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Technical Papers

Immobilization of antimony waste slag by applying geopolymerization and stabilization/solidification technologies

Pages 1288-1298 | Received 12 Feb 2014, Accepted 02 Jul 2014, Published online: 20 Oct 2014

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Esther Álvarez-Ayuso. (2022) Stabilization and encapsulation of arsenic-/antimony-bearing mine waste: Overview and outlook of existing techniques. Critical Reviews in Environmental Science and Technology 52:20, pages 3720-3752.
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Sushil R. Kanel, Tonoy K. Das, Rajender S. Varma, Sudarshan Kurwadkar, Sudip Chakraborty, Tista Prasai Joshi, Achintya N. Bezbaruah & Mallikarjuna N. Nadagouda. (2023) Arsenic Contamination in Groundwater: Geochemical Basis of Treatment Technologies. ACS Environmental Au 3:3, pages 135-152.
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Guangjun Peng, Pengpeng Zhang, Linghao Zeng, Lin Yu & Dongwei Li. (2023) Immobilization of chromium ore processing residue by alkali-activated composite binders and leaching characteristics. Environmental Science and Pollution Research 30:27, pages 71154-71170.
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E. Álvarez-Ayuso, A. Murciego, M.A. Rodríguez & R. Mosser-Ruck. (2022) Cement encapsulation processes to mitigate the risks posed by different types of antimony-bearing mine waste. Journal of Cleaner Production 372, pages 133671.
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Miao Jiang, Kun Wang, Ruiyuan Xue, Qingliang Zhao, Long Wang, Weiye Wang & Jing Ding. (2022) Remediation of Antimony-contaminated Soil With Composite Materials of Fe/Fe2+-fly ash-concrete Additive in Seasonal Freezing Regions. Process Safety and Environmental Protection.
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Yong HE, Wen-qiang JIANG, Ke-ping CHEN, Lian-rong WU, Ke-neng ZHANG, Zhi-peng YU, Xue-ping GAN & De-shan FENG. (2022) Mechanical properties and microstructure evolution of solidified copper tailings with hydantoin epoxy resin. Transactions of Nonferrous Metals Society of China 32:9, pages 3065-3076.
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Bassam El-Eswed, Jamal N. Dawoud, Wadah F. Mahmoud & Yousef Abu Salha. (2022) Stabilization/Solidification of Wastes Containing Oxyanionic Metals: Reactions of Alkali-Activated Aluminosilicate Binders with Chromium, Arsenic, and Antimony in Comparison with Zinc. Water, Air, & Soil Pollution 233:9.
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E. Li, H. Chen, F. Huang, L. Zhou & Z. Yu. (2021) Waste rocks from the industrial mining process: hazard metals stabilization behavior evaluating and reusing as construction materials. International Journal of Environmental Science and Technology 19:5, pages 3685-3700.
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Yunyun Li, Wen Ni, Wei Gao, Siqi Zhang, Pingfeng Fu & Yue Li. (2022) Study on Solidification and Stabilization of Antimony-Containing Tailings with Metallurgical Slag-Based Binders. Materials 15:5, pages 1780.
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Vemula Anand Reddy, Chandresh H. Solanki, Shailendra Kumar, Krishna R. Reddy & Yan-Jun Du. (2021) Comparison of limestone calcined clay cement and ordinary Portland cement for stabilization/solidification of Pb-Zn smelter residue. Environmental Science and Pollution Research 29:8, pages 11393-11404.
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Bassam I. El-Eswed. 2022. Alkali-Activated Materials in Environmental Technology Applications. Alkali-Activated Materials in Environmental Technology Applications 279 313 .
Yang Zhang, Chunxia Ding, Daoxin Gong, Yaocheng Deng, Ying Huang, Jiangfu Zheng, Sheng Xiong, Rongdi Tang, Yongchang Wang & Long Su. (2021) A review of the environmental chemical behavior, detection and treatment of antimony. Environmental Technology & Innovation 24, pages 102026.
