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天马山矿石金、砷、硫的选矿分离回收工艺试验研究 被引量:13
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作者 王珩 《黄金》 CAS 2003年第10期32-37,共6页
天马山矿矿石属含砷高硫难选金矿石 ,对该矿石进行了选矿工艺试验研究 ,采用优先浮选金、次氯酸钙作氧化剂氧化浮选分离黄铁矿和毒砂、磁选分离磁黄铁矿和毒砂工艺流程 ,综合回收金、硫、砷 ,取得了较好的选别指标。此工艺比较适合天马... 天马山矿矿石属含砷高硫难选金矿石 ,对该矿石进行了选矿工艺试验研究 ,采用优先浮选金、次氯酸钙作氧化剂氧化浮选分离黄铁矿和毒砂、磁选分离磁黄铁矿和毒砂工艺流程 ,综合回收金、硫、砷 ,取得了较好的选别指标。此工艺比较适合天马山矿石性质和该矿实际生产情况。 展开更多
关键词 金、砷、硫 毒砂 黄铁矿 磁黄铁矿 次氯酸钙 氧化抑制 浮选分离 磁选
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Effect of arsenopyrite on thiosulfate leaching of gold 被引量:6
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作者 杨永斌 张茜 +3 位作者 徐斌 李骞 姜涛 汪亚轩 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第10期3454-3460,共7页
Arsenopyrite was artificially added into the thiosulfate leaching solution to clarify the role of arsenopyrite on the thiosulfate leaching of gold.The effect of arsenopyrite on the thiosulfate leaching of gold was stu... Arsenopyrite was artificially added into the thiosulfate leaching solution to clarify the role of arsenopyrite on the thiosulfate leaching of gold.The effect of arsenopyrite on the thiosulfate leaching of gold was studied by the thermodynamic calculation,mineral dissolution test,leaching test and XPS analysis.The results show that the thiosulfate consumption slightly increases with increasing the concentration of arsenopyrite,but the gold dissolution is obviously hindered.This may mainly attribute to the catalytic effect of arsenopyrite on the thiosulfate decomposition and the formation of passivation layer on the gold foil surface.The passivation layer likely consists of Cu2S or Cu(S2O3)35-,element S,FeOOH and iron arsenate,which is deduced from the XPS analysis.However,the negative effect of arsenopyrite can be eliminated by adding additives.It is found that both additives of sodium carboxymethyl(CMC) and sodium phosphate(SHPP) can not only decrease the thiosulfate consumption but also improve the gold dissolution. 展开更多
关键词 gold leaching THIOSULFATE ARSENOPYRITE PASSIVATION
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Physicochemical and environmental properties of arsenic sulfide sludge from copper and lead-zinc smelter 被引量:13
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作者 Li-wei YAO Xiao-bo MIN +7 位作者 Hui XU Yong KE Yun-yan WANG Zhang LIN Yan-jie LIANG De-gang LIU Qiu-jing XU Yu-yang HE 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第7期1943-1955,共13页
Physicochemical properties of arsenic sulfide sludge(ASS) from copper smelter(ASS-I) and lead-zinc smelter(ASS-II) were examined by XRD, Raman spectroscopy, SEM-EDS, TG-DTA, XPS and chemical phase analysis method. The... Physicochemical properties of arsenic sulfide sludge(ASS) from copper smelter(ASS-I) and lead-zinc smelter(ASS-II) were examined by XRD, Raman spectroscopy, SEM-EDS, TG-DTA, XPS and chemical phase analysis method. The toxicity characteristic leaching procedure(TCLP), Chinese standard leaching tests(CSLT), three-stage sequential extraction procedure(BCR) and batch leaching experiments(BLE) were used to investigate the environmental stability. The ASSs from different smelters had obviously different physicochemical and environmental properties. The phase composition and micrograph analysis indicate that ASS-I mainly consists of super refined flocculent particles including amorphous arsenic sulfide adhered with amorphous sulfur and that ASS-II mainly consists of amorphous arsenic sulfide. The valence state of arsenic in both sludges is trivalent, but the valence composition of sulfur is quite different. The ASSs have thermal instability properties. The results of TCLP and CSLT indicate that the concentrations of As and Pd in the leaching solution exceed the standard limits. More than 5% and 90% of arsenic are in the form of acid soluble and oxidizable fractions, respectively, which explains the high arsenic leaching toxicity and environmental activity of ASS. This research provides comprehensive information for the disposal of ASS from copper and lead-zinc smelter. 展开更多
