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首页> 外文期刊>Waste Management >Towards sustainable biodiesel and chemical production: Multifunctional use of heterogeneous catalyst from littered Tectona grandis leaves
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Towards sustainable biodiesel and chemical production: Multifunctional use of heterogeneous catalyst from littered Tectona grandis leaves

机译:迈向可持续的生物柴油和化学生产:杂乱无章的Tectona grandis叶片中非均相催化剂的多功能利用

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摘要

Waste biomass derived heterogeneous catalyst is an excellent alternative to chemically synthesized catalysts. In this work, calcined Tectona grandis leaves were proposed as an eco-friendly, renewable and low cost heterogeneous base catalyst. The prepared catalyst was examined by FTIR, XRD, XPS, SEM, EDX,TEM, TGA, BET and Hammett indicator test. The catalyst has an appealing nature towards various chemical transformations due to its basic surface sites provided by alkali and alkaline earth metals. The efficiency of the catalyst was successfully investigated by its application in biodiesel production. The products were confirmed by ~1H and ~(13)C NMR. 100% FAME conversion was attained using a catalyst loading of 2.5 wt% under optimized reaction parameters. The catalyst was further explored for Knoevenagel condensation reaction, in which it showed its effectiveness and recyclability towards the formation of benzylidene-malononitrile derivatives of aryl aldehydes. Thus, it is a potential 'green catalyst' derived from waste biomass without any addition of chemicals that can replace the industrial base catalysts used for biodiesel production and Knoevenagel reaction and makes the protocol environmentally benign.
机译:废生物质衍生的多相催化剂是化学合成催化剂的绝佳替代品。在这项工作中,提出了煅烧的铁血紫苏叶作为一种生态友好,可再生且低成本的非均相基础催化剂。通过FTIR,XRD,XPS,SEM,EDX,TEM,TGA,BET和Hammett指示剂测试对制备的催化剂进行了检查。催化剂由于碱和碱土金属提供的基本表面位置而对各种化学转化具有吸引人的性质。通过在生物柴油生产中的应用成功地研究了催化剂的效率。通过〜1H和〜(13)C NMR确认产物。在优化的反应参数下,使用2.5 wt%的催化剂负载可实现100%的FAME转化率。进一步研究了该催化剂用于Knoevenagel缩合反应,其中显示了其对形成芳基醛的亚苄基-丙二腈衍生物的有效性和可回收性。因此,它是一种潜在的“绿色催化剂”,其源自废物生物质,无需添加任何化学物质即可替代用于生物柴油生产和Knoevenagel反应的工业基础催化剂,并使该方案对环境无害。

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