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Membrane technology as a promising alternative in biodiesel production: a review. (Special Issue: ACB 2011.)

机译:膜技术是生物柴油生产中有希望的替代方法:综述。 (特刊:ACB2011。)

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In recent years, environmental problems caused by the use of fossil fuels and the depletion of petroleum reserves have driven the world to adopt biodiesel as an alternative energy source to replace conventional petroleum-derived fuels because of biodiesel's clean and renewable nature. Biodiesel is conventionally produced in homogeneous, heterogeneous, and enzymatic catalysed processes, as well as by supercritical technology. All of these processes have their own limitations, such as wastewater generation and high energy consumption. In this context, the membrane reactor appears to be the perfect candidate to produce biodiesel because of its ability to overcome the limitations encountered by conventional production methods. Thus, the aim of this paper is to review the production of biodiesel with a membrane reactor by examining the fundamental concepts of the membrane reactor, its operating principles and the combination of membrane and catalyst in the catalytic membrane. In addition, the potential of functionalised carbon nanotubes to serve as catalysts while being incorporated into the membrane for transesterification is discussed. Furthermore, this paper will also discuss the effects of process parameters for transesterification in a membrane reactor and the advantages offered by membrane reactors for biodiesel production. This discussion is followed by some limitations faced in membrane technology. Nevertheless, based on the findings presented in this review, it is clear that the membrane reactor has the potential to be a breakthrough technology for the biodiesel industry.
机译:近年来,由于生物柴油的清洁和可再生特性,由化石燃料的使用和石油储备的枯竭引起的环境问题驱使世界范围内采用生物柴油作为替代能源来替代传统的石油衍生燃料。生物柴油通常以均相,异质和酶催化过程以及超临界技术生产。所有这些过程都有其自身的局限性,例如产生废水和高能耗。在这种情况下,膜反应器似乎是生产生物柴油的理想选择,因为它有能力克服常规生产方法遇到的局限性。因此,本文的目的是通过研究膜反应器的基本概念,其工作原理以及催化膜中膜与催化剂的组合,来回顾使用膜反应器生产生物柴油的情况。另外,还讨论了官能化的碳纳米管在被引入膜中进行酯交换反应时用作催化剂的潜力。此外,本文还将讨论膜反应器中酯交换反应的工艺参数的影响,以及膜反应器为生物柴油生产提供的优势。讨论之后,膜技术面临一些局限性。然而,基于本综述中的发现,很明显,膜反应器具有成为生物柴油行业突破性技术的潜力。

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