首页> 外文期刊>中国化学工程学报(英文版) >染料残渣焚烧过程中微量元素的形态转化及其迁移分配的预测
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染料残渣焚烧过程中微量元素的形态转化及其迁移分配的预测

机译:染料残渣焚烧过程中微量元素的形态转化及其迁移分配的预测

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The release of heavy metals from the combustion of hazardous wastes is an environmental issue of increasing concern.The species transformation characteristics of toxic heavy metals and their distribution are considered to be a complex problem of mechanism.The behavior of hazardous dyestuff residue is investigated in a tubular furnace under the general condition of hazardous waste pyrolysis and gasfication.Data interpretation has been aided by parallel theoretical study based on a thermodynamic equilibrium model based on the principle of Gibbs free energy minimization.The results show that Ni,Zn,Mn,and Cr are more enriched in dyestuff residue incineration than other heavy metals (Hg,As,and Se) subjected to volatilization.The thermodynamic model calculation is used for explaining the experiment data at 800℃ and analyzing species transformation of heavy metals.These results of species transformation are used to predict the distribution and emission characteristics of trace elements.Although most trace element predictions are validated by the measurements,cautions are in order due to the complexity of incineration systems.
机译:来自危险废物燃烧的重金属的释放是一种越来越多的环境问题。毒性重金属的物种转化特征被认为是一种复杂的机制问题。研究了危险染料残留物的行为管状炉在危险废物热解和燃气的一般条件下。基于Gibbs自由能最小化原理的基于热力学平衡模型的平行理论研究得到了帮助的解释。结果表明Ni,Zn,Mn和Cr更富含染料残留物焚烧,而不是对其进行挥发的其他重金属(Hg,As和Se)。热力学模型计算用于解释800℃的实验数据,分析物种转化的重金属。物种转化结果用于预测痕量元素的分布和排放特性。althou通过测量验证了GH大多数痕量元素预测,由于焚烧系统的复杂性,注意事项是顺序的。

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