首页> 外文期刊>Journal of Environmental Science and Health >Mitigation of greenhouse gases (CO_2) generated in the anaerobic digestion of physicochemical sludges using airlift photobioreactors operated with Chlorella spp
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Mitigation of greenhouse gases (CO_2) generated in the anaerobic digestion of physicochemical sludges using airlift photobioreactors operated with Chlorella spp

机译:利用小球藻SPP运行的空运光生物反应器,在厌氧消化中产生的温室气体(CO_2)的减轻厌氧消化

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摘要

The aim of this study was to evaluate the mitigation of greenhouse gasses generated in the anaerobic digestion process of physicochemical sludges by evaluating the effect of CO2 supply and light intensity requirements on the growth of microalga Chlorella spp. and measuring the consumption of CO2. The best conditions at a laboratory scale were performed in an airlift photobioreactor (PBR) at pilot-scale plant (26 L) during 60 days with a CO2 supply of 2% v v(-1) from an electric generator coupled to an anaerobic digestion of physicochemical sludge process. The maximum %CO2 consumed was 91.92% which was reached in the seventh supply cycle and biomass production was 2.18 g L-1. The results obtained showed that airlift-type PBRs are a suitable complement for anaerobic digestion of physicochemical sludge technologies in order to reduce emissions of greenhouse gases produced during the combustion of biogas.
机译:本研究的目的是通过评估CO2供应和光强度要求对Microalga小球藻SPP生长的影响,评估物理化学污泥的厌氧消化过程中产生的温室气体的减轻。并测量CO2的消耗。在60天内,在60天内,在先导型植物(26L)的Airlift光生物反应器(PBR)中进行了实验室规模的最佳条件,其CO 2从电发电机耦合到厌氧消化的电力发电机的电量为2%VV(-1)物理化学污泥工艺。消耗的最大%CO 2为91.92%,在第七次供应循环中达到,生物质生产为2.18克L-1。得到的结果表明,空运型PBR是对物理化学污泥技术的厌氧消化的合适补充,以减少沼气燃烧期间产生的温室气体排放。

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