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熔盐是盐类物质熔化形成的熔融状液体,高温熔盐具有许多实用性的优点.全面综述了高温熔盐体系的优点、分类、应用以及研究进展.以各类高温熔盐体系为出发点,着重介绍了其应用领域、典型体系以及最近研究进展.提出了高温熔盐在使用过程中存在的问题并展望了其发展趋势.

参考文献

[1] 刘鹏;童叶翔;杨绮琴.熔盐体系及有关应用的新进展[J].电化学,2007(4):351-359.
[2] 梁寒冰;张丽鹏;于先进.铝锰合金电解法制备的研究进展[J].材料导报,2010(z2):208-212.
[3] Hani Tiznobaik;Donghyun Shin.Enhanced specific heat capacity of high-temperature molten salt-based nanofluids[J].International Journal of Heat and Mass Transfer,20132(2):542-548.
[4] V. Ignatiev;O. Feynberg;I. Gnidoi;A. Merzlyakov;A. Surenkov;V. Uglov;A. Zagnitko;V. Subbotin;I. Sannikov;A. Toropov;V. Afonichkin;A. Bovet;V. Khokhlov;V. Shishkin;M. Kormilitsyn;A. Lizin;A. Osipenko.Molten salt actinide recycler and transforming system without and with Th-U support: Fuel cycle flexibility and key material properties[J].Annals of nuclear energy,2014Feb.(Feb.):408-420.
[5] R.E. Nygren;T.D. Rognlien;M.E. Rensink;S.S. Smolentsev;M.Z. Youssef;M.E. Sawan;B.J. Merrill;C. Eberle;RJ. Fogarty;B.E. Nelson;D.K. Sze;R. Majeski.A fusion reactor design with a liquid first wall and divertor[J].Fusion engineering and design,20041/3(1/3):181-221.
[6] Yan-Zhen Zheng;Mi-Lin Zhang.Preparation and electrochemical properties of nickel oxide by molten-salt synthesis[J].Materials Letters,200718(18):3967-3969.
[7] 石忠宁;李敏;李兰兰;高炳亮;胡宪伟;王兆文.氟化物熔盐体系中Mg2+和B3+的电化学沉积行为[J].中国有色金属学报(英文版),2011(7):1655-1659.
[8] Lijin Xie;Zaimei Liu;Jianbo Zhang;Junfeng Ma.Preparation of a novel Bi_(3.64)Mo_(0.36)O_(6.55) nanophotocatalyst by molten salt method and evaluation for photocatalytic decomposition of rhodamine B[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,20101(1):159-162.
[9] Zhong, C.;He, M.F.;Liu, L.;Chen, Y.J.;Shen, B.;Wu, Y.T.;Deng, Y.D.;Hu, W.B..Formation of an aluminum-alloyed coating on AZ91D magnesium alloy in molten salts at lower temperature[J].Surface & Coatings Technology,20107(7):2412-2418.
[10] 吴大兴;杨川;高国庆;周海;黄楠.对硼砂盐液中钢件渗钒机理的研究[J].铁道学报,1988(02):110.
[11] 蔺涛涛 .几种热作模具材料表面TD渗铬的工艺研究[D].武汉理工大学,2010.
[12] 张来启 .内热式中性盐浴渗钛和渗钒的研究[D].山东工业大学,1992.
[13] 刘秀娟;王华昌;李东伟;吴彦西.盐浴组成对TD法盐浴渗钒涂层性能的影响[J].热加工工艺,2007(2):41-43.
[14] 孙李平;吴玉庭;马重芳.太阳能高温蓄热熔融盐优选的实验研究[J].太阳能学报,2008(9):1092-1095.
[15] 吴玉庭;朱建坤;张丽娜;马重芳.高温熔盐的制备及实验研究[J].北京工业大学学报,2007(1):62-66.
[16] 胡宝华;丁静;魏小兰;彭强;廖敏.高温熔盐的热物性测试及热稳定性分析[J].无机盐工业,2010(1):22-24.
