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首页> 外文期刊>Biotechnology Progress >Biogas purification via optimal microalgae growth: A literature review
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Biogas purification via optimal microalgae growth: A literature review

机译:沼气通过最佳的微藻生长纯化:文献综述

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In this review, we compare works from the current decade that address the CO2-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 CO2 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 CO2-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. (c) 2018 American Institute of Chemical Engineers
机译:在本次审查中,我们从目前的十年中比较了通过微藻来解决从沼气的二氧化碳除去的作品。微藻培养方法用作生化吸收过程;由于其额外的益处,例如用于生产有价值的微藻生物量,并且是环保技术,因此潜在的繁荣和商业吸收方法可能具有竞争力。然而,沼气纯化的低产量转化为使用最佳运行策略,使整个沼气生产过程经济上可行。一类这些策略需要能够再现微藻生长动态行为的关键性状的模型。因此,在不忽视沼气纯化的经典物理化学方法,我们的文献综述地址:(i)通过微藻和不同的微藻生长条件(ii)最大化微藻生长的方法,以增加CO 2消耗,以及增加二氧化碳消费的方法(iii)描述微藻生长的代表性特征的不同模型。本研究追溯了通过微藻培养方法对最佳沼气纯化替代品的未来考虑的途径。 (c)2018美国化学工程研究所

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