工程科学学报
工程科學學報
공정과학학보
Journal of University of Science and Technology Beijing
2015年
8期
1000-1007
,共8页
赵留成%寇珏%孙春宝%张舒婷%王培龙%刘柯
趙留成%寇玨%孫春寶%張舒婷%王培龍%劉柯
조류성%구각%손춘보%장서정%왕배룡%류가
金矿处理%硫化物%焙烧%浸出%热分解
金礦處理%硫化物%焙燒%浸齣%熱分解
금광처리%류화물%배소%침출%열분해
gold ore treatment%sulfides%ore roasting%leaching%thermal decomposition
针对传统氧化焙烧-氰化浸金工艺环境污染严重的现状,采用焙烧-自浸出工艺提取载金硫化物中的金.研究焙烧温度、焙烧时间和试样量对单质硫转化率和金浸出率的影响,通过X射线衍射分析、扫描电镜观察、能谱分析等手段分析焙烧过程中载金硫化物中硫的物相转变规律.载金硫化物中黄铁矿发生热分解反应生成单质硫和磁黄铁矿,随焙烧温度的升高和焙烧时间的延长,黄铁矿的特征衍射峰强度逐渐减小直到消失,磁黄铁矿的特征衍射峰逐渐生成并增强,原本致密状的黄铁矿颗粒变得疏松多孔.50 g试样在氮气流量1 L·min-1、焙烧温度800℃、焙烧时间60 min的条件下,单质硫的转化率达到42.53%,金浸出率达到88.70%,实现载金硫化物的高效非氰浸出.
針對傳統氧化焙燒-氰化浸金工藝環境汙染嚴重的現狀,採用焙燒-自浸齣工藝提取載金硫化物中的金.研究焙燒溫度、焙燒時間和試樣量對單質硫轉化率和金浸齣率的影響,通過X射線衍射分析、掃描電鏡觀察、能譜分析等手段分析焙燒過程中載金硫化物中硫的物相轉變規律.載金硫化物中黃鐵礦髮生熱分解反應生成單質硫和磁黃鐵礦,隨焙燒溫度的升高和焙燒時間的延長,黃鐵礦的特徵衍射峰彊度逐漸減小直到消失,磁黃鐵礦的特徵衍射峰逐漸生成併增彊,原本緻密狀的黃鐵礦顆粒變得疏鬆多孔.50 g試樣在氮氣流量1 L·min-1、焙燒溫度800℃、焙燒時間60 min的條件下,單質硫的轉化率達到42.53%,金浸齣率達到88.70%,實現載金硫化物的高效非氰浸齣.
침대전통양화배소-청화침금공예배경오염엄중적현상,채용배소-자침출공예제취재금류화물중적금.연구배소온도、배소시간화시양량대단질류전화솔화금침출솔적영향,통과X사선연사분석、소묘전경관찰、능보분석등수단분석배소과정중재금류화물중류적물상전변규률.재금류화물중황철광발생열분해반응생성단질류화자황철광,수배소온도적승고화배소시간적연장,황철광적특정연사봉강도축점감소직도소실,자황철광적특정연사봉축점생성병증강,원본치밀상적황철광과립변득소송다공.50 g시양재담기류량1 L·min-1、배소온도800℃、배소시간60 min적조건하,단질류적전화솔체도42.53%,금침출솔체도88.70%,실현재금류화물적고효비청침출.
In view of serious environmental pollution in the traditional roasting-cyanide leaching process, a roasting and self-leaching process was adopted to treat gold-bearing sulfides. The transformation rate of elemental sulfur and the gold leaching rate were tested at different roasting temperatures, roasting times and sample masses. The phase transformation of sulfur in the sulfides was ana-lyzed by X-ray diffraction analysis, scanning electron microscopy and energy dispersive spectrometry. It is found that pyrite in the sul-fides transforms to elemental sulfur and pyrrhotite because of a thermal decomposition reaction. Along with the increasing of roasting temperature and roasting time, the characteristic diffraction peaks of pyrite gradually weaken and finally disappear. Meanwhile, the characteristic diffraction peaks of pyrrhotite generate and heighten. The initial dense pyrite particles become porous. Under the condi-tions of the roasting temperature of 800℃, roasting time of 60 min, nitrogen flow of 1 L·min-1 and sample mass of 50 g, the transfor-mation rate of elemental sulfur and the gold leaching rate reach 42. 53% and 88. 7%, respectively. Gold from the sulfides is effective-ly extracted by this non-cyanide leaching.