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首页> 外文期刊>World Journal of Microbiology & Biotechnology >Industrial wastewater treatment in internal circulation bioreactor followed by wetlands containing emergent plants and algae
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Industrial wastewater treatment in internal circulation bioreactor followed by wetlands containing emergent plants and algae

机译:内循环生物反应器的工业废水处理,随后含有肠胃植物和藻类的湿地

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摘要

Wastewater treatment based on ecological principles is a low cost and highly desirable solution for the developing countries like Pakistan. The present study evaluated the effectiveness of biological treatment systems including Internal Circulation (IC) anaerobic bioreactor and constructed wetlands (CWs) containing macrophytes and mixed algal cultures for industrial wastewater treatment. The IC bioreactor reduced COD (52%), turbidity (89%), EC (24%) of the industrial wastewater. However, the effluents of IC bioreactor did not comply with National Environmental Quality Standards (NEQS) of Pakistan. Post-treatment of IC bioreactor effluents was accomplished in CW containing macrophytes (Arundo donax and Eichhornia crassipes) and mixed algal culture. The CWs planted with macrophytes lowered the concentrations of COD (89%) and turbidity (99%). CWs with algal biomass were not effective in further polishing the effluent. Inhibition of algal biomass growth was observed due to physicochemical characteristics of wastewater. The integrated treatment system consisting of IC bioreactor and macrophytes was found more suitable option for industrial wastewater treatment.
机译:基于生态原则的废水处理是巴基斯坦等发展中国家的低成本和非常理想的解决方案。本研究评估了生物处理系统的有效性,包括内循环(IC)厌氧生物反应器和构建的湿地(CWS)含有宏观物质和混合藻类培养物的工业废水处理。 IC生物反应器还原(52%),浊度(89%),EC(24%)的工业废水。然而,IC生物反应器的污水并未遵守巴基斯坦的国家环境质量标准(NEQS)。 IC生物反应器污水的后处理在CW含有甲状腺素(Arundo Donax和Eichhornia沉思)和混合藻类培养中完成。种植宏观物质的CWS降低了COD浓度(89%)和浊度(99%)。具有藻类生物质的CWS在进一步抛光流出物方面无效。由于废水的物理化学特性,观察到对藻类生物量生长的抑制。发现了由IC生物反应器和宏观物质组成的综合治疗系统更适合工业废水处理。

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