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Environmental impacts of biodiesel production from waste spent coffee grounds and its implementation in a compression ignition engine

机译:废咖啡渣产生的生物柴油对环境的影响及其在压燃式发动机中的实施

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This study explores the environmental, economic, and technical feasibility of using spent coffee grounds as parent feedstock for biodiesel production. Biodiesel is produced from the spent coffee grounds, and four blends are prepared-B5, B10, B15, and B20. The effects of two extraction solvents (hexane and petroleum ether) on oil yields of the spent coffee grounds are investigated, employing the Soxhlet extraction technique. The properties of any intermediate yield throughout the production process are characterised and adjusted by post processes to ensure the conformity of the final biodiesel product with the standards (ASTM D6751 and ISO EN14214). The major part of the study investigates the effects of blends on tailpipe emissions and performance of a naturally aspirated single-cylinder compression ignition engine. A wide range of engine speeds (1600-3600 rpm at 200-rpm increments) has been considered at three engine loads (100, 75, and 50%). The standard diesel fuel is set as a basis for comparison. Results show that the post processes on the extracted oil yielded water content of 0.038%, free fatty acid fraction of 0.41%, and acid number of 2 mg KOH/g. The highest oil extraction (14.12%) was obtained over a 45-min extraction time using a hexane solvent. Biodiesel blends produced lower levels of CO2, CO, and HC. Blend B5 showed average reductions of 0.34, 12.5, and 4.23% at full load for the three aforementioned emissions, respectively; B10 reductions were 3.12, 29.85, and 19.14%, respectively. Higher levels of NOx emissions were detected from all blends. At full load, the average NOx increments of B5, B10, B15, and B20 were 0.35, 1.28, 1.8, and 2.3%, respectively. The outstanding environmental and ecological benefits of using the spent coffee grounds as a potential feedstock for biodiesel production are apparent. (C) 2019 Elsevier B.V. All rights reserved.
机译:这项研究探索了将废咖啡渣用作生产生物柴油的母料的环境,经济和技术可行性。从废咖啡渣中生产生物柴油,并准备了四种混合物-B5,B10,B15和B20。利用索氏提取技术,研究了两种萃取溶剂(己烷和石油醚)对废咖啡渣油收率的影响。在整个生产过程中,任何中间产量的特性均需通过后期过程进行表征和调整,以确保最终生物柴油产品符合标准(ASTM D6751和ISO EN14214)。该研究的主要部分研究了混合气对排气管排放和自然吸气单缸压缩点火发动机性能的影响。在三种发动机负载(100%,75%和50%)下,已经考虑了多种发动机转速(以200-rpm的增量为1600-3600 rpm)。将标准柴油作为比较的基础。结果表明,对提取的油进行的后处理产生的水含量为0.038%,游离脂肪酸分数为0.41%,酸值小于2 mg KOH / g。使用己烷溶剂在45分钟的萃取时间内获得了最高的油萃取率(14.12%)。生物柴油混合物产生的CO2,CO和HC含量较低。混合物B5在上述三种排放下的满负荷下平均降低了0.34%,12.5%和4.23%。 B10减少分别为3.12、29.85和19.14%。从所有混合物中检测到较高的NOx排放量。在满负荷时,B5,B10,B15和B20的平均NOx增量分别为0.35%,1.28、1.8和2.3%。使用废咖啡渣作为生物柴油生产的潜在原料具有显着的环境和生态效益。 (C)2019 Elsevier B.V.保留所有权利。

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