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Evolution toward the utilization of mango leaves as lignocellulosic material in bioethanol production: A review of process parameter and integrated technologies

机译:芒果叶作为木质纤维素材料在生物乙醇生产中的应用演变:工艺参数和集成技术的综述

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摘要

Recently, the production of bioethanol is shifted to secondary bioethanol which is produced from nonedible lignocellulosic feedstock to avoid the food versus fuel issue. Mango leaves, a kind of nonedible lignocellulosic material (LCM) that possess a relatively 80.7% of holocellulose (inclusive of cellulose and hemicellulose), appear to be potential candidate to serve as cheap substrate source for bioethanol production. Hence, the objective of this article is to present the current scenario and the potential of mango leaves as a substrate source for bioethanol production. This article also provides an overview on various process parameters such as temperature, pH, substrate concentration, and incubation time that required to be optimized for an efficient fermentation process in the bioethanol production from LCM. Apart from that, several integrated fermentation technologies in bioethanol production which include separate hydrolysis and fermentation, simultaneous saccharification and fermentation, simultaneous saccharification and co-fermentation, and consolidated bioprocessing will also be discussed in this article. Based on the findings, it is clear that mango leaves have the potential to serve as feedstock for bioethanol production.
机译:最近,生物乙醇的生产已转移到由不可食用的木质纤维素原料生产的仲生物乙醇,以避免食品与燃料的问题。芒果叶是一种不可食用的木质纤维素材料(LCM),具有相对80.7%的全纤维素(包括纤维素和半纤维素),似乎可以用作廉价廉价的生物乙醇生产底物来源。因此,本文的目的是介绍当前的情况以及芒果叶作为生物乙醇生产底物来源的潜力。本文还概述了各种工艺参数,例如温度,pH,底物浓度和孵育时间,这些参数需要进行优化才能有效生产LCM中的生物乙醇。除此之外,本文还将讨论几种生物乙醇生产中的综合发酵技术,包括分别的水解和发酵,同时糖化和发酵,同时糖化和共发酵以及合并的生物加工。根据这些发现,很明显,芒果叶具有作为生物乙醇生产原料的潜力。

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