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印度用于废水处理的全规模移动床生物膜反应器的技术、卫生、经济和生命周期评估。

Technical, hygiene, economic, and life cycle assessment of full-scale moving bed biofilm reactors for wastewater treatment in India.

机构信息

Industrial Safety and Environmental Management, National Institute of Industrial Engineering (NITIE), Mumbai, India.

Environmental Engineering and Management, National Institute of Industrial Engineering (NITIE), Mumbai, India.

出版信息

Environ Sci Pollut Res Int. 2018 Jan;25(3):2552-2569. doi: 10.1007/s11356-017-0605-y. Epub 2017 Nov 10.

Abstract

Moving bed biofilm reactor (MBBR) is a highly effective biological treatment process applied to treat both urban and industrial wastewaters in developing countries. The present study investigated the technical performance of ten full-scale MBBR systems located across India. The biochemical oxygen demand, chemical oxygen demand, total suspended solid, pathogens, and nutrient removal efficiencies were low as compared to the values claimed in literature. Plant 1 was considered for evaluation of environmental impacts using life cycle assessment approach. CML 2 baseline 2000 methodology was adopted, in which 11 impact categories were considered. The life cycle impact assessment results revealed that the main environmental hot spot of this system was energy consumption. Additionally, two scenarios were compared: scenario 1 (direct discharge of treated effluent, i.e., no reuse) and scenario 2 (effluent reuse and tap water replacement). The results showed that scenario 2 significantly reduce the environmental impact in all the categories ultimately decreasing the environmental burden. Moreover, significant economic and environmental benefits can be obtained in scenario 2 by replacing the freshwater demand for non-potable uses. To enhance the performance of wastewater treatment plant (WWTP), there is a need to optimize energy consumption and increase wastewater collection efficiency to maximize the operating capacity of plant and minimize overall environmental footprint. It was concluded that MBBR can be a good alternative for upgrading and optimizing existing municipal wastewater treatment plants with appropriate tertiary treatment. Graphical abstract ᅟ.

摘要

移动床生物膜反应器(MBBR)是一种高效的生物处理工艺,应用于发展中国家的城市和工业废水处理。本研究调查了印度各地的十个全规模 MBBR 系统的技术性能。与文献中声称的值相比,生化需氧量、化学需氧量、总悬浮固体、病原体和营养物去除效率较低。工厂 1 被认为是使用生命周期评估方法评估环境影响的对象。采用了 CML 2 基线 2000 方法,其中考虑了 11 个影响类别。生命周期影响评估结果表明,该系统的主要环境热点是能源消耗。此外,比较了两个方案:方案 1(处理后的废水直接排放,即不回用)和方案 2(废水回用和替代自来水)。结果表明,方案 2 在所有类别中显著降低了环境影响,最终减少了环境负担。此外,通过替代非饮用水的淡水需求,方案 2 可在经济和环境方面带来显著效益。为了提高废水处理厂(WWTP)的性能,需要优化能源消耗并提高废水收集效率,以最大限度地提高工厂的运行能力并最小化整体环境足迹。研究结论认为,MBBR 可以作为升级和优化现有城市废水处理厂的良好选择,同时需要进行适当的三级处理。

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