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Waste heat generation: A comprehensive review

机译:余热发电:全面回顾

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A comprehensive review of heat generation in various types of wastes and of the thermal regime of waste containment facilities is provided in this paper. Municipal solid waste (MSW), MSW incineration ash, and mining wastes were included in the analysis. Spatial and temporal variations of waste temperatures, thermal gradients, thermal properties of wastes, average temperature differentials, and heat generation values are provided. Heat generation was influenced by climatic conditions, mean annual earth temperatures, waste temperatures at the time of placement, cover conditions, and inherent heat generation potential of the specific wastes. Time to onset of heat generation varied between months and years, whereas timelines for overall duration of heat generation varied between years and decades. For MSW, measured waste temperatures were as high as 60-90 ℃ and as low as -6 ℃. MSW incinerator ash temperatures varied between 5 and 87 ℃. Mining waste temperatures were in the range of -25 to 65 ℃. In the wastes analyzed, upward heat flow toward the surface was more prominent than downward heat flow toward the subsurface. Thermal gradients generally were higher for MSW and incinerator ash and lower for mining waste. Based on thermal properties, MSW had insulative qualities (low thermal conductivity), while mining wastes typically were relatively conductive (high thermal conductivity) with ash having intermediate qualities. Heat generation values ranged from -8.6 to 83.1 MJ/m~3 and from 0.6 to 72.6 MJ/m~3 for MSW and mining waste, respectively and was 72.6 MJ/m~3 for ash waste. Conductive thermal losses were determined to range from 13 to 1111 MJ/m~3yr. The data and analysis provided in this review paper can be used in the investigation of heat generation and thermal regime of a wide range of wastes and waste containment facilities located in different climatic regions.
机译:本文对各种废物产生的热量以及废物围堵设施的热态进行了全面的综述。分析中包括城市固体废物(MSW),MSW焚烧灰和采矿废物。提供了废物温度的时空变化,热梯度,废物的热特性,平均温度差和热量产生值。热量的产生受气候条件,年平均地球温度,放置时的废物温度,覆盖条件以及特定废物的内在发热量的影响。产生热量的时间在数月至数年之间变化,而总体发热时间的时间表在数年至数十年之间变化。对于城市固体废弃物,测得的废物温度高达60-90℃,而低至-6℃。城市生活垃圾焚烧炉的灰分温度在5至87℃之间变化。采矿废料的温度范围为-25至65℃。在分析的废物中,朝向表面的向上热流比朝向地下的向下热流更为突出。垃圾和焚烧炉灰的热梯度通常较高,而采矿废物的热梯度较低。基于热特性,城市固体废弃物具有绝缘性(低导热率),而采矿废物通常具有相对导电性(高导热率),而灰分具有中等质量。都市固体废物和采矿废物的生热值分别为-8.6至83.1 MJ / m〜3和0.6至72.6 MJ / m〜3,灰渣为72.6 MJ / m〜3。传导热损失确定为13至1111 MJ / m〜3yr。本综述文件中提供的数据和分析可用于调查位于不同气候区域的各种废物和废物围堵设施的热量产生和热态。

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