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铝盐溶液蒸发结晶过程中水解聚合形态转化研究 被引量:2

Conversion of hydrolysis-polymerization species in process of evaporation and crystallization of aluminum salt solutions
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摘要 通过研究电解法制备的聚合氯化铝溶液等温蒸发结晶过程中pH值、碱化度和铝盐水解形态分布随时间的变化,探讨了铝盐水解聚合形态与各种溶液因素的关系。结果表明:母液pH值和碱化度随蒸发时间的整体变化趋势相一致,共同影响着铝盐水解形态分布,母液中铝盐水解形态分布的变化也会导致体系pH值和碱化度的改变,铝盐水解聚合形态的转化是各种因素综合作用的结果。 Through the study of the variation of pH value, basicity, hydrolysis species distribution of aluminum salt solutions during the process of evaporation and crystallization of the polyaluminium chloride solutions prepared by electrolysis, the relationship between polymerization species of aluminum salt hydrolysis and solution factors were discussed. The results showed that: during the process of evaporation, the changing trend of the mother solution pH value was in accordance with that of the basicity, and they jointly influenced the aluminum salt hydrolysis species distribution. The change of the said distribution of the mother solution would lead to the pH and basicity change in the system, the conversion of the hydrolysis-polymerization species is the result of synthesis effect by various factors.
出处 《工业用水与废水》 CAS 2008年第2期66-68,共3页 Industrial Water & Wastewater
基金 国家自然科学基金(20563002) 内蒙古自然科学基金(200508010204) 内蒙古教育厅重点项目基金(ZD01070) 山西大同大学科研项目(2006467)
关键词 聚合氯化铝 水解聚合形态 “类龟式”Al13 polyaluminum chloride hydrolysis-polymerization species "tortoise-like" Al13
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  • 1Tang Hongxiao,Luan Zhaokun(State Key Laboratory of Environrnental Aquatic Chemistry, Research Center for Eco- Environmental Sciences,Chinese Academy of Sciences , Beijing100085 , China).Features and mechanism for coagulation-flocculation processes of polyaluminum chloride[J].Journal of Environmental Sciences,1995,7(2):204-211. 被引量:33
  • 2初永宝,高宝玉,岳钦艳,王燕,王曙光.聚合氯化铝中纳米Al_(13)形态的混凝效应[J].中国环境科学,2005,25(4):504-507. 被引量:9
  • 3SUN Zhong,ZHAO Hai-Dong,TONG Hong-Ge-Er,WANG Rui-Fen,ZHU Fan-Zhu.Formation and Structure of [Al_(13)(μ_3-OH)_6(μ_2-OH)_6(μ_2-OH)_(12)(H_2O)_(24)]Cl_(15)·13H_2O[J].Chinese Journal of Structural Chemistry,2006,25(10):1217-1227. 被引量:10
  • 4HUNTER D, ROSS D S. Evidence for a phytotoxic hydroxy - aluminum polymer in organic soil[J]. Science, 1991, 251:1056- 1058. 被引量:1
  • 5SPOSITO G. The environmental chemistry of aluminum[ M ]. Boca Raton, Florida: CRC Press, Inc. 2nd, 1995. 87- 114. 被引量:1
  • 6WANG C Y, BI S P. Advancement of studies on the formation of polynuclear hydroxyl aluminum species and their transformation laws in aqueous systems and soil solutions: a review[J ]. ACS Symposium Series, Washington D C: American Chemical Society, 2002, 822: 246-258. 被引量:1
  • 7IRVING H M, MILES M G, PETTIT L D. A study of problems in determining the stoicheiometric proton dissociation constants of complexes by potentiometric titrations using a glass electrode[J]. Anal Chim Acta, 1967, 38: 475- 488. 被引量:1
  • 8STOL R J, van HELDEN A K, BRUYN P L. Hydrolysis - precipitation studies of aluminum( Ⅲ ) solutions, 2: a kinetic study and model[J]. J Colloid Interface Sci, 1976, 57: 115- 131. 被引量:1
  • 9THOMPSON A R, KUNWAR A C, GUTOWSKY H S, et al. Oxygen - 17 and aluminium - 27 nuclear magnetic resonance spectroscopic investigations of aluminium( Ⅲ ) hydrolysis products[J]. J Chem Soc Dalton Trans, 1987, 2317 - 2322. 被引量:1
  • 10LETTERMAN R D, ASOLEKAR S R. Surface ionization of polynuclear species in Al( Ⅲ) hydrolysis - I, titration results[J].Wat Res, 1990, 24(8): 931 - 949. 被引量:1

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