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鑫城金矿浮选-金精矿氰化车间选矿技术改造 被引量:1
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作者 王振 董万峰 +1 位作者 胡琴霞 赵春荣 《中国矿业》 北大核心 2007年第10期77-79,共3页
本文提出了改进浮选、氰化及污水处理工艺的有效措施。解决了污水排放难以达到标准的问题,实现了污水零排放,提高了选矿回收率,增加了经济效益。
关键词 鑫城金矿 浮选-氰化车间 技术改造
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采用浮选—氰化工艺合理利用金矿资源 被引量:3
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作者 郑其 杨奉兰 高洪山 《有色金属(选矿部分)》 CAS 北大核心 1998年第2期15-18,共4页
对义兴寨金矿石分别进行直接浮选、直接氰化和浮选-氰化联合工艺的研究,均获得了很好的技术指标,尤其是浮选-氰化工艺,取消了原有的混汞作业,获得了含金银的铜精矿、合质金和硫精矿,从而使产品结构趋于合理,既综合回收了金银铜... 对义兴寨金矿石分别进行直接浮选、直接氰化和浮选-氰化联合工艺的研究,均获得了很好的技术指标,尤其是浮选-氰化工艺,取消了原有的混汞作业,获得了含金银的铜精矿、合质金和硫精矿,从而使产品结构趋于合理,既综合回收了金银铜硫多种有价组分,又减少了环境污染,具有很好的技术经济价值和社会效益。 展开更多
关键词 金矿 氰化 浮选 浮选-氰化 合理利用
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高铅金银矿的选-冶试验 被引量:1
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作者 谢营邦 杜淑珍 《湖南有色金属》 CAS 北大核心 1991年第3期145-148,共4页
通过对某高铅金银矿的实验室试验,分别论述了浮选-氰化提金(银)、浮选-氰化-浮选和氰化-氰化渣选铅流程等3个方案,并指出采用氰化-氰化渣选铅流程为宜。
关键词 高铅金银矿 浮选-氰化提金(银) 浮选-氰化-浮选 氰化-氰化渣选铅
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Mechanism of sodium sulfide on flotation of cyanide-depressed pyrite 被引量:7
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作者 Zhao CAO Peng WANG +2 位作者 Wen-bo ZHANG Xiao-bo ZENG Yong-dan CAO 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第2期484-491,共8页
The mechanism of sodium sulfide(Na2S)on the flotation of cyanide-depressed pyrite using potassium amyl xanthate(PAX)as collector was investigated by flotation test and electrochemical measurements.The flotation result... The mechanism of sodium sulfide(Na2S)on the flotation of cyanide-depressed pyrite using potassium amyl xanthate(PAX)as collector was investigated by flotation test and electrochemical measurements.The flotation results show that both PAX and Na2S can promote the flotation recovery of cyanide-depressed pyrite and their combination can further improve the pyrite flotation recovery.Electrochemical measurements show that PAX and Na2S interacted with cyanide-depressed pyrite through different mechanisms.PAX competed with cyanide and was adsorbed on the pyrite surface in the form of dixanthogen,thus enhancing the hydrophobicity and flotation of cyanide-depressed pyrite.Unlike PAX,Na2S rendered the pyrite surface hydrophobic through the reduction of ferricyanide species and the formation of elemental sulfur S0 and polysulfide Sn2-.The combined application of PAX and Na2S induced superior pyrite flotation recovery because of a synergistic effect between PAX and Na2S. 展开更多
关键词 PYRITE CHALCOCITE FLOTATION CYANIDE DEPRESSION sodium sulfide
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Improved recovery of a low-grade refractory gold ore using flotation–preoxidation–cyanidation methods 被引量:7
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作者 Faraz Soltani Hossna Darabi +1 位作者 Rezgar Badri Piroz Zamankhan 《International Journal of Mining Science and Technology》 SCIE EI 2014年第4期537-542,共6页
In this work, different flotation–preoxidation–cyanidation methods are considered for treating a lowgrade refractory gold ore. On the one hand, the results of selective flotation show that 22% and 31.1%of total Sb a... In this work, different flotation–preoxidation–cyanidation methods are considered for treating a lowgrade refractory gold ore. On the one hand, the results of selective flotation show that 22% and 31.1%of total Sb and As, respectively, remained in the final tailings and only about 28% of the total Au remained for further cyanidation