重金属石膏的还原性热解:不纯的相位演变和转化途径
Xiaobo Min1, Zidong Tan2, Yunyan Wang1
1School of Metallurgy and Environment, Central South University, Changsha, 410083, China; State Key Laboratory of Advanced Metallurgy for Non-ferrous Metals, Changsha, 410083, China; Chinese National Engineering Research Center for Control & Treatment of Heavy Metal Pollution, Changsha, 410083, China.
Journal of environmental management
|March 10, 2026
概括
酸性水处理石膏 (AWTG) 的降解热解揭示了杂质相互作用. 氧化和CaFe2O4的形成使停滞不前,这对于工业石膏的价值化至关重要.
科学领域:
- 材料科学 材料科学 材料科学
- 环境工程 环境工程
- 化学工程是化学工程的重要组成部分.
背景情况:
- 酸性水处理石膏 (AWTG) 呈现出复杂的杂质组成,阻碍了还原性热解.
- 了解这些杂质是有效的工业石膏价值化的关键.
研究的目的:
- 为了阐明在AWTG还原性热解过程中的非线性反应途径和竞争性相互作用.
- 调查杂质组成对热解机制和产品特异性的影响.
主要方法:
- 通过日志正常分布分析合成了代表性的AWTG.
- 通过使用TG-MS,XRD和SEM-EDS进行了系统的热解研究.
- 不同的碳/硫 (C/S) 比率来分析反应路径.
主要成果:
- 确定了三种不同的杂质形式:Ca-S-O矩阵物种,As-Fe共同沉物和独立的矿物相.
- 证明铁和的物种化取决于初始成分和降解大气.
- 展示了CaO和CaFe2O4作为固定机制的现场生成.
结论:
- 在低碳条件下,CaO和CaFe2O4的形成起到降解屏障的作用,使在低碳条件下无法移动.
- 这些发现为重金属石膏价值化中的原材料选择和杂质控制提供了理论基础.
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