Statistical modelling and assessment of landfill leachate emission from fresh municipal solid waste: A laboratory-scale anaerobic landfill simulation reactor study

渗滤液 城市固体废物 环境科学 背景(考古学) 废物管理 生物反応器型埋立 环境工程 工程类 地理 考古
作者
Chejarla Venkatesh Reddy,D Shekhar Rao,Ajay S. Kalamdhad
出处
期刊:Waste Management & Research [SAGE Publishing]
卷期号:38 (10): 1161-1175 被引量:23
标识
DOI:10.1177/0734242x20954280
摘要

Quantification, measurement of quality, post-treatment, and leachate control has been a significant problem due to the dumping of waste in an unscientific manner across the globe, and especially in developing countries like India. In this context, the objective of this study was to investigate the degradation of fresh mixed municipal solid waste (MSW) in an anaerobic landfill reactor operated with rainfall addition in laboratory conditions. Experiments were carried out in a landfill reactor of 1 m length × 1 m width × 1.1 m height. The reactor was simulated with 50 years weighted average actual rainfall rate of India. It contained the waste composition of 73% wet waste (food and kitchen) and 27% dry waste (paper, plastic, wood, textiles, and others). The leachate parameters were continually monitored for 39 weeks. In the fresh MSW landfill reactor it was evident that concentrations of leachate parameters were high initially, and there was a significant decrease in BOD 5 (7041–39310 mg L −1 ), COD (15692–71630 mg L −1 ) and TS (9077–33200 mg L −1 ) in leachate. Therefore, rainfall had a direct influence on leachate quality. The developed first-order decay models were used for BOD 5 , COD, and total solids with adjusted R 2 of 0.83, 0.92, and 0.96, respectively. Therefore, this model can be applied for leachate strength estimation at any given time from the period of deposition of waste under similar rainfall and waste compositions, and is largely applicable in India and tropical areas. This study is expected to be a good simulation for cities with the waste composition of high wet waste (>70%) as the estimations of important design parameters such as BOD 5 , COD, VFA, and NH 4 + -N were studied in this research. As the importance of moisture (precipitation) has been established in this study, some moisture additions can be designed in areas with low rainfall, such as arid zones.
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