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Original Articles

Performance of Vegetable Oils as Flotation Collectors for the Recovery of Coal from Coal Fines Wastes

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Pages 411-420 | Received 05 Feb 2000, Accepted 18 Jul 2000, Published online: 27 Apr 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (14)

Iman Hasanizadeh, Hamid Khoshdast, Kaveh Asgari, Qingqing Huang & Ahmad Rahmanian. (2023) Studying the influence of cationized pyrolysis oil on the flotation of a bituminous coal using historical data design. International Journal of Coal Preparation and Utilization 0:0, pages 1-19.
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Mohana Rao Kadagala, Suresh Nikkam & Sunil Kumar Tripathy. (2022) Application of Kerosene/ crude palm oil and their mixtures as collectors for flotation of oxidized coal fines and their performance analysis. International Journal of Coal Preparation and Utilization 0:0, pages 1-25.
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K. L. Bharath, Suresh Nikkam & G. Udayabhanu. (2022) Beneficiation of high-ash Indian coal fines by froth flotation using bio-degradable-oil as a collector. International Journal of Coal Preparation and Utilization 42:9, pages 2685-2702.
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Ayda Dikici & Hasan Hacifazlioglu. (2022) Production of Super Clean Coal (SCC) from coal fines with organic reagents. International Journal of Coal Preparation and Utilization 42:4, pages 1033-1039.
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Yijiang Li, Wencheng Xia & Ningning Zhang. (2021) Efficiency and mechanism analysis of the flotation of anthracite coal using soybean oil as an alternative sustainable collector. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 43:18, pages 2210-2217.
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Chun-Chen Nie, Xiang-Nan Zhu, Qiang Wang, Xian-Jun Lyu, Jun Qiu & Lin Li. (2021) Gutter oil, an alternative collector to traditional diesel collector for cleaner flotation of fine coal. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 43:8, pages 1007-1018.
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Chen Yang, Xin-yu Liu, Wen-hao Gao, Zi-hui Zhang, Hao-qiang Wang, Xian-jun Lyu, Jun Qiu, Xiang-nan Zhu & Lin Li. (2020) Clean flotation of fine coal assisted by renewable collector prepared from waste oils. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 0:0, pages 1-10.
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Gan Cheng, Ziyou Li, Yijun Cao & Zhendong Jiang. (2020) Research progress in lignite flotation intensification. International Journal of Coal Preparation and Utilization 40:1, pages 59-76.
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Yangchao Xia, Rui Zhang, Zili Yang, Yaowen Xing & Xiahui Gui. (2019) Recovering clean low-rank coal using shale oil as a flotation collector. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 41:15, pages 1838-1846.
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Xiangnan Zhu, Xian-jun Lu, Qiang Wang, Jun Qiu, Sha-sha Wang, Xin-yu Liu & Lin Li. (2019) Reducing environmental threats of gutter oil: application in fluorite flotation by saponification. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 41:14, pages 1683-1689.
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Quanzhi Tian, Yi Zhang, Guosheng Li & Yongtian Wang. (2019) Application of Carboxylic Acid in Low-Rank Coal Flotation. International Journal of Coal Preparation and Utilization 39:1, pages 44-53.
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Hasan Hacifazlioglu & Dilek Senol-Arslan. (2017) Sunflower oil as green collector in bituminous coal flotation. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 39:15, pages 1602-1609.
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Wencheng Xia. (2016) Biodiesel as a renewable collector for coal flotation in the future. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 38:13, pages 1938-1943.
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Wencheng Xia, Jianguo Yang & Chuan Liang. (2013) Improving Oxidized Coal Flotation Using Biodiesel as a Collector. International Journal of Coal Preparation and Utilization 33:4, pages 181-187.
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Articles from other publishers (22)

