首页> 外文期刊>Journal of Cleaner Production >Waste to value addition: Utilization of waste Brassica nigra plant derived novel green heterogeneous base catalyst for effective synthesis of biodiesel
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Waste to value addition: Utilization of waste Brassica nigra plant derived novel green heterogeneous base catalyst for effective synthesis of biodiesel

机译:废物增值:利用废弃的芸苔属植物衍生的新型绿色非均质基础催化剂有效合成生物柴油

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In the present study, the heterogeneous base catalyst was derived from the waste Brassica nigra plant and utilized as an efficient catalyst in the transesterification of soybean oil for biodiesel production. The catalyst was prepared by calcination of ash obtained after burning the dried waste Brassica nigra plant and well characterized using instrumental techniques like powder XRD, FT-IR, BET, XRF, AAS, XPS, SEM-EDX, and TEM. The analysis of the catalyst indicated potassium (56.13 wt%) as the major component followed by calcium (26.04 wt%) in the form of oxide, carbonate, and chloride. The catalyst showed excellent catalytic activity in converting soybean oil to biodiesel with 98.79% yield in a short time period of 25 min at 65 degrees C under the optimum conditions of 12:1 ratio of methanol to oil and 7 wt% of catalyst. The reaction yielded 98.87% biodiesel at room temperature of 32 degrees C within 75 min of reaction time under optimized conditions. The activation energy (27.87 kJ mol(-1)) indicates the reaction is a chemically controlled reaction. The catalyst was reused up to the third cycle of reaction which yielded 96% biodiesel without significant loss in catalytic activity. The biodiesel was characterized by FT-IR, H-1 NMR, C-13 NMR, and GC-MS. The fuel properties studied are well comparable with the international standards as well as with reported literatures. The synthesized heterogeneous catalyst is non-toxic, biodegradable, environmentally benign, green in nature, easy to handle, reusable and can be prepared with minimum cost as the raw materials are naturally plenty enough as wastes with free of cost which is a value addition to the generated wastes along with a viable capability in reduction of the overall biodiesel production cost. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在本研究中,非均相基础催化剂来自废旧的芸苔属植物,并被用作大豆油用于生物柴油生产的酯交换反应的有效催化剂。催化剂是通过煅烧干燥的甘蓝黑粉植物后燃烧得到的灰分而制备的,并使用粉末XRD,FT-IR,BET,XRF,AAS,XPS,SEM-EDX和TEM等仪器技术进行了很好的表征。催化剂的分析表明,钾(56.13重量%)为主要成分,其次是氧化物,碳酸盐和氯化物形式的钙(26.04重量%)。在甲醇与油的比例为12:1和催化剂的7 wt%的最佳条件下,在65摄氏度,25分钟的短时间内,以98.79%的产率将大豆油转化为生物柴油时,该催化剂表现出出色的催化活性。在最佳条件下,在反应时间的75分钟内,在32℃的室温下,该反应可产生98.87%的生物柴油。活化能(27.87 kJ mol(-1))表明该反应是化学控制的反应。该催化剂可重复使用至反应的第三次循环,该循环产生96%的生物柴油,而催化活性没有明显损失。通过FT-IR,H-1 NMR,C-13 NMR和GC-MS对生物柴油进行表征。所研究的燃料特性与国际标准以及已报道的文献具有很好的可比性。合成的非均相催化剂无毒,可生物降解,对环境无害,绿色环保,易于操作,可重复使用,并且可以用最低的成本制备,因为原材料天然地足够作为废物而没有成本,这是其附加值。产生的废物以及降低整体生物柴油生产成本的可行能力。 (C)2019 Elsevier Ltd.保留所有权利。

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