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Richa Singh & Sarwani Budarayavalasa. (2021) Solidification and stabilization of hazardous wastes using geopolymers as sustainable binders. Journal of Material Cycles and Waste Management 23:5, pages 1699-1725.
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Padala Abdul Nishad & Anupkumar Bhaskarapillai. (2021) Antimony, a pollutant of emerging concern: A review on industrial sources and remediation technologies. Chemosphere 277, pages 130252.
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Loris Calgaro, Silvia Contessi, Alessandro Bonetto, Elena Badetti, Giorgio Ferrari, Gilberto Artioli & Antonio Marcomini. (2021) Calcium aluminate cement as an alternative to ordinary Portland cement for the remediation of heavy metals contaminated soil: mechanisms and performance. Journal of Soils and Sediments 21:4, pages 1755-1768.
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Soo-Chan Park, Maxim I. Boyanov, Kenneth M. Kemner, Edward J. O’Loughlin & Man Jae Kwon. (2021) Distribution and speciation of Sb and toxic metal(loid)s near an antimony refinery and their effects on indigenous microorganisms. Journal of Hazardous Materials 403, pages 123625.
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Yingfei Sun, Shaogang Hu, Pan Zhang, Khaled Elmaadawy, Yan Ke, Jiahao Li, Mingyang Li, Jingping Hu, Bingchuan Liu, Jiakuan Yang, Sha Liang, Keke Xiao & Huijie Hou. (2020) Microwave enhanced solidification/stabilization of lead slag with fly ash based geopolymer. Journal of Cleaner Production 272, pages 122957.
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Ming Xia, Faheem Muhammad, Shujie Zhao, Lin Yu, Huirong Lin, Xiao Huang, Binquan Jiao, Yan Chyuan Shiau & Dongwei Li. (2020) Detoxification and immobilization of chromite ore processing residue using the alkali-activated cementitious materials mixed with ascorbic acid. Journal of Environmental Management 265, pages 110350.
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Tao Huang, Dongping Song, Li-Xin Yin, Shu-Wen Zhang, Long-Fei Liu & Lulu Zhou. (2020) Microwave irradiation assisted sodium hexametaphosphate modification on the alkali-activated blast furnace slag for enhancing immobilization of strontium. Chemosphere 241, pages 125069.
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Wei Gao, Wen Ni, Yuying Zhang, Yunyun Li, Tengyu Shi & Zifu Li. (2020) Investigation into the semi-dynamic leaching characteristics of arsenic and antimony from solidified/stabilized tailings using metallurgical slag-based binders. Journal of Hazardous Materials 381, pages 120992.
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. 2020. Combustion Emissions. Combustion Emissions 469 589 .
Quanzhi Tian & Keiko Sasaki. (2019) A novel composite of layered double hydroxide/geopolymer for co-immobilization of Cs+ and SeO42− from aqueous solution. Science of The Total Environment 695, pages 133799.
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Fangzhu Xiao, Tao Huang, Shuwen Zhang, Longfei Liu, Cheng Wang, Guowen Peng & Shuya He. (2019) Optimization analysis and mechanism exploration on the removal of cesium and the solidification of secondary residue wastes in electrokinetics. Journal of Cleaner Production 233, pages 1207-1220.
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Ming Xia, Faheem Muhammad, Linghao Zeng, Shan Li, Xiao Huang, Binquan Jiao, YanChyuan Shiau & Dongwei Li. (2019) Solidification/stabilization of lead-zinc smelting slag in composite based geopolymer. Journal of Cleaner Production 209, pages 1206-1215.
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Bassam I. El-Eswed. 2018. Solidification. Solidification.
David Dupont, Sander Arnout, Peter Tom Jones & Koen Binnemans. (2016) Antimony Recovery from End-of-Life Products and Industrial Process Residues: A Critical Review. Journal of Sustainable Metallurgy 2:1, pages 79-103.
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