首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Post-treatment of anaerobic effluent containing 1,4-dioxane and heavy metals via auto-aerated down-flow hanging luffa (ADHL) system
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Post-treatment of anaerobic effluent containing 1,4-dioxane and heavy metals via auto-aerated down-flow hanging luffa (ADHL) system

机译:通过自燃下流动悬挂式Luffa(ADHL)系统的1,4-二恶烷和重金属含有1,4-二恶烷和重金属的后处理

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摘要

Biodegradation of anaerobic effluent containing 1,4-dioxane and heavy metals via auto-aerated down-flow hanging luffa (ADHL) system was extensively investigated. The oxygen was naturally supplied to the consortium bacterium through windows located along the reactor height creating favorable aerobic conditions. The bioreactor efficiently removed 1,4-dioxane and total chemical oxygen demand (CODt) from anaerobic effluent without significant inhibitory effects. Removal efficiencies of CODt and 1,4-dioxane were significantly increased from 31.3±10 to 59.5±5.9% and from 43.7±11.9 to 90±4.9% at increasing the hydraulic retention time (HRT) from 5.7 to 17.3h, respectively. Moreover, ADHL system was very effective for removal of heavy metals (Cr6+, Cu2+, Fe3+, Mn2+, Ni2+) where the extracellular polymeric substances (EPS) concentrations were quite high and amounted to 12.3±1.3g/g biomass at an HRT of 17.3h. The nitrification efficiency was 3.0, 46.8 and 56.3% at HRTs of 5.7, 11.5 and 17.3h, respectively. Batch experimental results showed that the key removal mechanism of 1,4-dioxane was adsorption followed by biodegradation process.
机译:广泛地研究了通过自动曝气的下流悬浮杆(ADHL)系统的1,4-二恶烷和重金属的厌氧流出物的生物降解。通过沿着反应器高度的窗户自然地将氧气自然供应到聚集性细菌中,从而产生有利的有氧条件。生物反应器有效地除去1,4-二恶烷和总化学需氧量(CODT),而无明显抑制作用。 CODT和1,4-二恶烷的去除效率从31.3±10至59.5±5.9%和43.7±11.9至90±4.9%,分别从5.7〜17.3h的水力保留时间(HRT)增加。此外,ADHL系统非常有效地除去重金属(Cr6 +,Cu2 +,Fe3 +,Mn2 +,Ni2 +),其中细胞外聚合物物质(EPS)浓度非常高,并且在17.3的HRT时含量为12.3±1.3g / g生物量H。硝化效率分别为3.0,46.8和56.3%,分别为5.7,11.5和17.3h。分批实验结果表明,1,4-二恶烷的键清除机理吸附,然后进行生物降解方法。

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