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NEW CONCEPT FOR LANDFILL DISPOSAL OF MUNICIPAL SOLID WASTE INCINERATION RESIDUES

机译:城市固体垃圾焚烧残渣填埋处理的新概念

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The major environmental concerns in relation to the short- and long-term impact of landfill-ing of municipal solid waste incineration (MSWI) residues are connected with the risk of leaching and subsequent release of potentially harmful substances, particularly inorganic salts and metals trace elements, into the environment (soil, water, air). Landfill solid residues disposal of fired coal power plants have to deal with the same risks regarding the leaching. Suitable solutions to minimise disposal leaching were developed, and presently the dense slurry technology was developed. The final product of this modern technology is the 'ash rock' resulted from the cementation chemical reactions of the calcium compounds contained in solid residues from coal incineration. Landfill disposal created by this way offers best conditions for avoiding the leaching to environment of the harmful elements contained in fired coal solid residues. Also an improved disposal stability and aftercare period of disposal are relevant. In order to find a novel, possible solution for the MSWI ash disposal, a combination with the dense slurry technology, applied on fired coal residues, is proposed. Based on this aspect, it would be possible to combine those 2 types of residues with dense slurry technology, to create new compounds similar with ash rock. The present study relates to research and analyse results accomplished on a small scale, using laboratory facilities in order to create a novel type of ash rock encapsulating the MSWI solid residues into dense slurry resulted from solid fossil fuel combustion. Concluding remarks in reference to the main factors of influence are expressed as well. The presented solution is totally new and might open a wide range of interest of the industrial waste incinerating industry.
机译:与城市固体废物焚化(MSWI)残渣的填埋的短期和长期影响有关的主要环境问题与潜在的有害物质(尤其是无机盐和金属微量元素)的浸出和随后释放的风险有关,进入环境(土壤,水,空气)。燃煤电厂的垃圾填埋场固体废物处置必须处理与浸出同样的风险。开发了使废物的淋洗最小化的合适解决方案,并且目前开发了致密浆料技术。这项现代技术的最终产品是“灰岩”,它是煤焚烧固体残渣中所含钙化合物发生胶结化学反应的结果。通过这种方式产生的垃圾填埋场提供了最佳条件,可避免燃烧的煤固体残渣中所含有害元素渗入环境。改善的处置稳定性和处置的后续维护时间也很重要。为了找到一种新颖,可行的MSWI灰渣处理解决方案,提出了与浓煤浆技术相结合的方法,将其应用于燃煤残渣。基于这一方面,有可能将这两种类型的残渣与稠密浆液技术结合起来,以产生类似于灰岩的新化合物。本研究涉及使用实验室设施在小规模范围内完成的研究和分析结果,以便创建一种新型的灰岩,将MSWI固体残留物封装成固体化石燃料燃烧产生的致密浆料。还表达了关于影响的主要因素的结论。提出的解决方案是全新的,可能会打开工业垃圾焚烧行业的广泛兴趣。

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