简介概要

脉石在硫化锑精矿低温熔炼过程中的行为

来源期刊:中南大学学报(自然科学版)2012年第11期

论文作者:黄潮 叶龙刚 唐朝波 唐谟堂 杨建广 陈永明 杨声海 何静

文章页码:4177 - 4182

关键词:硫化锑精矿;低温熔盐冶金;脉石行为;XRD

Key words:stibnite concentrate; low-temperature molten salt metallurgy; gangue behavior; XRD

摘    要:为开发清洁的硫化锑矿低碳冶金方法,在热力学理论计算的基础上,采用XRD分析和DSC-TGA热分析技术,研究硫化锑精矿低温熔盐熔炼过程中SiO2,CaCO3,Al2O3,MgCO3和FeS2等脉石成分的行为。研究结果表明:二氧化硅全部生成可溶性的Na2SiO3,MgCO3在850 ℃时分解,不与Na2CO3反应。CaCO3,Al2O3和FeS2部分发生反应,消耗Na2CO3熔盐,在熔炼实验中需要不断补加Na2CO3

Abstract: To develope a low carbon clean metallurgical method for antimony sulfide ore, the behaviors of gangue including SiO2, CaCO3, Al2O3, MgCO3 and FeS2 were investigated by XRD analysis and DSC-TGA thermal analysis techniques on the basis of thermodynamic calculations during antimony separation from stibnite concentrate through a low temperature smelting. The results show that all the silicon generates soluble Na2SiO3 and MgCO3 decomposes and does not react with Na2CO3. CaCO3, FeS2 and Al2O3 partly react and consume part of the molten Na2CO3. Smelting experiments need to keep adding Na2CO3.

详情信息展示

脉石在硫化锑精矿低温熔炼过程中的行为

黄潮,叶龙刚,唐朝波,唐谟堂,杨建广,陈永明,杨声海,何静

(中南大学 冶金科学与工程学院,湖南 长沙,410083)

摘 要:为开发清洁的硫化锑矿低碳冶金方法,在热力学理论计算的基础上,采用XRD分析和DSC-TGA热分析技术,研究硫化锑精矿低温熔盐熔炼过程中SiO2,CaCO3,Al2O3,MgCO3和FeS2等脉石成分的行为。研究结果表明:二氧化硅全部生成可溶性的Na2SiO3,MgCO3在850 ℃时分解,不与Na2CO3反应。CaCO3,Al2O3和FeS2部分发生反应,消耗Na2CO3熔盐,在熔炼实验中需要不断补加Na2CO3

关键词:硫化锑精矿;低温熔盐冶金;脉石行为;XRD

Behavior of gangue during antimony separation from stibnite concentrate through a low temperature smelting

HUANG Chao, YE Long-gang, TANG Chao-bo, TANG Mo-tang, YANG Jian-guang, CHEN Yong-ming, YANG Sheng-hai, HE Jing

(School of Metallurgical Science and Engineering, Central South University, Changsha 410083, China)

Abstract:To develope a low carbon clean metallurgical method for antimony sulfide ore, the behaviors of gangue including SiO2, CaCO3, Al2O3, MgCO3 and FeS2 were investigated by XRD analysis and DSC-TGA thermal analysis techniques on the basis of thermodynamic calculations during antimony separation from stibnite concentrate through a low temperature smelting. The results show that all the silicon generates soluble Na2SiO3 and MgCO3 decomposes and does not react with Na2CO3. CaCO3, FeS2 and Al2O3 partly react and consume part of the molten Na2CO3. Smelting experiments need to keep adding Na2CO3.

Key words:stibnite concentrate; low-temperature molten salt metallurgy; gangue behavior; XRD

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