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A home fuel cell or a residential fuel cell is an
electrochemical cell An electrochemical cell is a device that either generates electrical energy from chemical reactions in a so called galvanic cell, galvanic or voltaic cell, or induces chemical reactions (electrolysis) by applying external electrical energy in an ...
used for primary or backup power generation. They are similar to the larger industrial stationary
fuel cell A fuel cell is an electrochemical cell that converts the chemical energy of a fuel (often hydrogen fuel, hydrogen) and an oxidizing agent (often oxygen) into electricity through a pair of redox reactions. Fuel cells are different from most bat ...
s, but built on a smaller scale for residential use. These fuel cells are usually based on combined heat and power (CHP) or micro combined heat and power (m-CHP) technology, generating both power and heated water or air.


Uses

Home fuel cells are installed alongside grid-provided mains power to consistently produce the exact amount of electricity and heat needed. Additionally, a home fuel cell may be combined with a traditional furnace that produces only heat. For example, the German company Viessmann produces a home fuel cell with an electric power of 0 kW and a thermal power of 1 kW, integrated with a traditional 19 kW heat-producing furnace, using the grid for electricity needs below and above the fuel cell production. PEMFC fuel cell m-CHP operates at low temperature (50 to 100°C) and requires high-purity hydrogen. It is prone to contamination, and changes can be made to operate at higher temperatures and improve the fuel reformer. The SOFC fuel cell m-CHP operates at a high temperature (500 to 1,000 °CP) and can handle different energy sources, but the high temperature requires expensive materials to handle the temperature. Changes can be made to operate at a lower temperature. Because of the higher temperature, SOFCs in general have a longer start-up time.


Environmental impact

Because the home fuel cell generates electricity and heat that are both used on site, theoretical efficiency approaches 100%. This is in contrast to traditional or fuel cell non-domestic electricity production, which has both a transmission loss and useless heat, requiring extra
energy consumption Energy consumption is the amount of energy used. Biology In the body, energy consumption is part of energy homeostasis. It derived from food energy. Energy consumption in the body is a product of the basal metabolic rate and the physical acti ...
for domestic heating. The home fuel cell cannot generate exactly the needed amount of both heat and electricity at all times. Therefore, they are typically not a standalone installation, but are rather combined with a traditional furnace and connected to the grid for electricity needs above or below that produced by the fuel cell. As such, the overall efficiency is below 100%. The high efficiency of home fuel cells has caused some countries, such as
Germany Germany, officially the Federal Republic of Germany, is a country in Central Europe. It lies between the Baltic Sea and the North Sea to the north and the Alps to the south. Its sixteen States of Germany, constituent states have a total popu ...
, to economically support their installation as part of a policy reacting to
climate change Present-day climate change includes both global warming—the ongoing increase in Global surface temperature, global average temperature—and its wider effects on Earth's climate system. Climate variability and change, Climate change in ...
.


Installation

Home fuel cells are designed and built to fit in either an interior mechanical room or outside, running quietly in the background 24/7. Connected to the utility grid through the home's main service panel and using
net metering Net metering (or net energy metering, NEM) is an electricity billing mechanism that allows consumers who generate some or all of their own electricity to use that electricity anytime, instead of when it is generated. This is particularly impor ...
, the home's fuel cells can easily integrate with existing electrical and hydronic systems, and are compliant with utility interconnection requirements. In the event of a grid interruption, the system automatically switches to operate in a grid-independent mode to provide continuous backup power for dedicated circuits in the home while the grid is down. It can also be modified to run off the grid.


Current installations

Twenty companies have installed Bloom Energy fuel cells in their buildings, including
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,
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, and
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. The CEO of eBay told ''
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'' in 2010 that they had saved $100,000 in electricity bills in the 9 months since they were installed. Oregon-based ClearEdge Power had until 2014 installed 5 kW systems at the homes of Jackie Autry, Bay Area Wealth Manager Bruce Raabe and VC investor Gary Dillabough. A commercially working cell in Japan called Eni-Farm is supported by the regional government, using
natural gas Natural gas (also fossil gas, methane gas, and gas) is a naturally occurring compound of gaseous hydrocarbons, primarily methane (95%), small amounts of higher alkanes, and traces of carbon dioxide and nitrogen, hydrogen sulfide and helium ...
to power the fuel cell that then produces electricity and heated water. In 2013, 64% of global sales of the micro-combined heat and power fuel cell surpassed the conventional mechanical rotary systems in sales in 2012.


