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Ogata Yuka Ishigaki Tomonori Ebie Yoshitaka Sutthasil Noppharit Witthayaphirom Chayanid Chiemchaisri Chart Yamada Masato 《Journal of Material Cycles and Waste Management》2018,20(4):2163-2163
Journal of Material Cycles and Waste Management - In the original publication of the article, Eq. 5 was published incorrectly. The correct equation is given below. 相似文献
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Yuka Ogata Tomonori Ishigaki Yoshitaka Ebie Noppharit Sutthasil Chayanid Witthayaphirom Chart Chiemchaisri Masato Yamada 《Journal of Material Cycles and Waste Management》2018,20(4):1961-1968
In tropical regions, landfill leachate contamination at municipal solid waste disposal sites is a critical issue because of the large volume of highly contaminated leachate formed during the rainy season. We evaluated the efficacy of constructed wetlands (CWs) with the ability to reduce the water volume and pollutant levels to reduce leachate contamination compared to the most commonly used treatment system, stabilization ponds, based on parameters obtained in a field experiment in Thailand. The simulation indicated that CWs had a higher potential to reduce the water volume than stabilization ponds over the course of a year. Scenario evaluations under varying initial water depths, system depths, and area sizes indicated that the CWs could reduce the treatment area to prevent overflow and leachate pollution. In addition, the CWs were estimated to reduce the leachate amount and pollution by 83–100% and 92–99%, respectively. When there is limited land available, deeper CWs can be used to sustainably prevent contamination from leachate overflow. Effectively designed CW systems may be valuable for both reducing the required area and the contamination; therefore, CWs are a promising option for sustainable landfill leachate treatment systems in developing tropical regions. 相似文献
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