[1] 王春云.超临界水分解二噁英类物质的技术状况及课题[J].化工科技动态,1998,14(8):38-39.
[2] Holgate H R. Funda mental kinetics and mechanisms of hydrogen oxidation in supercritical water [J]. Combust. Sci. Tech., 1993,88:369-397.
[3] 丁军委,等.超临界水氧化法处理含酚废水[J].环境污染与防治,2000,22(1):1-3.
[4] 向波涛,等.超临界水氧化法处理含硫废水研究[J].化工环保,1999,19(2):75-79.
[5] Portela J R, et al. Generalized Kinetic Models for Supercritical Water Oxidation of Cutting Oil Wastes[J]. J. Supercritical Fluids, 2001,21 (3): 135-145.
[6] Armando T Quitain, Muhammad Fisal. Low-molecular-weight carboxylic acids produced from hydrothermal treatment of organic wastes[J]. J. of Hazardous Materials,2002, B93: 209-220.
[7] Eiovanni Del Re, Gabriele Di Giacomo. Removal and destraction of oxic micropollution organic compounds from waste waters by a combined NF and supercritical water oxidation process [J]. Desalination, 2001, 138:61-64.
[8] 王春云.超临界流体洗净技术的原理及其应用[J].化工科技动态,1997,13(6):22-23.
[9] 张丽,等.超临界水氧化技术及其环境中材料的腐蚀研究现状[J].腐蚀科学与防护技术,2001,13(5):270-274.
[10] Mitton D B, et al. The Corrosion Behavior of Nickel-Base Alloys in SCWO Systems[C]. The Proceeding of the 5th International Symposium on Supercritical Fluids, Westin Atlanta North Atlanta,Georgia, USA, 2000. 18-12.
[11] 王涛,刘崇义,沈忠耀.超临界水氧化法去除废水COD的动力学研究[J].环境科学研究,1997,10(4):32-35.
[12] Shanableh. Supercritical water a useful medium for waster destruction[J]. Arab Gulf J. Sci. Res., 1996, 14(3):543-556.
[13] Motonbu Goto, et al. Supercritical water oxidation for the destruction of municipal excess sludge and alcohol distillery wastewater of molasses [J]. Supercritical Fluids, 1998,13: 277-282.
[14] Douglas Lilac W. Kinetics and mechanisms of styrene monomer recovery from waste polystyrene by supercritical water partial oxidation[J]. Advances in Environmental Research,2001, (6) :9- 16.
[15] 郭双生,尚传勋.国外受控生态生命保障系统的概念研究进展[J].航天医学与医学工程,1995,8(1):75-77.
[16] Takahashi Y, et al. The destruction of hazardous organic water materials[J]. Adv. Space Res., 1991,99(8): 483-487.
[17] 王涛,等.超临界水氧化法去除尿液中有机物的探索[J].航天医学与医学工程,1997,10(5):370-372.
[18] Kritzer P, Boukis N, Dinjus E. Review of the Corrosion of NickelBase Alloys and Stainless Steels in Strongly Oxidizing Pressurized High-Temperature Solutions at Subcritical and Supercritical Temperature[J]. Corrosion, 2000,56(11): 1 093-1 104.
[19] Kritzer P, Boukis N, Dinjus E. Transpassive Dissolution of Alloy625, Chromium, Nickel, and Molybdenum in High-Temperature Solutions Containing Hydrochloric Acid and Oxygen [J]. Corrosion,2000, 56(3) :265-272.
[20] 卢建树,等.几种合金在超临界水氧化苯酚中的腐蚀[J].材料研究学报,2002,16(1):41-45.
[21] Whiting M P, et al. Supercritical Water Oxidation of Organics Using a Mobile Surface[P]. US 5543057,1996.
[22] Yukihiko Matsumura, et al. Supercritical water oxidation of high concentrations of phenol[J]. Hazardous Materials, 2000, B73:245-254.
[23] Phillip E Savage, et al. Oxidation kinetics for methane: methanol mixtures in supercritical water[J]. J. Supercritical Fluids, 2000,17:155-170.
[24] 王涛,等.超临界水氧化法去除废水有机氮的工艺和动力学研究[J].化工学报,1997,48(5):639-644 |