[17] 邓小红;李风;邹立清;刘岗;马永.四元氯盐的制备及其腐蚀性[J].材料科学与工程学报,2014(4):587-591.
[18] Hyun-Suk Choo;Kwan-Young Lee;Yun-Sung Kim.Synthesis of Ni_3Al intermetallic powder in eutectic molten salts[J].Intermetallics,20052(2):157-162.
[19] 张小联;赵敏寿;官素珍.YCl3-NaCl·KCl熔体中Y3+在钼和镍电极上的电极过程[J].中国稀土学报,1991(4):302-305.
[20] 刘柏禄.稀土金属熔盐电解技术进展[J].世界有色金属,2009(12):75-76.
[21] 刘奎仁 .钕电解熔盐性质及电极过程研究[D].东北大学,2001.
[22] 李爽 .熔盐电脱氧制备RENi5-xAlx合金[D].东北大学,2011.
[23] Hirofumi Ebe;Mikito Ueda;Toshiaki Ohtsuka.Electrodeposition of Sb, Bi, Te, and their alloys in AlCl{sub}3-NaCl-KCl molten salt[J].Electrochimica Acta,20071(1):100-105.
[24] 核燃料后处理技术发展及其放射化学问题[J].化学进展,2011(7):1289-1294.
[25] Harold F.Mcfarlane;Michael J.Lineberry.The IFR fuel cycle demonstration[J].Progress in Nuclear Energy,19971/2(1/2):155-174.
[26] 沈向阳;丁静;彭强;杨建平.高温熔盐在太阳能热发电中的应用[J].广东化工,2007(11):49-52.
[27] 赵立忠.氟化物体系熔盐电解法制取镧铈镨[J].稀土,1986(06):44.
[28] 孟黎清.燃料电池的历史和现状[J].电力学报,2002(02):99-104.
[29] Kourkova L;Sadovska G.Heat capacity, enthalpy and entropy of Li2CO3 at 303.15-563.15 K[J].Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems,20071(1):80-81.
[30] 程晓敏;陶冰梅;朱闯;李元元.四元碳酸盐相变储热材料的制备及热物性研究[J].化工新型材料,2014(6):49-51.
[31] JUN MATSUNAMI;SHINYA YOSHIDA;YOSHINORI OKU.COAL GASIFICATION BY CO_2 GAS BUBBLING IN MOLTEN SALT FOR SOLAR/FOSSIL ENERGY HYBRIDIZATION[J].Solar Energy,20003(3):257-261.
[32] Brandon J. Hathaway;Jane H. Davidson;David B. Kittelson.Solar Gasification of Biomass: Kinetics of Pyrolysis and Steam Gasification in Molten Salt[J].Journal of Solar Energy Engineering,20112(2):021011-1-021011-9.
[33] 彭强;魏小兰;丁静;杨建平;杨晓西.多元混合熔融盐的制备及其性能研究[J].太阳能学报,2009(12):1621-1626.
[34] Justin W. Raade;David Padowitz.Development of Molten Salt Heat Transfer Fluid With Low Melting Point and High Thermal Stability[J].Journal of Solar Energy Engineering,20113(3):031013-1-031013-6.
[35] 任雪潭;刘帅.熔盐法制备掺钕榍石[J].人工晶体学报,2014(6):1540-1543.
[36] 赵世玺;李强.熔盐法制备PMN-PT弛豫铁电陶瓷的显微结构及性能[J].深圳特区科技,2005(z1):33-38.
[37] 卢旭东;陈涛;李光瑞;郭策安;郝清伟.镍基单晶合金在900℃硫酸盐熔盐中的热腐蚀行为[J].电镀与精饰,2012(8):6-9.
[38] 何小凤;李运刚;田薇;梁精龙.SiO2在KCl-NaCl-NaF体系中的溶解度及溶解机理[J].中国有色金属学报,2008(5):929-933.
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