processes. On the other hand, in bulk method of flotation the maximum Au recovery of 90.6% achieved after 60 min of flotation at the grind size with K80 of 146 micron. In addition, the bulk flotation method resulted in the concentrate with low concentrations of Sb and As elements. To improve the recovery of low-grade refractory gold ores, flotation should be followed by roasting, biological, or pressure oxidation processes so that the gold could be liberated prior to cyanidation processes. It is also found that the pressure oxidation pre-treatment of the concentrates prior to cyanidation may yield high gold recoveries of over than 83%. In these processes, recoveries are controlled by the temperature and the oxygen partial pressure in the solvent. However, by utilizing the bio-oxidation technique, the oxidation of sulfur to sulfate cannot be completed and, consequently, the gold recovery may be limited to only 72.2%. 展开更多
关键词 Low-grade refractory gold ore Pre-treating Flotation Pre-oxidation
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微细粒浸染型金矿石选金试验研究 被引量:11
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作者 周中定 《黄金》 CAS 2003年第6期43-45,共3页
详细研究了矿石中金的赋存状态和载金矿物特征 ,进行了多方案选金试验研究。试验结果表明 :对含金黄铁矿精矿进行压热氧化—氰化浸出 ,是处理该微细粒浸染型金矿石较有效的方法。
关键词 包裹金 浮选-氰化 氰化-浮选 压热氧化-氰化
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某含铜难处理金矿提金试验 被引量:7
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作者 袁喜振 孙春宝 +5 位作者 李绍英 赵留成 李根壮 邓祥意 张炜 郭林中 《有色金属(冶炼部分)》 CAS 北大核心 2014年第11期43-47,共5页
分别采用直接氰化法、浮选—氰化法和碘化法处理某含铜难处理金矿,并考察了搅拌强度、浸出时间和矿浆温度对碘化浸金效果的影响。结果表明,采用直接氰化法在氰化钠用量为10kg/t时,金浸出率为82%左右,铜浸出率为40%左右;利用浮选—氰化... 分别采用直接氰化法、浮选—氰化法和碘化法处理某含铜难处理金矿,并考察了搅拌强度、浸出时间和矿浆温度对碘化浸金效果的影响。结果表明,采用直接氰化法在氰化钠用量为10kg/t时,金浸出率为82%左右,铜浸出率为40%左右;利用浮选—氰化法得到的浮选精矿中金、铜品位分别为36.9g/t和4.69%,金、铜回收率分别为57.41%和62.35%,浮选精矿中砷品位达到4.2%,浮选尾矿氰化金的浸出率为65.96%;碘化试验中金浸出率达到85.3%,铜浸出率低于1%。碘化法比较适宜处理该金矿,其最佳工艺条件为:搅拌强度400r/min、浸出时间2h、矿浆温度298K。 展开更多
关键词 直接氰化 浮选-氰化 碘化法 难处理金矿 浸出率
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Flotation behaviors and mechanisms of chalcopyrite and galena after cyanide treatment 被引量:5
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作者 Yi-wen MA Yue-xin HAN +2 位作者 Yi-min ZHU Yan-jun LI Hao LIU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2016年第12期3245-3252,共8页
Adsorbing tests between CN? and chalcopyrite or galena were conducted firstly, and then flotation tests of the twocyaniding minerals were investigated in butyl xanthate (BX) system. Results showed that the interaction... Adsorbing tests between CN? and chalcopyrite or galena were conducted firstly, and then flotation tests of the twocyaniding minerals were investigated in butyl xanthate (BX) system. Results showed that the interaction between CN? and the twomineral surfaces were both chemical adsorption and can be described by the Langmuir adsorption isotherm model. In the optimumcondition of pH 6.5 and 4.0 mg/L BX, the recovery of cyaniding chalcopyrite and galena reached 82.1% and 63.9%, respectively. BXimproved the hydrophobicity of the surfaces of the two minerals, although CN? reduced the contact angle on the surface of minerals.The inhibitory effect of CN? on chalcopyrite far outweighed galena. Electrostatic adsorption exists in the interaction between BX andthe surface of galena after cyanide treatment in the pH range of 4.2?8.4, while the interactions between BX and the surface ofchalcopyrite after cyanide treatment is chemical adsorption. 展开更多
关键词 CHALCOPYRITE GALENA cyanide absorption FLOTATION butyl xanthate
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