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Enhancement in Performance and Emission Characteristics of Soybean Biodiesel by using Sr-ZnO Nanoadditives in VCR Engine

机译:增强的性能和排放大豆生物柴油使用的特征在录像机Sr-ZnO Nanoadditives引擎

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摘要

In present literature effect of strontium zinc oxide (Sr-ZnO) nanoparticle on soybean biodiesel were studied at 21.5 compression ratio various tests were carried out to find out optimum useful compression ratio for soybean nanofuel at three different doses level. We found very similar characteristics in soybean biodiesel as compared to diesel fuel. Also, huge quantity of soybean is available in Asian subcontinent. Although some of limitations like poor flow properties, high density, low heating value, high NOx emission and low cetane number etc. that can be overcome by addition of suitable nanoadditives. Soybean biodiesel was prepared with transesterijication process. Morphological study of nano-particles was done to understand its behavior. Sodium dodecyl sulfate (SDS) surfactant was used to stabilize nanosolution. After making combination of all possible nanofuel blends physicochemical properties of blends was tested in Apex innovation laboratory Sangli as per American Society for Testing and Materials (ASTM) standards. Performance and emissions readings were taken at different loads and compression ratios from the different results it was found that with addition ofSr-ZnO nano-particles break thermal efficiency (BTE) was increased by 9.66%, brake specific fuel consumption (BSFC) decreases by 7.22%; also carbon monoxide (CO), hydrocarbons (HC), nitrogen oxide (NOX) emissions was reduced significantly because of better combustion efficiency. At high load NOx increases with comparable amount with all fuel blends. Further NOx can be minimized by exhaust gas recirculation (EGR) method.
机译:目前文献中锶锌的效果氧化(Sr-ZnO)纳米颗粒在大豆生物柴油研究了在21.5压缩比不同吗进行测试找出最佳有用压缩比为大豆nanofuel三人不同剂量水平。大豆生物柴油相比的特征柴油燃料。在亚洲次大陆。限制像可怜的流动特性,高密度,低热值,高氮氧化合物排放低十六烷等数量是可以克服的添加合适的nanoadditives。生物柴油与transesterijication准备的过程。做是为了理解其行为。十二烷基硫酸盐(SDS)表面活性剂用于稳定nanosolution。所有可能的nanofuel混合物理化学在顶点混合性能进行了测试创新实验室Sangli按美国人和材料试验学会(ASTM)标准。拍摄在不同的负荷和压缩从不同的结果发现率,除了ofSr-ZnO纳米粒子热效率(耳背式)增长了9.66%,制动燃油消耗率(BSFC)减少7.22%;(HC)、氮氧化物(NOX)排放减少明显,因为更好的燃烧效率。等量混合燃料。氮氧化物废气再循环可以最小化(EGR)方法。

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