Comprehensive Utilization of Associated Sulfur Resources of Panxi Vanadium Titanium Magnetite and Its Significance for Low-Carbon Development

This is an essay in the field of mining engineering, which takes Panxi vanadium-titanium magnetite associated sulfur resources as the research object, and expounds its comprehensive utilization path and its low-carbon development significance. Sulfur is one of the typical associated elements of Panx...

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Main Authors: Chengqing Ji, Yaohui Yang, Lu Xu, Chao Chen, Kaile Zhao, Chao Li, Weiping Yan
Format: Article
Language:zho
Published: Institute of Multipurpose Utilization of Mineral Resources, Chinese Academy of Geological Sciences 2023-08-01
Series:Kuangchan zonghe liyong
Subjects:
Online Access:http://www.kczhly.com/en/article/doi/10.3969/j.issn.1000-6532.2023.04.003
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author Chengqing Ji
Yaohui Yang
Lu Xu
Chao Chen
Kaile Zhao
Chao Li
Weiping Yan
author_facet Chengqing Ji
Yaohui Yang
Lu Xu
Chao Chen
Kaile Zhao
Chao Li
Weiping Yan
author_sort Chengqing Ji
collection DOAJ
description This is an essay in the field of mining engineering, which takes Panxi vanadium-titanium magnetite associated sulfur resources as the research object, and expounds its comprehensive utilization path and its low-carbon development significance. Sulfur is one of the typical associated elements of Panxi vanadium-titanium magnetite, and it is also a port element of the emerging industrial chain of food-resource-energy in the double carbon era. Based on the endowment conditions of Panxi vanadium-titanium-magnetite associated resources and the occurrence status of sulfur minerals, this paper analyzes the current situation and characteristics of associated sulfur resources, and uses the mining and dressing industry chain of vanadium-titanium magnetite to discuss the possible environmental impact of sulfur in the process of comprehensive utilization. The comprehensive utilization potential analysis is discussed from two aspects of mineral product demand and comprehensive utilization maturity risk assessment. Under the circumstances that associated sulfur resources are facing the challenge of green and low-carbon development, this paper puts forward comprehensive utilization suggestions from the three aspects of planning top-level design, technical research, and production line promotion, aiming to promote the development of the sulfur industry guided by the principle of green and low-carbon, Focus on promoting carbon reduction and pollution reduction through source sulfur selection production line intervention. The research in this paper can provide new ideas and specific suggestions for the comprehensive utilization of sulfur resources associated with vanadium-titanium magnetite, environmental planning and low-carbon development.
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spelling doaj.art-ca61c95e80db40039f0e685600fee4512023-08-25T06:59:43ZzhoInstitute of Multipurpose Utilization of Mineral Resources, Chinese Academy of Geological SciencesKuangchan zonghe liyong1000-65322023-08-01444192610.3969/j.issn.1000-6532.2023.04.0032023-04jichengqingComprehensive Utilization of Associated Sulfur Resources of Panxi Vanadium Titanium Magnetite and Its Significance for Low-Carbon DevelopmentChengqing Ji0Yaohui Yang1Lu Xu2Chao Chen3Kaile Zhao4Chao Li5Weiping Yan6Institute of Multipurpose Utilization of Mineral Resources, CAGS, Technology Innovation Center for Comprehensive Utilization of Strategic Minerals Resources, Ministry of Natural Resources, Chengdu, Sichuan, ChinaInstitute of Multipurpose Utilization of Mineral Resources, CAGS, Technology Innovation Center for Comprehensive Utilization of Strategic Minerals Resources, Ministry of Natural Resources, Chengdu, Sichuan, ChinaInstitute of Multipurpose Utilization of Mineral Resources, CAGS, Technology Innovation Center for Comprehensive Utilization of Strategic Minerals Resources, Ministry of Natural Resources, Chengdu, Sichuan, ChinaInstitute of Multipurpose Utilization of Mineral Resources, CAGS, Technology Innovation Center for Comprehensive Utilization of Strategic Minerals