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土壤胶体与悬浮液中Fe/Al氧化物的双电层之间的相互作用。

Interaction between electrical double layers of soil colloids and Fe/Al oxides in suspensions.

作者信息

Hou Tao, Xu Renkou, Tiwari Diwakar, Zhao Anzhen

机构信息

State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science, Chinese Academy of Sciences, P.O. Box 821, Nanjing, China.

出版信息

J Colloid Interface Sci. 2007 Jun 15;310(2):670-4. doi: 10.1016/j.jcis.2007.02.035. Epub 2007 Mar 26.

Abstract

Phyllosilicates with net negative surface charge and Fe/Al oxides with net positive surface charge coexist in variable-charge soils, and the interaction between these oppositely charged particles affects the stability of mixed colloids, aggregation, and even the surface chemical properties of variable-charge soils. The interaction of the diffuse layers of electrical double layers between the negatively charged soil colloidal particles and the positively charged particles of goethite or gamma-Al(2)O(3) was investigated in this article through the comparison of zeta potentials between single-soil colloidal systems and binary systems containing soil colloids and Fe/Al oxides. The results showed that the presence of goethite and gamma-Al(2)O(3) increased the zeta potential of the binary system containing soil colloids and Fe/Al oxides, which clearly suggests the overlapping of the diffuse layers in soil colloids and Fe/Al oxides. The overlapping of the diffuse layers leads to a decrease in the effective negative charge density on soil colloid and thus causes a shift of pH-zeta potential curves toward the more positive-value side. The interaction of the electrical double layers is also related to the charge characteristics on the Fe/Al oxides: the higher the positive charge density on Fe/Al oxides, the stronger the interaction of the electrical double layers between the soil colloid particles and the Fe/Al oxides.

摘要

具有净负表面电荷的层状硅酸盐和具有净正表面电荷的铁/铝氧化物共存于可变电荷土壤中,这些带相反电荷的颗粒之间的相互作用会影响混合胶体的稳定性、团聚作用,甚至可变电荷土壤的表面化学性质。本文通过比较单一土壤胶体体系与包含土壤胶体和铁/铝氧化物的二元体系之间的zeta电位,研究了带负电荷的土壤胶体颗粒与针铁矿或γ-Al(2)O(3)带正电荷颗粒之间双电层扩散层的相互作用。结果表明,针铁矿和γ-Al(2)O(3)的存在增加了包含土壤胶体和铁/铝氧化物的二元体系的zeta电位,这清楚地表明了土壤胶体和铁/铝氧化物中扩散层的重叠。扩散层的重叠导致土壤胶体上有效负电荷密度降低,从而使pH-zeta电位曲线向更正的值一侧移动。双电层的相互作用还与铁/铝氧化物上的电荷特性有关:铁/铝氧化物上的正电荷密度越高,土壤胶体颗粒与铁/铝氧化物之间双电层的相互作用越强。

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