Mengdi Xu, Ying Zhou, Yesheng Hao, Yijun Cao, Yaowen Xing & Xiahui Gui. (2023) Enhancing Flotation Performance of Low-Rank Coal Using Environment-Friendly Vegetable Oil. Minerals 13:6, pages 717.
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Yizhang Li, Di Zhang & Zhijun Zhang. (2022) Molecular dynamics simulation of fatty acid collectors with different carbon chain lengths on the surface of low-rank coal. Chemical Physics Letters 806, pages 140068.
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Mohana Rao Kadagala, Suresh Nikkam & Sunil Kumar Tripathy. (2021) A review on flotation of coal using mixed reagent systems. Minerals Engineering 173, pages 107217.
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Yiu-Hung Yau, Victor Rudolph, Cat Chui-man Lo & Kam-Chau Wu. (2018) Restaurant oil and grease management in Hong Kong. Environmental Science and Pollution Research 28:30, pages 40735-40745.
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P.S. Kumar, O. Sivrikaya, S. Pradhan & P.C. Nagannor. (2021) Flotation performance analysis on coal washery rejects. Energy Geoscience 2:3, pages 211-217.
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Maoyan An, Yinfei Liao, Yijun Cao, Xiaodong Hao & Longfei Ma. (2021) Improving Low Rank Coal Flotation Using a Mixture of Oleic Acid and Dodecane as Collector: A New Perspective on Synergetic Effect. Processes 9:3, pages 404.
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Lu Yang, Danlong Li, Ling Zhang, Xiaokang Yan, Jincai Ran, Yongtian Wang & Haijun Zhang. (2020) On the utilization of waste fried oil as flotation collector to remove carbon from coal fly ash. Waste Management 113, pages 62-69.
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Xiang-nan Zhu, De-zhang Wang, Yang Ni, Jun-xiang Wang, Chun-chen Nie, Chen Yang, Xian-jun Lyu, Jun Qiu & Lin Li. (2020) Cleaner approach to fine coal flotation by renewable collectors prepared by waste oil transesterification. Journal of Cleaner Production 252, pages 119822.
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Bao Li, Jianying Guo, Shengyu Liu, Boris Albijanic, Lei Zhang & Xiaole Sun. (2020) Molecular insight into the mechanism of benzene ring in nonionic surfactants on low-rank coal floatability. Journal of Molecular Liquids 302, pages 112563.
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Yangchao Xia, Rui Zhang, Yijun Cao, Yaowen Xing & Xiahui Gui. (2020) Role of molecular simulation in understanding the mechanism of low-rank coal flotation: A review. Fuel 262, pages 116535.
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Xiang-nan Zhu, Xian-jun Lyu, Qiang Wang, Jun Qiu, Sha-sha Wang, Xin-yu Liu & Lin Li. (2019) Clean utilization of waste oil: Soap collectors prepared by alkaline hydrolysis for fluorite flotation. Journal of Cleaner Production 240, pages 118179.
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Raghav Dube & Rick Honaker. (2019) Improving the flotation performance of an oxidized bituminous coal source. Minerals Engineering 142, pages 105937.
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Dapeng Wang, Meng Xu, Jingfeng He & Lei Wang. (2019) Flotation of low rank coal using dodecane after pretreatment by dielectric barrier discharge (DBD) air plasma. Fuel 251, pages 543-550.
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Hasan HACIFAZLIOĞLU, Yakup EKER & Abdul Vahap KORKMAZ. (2019) Soya Yağı ile Kömür Yıkama Tesis Atıklarından Temiz Yakıt Üretimi. Academic Platform Journal of Engineering and Science, pages 1-1.
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Mengdi Xu, Yaowen Xing, Yijun Cao & Xiahui Gui. (2019) Waste colza oil used as renewable collector for low rank coal flotation. Powder Technology 344, pages 611-616.
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Guichao Wang, Xuetao Bai, Changning Wu, Weng Li, Ke Liu & Ali Kiani. (2018) Recent advances in the beneficiation of ultrafine coal particles. Fuel Processing Technology 178, pages 104-125.
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Baofeng Wen, Wencheng Xia & Jovica M. Sokolovic. (2017) Recent advances in effective collectors for enhancing the flotation of low rank/oxidized coals. Powder Technology 319, pages 1-11.
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Wencheng Xia, Guangyuan Xie & Yaoli Peng. (2015) Recent advances in beneficiation for low rank coals. Powder Technology 277, pages 206-221.
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Adolfo F. Valdés, M. Dolores González-Azpiroz, Carlos G. Blanco & Ana B. Garcı´a. (2007) Experimental prediction of the agglomeration capability of waste vegetable oils (WVO) in relation to the recovery of coal from coal fines cleaning wastes (CFCW). Fuel 86:10-11, pages 1345-1350.
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Adolfo F. Valdés & Ana B. Garcia. (2006) On the utilization of waste vegetable oils (WVO) as agglomerants to recover coal from coal fines cleaning wastes (CFCW). Fuel 85:5-6, pages 607-614.
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Adolfo F. Valdés & Ana B. Garcia. (2006) A study of the evolution of the physicochemical and structural characteristics of olive and sunflower oils after heating at frying temperatures. Food Chemistry 98:2, pages 214-219.
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M.I Alonso, A.F Valdés, R.M Martı́nez-Tarazona & A.B Garcia. (2002) Coal recovery from fines cleaning wastes by agglomeration with colza oil: a contribution to the environment and energy preservation. Fuel Processing Technology 75:2, pages 85-95.
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