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Green biodiesel production: a review on feedstock, catalyst, monolithic reactor, and supercritical fluid technology

机译:绿色生物柴油生产:原料,催化剂,整体反应器和超临界流体技术综述

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摘要

The advancement of alternative energy is primarily catalyzed by the negative environmental impacts and energy depletion caused by the excessive usage of fossil fuels. Biodiesel has emerged as a promising substitute to petrodiesel because it is biodegradable, less toxic, and reduces greenhouse gas emission. Apart from that, biodiesel can be used as blending component or direct replacements for diesel fuel in automotive engines. A diverse range of methods have been reported for the conversion of renewable feedstocks (vegetable oil or animal fat) into biodiesel with transesterification being the most preferred method. Nevertheless, the cost of producing biodiesel is higher compared to fossil fuel, thus impeding its commercialization potentials. The limited source of reliable feedstock and the underdeveloped biodiesel production route have prevented the full-scale commercialization of biodiesel in many parts of the world. In a recent development, a new technology that incorporates monoliths as support matrices for enzyme immobilization in supercritical carbon dioxide (SC-CO2) for continuous biodiesel production has been proposed to solve the problem. The potential of SC-CO2 system to be applied in enzymatic reactors is not well documented and hence the purpose of this review is to highlight the previous studies conducted as well as the future direction of this technology.
机译:替代能源的进步主要由化石燃料过度使用引起的负面环境撞击和能量消耗催化。生物柴油已成为对岩浆柴油的有前途的替代品,因为它是可生物降解的,毒性较小,减少温室气体排放。除此之外,生物柴油可用作汽车发动机中的柴油燃料的混合组件或直接替代品。据报道,通过最优选的方法将可再生原料原料(植物油或动物脂肪)转化为生物柴油的各种方法。然而,与化石燃料相比,生产生物柴油的成本更高,从而阻碍了其商业化潜力。可靠原料和欠发达的生物柴油生产路线的有限来源阻碍了世界许多地区的生物柴油的全面商业化。在最近的发展中,已经提出了一种将整料作为用于连续生物柴油生产的超临界二氧化碳(SC-CO2)中的酶固定化的全新技术,以解决问题。待应用于酶反应堆的SC-CO2系统的潜力并未充分记录,因此本综述的目的是突出前面的研究以及该技术的未来方向。

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