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Azolla pinnata methyl ester production and process optimization using a novel heterogeneous catalyst

机译:Azolla Pinnata甲酯生产和工艺优化使用新型异构催化剂

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This study concentrated on utilizing a novel heterogeneous dolomite catalyst in transesterification of Azolla pinnata algae oil with methanol to convert Azolla pinnata methyl ester (AME). The thermophysical properties of the catalyst were characterized by XRF, XRD, FTIR, and BET analysis. The optimized AME yield of 88.7% was obtained for the methanol to oil molar ratio (30:1), catalyst weight% (4 wt%), and operating temperature of (70 degrees C) through central composite design (CCD) in response surface methodology (RSM) technique. Five different proportions of Azolla pinnata methyl ester (AME) viz., 10%, 20%, 30%, 40% and 100% by volume were blended with 90%, 80%, 70%, 60% and 0% by volume of diesel. These AME test fuel blends were named AME10, AME20, AME30, AME40, and AME100. American Society for Testing and Materials (ASTM D6751) standards followed to testing the thermophysical properties of prepared biodiesel. AME fuel blends were tested in the single-cylinder variable compression ratio (VCR) engine with varied compression ratios (CR) of 16:1, 17:1, and 18:1 for different loadings at a constant speed of 1500 rpm. The performance, in-cylinder combustion, and exhaust emission results were concluded among five different diesel-AME blends at varied compression ratios. The obtained results for AME blends were compared with the diesel fuel under the same working conditions. At peak load condition, AME30 test fuel with CR18:1 gives a reduction of CO (14.0%), HC (12.06%) and smoke opacity (5.88%) and slight increment in NOx (2.46%) emissions as well as reduced BTE (10.20%) and increased BSEC (17.33%) were obtained related to diesel fuel. Better diffusion phase combustion was recorded for AME blends due to their higher cetane value than neat diesel. (C) 2021 Elsevier Ltd. All rights reserved.
机译:该研究集中于利用新型非均相白云石催化剂在甲醇转化Azolla Pinnata甲酯(AME)的甲醇中的酯交换中。催化剂的热物理性质通过XRF,XRD,FTIR和BET分析表征。通过中央复合设计(CCD)在响应面上,获得甲醇与油摩尔比(30:1),催化剂重量%(4wt%)和(70℃)的工作温度的优化ame产率为88.7%方法(RSM)技术。五种不同比例的Azolla pinnata甲酯(Ame)viz。将10%,20%,30%,40%和100重量%与90%,80%,70%,60%和0%(体积)混合柴油机。这些AME测试燃料混合物被命名为AME10,AME20,AME30,AME40和AME100。美国的测试和材料协会(ASTM D6751)标准,遵循测试制备的生物柴油的热物理性质。在单缸可变压缩比(VCR)发动机中测试AME燃料混合物,其变化的压缩比(Cr)为16:1,17:1和18:1,对于不同的载荷,恒定速度为1500rpm。在各种压缩比下的五种不同的柴油蛋白共混物中结束了性能,圆柱燃烧和排气结果。在相同的工作条件下将所得氨共混物的结果与柴油燃料进行比较。在峰值负载条件下,AME30与CR18:1的测试燃料可降低CO(14.0%),HC(12.06%)和烟雾不透明度(5.88%),NOx(2.46%)排放的轻微增量以及减少的BTE( 10.20%)和增加BSEC(17.33%)与柴油燃料有关。由于其较高的十六烷值而不是整洁的柴油,ame共混物记录更好的扩散相燃烧。 (c)2021 elestvier有限公司保留所有权利。

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