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Start-up Performance Of A Full-scale Bioreactor Landfill Cell Under Cold-climate Conditions

机译:大型生物反应器垃圾填埋场在冷气候条件下的启动性能

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A 0.49-ha bioreactor landfill cell containing approximately 32,400 metric tons of municipal solid waste was constructed and operated at the Northern Oaks Recycling and Disposal Facility in Harrison, Michigan, USA. Design of this full-scale research cell included a network of 48 temperature and moisture sensors, leachate collection basins, and gas sampling ports, which provided for continuous temperature and moisture data and periodic measurements of both the quantity and composition of the leachate and gas produced. The data indicated that methane generation started approximately 3 months after filling in lifts that were placed during summer, but not until 8 months for those filled during the winter. Temperature data indicated that near-0 ℃ temperatures persisted within the lifts filled during winter for more than 6 months, and that gas production was minimal during this period. These results suggest that in addition to maintaining optimal moisture levels within the waste mass, temperature control must be a key design consideration in cold climates.
机译:在美国密歇根州哈里森市的北橡树回收与处置设施中,建造并运行了一个0.49公顷的生物反应器垃圾填埋场,该单元包含约32,400公吨的城市固体废物。这个全尺寸研究单元的设计包括一个由48个温度和湿度传感器,渗滤液收集池和气体采样端口组成的网络,可提供连续的温度和湿度数据并定期测量所产生的渗滤液和气体的数量和组成。数据表明,甲烷的填充大约在夏季放置的升降机后约3个月开始,而冬季填充的直到8个月才开始。温度数据表明,冬季装满的升降机在0℃以下温度持续存在超过6个月,在此期间天然气产量极少。这些结果表明,除了在废物中保持最佳的水分含量外,在寒冷气候下,温度控制还必须是关键的设计考虑因素。

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