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Thermal Treatment of Landfill Leachate and the Emission Control

机译:垃圾渗滤液的热处理和排放控制

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The main aim of this study was to develop an appropriate system for the thermal treatment of landfill leachate. In the initial phase of this study, characterization studies were conducted both for the waste disposed and leachate generated. For the thermal treatment of the landfill leachate two different incineration systems, namely a double-phase liquid waste incineration system and a new pilot-scale incineration system, were tested. During the experimental study, the capability of the new pilot-scale incineration system was proven to treat the landfill leachate. However, high concentrations of NOx were recorded. On the other hand, the experimental data, obtained during the testing period of the double-phase liquid waste incineration system, indicated that the fluidized bed incinerator provided an extra unit sufficient to complete the oxidation of partial products of combustion and organics carried from the initial incinerator. Therefore, lower gaseous emissions were noted. However, an agglomeration problem has occurred, due to the high concentrations of Na, Ca and K. It was concluded that considering the flexibility of the thermal processes, thermal treatment of leachate could successfully be applied to Odayeri landfill, as well as to many landfills, if proper gas treatment systems are applied.
机译:这项研究的主要目的是开发一种适用于垃圾渗滤液热处理的系统。在这项研究的初始阶段,对废物处置和渗滤液产生进行了表征研究。为了对垃圾渗滤液进行热处理,测试了两种不同的焚化系统,即双相液体废物焚化系统和新的中试规模焚化系统。在实验研究期间,事实证明,新的中试规模焚烧系统具有处理垃圾渗滤液的能力。但是,记录到高浓度的NOx。另一方面,在双相液体废物焚化系统测试期间获得的实验数据表明,流化床焚化炉提供了一个额外的单元,足以完成从初始阶段携带的部分燃烧产物和有机物的氧化。焚化炉。因此,注意到较低的气体排放。然而,由于高浓度的Na,Ca和K,发生了团聚问题。结论是,考虑到热处理过程的灵活性,渗滤液的热处理可以成功地应用于Odayeri垃圾填埋场以及许多垃圾填埋场,如果使用了适当的气体处理系统。

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