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氢氧化钙改性铜尾矿对水中磷的去除机制

Removal mechanism of phosphorus in water by calcium hydroxide modified copper tailings.

作者信息

Li Yuting, Chen Yunnen, Xu Jiali, Liu Jun

机构信息

Jiangxi Key Laboratory of Mining & Metallurgy Environmental Pollution Control, Jiangxi University of Science & Technology, No. 156Kejia Ave., Ganzhou, 341000, Jiangxi, People's Republic of China.

出版信息

Sci Rep. 2024 Sep 2;14(1):20326. doi: 10.1038/s41598-024-71347-w.

Abstract

With the development of industry and agriculture, eutrophication caused by increasing amounts of phosphorus in the environment has attracted people's attention. On the other hand, copper tailings (CT) is a kind of solid waste with large quantity, large area, and easy to cause groundwater and soil pollution. CT is also a potential resource because of its large specific surface area. CT is intended to be used as an adsorbent for removal phosphate in water, but trace heavy metals and a small amount of phosphate in CT may bring negative effects. Calcium hydroxide (Ca(OH)) was used to modify CT (CCT), hoping to fix the heavy metals and phosphate in CT at the same time. It was found that the removal capacity of CCT was significantly higher than that of CT. The process of phosphate removal by CCT involves electrostatic sorption and surface precipitation, and there is a synergistic effect between CT and Ca(OH). The phosphate removal rate of CCT-0.4 increased with the increase of pH value under alkaline conditions. The XRD patterns of phosphate sorption by CCT mean that Ca(PO), Ca(PO)(OH) and AlPO exist in CCT after phosphate removal, indicating that surface precipitation occurs during the removal process. In summary, the removal mechanism of phosphate by CCT is mainly electrostatic attraction and surface precipitation.

摘要

随着工农业的发展,环境中磷含量增加导致的富营养化已引起人们的关注。另一方面,铜尾矿是一种数量大、面积广且易造成地下水和土壤污染的固体废物。由于其比表面积大,铜尾矿也是一种潜在资源。铜尾矿拟用作去除水中磷酸盐的吸附剂,但铜尾矿中的微量重金属和少量磷酸盐可能会带来负面影响。采用氢氧化钙(Ca(OH)₂)对铜尾矿进行改性(改性铜尾矿),希望同时固定铜尾矿中的重金属和磷酸盐。结果发现,改性铜尾矿的去除能力明显高于铜尾矿。改性铜尾矿去除磷酸盐的过程涉及静电吸附和表面沉淀,且铜尾矿与氢氧化钙之间存在协同效应。在碱性条件下,改性铜尾矿-0.4的磷酸盐去除率随pH值的升高而增加。改性铜尾矿吸附磷酸盐后的XRD图谱表明,去除磷酸盐后改性铜尾矿中存在Ca₃(PO₄)₂、Ca₅(PO₄)₃(OH)和AlPO₄,表明在去除过程中发生了表面沉淀。综上所述,改性铜尾矿去除磷酸盐的机制主要是静电吸引和表面沉淀。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c98c/11368913/9f8c557c2fa2/41598_2024_71347_Fig1_HTML.jpg

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