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改性磷石膏半干法高靶向固化/稳定化固定有害杂质的研究

Study of Semi-Dry High Target Solidification/Stabilization of Harmful Impurities in Phosphogypsum by Modification.

机构信息

Faculty of Environmental Science and Engineering, Kunming University of Science and Technology, Kunming 650500, China.

National Regional Engineering Research Center-NCW, Kunming 650500, China.

出版信息

Molecules. 2022 Jan 11;27(2):462. doi: 10.3390/molecules27020462.

Abstract

Phosphogypsum (PG) treatment is one of the research hotspots in the field of environmental protection. Many researchers both at home and abroad have devoted themselves to studies on harmless resource treatment of PG, but the treatment technology is unable to meet the demand of PG consumption due to the huge production and storage demands. In order to solve the problem of PG pollution, this study explored the different solidified effects of various modification formulations on the hazardous components in PG, using industrial solid waste calcium carbide slag (CCS) as an alkaline regulator; Portland cement (PC), polyaluminum chloride (PAC) and CaCl as the main raw materials of the solidification and stabilization formula and the water content in PG as the reaction medium. The results showed that CCS (0.5%), PC (0.4%) and PAC (0.3%) had a more significant solidified effect on phosphorus (P) and fluoride (F). PAC was added in two steps and reacted under normal temperature and pressure, and its leaching toxicity meets the requirements of relevant standards, which laid an excellent foundation for PG-based ecological restoration materials and filling materials, with low economic cost, simple process and strong feasibility. This will provide great convenience for the later mining and metallurgy.

摘要

磷石膏(PG)处理是环境保护领域的研究热点之一。国内外许多研究人员致力于 PG 无害资源处理的研究,但由于 PG 的产量和储存需求巨大,处理技术仍无法满足需求。为了解决 PG 污染问题,本研究以工业固体废物电石渣(CCS)为碱性调节剂,以波特兰水泥(PC)、聚合氯化铝(PAC)和 CaCl 为固化稳定配方的主要原料,以 PG 中的含水量为反应介质,探讨了不同改性配方对 PG 中有害成分的不同固化效果。结果表明,CCS(0.5%)、PC(0.4%)和 PAC(0.3%)对磷(P)和氟(F)具有更显著的固化效果。两步添加 PAC,在常温常压下反应,其浸出毒性符合相关标准要求,为 PG 基生态修复材料和填充材料奠定了良好基础,具有经济成本低、工艺简单、可行性强的特点。这将为后期的采矿和冶金提供极大的便利。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf47/8780520/611c210a79f0/molecules-27-00462-g001.jpg

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