.

See on gastopowerjournal.com