铜冶炼堆存中和渣危废协同污酸处理试验研究
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作者单位:

1.低品位难处理黄金资源综合利用国家重点实验室, 福建 厦门 361101 ;2.厦门紫金矿冶技术有限公司, 福建 厦门 361101

作者简介:

郭金溢(1987—),男,福建晋江人,高级工程师,本科。

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中图分类号:

TF811;X758

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Experimental Study on Co-processing of Neutralization Slag and Waste Acid from Copper Smelting
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Affiliation:

1.State Key Laboratory for Comprehensive Utilization of Low Grade Refractory Gold Ores, ;2.Xiamen Zijin Mining & Metallurgy Technology Co., Ltd., Xiamen 361101 , China

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    摘要:

    国外某铜火法冶炼厂污酸固砷工艺由中和固砷工艺调整为晶型砷酸铁固砷工艺,调整后固砷后液达到外排标准,固砷渣浸出毒性符合TCLP要求。为解决之前采用中和沉淀法处理污酸时产生的大量中和渣危废遗留堆存的问题,结合调整后的晶型砷酸铁固砷处理污酸工艺,开展堆存中和渣危废协同污酸处理试验,利用堆存的石膏渣危废残余CaO等碱性物质,将其作为污酸固砷预中和工序的中和剂使用。试验结果表明,随着现场堆存中和石膏渣加入量增加,其中可利用的碱性物质增多,石灰石粉用量相应减少;堆存中和渣中的不稳定砷酸盐沉淀及碱性重金属沉淀被污酸溶解,因此,预处理产生的中和后液中的As、Cu、Ni、Pb、Zn、F、Fe、Cd、Sb元素浓度明显提高,预中和石膏渣纯度提高,且预中和石膏渣毒性浸出符合TCLP要求。该工艺将石膏渣危废转化为符合外售标准的石膏渣产品,实现了“以废治废”和“变废为宝”,具有良好的经济和社会效益。

    Abstract:

    The arsenic-fixing process of waste acid in a foreign copper pyrometallurgical plant was adjusted from neutralization arsenic-fixing process to crystalline iron arsenate arsenic-fixing process. After adjustment, the arsenic-fixing liquid reached the discharge standard, and the leaching toxicity of arsenic-fixing slag met the TCLP requirements. In order to solve the problem of a large amount of neutralization slag hazardous waste left over from the previous treatment of waste acid by neutralization precipitation method, combined with the process of solid arsenic treatment of waste acid by crystalline iron arsenate after on-site production adjustment, the test of synergistic waste acid treatment of neutral slag hazardous waste was carried out. The alkaline substances such as CaO in the stored gypsum slag hazardous waste were used as neutralizers in the pre-neutralization process of arsenic fixation of waste acid. The test results show that with the increase of the amount of gypsum slag added in the field storage, the available alkaline substances increase, and the amount of limestone powder decreases accordingly. The unstable arsenate precipitation and alkaline heavy metal precipitation in the neutralized slag were dissolved by the waste acid. Therefore, the concentrations of As, Cu, Ni, Pb, Zn, F, Fe, Cd and Sb in the pre-neutralized solution were significantly increased, and the purity of the pre-neutralized gypsum slag was improved, and the toxicity leaching of the pre-neutralized gypsum slag met the TCLP requirements. The process converts gypsum slag hazardous waste into gypsum slag products that meet the external sales standards, realizes “treating waste with waste” and “turning waste into treasure”, and has good economic and social benefits.

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郭金溢. 铜冶炼堆存中和渣危废协同污酸处理试验研究[J]. 绿色矿冶,2025,41(6):23-27,71.

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  • 收稿日期:2025-06-20
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  • 在线发布日期: 2026-02-13
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