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首页> 外文期刊>Journal of Cleaner Production >Role of biogas recirculation in enhancing petrochemical wastewater treatment efficiency of continuous stirred tank reactor
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Role of biogas recirculation in enhancing petrochemical wastewater treatment efficiency of continuous stirred tank reactor

机译:沼气再循环在提高连续搅拌釜反应器石化废水处理效率中的作用

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Although the co-digestion of petrochemical wastewater (PWW) with activated manure (AM) is providing an improved production of bio-methane, still several researches are going on how the bio-methane generation and COD removal efficiency can be maximized? Therefore, a question strikes our research motivation to find out does biogas recirculation really play a part in enhancing bio-methane generation and COD removal efficiency? This work explains the continuous stirred tank reactor (CSTR) performance with and without biogas recirculation effect for better mixing during the anaerobic co-digestion of PWW and AM. Four distinct rates of biogas recirculation (10.15, 15.81, 24.14 and 36.25 Ld(-1)) were examined for a trial period of 100 days. Bio-methane generation and COD removal efficiency were greatly improved as the biogas recirculation rate was increased. The newly incorporated CSTR arrangement with biogas recirculation effect achieved COD and VFA removal efficiencies up to 98.5% and 94% with a hydraulic retention time (HRT) of 9 days. The corresponding mean Biogas and methane generation were observed to be remained at 9.2 +/- 0.5 and 6.08 +/- 0.5 m(3) m(-3) d(-1). It shows a maximum increase of 55% and 26% in biogas and methane generation efficiency compared to that of without biogas recirculation CSTR. Biomass retention efficiency of the CSTR showed an increment of 16.78%, 20% and 25% in biomass level with the gradual increment of biogas recirculation rates of 10.15; 15.81 and 24.14 Ld(-1). This work may depict the environmental and financial feasibility of renewable technology that will open the scope for deeper study in minimizing the environmental issues of petrochemical manufacturing in the future. (C) 2014 Elsevier Ltd. All rights reserved.
机译:尽管石化废水(PWW)与活化粪肥(AM)的共消化提供了改进的生物甲烷生产,但是仍在进行一些研究,以使生物甲烷的产生和COD去除效率最大化?因此,有一个问题激发了我们的研究动机,以发现沼气再循环是否确实在提高生物甲烷的产生和COD去除效率方面发挥了作用?这项工作解释了在有和没有沼气再循环效应的情况下,连续搅拌釜反应器(CSTR)的性能,可以在PWW和AM厌氧共消化期间实现更好的混合。在100天的试用期内,检查了四种不同的沼气再循环率(10.15、15.81、24.14和36.25 Ld(-1))。随着沼气再循环率的提高,生物甲烷的产生和COD去除效率得到了极大的提高。新整合的具有沼气再循环效果的CSTR装置在9天的水力停留时间(HRT)下,去除COD和VFA的效率分别达到98.5%和94%。观察到相应的平均沼气和甲烷生成量保持在9.2 +/- 0.5和6.08 +/- 0.5 m(3)m(-3)d(-1)。与没有沼气再循环CSTR相比,沼气和甲烷的产生效率最高增加了55%和26%。 CSTR的生物质保留效率显示出生物量水平增加了16.78%,20%和25%,沼气再循环率逐渐增加了10.15。 15.81和24.14 Ld(-1)。这项工作可能描述了可再生技术在环境和财务上的可行性,这将为在将来最大限度地减少石化生产的环境问题提供更深入的研究范围。 (C)2014 Elsevier Ltd.保留所有权利。

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