[1] |
ZENG Yijun, JIANG Ziwen, JIAN Chengzong, QUAN Xuejun.
Study on deep extraction of chromium from calcium-free roasting slag of chromite ore
[J]. Inorganic Chemicals Industry, 2025, 57(1): 90-96.
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[2] |
JIAN Chengzong, JIANG Ziwen, QUAN Xuejun, LI Gang.
Eco⁃friendly extraction of chromium from calcium⁃free roasting slag of chromite ore
[J]. Inorganic Chemicals Industry, 2024, 56(7): 118-125.
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[3] |
JIANG Ziwen,QUAN Xuejun,LI Gang,LU Cunfang,GUO Yijun,CHEN Hao,ZHOU Yankuo,CHENG Zhiliang.
Research progress of resource utilization of chromium slag
[J]. Inorganic Chemicals Industry, 2023, 55(2): 26-35.
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[4] |
ZHANG Zhiqiang, CUI Kangping, CHEN Xing, LI Haiyang.
Optimization of preparation of ultrafine chromium oxide by carbothermal reduction of sodium dichromate by response surface methodology
[J]. Inorganic Chemicals Industry, 2023, 55(10): 136-144.
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[5] |
Qin Xianfeng,Quan Xuejun,Ye Peng,Feng Chengfei,Li Gang.
Research progress of process intensification of acid leaching technology from chromite ore and separation of chromium-iron
[J]. Inorganic Chemicals Industry, 2020, 52(6): 13-19.
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[6] |
Qing Penghui,Dong Yuming,Wang Xingrun,Zhu Kaisheng,Niu Renjie,Meng Jingjuan,Chen Xiaohong,Chen Huixia,Zhang Hongling,Xu Hongbin.
Chromium extraction and detoxification of processing residue from lime-free roasting process of chromite ore
[J]. Inorganic Chemicals Industry, 2020, 52(6): 63-67.
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[7] |
Wu Jun,Cheng Wen,Quan Xuejun,Wu Haifeng,Li Gang,Luo Huazheng.
Acid leaching detoxification and leaching behavior of chromite ore processing residue
[J]. Inorganic Chemicals Industry, 2019, 51(7): 64-67.
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[8] |
Qing Penghui1,2,3,Zhang Hongling1,2,Shi Yilang4,Cai Zaihua4,Mei Haijun5,Xu Hongbin1,2.
Effect of additive on oxidative roasting process of chromite
[J]. Inorganic Chemicals Industry, 2019, 51(12): 26-29.
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[9] |
JIANG Chun-Li, SONG Hong-Jun, HAN Biao, ZHAO Wei, DONG Li-Chun, HUANG Shi-You, WEN Feng-Yu.
Production process of extraction chromium from chromite with sub-molten sodium hydroxide
[J]. INORGANICCHEMICALSINDUSTRY, 2016, 48(7): 39-.
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[10] |
ZHANG Shu-Long, ZHANG Huan-Zhen, WANG Zhi-Li, WANG Qian-Zheng, WANG Hong-Man.
Research progress of cleaner production technology of chromate
[J]. INORGANICCHEMICALSINDUSTRY, 2014, 46(2): 6-.
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[11] |
ZHOU Guang-Zhu, ZHOU Jing, LIU Yi-Zhang, LIU Kai-Kai.
Mineralogical properties and significance of hydro-based
detoxication of chromite ore processing residue
[J]. INORGANICCHEMICALSINDUSTRY, 2013, 45(4): 5-.
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[12] |
WANG Tian-Gui, LI Qiang, QIN Li-Ling, 吕Shu-Ling .
Evaluation of methods for determination of hexavalent chromium
contained in chromite ore processing residue
[J]. INORGANICCHEMICALSINDUSTRY, 2012, 44(4): 1-.
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[13] |
LIU Chang-He.
Determination and evaluation on oxidizing-roasting process of chromite
[J]. INORGANICCHEMICALSINDUSTRY, 2012, 44(3): 44-.
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[14] |
QIN Li-Ling, LI Qiang, WANG Tian-Gui.
Comparison of hexavalent chromium leaching efficacy of different methods from chromite ore processing residue
[J]. INORGANICCHEMICALSINDUSTRY, 2012, 44(2): 51-.
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[15] |
LI Jing-Guan, ZHANG Lin-Jin, CHEN Chuan-Hui, YE Xu-Chu.
Numerical simulation of oxygen volume fraction in chromite roasting process
[J]. INORGANICCHEMICALSINDUSTRY, 2012, 44(2): 33-.
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