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Featured researches published by Fan Ridong.


Journal of Central South University | 2013

Engineering behavior and sedimentation behavior of lead contaminated soil-bentonite vertical cutoff wall backfills

Fan Ridong; Liu Songyu; Chen Zuobo

Soil-bentonite (SB) vertical slurry cutoff wall is a useful treatment for urban industrial contaminated sites. Due to the clay-heavy metal interaction, significant changes would occur in the engineering behavior of SB cutoff walls. However, previous study is limited to kaolinitic soils or montmorillonitic soils along using solidum chloride and/or calcium chloride as target contaminant. In this work, a series of oedometer tests were conducted to investigate the effects of lead (Pb) on the compressibility and the permeability of kaolin-bentonite (KB) mixtures, a simplified model of in-situ SB cutoff wall backfills. In addition, sedimentation tests were conducted to interpret the mechanism controlling the change of compressibility and permeability from the perspective of soil fabric. The Pb-contaminated KB mixtures for oedometer tests and sedimentation tests were prepared with bentonite contents of 0, 5%, 10%, and 15% by dry mass, and they were mixed with pre-determined volume of lead nitrate solution based on designed Pb concentration and solid-to-solution ratio. The Pb concentration was controlled as 0, 0.1, 0.5, 1.0, 5.0, 10, and 50 mg/g with a solid-to-solution ratio of approximate 0.5. The prepared KB mixtures with bentonite contents of 0, 5%, and 10% were chosen for the sedimentation tests. They were freeze-dried and mixed with DDI with a solid-to-solution ratio of 10 g/100 mL. The results indicate that pH, compressibility, and permeability of KB mixture changed considerably with respect to Pb concentration. It is concluded that the fabric of KB mixture, depending on the particle-particle interaction subjected to different ranges of pH and Pb concentration, governs the sedimentation behavior and permeability. The results of liquid limit (wL) cannot be explained in terms of the sedimentation behavior since it is only ionic-dependent.


Archive | 2015

High-efficiency impermeable polymer bentonite nano composite material and preparation method thereof

Du Yanjun; Shen Shengqiang; Fan Ridong; Mei Danbing; Ren Weiwei


Archive | 2013

Device for simulating vertical isolation barrier of pollutant

Du Yanjun; Fan Ridong; Chen Zuobo


Archive | 2016

Preparation facilities of vertical isolation engineering protective screen material of normal position

Fan Ridong; Du Yanjun; Liu Songyu


Archive | 2014

Box-shaped composite steel sheet pile, vertical isolation engineering barrier and water-stop curtain

Du Yanjun; Li Renming; Fan Ridong; Yang Yuling


Archive | 2014

Conical slump barrel for loading bentonite separation wall material in slump test

Mei Danbing; Du Yanjun; Fan Ridong


Archive | 2013

Performance test device of cohesive soil specimen

Du Yanjun; Fan Ridong; Chen Zuobo


Archive | 2016

Preparation device and preparation method for in-situ vertical isolating engineering barrier material

Fan Ridong; Du Yanjun; Liu Songyu


Archive | 2015

Organic pollutant-resistant polymer bentonite nanocomposite material and preparation method thereof

Du Yanjun; Shen Shengqiang; Fan Ridong; Ren Weiwei; Mei Danbing


Archive | 2015

Polymer bentonite nanocomposite tolerant to heavy metal pollution and preparation method thereof

Du Yanjun; Shen Shengqiang; Fan Ridong; Ren Weiwei; Mei Danbing

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