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Practice review of five bioreactor/recirculation landfills

机译:五个生物反应器/循环垃圾填埋场的实践回顾

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Five landfills were analyzed to provide a perspective of current practice and technical issues that differentiate bioreactor and recircu-lation landfills in North America from conventional landfills. The bioreactor and recirculation landfills were found to function in much the same manner as conventional landfills, with designs similar to established standards for waste containment facilities. Leachate generation rates, leachate depths and temperatures, and liner temperatures were similar for landfills operated in a bioreactor/recirculation or conventional mode. Gas production data indicate accelerated waste decomposition from leachate recirculation at one landfill. Ambiguities in gas production data precluded a definitive conclusion that leachate recirculation accelerated waste decomposition at the four other landfills. Analysis of leachate quality data showed that bioreactor and recirculation landfills generally produce stronger leachate than conventional landfills during the first two to three years of recirculation. Thereafter, leachate from conventional and bioreactor landfills is similar, at least in terms of conventional indicator variables (BOD, COD, pH). While the BOD and COD decreased, the pH remained around neutral and ammonia concentrations remained elevated. Settlement data collected from two of the landfills indicate that settlements are larger and occur much faster in landfills operated as bioreactors or with leachate recirculation. The analysis also indicated that more detailed data collection over longer time periods is needed to draw definitive conclusions regarding the effects of bioreactor and recirculation operations. For each of the sites in this study, some of the analyses were limited by sparseness or ambiguity in the data sets.
机译:分析了五个垃圾填埋场,以提供当前实践和技术问题的观点,从而将北美的生物反应器和再循环垃圾填埋场与传统垃圾填埋场区分开。发现生物反应器和再循环垃圾填埋场的功能与常规垃圾填埋场大致相同,其设计类似于废物收容设施的既定标准。对于以生物反应器/再循环或常规模式运行的垃圾填埋场,渗滤液的产生速率,渗滤液深度和温度以及衬里温度相似。天然气生产数据表明,一个垃圾填埋场的渗滤液再循环会加速废物分解。天然气生产数据中的歧义排除了一个明确的结论,即渗滤液再循环促进了其他四个垃圾填埋场的废物分解。对渗滤液质量数据的分析表明,在循环的前两到三年中,生物反应器和再循环垃圾填埋场通常比常规垃圾填埋场产生更强的渗滤液。此后,至少就常规指标变量(BOD,COD,pH)而言,常规和生物反应堆填埋场的渗滤液是相似的。当BOD和COD降低时,pH值保持在中性附近,氨浓度保持升高。从两个垃圾填埋场收集的沉降数据表明,在作为生物反应器或渗滤液再循环的垃圾填埋场中,沉降较大并且发生得更快。分析还表明,需要更长时间的更详细的数据收集才能得出有关生物反应器和再循环操作影响的明确结论。对于本研究中的每个站点,某些分析都受到数据集中稀疏性或歧义性的限制。

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