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云南石屏某氧化铅矿石选矿试验 被引量:3
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作者 江旭 刘全军 纪慧超 《金属矿山》 CAS 北大核心 2018年第7期113-117,共5页
云南石屏某氧化铅矿石铅品位为3.14%,Ag含量为56.24 g/t,矿石中的主要铅矿物为方铅矿、白铅矿,铅矾等少量,银呈类质同象赋存于白铅矿、方铅矿中,主要有害元素为碳和砷。矿石在磨矿细度为-0.074 mm占91.1%的情况下,以石灰为矿浆p H调整... 云南石屏某氧化铅矿石铅品位为3.14%,Ag含量为56.24 g/t,矿石中的主要铅矿物为方铅矿、白铅矿,铅矾等少量,银呈类质同象赋存于白铅矿、方铅矿中,主要有害元素为碳和砷。矿石在磨矿细度为-0.074 mm占91.1%的情况下,以石灰为矿浆p H调整剂、水玻璃为矿泥分散剂、丁铵黑药+乙硫氮为捕收剂,1粗2精流程浮选硫化铅矿物,以乙二胺磷酸盐+硫化钠为组合活化剂,丁基黄药为捕收剂,1粗2精1扫流程浮选氧化铅矿物,最终获得铅品位为53.21%、含银1 003.54 g/t、铅回收率为33.38%、银回收率为35.15%的硫化铅精矿,以及铅品位为30.88%、含银561.24 g/t、铅回收率为56.74%、银回收率为57.58%的氧化铅精矿,铅总回收率为90.12%、银总回收率为92.73%,较好地实现了铅、银矿物的回收。 展开更多
关键词 氧化 硫化铅矿物 氧化矿矿物 分步浮选 伴生银回收
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Enhancement of bio-oxidation of refractory arsenopyritic gold ore by adding pyrolusite in bioleaching system 被引量:5
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作者 张旭 冯雅丽 李浩然 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2016年第9期2479-2484,共6页
Pyrolusite was added in the bioleaching process to enhance the bio-oxidation process. Bioleaching tests at different dosages of pyrolusite ore, pH and inoculation amounts of Acidithiobacillus ferrooxidans were studied... Pyrolusite was added in the bioleaching process to enhance the bio-oxidation process. Bioleaching tests at different dosages of pyrolusite ore, pH and inoculation amounts of Acidithiobacillus ferrooxidans were studied. The results showed that the time of the bio-oxidation process was decreased obviously and the arsenic leaching rate reached 94.4% after the bioleaching. The bio-oxidation of arsenopyrite and the effective extraction of manganese from pyrolusite were achieved by the bioleaching process. After bioleaching, the leaching rate of gold from the reaction residues reached 95.8% by cyanide leaching. In the bio-oxidation process, pyrolusite increased the redox potential of the solution to accelerate the bioleaching rate. The experiment showed that there were two reaction modes in the bioleaching process. 展开更多
关键词 arsenopyritic gold ore PYROLUSITE BIO-OXIDATION Acidithiobacillus ferrooxidans
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Mechanical activation of natural chalcopyrite for improving heterogeneous Fenton degradation of tetracycline 被引量:2
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作者 WANG Chong-qing YANG Jia-peng +1 位作者 HUANG Rong CAO Yi-jun 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第12期3884-3895,共12页
Natural minerals receive growing attention as inexpensive, green, and efficient catalysts for degradation of organic pollutants. Mechanical activation of natural chalcopyrite was conducted for improving the catalytic ... Natural minerals receive growing attention as inexpensive, green, and efficient catalysts for degradation of organic pollutants. Mechanical activation of natural chalcopyrite was conducted for improving the catalytic performance.Tetracycline degradation was evaluated in the presence of hydrogen peroxide and mechanically activated chalcopyrite.Tetracycline degradation at 100 min is 55.52%(Chp10), 68.97%(Chp30), 77.79%(Chp60), and 86.43%(Chp120),respectively, and the rate constant of pseudo-first-order kinetics is 0.0079, 0.0109, 0.0137 and 0.0192 min^(-1), respectively.Chalcopyrite samples were examined by multiple characterizations. Mechanical activation of natural chalcopyrite induces the decline of particle size and slight increase of surface area, smaller grain size, lattice strain, and partial sulfur oxidation. The relationship between catalytic activity and property change manifests that the improved catalytic ability is mainly ascribed to the increase of surface area and surface oxidation induced by mechanical activation. This work provides novel insights into the improvement of catalytic performance of natural minerals by mechanical activation. 展开更多