Life cycle

Fuel cells have an average lifetime of around 60,000 hours. For PEM fuel cell units, which shut down at night, this equates to an estimated lifetime of between ten and fifteen years.


Cost

Most home fuel cells are comparable to residential
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photovoltaic system A photovoltaic system, also called a PV system or solar power system, is an electric power system designed to supply usable solar power by means of photovoltaics. It consists of an arrangement of several components, including solar panels to abso ...
s on a dollar-per-watt-installed basis. Some natural gas-driven home fuel cells can generate eight times more energy per year than the same-sized solar installation, even in the best solar locations. For example, a 5 kW home fuel cell produces about 80 MWh of annual combined electricity and heat, compared to approximately 10 MWh generated by a 5 kW solar system. However, these systems are not directly comparable because solar power is a renewable resource with basically no operating cost, while natural gas is neither. Operating costs for home fuel cells can be as low as 6.0¢ per kWh based on $1.20 per therm for natural gas, assuming full electrical and heat load utilization. Residential fuel cells can have high initial
capital cost {{no footnotes, date=December 2016 Capital costs are fixed, one-time expenses incurred on the purchase of land, buildings, construction, and equipment used in the production of goods or in the rendering of services. In other words, it is the total ...
s . As of December 2012,
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and Tokyo Gas Co., Ltd. sold about 21,000 PEM Eni-Farm units in
Japan Japan is an island country in East Asia. Located in the Pacific Ocean off the northeast coast of the Asia, Asian mainland, it is bordered on the west by the Sea of Japan and extends from the Sea of Okhotsk in the north to the East China Sea ...
for a price of $22,600 before installation.


Incentives

In the U.S.A., home fuel cells are eligible for substantial incentives and rebates at both the state and federal levels as part of
renewable energy policy Renewable energy commercialization involves the Diffusion of innovations, deployment of three generations of renewable energy technologies dating back more than 100 years. First-generation technologies, which are already mature and economica ...
. For example, the California Self Generation Incentive Program (SGIP) rebate ($2,500 per kW) and Federal Tax Credits ($1,000 per kW residential and $3,000 per kW commercial) significantly reduce the net capital cost to the customer. For businesses, additional cash advantages can be realized from bonuses and accelerated depreciation of fuel cells. In addition, home fuel cells receive net metering credit in many service areas for any excess electricity generated but not used by putting it back on the utility grid. The Database of State Incentives for Renewables & Efficiency (DSIRE) provides comprehensive information on state, local, utility, and federal incentives that promote renewable energy and energy efficiency.


California

In California, in particular, utilities charge higher per kWh rates as
energy consumption Energy consumption is the amount of energy used. Biology In the body, energy consumption is part of energy homeostasis. It derived from food energy. Energy consumption in the body is a product of the basal metabolic rate and the physical acti ...
rises above established baselines, with the top tier set at the highest rates to discourage consumption at those levels. Home fuel cells reduce customer exposure to the top-tier rates, saving homeowners as much as 45% in reduced annual energy costs.


Market status

Home fuel cells represent a new market and a fundamental shift in energy sourcing. An individual home fuel cell system installed in a U.S. residence supports U.S. energy independence. Home fuel cell systems in homes could lessen reliance on public utilities, increase energy efficiency, and reduce US dependence on foreign energy imports. This self-generation of energy in a
distributed generation Distributed generation, also distributed energy, on-site generation (OSG), or district/decentralized energy, is electrical generation and storage performed by a variety of small, grid-connected or distribution system-connected devices referred ...
approach would secure and increase US power generating capacity, enabling unused electricity to be sent back to the grids without having to add new power plants and transmission lines.


See also

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Feed-in tariff A feed-in tariff (FIT, FiT, standard offer contract,Couture, T., Cory, K., Kreycik, C., Williams, E., (2010)Policymaker's Guide to Feed-in Tariff Policy Design National Renewable Energy Laboratory, U.S. Dept. of Energy advanced renewable tariff, ...
*
Sustainable energy Energy system, Energy is sustainability, sustainable if it "meets the needs of the present without compromising the ability of future generations to meet their own needs." Definitions of sustainable energy usually look at its effects on the e ...


References


External links


US Department of Energy (DOE) Energy Efficiency & Renewable Energy(EERE): Hydrogen, Fuel Cells and Infrastructure Technologies Program

Fuel Cell Today
{{emerging technologies, energy=yes Fuel cells Residential heating