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通过优化微藻生长实现沼气净化:文献综述

Biogas purification via optimal microalgae growth: A literature review.

作者信息

Cea-Barcia Glenda, López-Caamal Fernando, Torres-Zúñiga Ixbalank, Hernández-Escoto Héctor

机构信息

Departamento de Ciencias Ambientales., División de Ciencias de la Vida del campus Irapuato-Salamanca, Universidad de Guanajuato, Irapuato, Mexico.

Departamento de Ingeniería Química, División de Ciencias Naturales y Exactas del campus Guanajuato., Universidad de Guanajuato, Guanajuato, Mexico.

出版信息

Biotechnol Prog. 2018 Nov;34(6):1513-1532. doi: 10.1002/btpr.2686. Epub 2018 Oct 8.

Abstract

In this review, we compare works from the current decade that address the CO -removal from biogas by means of microalgae. The microalgae culture process acts as a biochemical absorption process; it is potentially competitive with respect to classical and commercial absorption methods due to its additional benefits such as availing CO for the production of valuable microalgae biomass and being an environmentally friendly technique. Nevertheless, the low yield of biogas purification translates into the need to use optimal operation strategies that render the whole biogas production process economically feasible. A class of these strategies requires models capable of reproducing key traits of the dynamical behavior of microalgae growth. Thus, without overlooking the classical physico-chemical methods for biogas purification, our literature review addresses: (i) biogas purification via microalgae and different microalgae growth conditions, (ii) approaches that maximize microalgae growth, in order to increase CO -consumption, and (iii) different models that describe the representative characteristics of microalgae growth. This investigation traces a pathway to future considerations on optimal biogas purification alternatives by microalgae culture processes. © 2018 American Institute of Chemical Engineers Biotechnol. Prog., 34:1513-1532, 2018.

摘要

在本综述中,我们比较了近十年内通过微藻去除沼气中二氧化碳的相关研究。微藻培养过程可作为一种生化吸收过程;相较于传统的商业吸收方法,它具有潜在的竞争力,因为它具有一些额外的优势,例如可利用二氧化碳生产有价值的微藻生物质,并且是一种环保技术。然而,沼气净化的低产率意味着需要采用优化的操作策略,以使整个沼气生产过程在经济上可行。这类策略中的一类需要能够再现微藻生长动态行为关键特征的模型。因此,在不忽视传统物理化学沼气净化方法的情况下,我们的文献综述探讨了:(i)通过微藻和不同微藻生长条件进行的沼气净化,(ii)最大化微藻生长以增加二氧化碳消耗的方法,以及(iii)描述微藻生长代表性特征的不同模型。本研究为未来通过微藻培养过程进行最佳沼气净化替代方案的考虑指明了一条途径。© 2018美国化学工程师学会 生物技术进展,34:1513 - 1532,2018年。

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