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10篇 您的检索式:作者名="Shen Dekui"
    题名 作者 年代 出处 被引量
1Immobilization of Cu2+and Cd2+by earthworm manure derived biochar in acidic circumstance显示文摘Earthworm manure, the by-product obtained from the disposing of biowastes by earthworm breeding, is largely produced and employed as a feedstock for biochar preparation through pyrolysis. For repairing acidic soil or acidic electroplating effluent,biochar physicochemical properties would suffer from some changes like an acidic washing process, which hence affected its application functions. Pristine biochar(UBC)from pyrolysis of earthworm manure at 700°C and biochar treated by HCl(WBC) were comparatively investigated regarding their physicochemical properties, adsorption capability and adsorption mechanism of Cu^(2+) and Cd^(2+) from aqueous solution to explore the immobilization characteristics of biochar in acidic environment. After HCl treatment,the soluble ash content and phenolic-OH in the WBC sample was notably decreased against the increase of the carboxyl C_O, aromatic C_C and Si–O–Si, compared to that of UBC. All adsorption processes can be well described by Langmuir isotherm model. The calculated maximum adsorption capacity of Cu^(2+) and Cd^(2+) adsorption on UBC were 36.56 and 29.31 mg/g, respectively, which were higher than that of WBC(8.64 and 12.81 mg/g,respectively), indicating that HCl treatment significantly decreased biochar adsorption ability. Mechanism analysis revealed that alkali and alkaline earth metallic, salts(carbonates, phosphates and silicates), and surface functional groups were responsible for UBC adsorption, corresponding to ion exchange, precipitation and complexation,respectively. However, ion exchange made little contributions to WBC adsorption due to the great loss of soluble ash content. WBC adsorption was mainly attributed to the abundant exposure of silicates and surface functional groups(carboxyl C_O and aromatic C_C).Zhanghong Wang Fei Shen Dekui Shen Yahui Jiang Rui Xiao 2017Journal of Environmental Sciences2017,29,3:7
2Study on the pyrolytic behaviour of xylan-based hemicellulose using TG-FTIR and Py-GC-FTIR显示文摘Shen Dekui Gu S Bridgwater A V 2010Journal of Analytical and Applied Pyrolysis2010,87,2:1
3The mechanism for thermal decomposition of cellulose and its main products显示文摘Shen Dekui Gu S 2009Bioresource Technology2009,100,24:1
4Kinetic study on pyrolysis and combustion of wood under different oxygen concentrations by using TG-FTIR analysis 显示文摘Fang Mengxiang Shen Dekui Li Yingxu 2006Journal of Analytical and Applied Pyrolysis2006,,77:1
5The mechanism for thermal decomposition of cellulose and its main products显示文摘Shen Dekui Gu Sai 2009Bioresource Technology2009,100,24:1
6Structural analysis of lignin residue from black liquor and its thermal performance in TG-FTIR 显示文摘Hu Jun Xiao R Shen Dekui 2013Bioresource Technology2013,128,1:1
7Isolation and characterization of lignin in black liquor 显示文摘Shen Dekui Hu Jun Xiao Rui 2013Journal of Southeast University: Natural Science Edition2013,43,1:1
8Thermal degradation of xylan-based hemicellulose under oxidative atmosphere 显示文摘Shen Dekui Zhang Lanqing Xue Jiangtao 2015Carbohydrate Polymers2015,127,:1
9, Free Radical A- nalysis on Thermochemical Transformation of Lignin to Phenolic Compounds 显示文摘HU Jun SHEN Dekui XIAO Rui 2012Energy & Fuels2012,27,1:1
10, Structural a- nalysis of lignin residue from black liquor and its thermal performance in thermogravimetric-Fourier transform infra red spectroscopy 显示文摘HU Jun XIAO Ruin SHEN Dekui 2013Bioresource Technology2013,128,0:1
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