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用于有效处理危险废物的示范等离子体气化/玻璃化系统。

Demonstration plasma gasification/vitrification system for effective hazardous waste treatment.

作者信息

Moustakas K, Fatta D, Malamis S, Haralambous K, Loizidou M

机构信息

National Technical University of Athens, School of Chemical Engineering, Unit of Environmental Science and Technology, 9 Heroon Polytechniou Street, Zografou Campus, 15773 Athens, Greece.

出版信息

J Hazard Mater. 2005 Aug 31;123(1-3):120-6. doi: 10.1016/j.jhazmat.2005.03.038.

DOI:10.1016/j.jhazmat.2005.03.038
PMID:15878635
Abstract

Plasma gasification/vitrification is a technologically advanced and environmentally friendly method of disposing of waste, converting it to commercially usable by-products. This process is a drastic non-incineration thermal process, which uses extremely high temperatures in an oxygen-starved environment to completely decompose input waste material into very simple molecules. The intense and versatile heat generation capabilities of plasma technology enable a plasma gasification/vitrification facility to treat a large number of waste streams in a safe and reliable manner. The by-products of the process are a combustible gas and an inert slag. Plasma gasification consistently exhibits much lower environmental levels for both air emissions and slag leachate toxicity than other thermal technologies. In the framework of a LIFE-Environment project, financed by Directorate General Environment and Viotia Prefecture in Greece, a pilot plasma gasification/vitrification system was designed, constructed and installed in Viotia Region in order to examine the efficiency of this innovative technology in treating industrial hazardous waste. The pilot plant, which was designed to treat up to 50kg waste/h, has two main sections: (i) the furnace and its related equipment and (ii) the off-gas treatment system, including the secondary combustion chamber, quench and scrubber.

摘要

等离子体气化/玻璃化是一种技术先进且环保的废物处理方法,可将废物转化为具有商业用途的副产品。该过程是一种剧烈的非焚烧热过程,在缺氧环境中使用极高的温度将输入的废料完全分解为非常简单的分子。等离子体技术强大且通用的发热能力使等离子体气化/玻璃化设施能够以安全可靠的方式处理大量废物流。该过程的副产品是一种可燃气体和一种惰性炉渣。与其他热技术相比,等离子体气化在空气排放和炉渣渗滤液毒性方面始终表现出更低的环境水平。在由希腊环境总局和维奥蒂亚州资助的一个生命环境项目框架内,设计、建造并在维奥蒂亚地区安装了一个等离子体气化/玻璃化中试系统,以检验这种创新技术处理工业危险废物的效率。该中试工厂设计为每小时处理多达50千克废物,有两个主要部分:(i) 熔炉及其相关设备,以及 (ii) 废气处理系统,包括二次燃烧室、骤冷器和洗涤器。

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