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CARBONATE DIRECT FUEL CELL OPERATION ON DUAL FUEL

机译:碳酸盐直接燃料电池在双燃料上运行

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The ability to operate highly-efficient, pollution-free, distributed-generation power plants on either natural gas or HD-5 grade propane is of interest to the U.S. Army and the U.S Department of Homeland Security as secure power for critical power operations. The ability to operate continuously on HD-5 propane also provides a valuable proposition to islands, remote sites, national parks, data centers, military bases, hotels, and hospitals. HD-5 propane, as opposed to other grades of propane, was selected as the back-up fuel of choice because of its availability (even in remote areas), cost, and ease of processing in the fuel cell power plant. Although natural gas distribution through utility pipelines is convenient, it is vulnerable to natural disaster, threats of terrorism, and simple repair outages. Propane, however, is routinely transported and stored as a liquid at ambient temperatures and offers a convenient and secure option for fuel cell operations. An adequate quantity of propane can be stored on site to sustain operations for several days in a variety of weather climates. In response to the interest for a fuel flexible power plant, Concurrent Technologies Corporation (CTC), under contract to the U.S. Army Engineer Research and Development Center's Construction Engineering Research Laboratory (ERDC-CERL), is working with FuelCell Energy (FCE) to test an internally reforming 250 kW carbonate fuel cell. Previous to the demonstration at CTC, FCE operated a 250 kW carbonate direct fuel cell for 1500 hours, which generated 300,000 kilowatt-hours (kWh) net AC electricity using HD-5 propane as fuel. Among the challenges addressed, lessons learned by FCE during initial operation on HD-5 propane included: 1) avoiding carbon deposition during pre-reforming of propane into a methane rich gas, 2) metering and controlling propane flow to account for variations in fuel composition, 3) removing sulfur from the propane, and 4) increasing the steam required for operation on propane. Peripheral issues that required additional investigation included identifying the number and volume of propane tanks and a vaporization system to deliver the required rate and quantity of fuel.
机译:在天然气或HD-5等级丙烷上运行高效,无污染,分布发电厂的能力对美国陆军和美国国土安全部门的兴趣感兴趣,因为临界电力运营的安全权力。在HD-5丙烷上持续运营的能力还为岛屿,远程站点,国家公园,数据中心,军事基地,酒店和医院提供了有价值的主张。与其他等级的丙烷相对的HD-5丙烷被选为选择的备用燃料,因为其可用性(即使在偏远地区),成本和燃料电池发电厂中的加工方便。虽然天然气分配通过公用设施管道方便,但它很容易受到自然灾害,恐怖主义威胁,简单的维修中断。然而,丙烷在环境温度下常规地运输并作为液体储存,并为燃料电池操作提供方便和安全的选择。足够数量的丙烷可以在现场储存,以维持在各种天气气候中的几天运营。为应对燃料灵活发电厂,并发技术公司(CTC)的兴趣,根据美国陆军工程师研发中心的建筑工程研究实验室(ERDC-CERL),正在使用燃料能量(FCE)来测试内部重整250 kW碳酸盐燃料电池。在CTC的演示之前,FCE运行了250 kW碳酸盐直接燃料电池1500小时,使用HD-5丙烷作为燃料产生300,000千瓦时(千瓦时)净交流电。在解决的挑战中,CCE在HD-5丙烷初始操作期间汲取的经验教训包括:1)避免在丙烷预重整成甲烷富气中的碳沉积,2)计量和控制丙烷流动,以算用于燃料组合物的变化3)从丙烷中除去硫,4)增加在丙烷上操作所需的蒸汽。需要额外调查的外围问题包括识别丙烷罐的数量和汽化系统,以提供所需的速率和燃料量。

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