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Al-Mg MMH溶胶和钠土悬浮体的相互作用机理 被引量:8

The Interaction Mechanism of Al-Mg MMH Sols with Na-montmorillonite Suspensions
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摘要 通过流变参数、电泳淌度和pH值的测定,研究了无机盐(CaCl_2、KCl、NaCl)和pH值对铝镁混合金属氢氧化物与钠土悬浮体间相互作用的影响.发现随着混合金属氢氧化物含量的增加,钠土体系的pH值逐渐降低,而动切力(YP)先上升,经最大值后逐渐下降;当钠土体系为NaCl所饱和时,相同混合金属氢氧化物加量下YP的上升幅度明显减小,在实验混合金属氢氧化物浓度范围内,YP未出现峰值。混合金属氢氧化物/钠土体系的YP随pH值的变化曲线呈抛物线形,加入相同浓度的无机盐,△YP、△pH(绝对值)按CaCl_2>KCl~NaCl次序递减。 The effects of inorganic salts(NaCl,KCl and CaCl2)and pH values on the interaction between Al-Mg MMH sol(aluminum magnesium mixed metal hydroxides)and Na-montmorillonite(Na-Mt)suspensions have been studied by the measurments of rheology,electrophoretic mobility and pH. The results show that the increase of MMH in Na-Mt suspensions produced an increase in YP(yield point)at first and then a decrease after a maximum but a gradual decrease in pH.The results are interpreted as meaning that the MMH sols can interact with Na-Mt suspensions through an ion exchange mechanism. In the presence of saturated NaCl,a much less change of YP and no YP maximum under the experimental concentrations of MMH can be explained by DLVO theory. Due to the effects of pH on ion exchange reaction the change of YP with pH of MMH/Na-Mt systems is in terms of parabolic curve.Inorganic salts lower YP and pH in the order of CaCl2>KCl~NaCl,and the order is found to be consistent with that for experimental estimates of the number of unit layers in face-to-face association. This would imply that the metallic ions must function as the exchangeable cations.
出处 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 1996年第9期1428-1432,共5页 Chemical Journal of Chinese Universities
关键词 金属氢氧化物 钠土悬浮体 流变学 Aluminum magnesium mixed metal hydroxides,Na-montomorillonite suspensions, Rheology
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