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91. Sulphide collector mineral bonding and the mechanism of flotation
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92. Flotation and adsorption of quaternary ammonium cationic collectors on diaspore andkaolinite
Jiang Hao (Sch. of Resources Process. & Bioeng., Central South Univ., Changsha, China); Xu Long-hua; Hu Yue-hua;Wang Dian-zuo; Li Chang-kai; Meng Wei; Wang Xing-jie Source: Transactions of the Nonferrous Metals Society ofChina, v 21, n 11, p 2528-34, Nov. 2011
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93. Some solutions to the problems in fine particle flotation
Peng, Y. (COREM, 1180 rue de la Minéralogie, Quebec City, QC G1N 1X7, Canada); Cotnoir, D.; Ourriban, M.;Richard, D.; Liu, Q. Source: Australasian Institute of Mining and Metallurgy Publication Series, p 535-540, 2005,Centenary of Flotation Symposium - Proceedings
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94. How froth flotation works. Practical side
Dingeman, David (Oriox Technologies Inc) Source: Proceedings, Annual Meeting - Minnesota Section, AIME, p189-194, 1991
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95. Lamellar flotation of a lead-zinc sulfide ore
Rubio, J. (Univ Federal do Rio Grande do Sul, Porto Alegre, Brazil); Solari, J.A. Source: Minerals Engineering, v 4, n2, p 133-140, 1991
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96. Improving sulfide flotation performance using natural sorbents
Eliseev, N.I. (Ural Fed. Univ., Ekaterinburg, Russia); Averbukh, A.V. Source: Journal of Mining Science, v 48, n 1, p195-7, Jan. 2012
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97. ULTRAFINE PARTICLES IN FLOTATION.
Warren, L.J. (Western Australian Inst of, Technology, Bentley, Aust, Western Australian Inst of Technology, Bentley,Aust) Source: Symposia Series - Australasian Institute of Mining and Metallurgy, n 40, p 185-213, 1984
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98. Surfactant Spray Flotation Deinking of 100% Flexographic ONP Furnish in the Presenceof Conventional Defoamer
DeLozier, Greg (Sch. of Chem./Biomol. Engineering, Georgia Institute of Technology, 500 10th Street, N.W., Atlanta,GA 30332-0620, United States); Deng, Yulin Source: Progress in Paper Recycling, v 13, n 1, p 5-11, November 2003Database: Compendex
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99. Flotation reagents
Fuerstenau, D.W. (Univ of California at Berkeley, United States); Herrera-Urbina, R. Source: Adv Coal Miner ProcessUsing Flotation Proc Eng Found Conf, p 3-18, 1989, Adv Coal Miner Process Using Flotation Proc Eng Found ConfDatabase: Compendex
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100. The effect of collectors and their interactions with depressants on the behaviour of thefroth phase in flotation
Bradshaw, D.J. (Mineral Processing Research Unit, Department of Chemical Engineering, University of Cape Town,Rondebosch, Cape Town, South Africa); Harris, P.J.; O'Connor, C.T. Source: Australasian Institute of Mining andMetallurgy Publication Series, p 329-333, 2005, Centenary of Flotation Symposium - Proceedings
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101. Research on digital image processing of coal flotation forth (I) - The liner neighboralgorithm for extracting features of digital coal flotation froth image
Liu, Wen-Li (Dept. of Chem. and Environ. Eng., China Univ. of Mining and Technol., Beijing 100083, China); Lu,
Mai-Xi; Wang, Zhen-Chong; Wang, Yong; Wang, Fan Source: Zhongguo Kuangye Daxue Xuebao/Journal of ChinaUniversity of Mining & Technology, v 31, n 2, p 120-123, March 2002 Language: Chinese
Database: Compendex
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102. Flotation Research of a Fluorite Ore
Weijun Peng (Sch. of Resources & Environ. Eng., Wuhan Univ. of Technol., Wuhan, China); Lingyan Zhang; Lili Bai;Yangshuai Qiu Source: Applied Mechanics and Materials, v 539, p 781-4, 2014
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103. Research on dosage matching for gold and antimony froth flotation based on roughsets and case-based reasoning
Xu Degang (Coll. of Inf. Sci. & Eng., Central South Univ., Chang Shang, China); Zhou Wei; Wang Xiaoli; Hu Yang;Xie Yongfang; Yang Chunhua Source: 2015 27th Chinese Control and Decision Conference (CCDC), p 766-71, 2015Language: Chinese
Database: Inspec
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104. Flotation separation of the aluminosilicates from diaspore by a Gemini cationic
collector
Xia, Liuyin (School of Chemistry and Chemical Engineering, Central South University, Changsha, 410083, China);Zhong, Hong; Liu, Guangyi; Huang, Zhiqiang; Chang, Qingwei Source: International Journal of Mineral Processing, v92, n 1-2, p 74-83, July 1, 2009
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105. Comparative studies on flotation of illite, pyrophyllite and kaolinite with Gemini andconventional cationic surfactants
XIA, Liu-yin (School of Chemical Engineering and Technology, Tianjin University, Tianjin, 300072, China); ZHONG,Hong; LIU, Guang-yi; HUANG, Zhi-qiang; CHANG, Qing-wei; LI, Xin-gang Source: Transactions of Nonferrous MetalsSociety of China (English Edition), v 19, n 2, p 446-453, April 2009
Database: Compendex
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106. Component based software design and development of froth flotation visual
monitoring system
Zhaohui, Tang (School of Information Science and Engineering, Central South University, Changsha 410083, China);Heng, Liu; Jinping, Liu; Weihua, Gui Source: 2013 25th Chinese Control and Decision Conference, CCDC 2013, p827-831, 2013, 2013 25th Chinese Control and Decision Conference, CCDC 2013 Language: Chinese
Database: Compendex
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107. Component Based Software Design and Development of Froth Flotation Visual
Monitoring System
Tang Zhaohui (Sch. of Inf. Sci. & Eng., Central South Univ., Changsha, China); Liu Heng; Liu Jinping; Gui WeihuaSource: 2013 25th Chinese Control and Decision Conference (CCDC 2013), p 827-31, 2013
Database: Inspec
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108. Mineral flotation and periodic table of chemical element (II)
Zhu, Yimin (Hunan Research Institute of Nonferrous Non-ferrous, Department of Mineral Processing Metals, 281Furong South Road, Changsha, China); Zhou, J. Source: 26th International Mineral Processing Congress, IMPC
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