关键词 arsenic sulfide sludge heavy metals physicochemical properties environmental availability leaching toxicity
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Mobility of Arsenic and Heavy Metals in a Sandy-Loam Textured and Carbonated Soil 被引量:8
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作者 I. GARC íA M. DIEZ +2 位作者 F. MART íN M. SIMóN C. DORRONSORO 《Pedosphere》 SCIE CAS CSCD 2009年第2期166-175,共10页
The continued effect of the pyrite-tailing oxidation on the mobility of arsenic, lead, zinc, cadmium, and copper was studied in a carbonated soil under natural conditions, with the experimental plot preserved with a l... The continued effect of the pyrite-tailing oxidation on the mobility of arsenic, lead, zinc, cadmium, and copper was studied in a carbonated soil under natural conditions, with the experimental plot preserved with a layer of tailing covering the soil during three years. The experimental area is located in Southern Spain and was affected by a pyrite-mine spill. The climate in the area is typically Mediterranean, which determines the rate of soil alteration and element mobility. The intense alteration processes that occurred in the soil during three years caused important changes in its morphology and a strong degradation of the main soil properties. In this period, lead concentrated in the first 5 mm of the soil, with concentrations higher than 1500 mg kg?1, mainly associated to the neoformation of plumbojarosite. Arsenic was partially leached from the first 5 mm and mainly concentrated between 5–10 mm in the soil, with maximum values of 1239 mg kg-1; the retention of arsenates was related to the neoformation of iron hydroxysulfates (jarosite, schwertmannite) and oxyhydroxides (goethite, ferrihydrite), both with a variable degree of crystallinity. The mobility of Zn, Cd, and Cu was highly affected by pH, producing a stronger leaching in depth; their retention was related to the forms of precipitated aluminium and, in the case of Cu, also to the neoformation of hydroxysulfate. 展开更多
关键词 ARSENIC heavy metals oxidation pyrite-tailing SOIL
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Novel technology on preparation of double-layered pellets for sulfur and arsenic-bearing gold concentrates 被引量:1
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作者 杨永斌 崔丽娜 +3 位作者 李希山 李骞 姜涛 戈捷 《Journal of Central South University》 SCIE EI CAS 2013年第11期2967-2973,共7页
Double-layered pellet (DLP) roasting is a novel pretreatment method for sulfur and arsenic-bearing gold concentrates. In this process, preparation of DLPs is a fundamental step which is required to produce DLPs with... Double-layered pellet (DLP) roasting is a novel pretreatment method for sulfur and arsenic-bearing gold concentrates. In this process, preparation of DLPs is a fundamental step which is required to produce DLPs with favorable mechanical strength and thermal stability. Studies were carried out to investigate the affecting factors and conditions on the preparation and properties of DLPs. The results show that moisture content has significant influence on DLPs preparation. With the increase of moisture content in the range of no more than 9.8%, drop resistance and compressive strength of green DLPs are raised and the pelletizing dynamics is improved accordingly. The optimum conditions are determined as moisture content of 9.8%, coating time of 14-16 min, drying temperature 〈80 ℃and drying gas velocity 〈1.2 m/s. When DLPs prepared under these conditions are roasted at 600 ℃ for 1 h, favorable removal and solidifying rates can be obtained, in which the removal rates of arsenic and sulfur are 94.38% and 82.55%, and the solidifying rates of arsenic and sulfur reach 99.62% and 99.79%, respectively. These results promise industrial application of DLP roasting. 展开更多
关键词 sulfur and arsenic-bearing gold ores double-layered pellets PELLETIZING gold ores pretreatment ROASTING
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