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首页> 外文期刊>Journal of Solid Waste Technology and Management >AN INTEGRATED PLANT FOR MUNICIPAL SOLID WASTE CO-COMBUSTION IN CEMENT PRODUCTION
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AN INTEGRATED PLANT FOR MUNICIPAL SOLID WASTE CO-COMBUSTION IN CEMENT PRODUCTION

机译:水泥生产中城市固体废弃物混合燃烧综合工厂

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摘要

This paper presents a novel and highly integrated design of cement and electricity production by co-combustion of municipal solid waste (MSW) and fuel. By tightly integrating the three processes, energy generated from the co-combustion can be effectively utilized for cement production and electricity generation. This synergy also results in significant reduction in new pollutant emissions. Solid wastes such as fly ash from the combustion can be used as feedstock for cement production. The raw material of cement production such as lime (CaO) works as an adsorbent for converting polluting gas such as SOx generated from the combustion to components of cement such as calcium sulfate (CaSO_4). The reduction of chlorine compounds in the combustion process plays a key role in managing dioxin formation from the combustion process. Lime again is good adsorbent for chloride to prevent it from being converted into dioxin during the high temperature process. Using the heat generated from the combustion process, wooden wastes sorted from MSW can be converted into active carbon that is a ideal adsorbent for dioxin in the downstream air pollution control processes of the waste gases. The large amount of lime used in cement production and the low-cost active carbon cleanup the waste gases in the most economic and effective way. These three processes are perfectly integrated reducing overall energy consumption and pollution. An integrated pilot unit is being built in Hong Kong and will be ready for operation by the end of year 2002.
机译:本文提出了一种新型的高度集成的水泥和电力生产设计,该设计通过将城市固体废物(MSW)和燃料共同燃烧来实现。通过将这三个过程紧密结合,可以将混合燃烧产生的能量有效地用于水泥生产和发电。这种协同作用还可以大大减少新污染物的排放。燃烧产生的固体废物(例如粉煤灰)可用作水泥生产的原料。水泥生产的原料(例如石灰(CaO))用作吸附剂,用于将燃烧产生的污染气体(例如SOx)转化为水泥的成分(例如硫酸钙(CaSO_4))。燃烧过程中氯化合物的还原在控制燃烧过程中形成二恶英方面起着关键作用。石灰还是氯化物的良好吸附剂,可防止其在高温过程中转化为二恶英。利用燃烧过程中产生的热量,从城市固体废弃物中分拣出来的木屑可以转化为活性炭,这是下游废气控制过程中二恶英的理想吸附剂。水泥生产中使用的大量石灰和低成本的活性炭以最经济有效的方式净化了废气。这三个过程完美地集成在一起,从而降低了总体能耗和污染。目前正在香港建造一个综合试点单位,并将于2002年底投入使用。

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