<?xml version="1.1" encoding="utf-8"?>
<article xsi:noNamespaceSchemaLocation="http://jats.nlm.nih.gov/publishing/1.1/xsd/JATS-journalpublishing1-mathml3.xsd" dtd-version="1.1" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance"><front><journal-meta><journal-id journal-id-type="publisher-id">JWA</journal-id><journal-title-group><journal-title>Journal of World Architecture</journal-title></journal-title-group><issn>2208-3480</issn><eissn>2208-3499</eissn><publisher><publisher-name>Bio-Byword Scientific Publishing Pty. Ltd.</publisher-name></publisher></journal-meta><article-meta><article-id pub-id-type="doi">10.26689/jwa.v6i3.3992</article-id><article-categories><subj-group subj-group-type="heading"><subject>Article</subject></subj-group></article-categories><title>Comprehensive Recycling Technology of Waste Residues in Zinc Hydrometallurgy</title><url>https://artdesignp.com/journal/JWA/6/3/10.26689/jwa.v6i3.3992</url><author>FanYun</author><pub-date pub-type="publication-year"><year>2022</year></pub-date><volume>6</volume><issue>3</issue><history><date date-type="pub"><published-time>2022-05-30</published-time></date></history><abstract>In order to improve the refining effect of zinc ore and promote the development of this industry, taking the hydrometallurgical zinc smelting process as an example, this paper first establishes a model for the recycling of waste residues in the hydrometallurgical process, proposes optimization measures based on proven comprehensive recycling technology for purifying residues to obtain higher valuable metal recovery rate, and provides reference for those in relevant fields.</abstract><keywords/></article-meta></front><body/><back><ref-list><ref id="B1" content-type="article"><label>1</label><element-citation publication-type="journal"><p>Wang Z, 2021, Industrialization Practice of Comprehensive Recovery and Harmless Treatment of Jarosite Slag in Hydrometallurgy. World Nonferrous Metals, 2021(24): 4-6.</p><pub-id pub-id-type="doi"/></element-citation></ref><ref id="B2" content-type="article"><label>2</label><element-citation publication-type="journal"><p>Yang C, Ju J, Guo S, et al., 2021, Research Status of Zinc Impurity Removal Technology in Hydrometallurgy. Yunnan Metallurgy, 50(05): 56-58, 69.</p><pub-id pub-id-type="doi"/></element-citation></ref><ref id="B3" content-type="article"><label>3</label><element-citation publication-type="journal"><p>Wu F, 2021, Production Practice of Several Cobalt Removal Purification Processes in Hydrometallurgical Zinc Smelting. China Nonferrous Metals, 50(04): 53-59.</p><pub-id pub-id-type="doi"/></element-citation></ref><ref id="B4" content-type="article"><label>4</label><element-citation publication-type="journal"><p>Qiu W, 2021, Research on the Recovery Process of Zinc Metal from Zinc Hydrometallurgy Purification Slag. World Nonferrous Metals, 2021(16): 175-176, 181.</p><pub-id pub-id-type="doi"/></element-citation></ref><ref id="B5" content-type="article"><label>5</label><element-citation publication-type="journal"><p>Jian J, Deng Z, Wei C, et al., 2021, Combined Wet and Fire Processing Technology for Zinc Leaching Residue from Hydrometallurgy. Nonferrous Metals Engineering, 11(06): 59-65.</p><pub-id pub-id-type="doi"/></element-citation></ref><ref id="B6" content-type="article"><label>6</label><element-citation publication-type="journal"><p>Wang J, Tan D, Ding J, et al., 2021, Recovery of Cobalt, Zinc and Nickel by Citric Acid Leaching from Zinc Slag in Hydrometallurgy. Mineral Protection and Utilization, 41(02): 137-143.</p><pub-id pub-id-type="doi"/></element-citation></ref><ref id="B7" content-type="article"><label>7</label><element-citation publication-type="journal"><p>Zhang J, Zhang W, Wu C, et al., 2021, Methods and Measures to Remove Organic Matter from Zinc Hydrometallurgy Solution. Metal World, 2021(03): 36-40.</p><pub-id pub-id-type="doi"/></element-citation></ref><ref id="B8" content-type="article"><label>8</label><element-citation publication-type="journal"><p>Peng Z, Shen Q, He G, et al., 2020, Recovery of Silver from Hydrometallurgical Slag. Nonferrous Metal Science and Engineering, 11(05): 118-126.</p><pub-id pub-id-type="doi"/></element-citation></ref><ref id="B9" content-type="article"><label>9</label><element-citation publication-type="journal"><p>Wang Y, Ren J, Cui H, et al., 2020, Analysis on the Production of Nickel Removal by Reuse of Cobalt Slag, A New Chemical for Zinc Hydrometallurgy. China Nonferrous Metals, 49(04): 32-35.</p><pub-id pub-id-type="doi"/></element-citation></ref><ref id="B10" content-type="article"><label>10</label><element-citation publication-type="journal"><p>Zhu J, Li W, Liu M, et al., 2020, Pollutant Analysis and Comprehensive Utilization Technology of Zinc Hydrometallurgy Slag. Comprehensive Utilization of Minerals, 2020(04): 59-65.</p><pub-id pub-id-type="doi"/></element-citation></ref><ref id="B11" content-type="article"><label>11</label><element-citation publication-type="journal"><p>Chen W, 2020, Research on Comprehensive Recycle Technology of Valuable Metals from Zinc-Lead-Silver Slag in Hydrometallurgy. China Metal Bulletin, 2020(07): 88-89.</p><pub-id pub-id-type="doi"/></element-citation></ref><ref id="B12" content-type="article"><label>12</label><element-citation publication-type="journal"><p>Gong Y, Wang X, Zhang Y, et al., 2020, Exploration on the Comprehensive Recovery and Utilization of Zinc Hydrometallurgy Leaching Residue and the Applicability of the Main Process Process. World Nonferrous Metals, 2020(12): 9-10.</p><pub-id pub-id-type="doi"/></element-citation></ref><ref id="B13" content-type="article"><label>13</label><element-citation publication-type="journal"><p>Geng Y, 2020, Basic Research on Efficient Separation of Zinc and Cobalt from Cobalt Slag Purified by Hydro-Zinc Smelting, Zhengzhou University.</p><pub-id pub-id-type="doi"/></element-citation></ref><ref id="B14" content-type="article"><label>14</label><element-citation publication-type="journal"><p>Luo Z, Wang H, Xie W, et al., 2020, Experimental Study on Dechlorination of Copper Slag During Zinc Hydrometallurgy. China Nonferrous Metals, 49(02): 17-20.</p><pub-id pub-id-type="doi"/></element-citation></ref><ref id="B15" content-type="article"><label>15</label><element-citation publication-type="journal"><p>Liu Z, Yang J, Yan H, et al., 2020, Research on Iron Removal Technology of Hydrometallurgical Zinc Smelting. Copper Engineering, 2020(02): 51-54.</p><pub-id pub-id-type="doi"/></element-citation></ref><ref id="B16" content-type="article"><label>16</label><element-citation publication-type="journal"><p>Wu W, 2020, Experimental Research on Comprehensive Utilization Technology of Hydrometallurgical Jarosite Slag. Guangdong Chemical Industry, 47(06): 75-76.</p><pub-id pub-id-type="doi"/></element-citation></ref></ref-list></back></article>