Resources, Ministry of Natural Resources, Chengdu, Sichuan, ChinaInstitute of Multipurpose Utilization of Mineral Resources, CAGS, Technology Innovation Center for Comprehensive Utilization of Strategic Minerals Resources, Ministry of Natural Resources, Chengdu, Sichuan, ChinaInstitute of Multipurpose Utilization of Mineral Resources, CAGS, Technology Innovation Center for Comprehensive Utilization of Strategic Minerals Resources, Ministry of Natural Resources, Chengdu, Sichuan, ChinaInstitute of Multipurpose Utilization of Mineral Resources, CAGS, Technology Innovation Center for Comprehensive Utilization of Strategic Minerals Resources, Ministry of Natural Resources, Chengdu, Sichuan, ChinaThis is an essay in the field of mining engineering, which takes Panxi vanadium-titanium magnetite associated sulfur resources as the research object, and expounds its comprehensive utilization path and its low-carbon development significance. Sulfur is one of the typical associated elements of Panxi vanadium-titanium magnetite, and it is also a port element of the emerging industrial chain of food-resource-energy in the double carbon era. Based on the endowment conditions of Panxi vanadium-titanium-magnetite associated resources and the occurrence status of sulfur minerals, this paper analyzes the current situation and characteristics of associated sulfur resources, and uses the mining and dressing industry chain of vanadium-titanium magnetite to discuss the possible environmental impact of sulfur in the process of comprehensive utilization. The comprehensive utilization potential analysis is discussed from two aspects of mineral product demand and comprehensive utilization maturity risk assessment. Under the circumstances that associated sulfur resources are facing the challenge of green and low-carbon development, this paper puts forward comprehensive utilization suggestions from the three aspects of planning top-level design, technical research, and production line promotion, aiming to promote the development of the sulfur industry guided by the principle of green and low-carbon, Focus on promoting carbon reduction and pollution reduction through source sulfur selection production line intervention. The research in this paper can provide new ideas and specific suggestions for the comprehensive utilization of sulfur resources associated with vanadium-titanium magnetite, environmental planning and low-carbon development.http://www.kczhly.com/en/article/doi/10.3969/j.issn.1000-6532.2023.04.003mining engineeringpanxivanadium titanium magnetiteassociatedsulfur resourcescomprehensive utilizationlow-carbon development
spellingShingle Chengqing Ji
Yaohui Yang
Lu Xu
Chao Chen
Kaile Zhao
Chao Li
Weiping Yan
Comprehensive Utilization of Associated Sulfur Resources of Panxi Vanadium Titanium Magnetite and Its Significance for Low-Carbon Development
Kuangchan zonghe liyong
mining engineering
panxi
vanadium titanium magnetite
associated
sulfur resources
comprehensive utilization
low-carbon development
title Comprehensive Utilization of Associated Sulfur Resources of Panxi Vanadium Titanium Magnetite and Its Significance for Low-Carbon Development
title_full Comprehensive Utilization of Associated Sulfur Resources of Panxi Vanadium Titanium Magnetite and Its Significance for Low-Carbon Development
title_fullStr Comprehensive Utilization of Associated Sulfur Resources of Panxi Vanadium Titanium Magnetite and Its Significance for Low-Carbon Development
title_full_unstemmed Comprehensive Utilization of Associated Sulfur Resources of Panxi Vanadium Titanium Magnetite and Its Significance for Low-Carbon Development
title_short Comprehensive Utilization of Associated Sulfur Resources of Panxi Vanadium Titanium Magnetite and Its Significance for Low-Carbon Development
title_sort comprehensive utilization of associated sulfur resources of panxi vanadium titanium magnetite and its significance for low carbon development
topic mining engineering
panxi
vanadium titanium magnetite
associated
sulfur resources
comprehensive utilization
low-carbon development
url http://www.kczhly.com/en/article/doi/10.3969/j.issn.1000-6532.2023.04.003
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