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Experimental Study On The Mechanism Of Action Of Ionic Soil Stabilizer On Red Clay Of Wuhan
Abstract The reinforcement of cement and other traditional stabilizer not only waste aggregates, but also pollute the environment. New Ionic Soil Stabilizer (ISS) was used to reinforce the red clay in Wuhan. X-Ray Diffraction (XRD), Fourier Transfer Infra Red spectroscopy (FTIR), Cation Exchange Capacity (CEC), BET Surface Area (BET) and Zeta potential were performed before and after treatment with ISS. The test results indicated that (1) d001 of clay mineral becomes broad with smaller intensity, that (2) the strong adsorbed water film thins, that (3) CEC is reduced, that (4) BET surface area decreases. Finally the mechanism of action of Ionic Soil Stabilizer on red clay of Wuhan is analyzed from the aspects of CEC, the electric double layer and the adsorbed water.
Experimental Study On The Mechanism Of Action Of Ionic Soil Stabilizer On Red Clay Of Wuhan
Abstract The reinforcement of cement and other traditional stabilizer not only waste aggregates, but also pollute the environment. New Ionic Soil Stabilizer (ISS) was used to reinforce the red clay in Wuhan. X-Ray Diffraction (XRD), Fourier Transfer Infra Red spectroscopy (FTIR), Cation Exchange Capacity (CEC), BET Surface Area (BET) and Zeta potential were performed before and after treatment with ISS. The test results indicated that (1) d001 of clay mineral becomes broad with smaller intensity, that (2) the strong adsorbed water film thins, that (3) CEC is reduced, that (4) BET surface area decreases. Finally the mechanism of action of Ionic Soil Stabilizer on red clay of Wuhan is analyzed from the aspects of CEC, the electric double layer and the adsorbed water.
Experimental Study On The Mechanism Of Action Of Ionic Soil Stabilizer On Red Clay Of Wuhan
Xiang, Wei (Autor:in) / Cui, De-Shan (Autor:in) / Ai, Fei (Autor:in)
Advances in Environmental Geotechnics ; 781-785
01.01.2010
5 pages
Aufsatz/Kapitel (Buch)
Elektronische Ressource
Englisch
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