关键词 advanced oxidation process CHALCOPYRITE mechanical activation natural minerals TETRACYCLINE
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Beneficiation of a low grade limestone sample 被引量:1
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作者 Rao Danda Srinivas Vijayakumar Tadiparthi Venkata +2 位作者 Subba Rao Sripada Bhaskar Raju Guntamadugu Prabhakar Swarna 《Mining Science and Technology》 EI CAS 2011年第5期631-636,共6页
Pilot scale column flotation studies were conducted on a low grade siliceous limestone ore. Silica content was reduced to less than 13g in the concentrate so that it became satisfactory for use in the paper or rubber ... Pilot scale column flotation studies were conducted on a low grade siliceous limestone ore. Silica content was reduced to less than 13g in the concentrate so that it became satisfactory for use in the paper or rubber industries. The limestone sample was crystalline and constituted primarily of calcite that contained quartz, feldspar, pyroxene, and biotite as gangue minerals. Quartz is the major silicate gangue whereas feldspar, pyroxene, and biotite exist in minor to trace quantities. Traces of pyrite were also observed within the sample. A reverse flotation process was adopted where the silicate gangue minerals were floated using two different commercial cationic collectors: Chem-750 F or Floatamine-D. The studies clearly suggest it is possible to produce a limestone concentrate assaying around 96-97% CaCO3 containing less than 1 % Si02. The effect of feed flow rate, percent solids, froth depth, and wash water on the grade and recovery of the CaC03 concentrate is discussed. 展开更多
关键词 Low grade limestoneReverse flotationColumn flotationCationic collector
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Stabilization of S_(3)O_(4) at high pressure:implications for the sulfur-excess paradox
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作者 Siyu Liu Pengyue Gao +5 位作者 Andreas Hermann Guochun Yang Jian Lu Yanming Ma Ho-Kwang Mao Yanchao Wang 《Science Bulletin》 SCIE EI CSCD 2022年第9期971-976,M0004,共7页
The amount of sulfur in SO2 discharged in volcanic eruptions exceeds that available for degassing from the erupted magma.This geological conun drum,known as the"sulfur excess",has been the subject of conside... The amount of sulfur in SO2 discharged in volcanic eruptions exceeds that available for degassing from the erupted magma.This geological conun drum,known as the"sulfur excess",has been the subject of considerable interests but remains an open question.Here,in a systematic computational investigation of sulfur-oxygen compounds under pressure,a hitherto unknown S_(3)O_(4) compound containing a mixture of sulfur oxidation states+11 and+IV is predicted to be stable at pressures above 79 GPa.We speculate that S_(3)O_(4) may be produced via redox reactions involving subducted S-bearing minerals(e.g.,sulfates and sulfides)with iron and goethite under high-pressure conditions of the deep lower mantle,decomposing to SO2 and S at shallow depths.S_(3)O_(4) may thus be a key intermediate in promoting decomposition of sulfates to release SO2,offering an alter native source of excess sulfur released during explosive eruptions.These findings provide a possible resolution of the"excess sulfur degassing"paradox and a viable mechanism for the exchange of S between Earth's surface and the lower mantle in the deep sulfur cycle. 展开更多
关键词 Crystal structure prediction High-pressure chemistry S-bearing minerals Sulfur cycle Excess sulfur
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