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Cooking fuel from Jatropha Curcas feedstock: An experiment based techno-economic analysis

机译:烹饪燃料来自麻风树图Curcas Feipstock:基于实验的技术经济分析

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Jatropha Curcas is a promising feedstock for biofuel production, which can be grown in tropical and subtropical regions globally. Utilization of oil produced from the Jatropha seed can reduce the use of common cooking fuels in developing countries such as firewood, kerosene, and liquefied petroleum gas (LPG). Thus, many developing countries including Nepal are promoting Jatropha-based biofuel production plants. However, before the commercial establishment of such a facility, a thorough techno-economic analysis is required. Thus, this study conducted a techno-economic analysis of a commercial-scale Jatropha oil production facility with a nameplate capacity of 23.87 million liter/year. Jatropha seeds collected from different regions of Nepal were used to determine the oil yield and other required input materials for the oil extraction process. Thermal efficiency of a conventional kerosene stove blending with Jatropha oil was also determined. These experimental data and other data associated with process equipment collected from the literature were used to conduct the techno-economic analysis. The estimated Jatropha oil costs ($/L) with and without oil cake revenue were 0.64 and 0.76, respectively. Additionally, Jatropha oil production cost ($/L) including oil cake revenue at 90% confidence interval was 0.38-1.02. Feedstock cost, oil yield, oil cake revenue, and plant size were the most sensitive parameters to oil production cost. Further, thermal efficiency of 38.8 +/- 0.18% was obtained when 20% (v/v) Jatropha oil was blended with kerosene and the efficiency was inversely proportional to blending ratio. Overall, 20% (v/v) Jatropha oil-kerosene blend could be a viable cooking fuel for developing countries. (c) 2016 Society of Chemical Industry and John Wiley & Sons, Ltd
机译:麻风树柔滑圈是生物燃料生产的有希望的原料,可以在全球热带和亚热带地区种植。利用麻风树种子生产的油可以减少在柴火,煤油和液化石油气(LPG)等发展中国家中使用普通烹饪燃料的使用。因此,许多发展中国家在内的尼泊尔正在促进基于麻风罗的生物燃料生产植物。但是,在商业建立此类设施之前,需要彻底的技术经济分析。因此,本研究对商业规模的麻醉石油生产设施进行了技术经济分析,铭牌产能为2387万升/年。从尼泊尔不同地区收集的麻风树种子用于确定油萃取过程的油产量和其他所需的输入材料。还测定了常规煤油炉的热效率与麻醉药油混合。这些实验数据和与从文献中收集的过程设备相关的其他数据用于进行技术经济分析。估计的麻醉药($ / L)分别为0.64和0.76分别为0.64和0.76。此外,JATROPHA石油生产成本($ / L)包括90%置信区间的油菜收入为0.38-1.02。原料成本,油产量,油菜收入和植物大小是油生产成本最敏感的参数。此外,当用煤油混合20%(v / v)麻黄油时,获得38.8 +/- 0.18%的热效率,效率与混合比成反比。总体而言,20%(v / v)麻风树油煤油混合物可能是发展中国家可行的烹饪燃料。 (c)2016化学工业协会和约翰瓦里和儿子有限公司

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