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首页> 外文期刊>Clean technologies and environmental policy >Comparative life cycle assessment of microalgae-mediated CO_2 capture in open raceway pond and airlift photobioreactor system
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Comparative life cycle assessment of microalgae-mediated CO_2 capture in open raceway pond and airlift photobioreactor system

机译:比较的生命周期评估开放式水道池和空运光生物反应器系统中微藻介导的CO_2捕获

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摘要

A comparative life cycle assessment of CO2 capture potential of microalgae, Scenedesmus dimorphus, during autotrophic cultivation in closed airlift photobioreactor and open raceway pond under Indian conditions has been carried out. The LCA inventory inputs for the both the systems were entirely based on primary experimental data obtained by algal cultivation in 1000-L pilot-scale raceway pond and 5-L airlift photobioreactor, respectively. The primary energy demand, environmental impacts and Net CO2 capture efficiency of both the systems were evaluated. The results indicated that the primary energy demand and GWP of airlift photobioreactor were 3.7-fold higher than raceway pond. The NERCO2 (defined as net emission ratio of CO2 and estimated as ratio of CO2 sequestered/CO2 emitted) of raceway pond was fourfold higher as compared to airlift photobioreactor; however, both the cultivation systems were observed to be net negative in terms of CO2 sequestration. However, the process can become net CO2 positive, with up to fourfold and 7.5-fold enhancement in biomass productivities (wrt base value) for raceway pond and airlift photobioreactor, respectively. Further, LCA predictions indicated that utilization of energy-efficient motors with lower specific energy consumptions for microalgae cultivation would facilitate algal cultivation systems to achieve net CO2-positive sequestration.
机译:在印度条件下,在密闭的气举光生物反应器和开放的水道池塘中进行自养培养期间,对微藻,景天藻的二氧化碳捕获潜力进行了比较生命周期评估。这两个系统的LCA清单输入完全基于通过分别在1000升中试规模的跑道池和5升空运光生物反应器中进行藻类培养获得的主要实验数据。评估了两个系统的一次能源需求,环境影响和净二氧化碳捕获效率。结果表明,空运光生物反应器的一次能源需求和全球升温潜能值比跑道池高3.7倍。跑道池的NERCO2(定义为CO2的净排放比例,并估计为固存的CO2 /排放的比例)比空运光生物反应器高四倍;然而,就CO 2固存而言,两种培养系统均被观察为净阴性。但是,该过程可以变为净CO2阳性,跑道池和空运光生物反应器的生物量生产率(残t基值)分别提高四倍和7.5倍。此外,LCA预测表明,将具有较低比能耗的高能效电动机用于微藻培养将有利于藻类培养系统实现净CO2阳性隔离。

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