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微波由于其特殊的能量传递和转换方式,作为一种绿色的加热方式已经被广泛应用于工业生产.概述了微波加热原理和作用参数,从研究手段、处理过程和应用成果等方面评述了近几年来微波选择性加热在辅助磨矿、强化还原以及辅助浸出等冶金过程应用中的最新进展;最后提出了其存在的问题并展望了应用前景.

参考文献

[1] 彭金辉;杨显万.微波能技术新应用[M].昆明:云南科学技术出版社,1997
[2] Paolo B .Specific heat,polarization and heat conduction in microwave heating systems:A no equilibrium thermodynamic point of view[J].Acta Materialia,2006,54:1843.
[3] Metaxas A C;Meredith R J.Industrial microwave heating[M].London:Peter Peregrinus,1993
[4] Hasted J B.Aqueous dielectrics[M].London:Chapman and Hall,1973
[5] Chan T T.Understanding microwave heating cavities arch tech[M].London:House,2000
[6] Thostenson E.T.;Chou T.-W. .Microwave processing:fundamentals and applications[J].Composites, Part A. Applied science and manufacturing,1999(9):1055-1071.
[7] Ford J D;Pei D C T .High temperature chemical processing via microwave absorption[J].Microwave Power,1967,2(02):61.
[8] David E. Clark;Diane C. Folz;Jon K. West .Processing materials with microwave energy[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2000(2):153-158.
[9] 黄铭 .微波与颗粒物质相互作用的机理及应用研究[D].昆明:昆明理工大学,2006.
[10] Kingmana S W;Jackson K;Bradshaw S M et al.An investigation into the influence of microwave treatment on mineral ore comminution[J].Powder Technology,2002,34:75.
[11] S.W.Kingman;W.Vorster .The influence of mineralogy on microwave assisted grinding[J].Minerals Engineering,2000(3):313-328.
[12] Whittles D N;Kingman S W;Reddish D J .Application of numerical modelling for prediction of the influence of power density on microwave-assisted breakage[J].International Journal of Mineral Processing,2003,68(1-4):71.
[13] Amankwah R K;Khan A U;Pickles C A et al.Improved grindability and gold liberation by microwave pretreatment of a freemilling gold ore[J].Miner Process Extr Metall,2005,114:30.
[14] Kingmnan S W;Jackson K;Cumbane A .Recent developments in microwave assisted comminution[J].International Journal of Mineral Processing,2004,74:71.
[15] J.B.SALSMAN;R.L.WILLIAMSON .SHORT-PULSE MICROWAVE TREATMENT OF DISSEMINATED SULFIDE ORES[J].Minerals Engineering,1996(1):43-54.
[16] Jones D A;Kingman S W;Whittles D N .The influence of microwave energy delivery method on strength reduction in ore samples[J].Chemical Engineering and Processing,2007,46:291.
[17] Bradshaw S;Louw W;Vander Merture C .Techno-economic considerations in the commercial microwave processing of mineral ores[J].Journal of Micro Power Electromagn Energy,2007,40:228.
[18] D. A. Jones;S. W. Kingman;D. N. Whittles .Understanding microwave assisted breakage[J].Minerals Engineering,2005(7):659-669.
[19] 陈津,刘浏,曾加庆,任瑞刚,刘金营.微波加热还原含碳铁矿粉试验研究[J].钢铁,2004(06):1-5.
[20] 陈津,刘浏,曾加庆,任瑞刚,刘金营.微波加热含碳铁矿粉还原矿相结构研究[J].电子显微学报,2005(02):114-119.
[21] R. M. KELLY;N. A. ROWSON .Microwave reduction of oxidised ilmenite concentrates[J].Minerals Engineering,1995(11):1427-1438.
[22] Harahsheh M A;Kingman S W .Microwave-assisted leaching:A review[J].Hydrometallurgy,2004,73(3-4):189.
[23] E.Haque .Microwave energy for mineral treatment process: a brief review[J].International Journal of Mineral Processing,1999(1):1-24.
[24] J H Huang,N A Rowson.An Application of Microwave Pre-oxidation in Improving Gold Recovery of a Refractory Gold Ore[J].稀有金属(英文版),2000(03):161-171.
[25] Olubambi P A;Potgieter J H;Hwang J Y et al.Influence ofmicrowave heating on the processing and dissolution beha-vior of low-grade complex sulphide ores[J].Hydrometallurgy,2007,89(1-2):127.
[26] Deveci H .Effect of particle size and shape of solids on the viability of acidophilic bacteria during mixing in stirred tank reactors[J].Hydrometallurgy,2004,71(3-4):385.
[27] Olubambi P A;Ndlovu S;Potgieter J H .Effects of ore mineralogy on microbial leaching of low-grade complex sulphide ores[J].Hydrometallurgy,2007,86(1-2):96.
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