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周期性间断批式运行中生物膜构型相对于悬浮生长操作对基于偶氮染料的废水处理的相对性能。

Relative performance of biofilm configuration over suspended growth operation on azo dye based wastewater treatment in periodic discontinuous batch mode operation.

机构信息

Academy of Scientific and Innovative Research, India; Bioengineering and Environmental Centre (BEEC), CSIR-Indian Institute of Chemical Technology (CSIR-IICT), Hyderabad 500 007, India.

Academy of Scientific and Innovative Research, India; Bioengineering and Environmental Centre (BEEC), CSIR-Indian Institute of Chemical Technology (CSIR-IICT), Hyderabad 500 007, India.

出版信息

Bioresour Technol. 2013 Nov;147:424-433. doi: 10.1016/j.biortech.2013.07.126. Epub 2013 Jul 31.

Abstract

Functional role of biofilm and suspended growth bioreactor configurations in response to the treatment of azo-dye (C.I. Acid Black 10B) bearing wastewater was evaluated in periodic discontinuous batch mode operation at varying dye concentrations. The biofilm system depicted higher dye removal efficiency (93.14%) compared to suspended mode (84.29%) at 350 mg dye/l operation. Both the reactor configurations did not show much process inhibition at higher dye loads studied. Azo reductase and dehydrogenase enzyme activities showed significant variation indicating the different metabolic capabilities of the native-microflora, stable proton shuttling between metabolic intermediates and differences in the delivery of reducing powers from the substrate metabolism towards dye removal. Voltammograms visualized marked variations in electron discharge properties with the function of reactor configuration, time intervals and dye load. Higher redox catalytic currents, lower Tafel slopes and polarization resistance showed good correlation with enzyme activities and dye removal.

摘要

在周期性不连续批处理模式下,以不同的染料浓度评估生物膜和悬浮生长生物反应器构型在处理偶氮染料(C.I.酸性黑 10B)废水方面的功能作用。在 350mg 染料/L 的操作条件下,生物膜系统的染料去除效率(93.14%)高于悬浮模式(84.29%)。在研究的较高染料负荷下,两种反应器构型均未表现出明显的过程抑制。偶氮还原酶和脱氢酶活性显示出显著的变化,表明天然微生物群具有不同的代谢能力、代谢中间产物之间稳定的质子穿梭以及从基质代谢向染料去除传递还原能力的差异。伏安图可视化了随着反应器构型、时间间隔和染料负荷的变化,电子放电特性的显著变化。较高的氧化还原催化电流、较低的塔菲尔斜率和极化电阻与酶活性和染料去除有很好的相关性。

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