利用呼吸商概念对可再生能源和化石燃料进行全球变暖潜能值排序

IF 1.5 Q3 ENGINEERING, CHEMICAL Journal of Combustion Pub Date : 2018-02-06 DOI:10.1155/2018/1270708
K. Annamalai, S. Thanapal, Devesh Ranjan
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引用次数: 21

摘要

二氧化碳是导致全球变暖的温室气体之一。预计在未来几年,为满足电力和交通领域的需求而消耗的化石燃料数量将增加。根据碳含量的不同,每一种发电厂的燃料都有可能产生二氧化碳。同样,人类食用含有碳水化合物(CH)、脂肪和蛋白质的食物,这些食物在新陈代谢过程中会释放二氧化碳。生物学文献使用呼吸商(respiratory quotient, RQ)来估计血液中的二氧化碳负荷和鼻排气中的二氧化碳。呼吸商被定义为体内消耗的每摩尔氧气所消耗的二氧化碳摩尔数之比。在这里,我们将这一原则应用于燃烧领域,将RQ与燃料燃烧时释放的每GJ能量的吨二氧化碳排放量联系起来。燃料的RQ值可以通过燃料化学公式(通过对大多数已知成分的液体和固体燃料的最终分析)或废气分析来确定。RQ范围从甲烷(CH4)的0.5到纯碳的1。根据所获得的结果,燃料的“RQ”值越小,其全球变暖潜力就越低。这种方法可以进一步扩展到基于实际燃料使用而不考虑燃料成分的汽车“在线瞬时测量二氧化碳”。
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Ranking Renewable and Fossil Fuels on Global Warming Potential Using Respiratory Quotient Concept
Carbon dioxide (CO2) is one of the greenhouse gases which cause global warming. The amount of fossil fuels consumed to meet the demands in the areas of power and transportation is projected to increase in the upcoming years. Depending on carbon content, each power plant fuel has its own potential to produce carbon dioxide. Similarly, the humans consume food containing carbohydrates (CH), fat, and protein which emit CO2 due to metabolism. The biology literature uses respiratory quotient (RQ), defined as the ratio of CO2 moles exhausted per mole of O2 consumed within the body, to estimate CO2 loading in the blood stream and CO2 in nasal exhaust. Here, we apply that principle in the field of combustion to relate the RQ to CO2 emitted in tons per GJ of energy released when a fuel is combusted. The RQ value of a fuel can be determined either from fuel chemical formulae (from ultimate analyses for most liquid and solid fuels of known composition) or from exhaust gas analyses. RQ ranges from 0.5 for methane (CH4) to 1 for pure carbon. Based on the results obtained, the lesser the value of “RQ” of a fuel, the lower its global warming potential. This methodology can be further extended for an “online instantaneous measurement of CO2” in automobiles based on actual fuel use irrespective of fuel composition.
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来源期刊
Journal of Combustion
Journal of Combustion ENGINEERING, CHEMICAL-
CiteScore
2.00
自引率
28.60%
发文量
8
审稿时长
20 weeks
期刊最新文献
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