[1] Li H, Hsieh M K, Chien S H, et al. Control of mineral scale deposition in cooling systems using secondary-treated municipal wastewater[J]. Water Research, 2011, 45(2):748-760.
[2] 叶晓林, 刘远。 工业循环冷却水系统正磷含量对系统的影响[J]. 科技传播, 2012(14):96-98.
[3] Touir R, Dkhireche N, Touhami M E, et al. Study of phosphonate addition and hydrodynamic conditions on ordinary steel corrosion inhibition in simulated cooling water[J]. Materials Chemistry and Physics, 2010, 122(1):1-9.
[4] Nowack B. Environmental chemistry of phosphonates[J]. Water Re- search, 2003, 37(11):2533-2546.
[5] Steber J, Wierich P. Properties of aminotris(methylenephosphonate) affecting its environmental fate:Degradability, sludge adsorption, mobility in soils, and bioconcentration[J]. Chemosphere, 1987, 16(6):1323-1337.
[6] Fischer K. Distribution and elimination of HEDP in aquatic test sy- stems[J]. Water Research, 1993, 27(3):485-493.
[7] Lesueur C, Pfeffer M, Fuerhacker M. Photodegradation of phosphona- tes in water[J]. Chemosphere, 2005, 59(5):685-691.
[8] Matthus E, De Oude N T, Bolte M, et al. Photodegradation of ferric ethylenediaminetetra (methylenephosphonic acid)(EDTMP) in aque- ous solution[J]. Water Research, 1989, 23(7):845-851.
[9] Martell A E, Motekaitis R J, Fried A R, et al. Thermal decomposition of EDTA, NTA, and nitrilotrimethylenephosphonic acid in aqueous solution[J]. Canadian Journal of Chemistry, 1975, 53(22):3471- 3476.
[10] Di Marco V, Kilyen M, Jakusch T. Complexation properties of ethyle- nediaminetetramethylene-phosphonic acid(EDTMP)with Al(Ⅲ) and VIVO[J]. European Journal of Inorganic Chemistry, 2004, 28 (12):2524-2532.
[11] 潘一, 王晓珍, 邓丹, 等。 循环冷却水含磷阻垢剂的研究进展[J]. 当代化工, 2013, 41(11):1232-1235.
[12] Klinger J, Sacher F, Brauch H J, et al. Behavior of phosphonic acids during drinking water treatment[J]. VomWasser, 1998, 91(6):15-27.
[13] Klinger J, Lang M, Sacher F, et al. Formation of glyphosate and AMPA during ozonation of waters containing ethylenediaminetetra(methy- lenephosphonic acid)[J]. Ozone Science and Engineering, 1998, 20(2):99-110.
[14] 张雅君, 许萍, 刘晓冬, 等。 再生水用于工业循环冷却水系统中杀菌剂效果研究[J]. 给水排水, 2013, 38(12): 61-65.
[15] Schowanek D, Verstraete W. Hydrolysis and free radial mediated degradation of phosphonates[J]. Journal of Environmental Quality, 1991, 20(4):769-776.
[16] Nowack B, Stone A T. Degradation of nitrilotris(methylenephospho- nic acid) and related (amino)phosphonate chelating agents in the presence of manganese and molecular oxygen[J]. Environmental Science & Technology, 2000, 34(22):4759-4765.
[17] Nowack B. Determination of phosphonic acid breakdown products by high-performance liquid chromatography after derivatization[J]. Journal of Chromatography A, 2002, 942(1):185-190.
[18] Horiguchi M, Kandatstu M. Isolation of 2-aminoethane phosphonic acid from rumen protozoa[J]. Nature, 1959, 18(4):901-902.
[19] Daughton C G, Cook A M, Alexander M. Bacterial conversion of alkyl- phosphonates to natural products via carbon-phosphorus bond clea- vage[J]. Journal of Agricultural and Food Chemistry, 1979, 27(6): 1375-1382.
[20] Horstmann B, Grohmann A. Investigations into the biodegradability of phosphonates[J]. VomWasser, 1988, 70(8):163-178.
[21] Nowack B. The behavior of phosphonates in wastewater treatment plants of Switzerland[J]. Water Research, 1998, 32(4):1271-1279.
[22] Schowanek D, Verstraete W. Phosphonate utilization by bacterial cultures and enrichments from environmental samples[J]. Applied and Environmental Microbiology, 1990, 56(4):895-903.
[23] Schowanek D, Verstraete W. Phosphonate utilization by bacteria in the presence of alternative phosphorus sources[J]. Biodegradation, 1990, 1(1):43-53.
[24] Vandepitte V. Eco-physiological aspects of phosphonates and their biodegradation in the environment[J]. Chemosphere, 1995, 21(6): 32-37.
[25] Raschke H, Rast H G, Kleinstck R, et al. Utilization of 2-phosphono- butane-1, 2, 3-tricarboxylic acid as source of phosphorous by envi- ronmental bacterial Isolates[J]. Chemosphere, 1994, 29(1):68-81.
[26] Liu W, Chien S H, Dzombak D A, et al. Mineral scaling mitigation in cooling systems using tertiary-treated municipal wastewater[J]. Wa- ter Research, 2012, 46(14):4488-4498.
[27] Hsieh M K, Li H, Chien S H, et al. Corrosion control when using secondary treated municipal wastewater as alternative makeup water for cooling tower systems[J]. Water Environment Research, 2010, 82(12):2346-2356.
[28] Zhang Bingru, Zhang Li, Li Fengting, et al. Testing the formation of Ca-phosphonate precipitates and evaluating the anionic polymers as Ca-phosphonate precipitates and CaCO3 scale inhibitor in simulated cooling water[J]. Corrosion Science, 2010, 52(12):3883-3890. |