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Dive into the research topics where Sheng Guodong is active.

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Featured researches published by Sheng Guodong.


Science China-chemistry | 2012

Adsorption of Eu(III) on titanate nanotubes studied by a combination of batch and EXAFS technique

Sheng Guodong; Yang Shitong; Zhao DongLin; Sheng Jiang; Wang Xiangke

The effects of pH, contact time and natural organic ligands on radionuclide Eu(III) adsorption and mechanism on titanate nanotubes (TNTs) are studied by a combination of batch and extended X-ray absorption fine structure (EXAFS) techniques. Macroscopic measurements show that the adsorption is ionic strength dependent at pH < 6.0, but ionic strength independent at pH > 6.0. The presence of humic acid (HA) / fulvic acid (FA) increases Eu(III) adsorption on TNTs at low pH, but reduces Eu(III) adsorption at high pH. The results of EXAFS analysis indicate that Eu(III) adsorption on TNTs is dominated by outer-sphere surface complexation at pH < 6.0, whereas by inner-sphere surface complexation at pH > 6.0. At pH < 6.0, Eu(III) consists of ∼ 9 O atoms at REu-O ≈ 2.40 Å in the first coordination sphere, and a decrease in NEu-O with increasing pH indicates the introduction of more asymmetry in the first sphere of adsorbed Eu(III). At long contact time or high pH values, the Eu(III) consists of ∼2 Eu at REu-Eu ≈ 3.60 Å and ∼ 1 Ti at REu-Ti ≈ 4.40 Å, indicating the formation of inner-sphere surface complexation, surface precipitation or surface polymers. Surface adsorbed HA/FA on TNTs modifies the species of adsorbed Eu(III) as well as the local atomic structures of adsorbed Eu(III) on HA/FA-TNT hybrids. Adsorbed Eu(III) on HA/FA-TNT hybrids forms both ligand-bridging ternary surface complexes (Eu-HA/FA-TNTs) as well as surface complexes in which Eu(III) remains directly bound to TNT surface hydroxyl groups (i.e., binary Eu-TNTs or Eu-bridging ternary surface complexes (HA/FA-Eu-TNTs)). The findings in this work are important to describe Eu(III) interaction with nanomaterials at molecular level and will help to improve the understanding of Eu(III) physicochemical behavior in the natural environment.


Science China-chemistry | 2010

Sorption of Eu(III) on GMZ bentonite in the absence/presence of humic acid studied by batch and XAFS techniques

Hu Jun; Xie Zhi; He Bo; Sheng Guodong; Chen Changlun; Li Jiaxing; Chen YiXue; Wang Xiangke


Archive | 2016

Purification that uranium pollutes groundwater detects purifier

Hu Baowei; Sheng Guodong


Archive | 2016

Device for treating organo-chlorine pesticide contaminated soil through cooperation of plasma and zero-valent iron

Hu Baowei; Sheng Guodong


Archive | 2016

Detection device for performance of soil-polluted permeable reactive wall

Hu Baowei; Sheng Guodong


Archive | 2017

Non-heat plasma purification system for soil contaminated by polybrominated diphenyl ethers

Hu Baowei; Sheng Guodong


Archive | 2017

Chemical reduction and biological reduction system for repairing radioactive contaminated soil

Hu Baowei; Sheng Guodong


Chemical Engineering Journal | 2017

グラフェン酸化物,Cu(II),およびMg/Al層状複水酸化物の相互作用への巨視的および分光学的洞察【Powered by NICT】

Hu Baowei; Huang Chengcai; Li Xue; Sheng Guodong; Li Hui; Ren Xuemei; Ma Jingyuan; Wang Jin; Huang Yuying


Archive | 2016

System for treating dyestuff contaminated soil through synergy of plasma and photo-catalytic oxidation

Sheng Guodong; Hu Baowei


Archive | 2016

Detection apparatus for pollute soil permeable reaction wall performance

Hu Baowei; Sheng Guodong

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Wang Xiangke

Chinese Academy of Sciences

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Li Jiaxing

North China Electric Power University

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Huang Yuying

Chinese Academy of Sciences

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Sheng Jiang

Chinese Academy of Sciences

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Yang Shitong

Chinese Academy of Sciences

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Zhao DongLin

Chinese Academy of Sciences

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