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废水处理技术的可持续性。

Sustainability of wastewater treatment technologies.

作者信息

Muga Helen E, Mihelcic James R

机构信息

Department of Civil and Environmental Engineering, Sustainable Futures Institute, Michigan Technological University, Houghton, MI 49931, USA.

出版信息

J Environ Manage. 2008 Aug;88(3):437-47. doi: 10.1016/j.jenvman.2007.03.008. Epub 2007 Apr 27.

Abstract

A set of indicators that incorporate environmental, societal, and economic sustainability were developed and used to investigate the sustainability of different wastewater treatment technologies, for plant capacities of <5 million gallons per day (MGD) or 18.9 x 10(3) cubic meters (m(3)/day). The technologies evaluated were mechanical (i.e., activated sludge with secondary treatment), lagoon (facultative, anaerobic, and aerobic), and land treatment systems (e.g., slow rate irrigation, rapid infiltration, and overland flow). The economic indicators selected were capital, operation and management, and user costs because they determine the economic affordability of a particular technology to a community. Environmental indicators include energy use, because it indirectly measures resource utilization, and performance of the technology in removing conventional wastewater constituents such as biochemical oxygen demand, ammonia nitrogen, phosphorus, and pathogens. These indicators also determine the reuse potential of the treated wastewater. Societal indicators capture cultural acceptance of the technology through public participation and also measure whether there is improvement in the community from the specific technology through increased job opportunities, better education, or an improved local environment. While selection of a set of indicators is dependent on the geographic and demographic context of a particular community, the overall results of this study show that there are varying degrees of sustainability with each treatment technology.

摘要

开发了一套包含环境、社会和经济可持续性的指标,并用于调查日处理量小于500万加仑(MGD)或18.9×10³立方米/天(m³/天)的不同废水处理技术的可持续性。所评估的技术包括机械处理(即二级处理活性污泥法)、泻湖处理(兼性、厌氧和好氧)以及土地处理系统(如慢速灌溉、快速渗滤和地表漫流)。所选的经济指标包括资本、运营管理和用户成本,因为它们决定了特定技术对社区的经济可承受性。环境指标包括能源使用,因为它间接衡量资源利用情况,以及该技术在去除常规废水成分(如生化需氧量、氨氮、磷和病原体)方面的性能。这些指标还决定了处理后废水的回用潜力。社会指标通过公众参与反映技术的文化接受程度,并且还衡量特定技术是否通过增加就业机会、改善教育或改善当地环境使社区得到改善。虽然指标的选择取决于特定社区的地理和人口背景,但本研究的总体结果表明,每种处理技术的可持续性程度各不相同。

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