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Effectiveness of biogenic waste-derived heterogeneous catalysts and feedstock hybridization techniques in biodiesel production

机译:生物柴油生产中生物废弃物衍生异质催化剂和原料杂交技术的有效性

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Biodiesel has the potential to contribute significantly to the elimination of the present global energy and climate change logjam, but its production and commercialization have been hindered by the diverse nature of the feedstocks used for production. This paper reviews the effectiveness of applying various types of crop and animal waste-derived catalysts together with innovative feedstock hybridization as an economically viable technique for biodiesel production. Feedstock challenges, availability, and sustainability for large-scale applications are addressed with a view to bridging the existing gaps. Challenges in the use of edible oils and algae oil sources and development remain, but the technique of feedstock hybridization appears to be very promising, innovative, and cost-effective for biodiesel production. The present state of biodiesel production could be improved by the application of simple and cost-effective technologies in the feedstock system. High free fatty acid (FFA) content is the major hurdle to the use of most oils, especially low-grade/advanced oil feedstocks, in biodiesel production. This could be addressed through technological application of feedstock hybrids and biogenic waste-derived heterogenous catalysts, and their biochemical modifications. Conventional technology for the large-scale application of inorganically derived catalysts in biodiesel production with various characteristic differences is presented. Heterogenous catalysts derived from biogenic wastes and their modification could be used to overcome associated problems with the use of inorganic catalysts in biodiesel production. Biogenic waste-derived heterogenous catalysts are renewable, available, eco-friendly, and cost-effective. Technological applications of heterogeneous catalysts derived from biogenic waste are outlined and reviewed, considering various materials and different modification techniques to identify appropriate options for scaling up development. This review also discusses fundamental considerations for the exploitation of feedstock hybrids to optimize biodiesel production and its sustainable development. (c) 2020 Society of Chemical Industry and John Wiley & Sons, Ltd
机译:生物柴油有可能对消除目前的全球能源和气候变化Logjam进行大量贡献,但它的生产和商业化已经受到用于生产的原料的多样性性质。本文综述了将各种类型的作物和动物废物衍生催化剂应用于创新原料杂交的有效性,作为生物柴油生产的经济上可行的技术。针对大规模应用程序的原料挑战,可用性和可持续性是为了弥合现有的空白。使用食用油和藻类油源和开发的挑战仍然存在,但原料杂交技术似乎是非常有前途,创新的,并且对生物柴油生产具有成本效益。通过在原料系统中的应用简单且具有成本效益技术的应用,可以提高现有的生物柴油生产状态。高脂肪酸(FFA)含量是在生物柴油生产中使用大多数油,尤其是低级/先进的油原料的主要障碍。这可以通过原料杂种和生物垃圾衍生的异源催化剂的技术应用来解决,以及它们的生物化学修饰。介绍了具有各种特征差异的生物柴油生产中无机衍生催化剂的大规模应用的常规技术。衍生自生成废物的异质催化剂及其改性可用于克服生物柴油生产中无机催化剂的相关问题。生物原料衍生的异源催化剂是可再生的,可用,环保和成本效益的。 Technological applications of heterogeneous catalysts derived from biogenic waste are outlined and reviewed, considering various materials and different modification techniques to identify appropriate options for scaling up development.该审查还讨论了用于利用原料混合动力车以优化生物柴油生产及其可持续发展的基本要点。 (c)2020化学工业协会和约翰瓦里和儿子有限公司

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