[1] |
XIANG Quanjin, QUAN Xuejun, LI Li, WANG Haibo, CHEN Xinhong, LI Ping.
Formation rules and emission reduction method of sublimed sulfur in acidolysis exhaust gas of titanium concentrate
[J]. Inorganic Chemicals Industry, 2024, 56(7): 96-103.
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[2] |
LI Huaquan, QIU Guibao, LÜ Xuewei.
Research progress of titanium dioxide preparation technology
[J]. Inorganic Chemicals Industry, 2024, 56(10): 20-27.
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[3] |
XIA Guiying, YANG Liuchun, YUAN Zhiye.
Study on direct leaching of rare earth elements from phosphogypsum with sulfuric acid
[J]. Inorganic Chemicals Industry, 2024, 56(1): 107-113.
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[4] |
TANG Shuyang,GUO Yufeng,ZHENG Fuqiang,CHEN Feng,WANG Shuai,YANG Lingzhi.
Present situation and prospects of preparation methods of titanium dioxide
[J]. Inorganic Chemicals Industry, 2022, 54(7): 27-34.
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[5] |
FAN Zhenzhen,ZHAO Yi,LI Chong,CAI Mei,ZHU Jinyu.
Present situation and suggestions of heavy metal thallium pollution control in sulfuric acid industrial wastewater
[J]. Inorganic Chemicals Industry, 2022, 54(6): 6-12.
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[6] |
Gao Zhijuan,Wang Xiangren.
Research progress in alumina activation technology from pulverized-coal fly ash
[J]. Inorganic Chemicals Industry, 2021, 53(2): 24-27.
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[7] |
Zhang Yulu,Wang Ye,Yang Lin,Yang Xiushan,Wang Xinlong.
Preparation of high purity calcium oxide combined with sulfuric acid from fluorine gypsum decomposed by sulfur
[J]. Inorganic Chemicals Industry, 2020, 52(7): 70-73.
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[8] |
Liu Leilei,Xia Haijian,Feng Weiliang,Wang Tielin,Wang Cunwen,Wang Weiguo,Jiang Zhensheng.
Determination and correlation of solubility of potassium fluosilicate in dilute sulfuric acid solution
[J]. Inorganic Chemicals Industry, 2019, 51(8): 17-19.
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[9] |
Liao Xin1,2,Yang Shaoli1,Ma Lan1,Li Hong1.
Comparison and analysis of sulfuric acid process titanium dioxide prepared with titanium
concentrate and titanium slag as raw materials respectively
[J]. Inorganic Chemicals Industry, 2019, 51(10): 7-11.
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[10] |
MA Guang-Qiang, ZOU Min, XIA Dong.
Experimental study on titanium concentrate leaching to prepare
Ti-rich material with titanium dioxide waste acid
[J]. INORGANICCHEMICALSINDUSTRY, 2016, 48(8): 67-.
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[11] |
DU Jian-Qiao, XU Yu-Ting, ZHONG Ben-He.
Technical analysis of green vitriol treatment in large-scale
[J]. INORGANICCHEMICALSINDUSTRY, 2016, 48(5): 9-.
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[12] |
WANG Bin, LI Chun, YANG Yang-Jun.
Distribution of impurities from low grade titanium slag as raw material in titanium
dioxide manufacturing by sulfate process
[J]. INORGANICCHEMICALSINDUSTRY, 2016, 48(1): 35-.
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[13] |
FU Quan-Jun, LUO Shu-Feng, MA Xian-Lin, WANG Xue-Juan, ZHANG Zhi-Ye, WANG Xin-Long, YANG Lin.
Impurities removal from phosphogypsum by leaching neutralization method
[J]. INORGANICCHEMICALSINDUSTRY, 2015, 47(7): 44-.
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[14] |
.
Research on oxidization-reduction reactions for ilmenite in microwave field
[J]. INORGANICCHEMICALSINDUSTRY, 2015, 47(6): 23-.
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[15] |
CUI Yi-Shun- , XIANG Yun-Gang.
Study on sulfuric acid leaching kinetics of pyrolusite with ferrous sulfate as reducing agent
[J]. INORGANICCHEMICALSINDUSTRY, 2015, 47(1): 26-.
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