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Heat Generation and Accumulation from Industrial Wastes in Landfills

机译:垃圾填埋场工业废物产生和积累

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Disposal of high-water content sludge wastes can pose problems in landfill operations due to trafficability of compaction equipment, long-term slope stability, and generation of odors. As sludge wastes become increasingly solidified with binding agents, such as cements and fly ashes to improve strength characteristics, the corresponding hydration process of calcium oxide generates heat. The study presents the use bench-scale semi-adiabatic tests to estimate the time required for the heat to dissipate from solidified sludge waste stockpiles. Calorimeters used in hydration testing were made from Dewar flasks which greatly minimizes heat loss to the environment. Heat loss to the environment was estimated using resistor wires. Semi-adiabatic test results are converted to adiabatic time temperature curves using the heat loss estimated from the calorimeter. Materials used in the study include various industrial sludge wastes and ashes. Heat generation of ash and waste mixtures at various ash to waste ratios were performed. A numerical model was developed to estimate the period of heat loss in waste stockpiles so it can be safely landfilled. Climate data was incorporated as boundary conditions in the numerical model.
机译:由于压实设备的交通能力,长期坡度稳定性和异味,处理高水含量污泥废物的处理可能会造成垃圾填埋场行动问题。随着污泥废物越来越衍生,含有粘合剂,例如水泥和飞灰以改善强度特性,氧化钙的相应水合过程产生热量。该研究介绍了使用的替补型半绝热试验,以估计热量从凝固污泥储存渗透所需的时间。水化测试中使用的量热计由露华烧瓶制成,极大地减少了环境的热量损失。使用电阻线估计对环境的热量损失。半绝热试验结果使用热量计估计的热量损失转换为绝热时间温度曲线。该研究中使用的材料包括各种工业污泥废物和灰烬。进行在各种灰分下的灰和废物混合物的发热和废物混合物。开发了一个数值模型,以估计废物库存中的热量损失,因此可以安全填埋。气候数据被纳入数值模型中的边界条件。

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