Zhihua Xiao
Hunan University
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Featured researches published by Zhihua Xiao.
Chemosphere | 2015
Xingzhong Yuan; Lijian Leng; Huajun Huang; Xiaohong Chen; Hou Wang; Zhihua Xiao; Yunbo Zhai; Hongmei Chen; Guangming Zeng
Liquefaction bio-oil (LBO) produced with ethanol (or acetone) as the solvent and pyrolysis bio-oil (PBO) produced at 550°C (or 850°C) from sewage sludge (SS) were produced, and were characterized and evaluated in terms of their heavy metal (HM) composition. The total concentration, speciation and leaching characteristic of HMs (Cu, Cr, Pb, Zn, Cd, and Ni) in both LBO and PBO were investigated. The total concentration and exchangeable fraction of Zn and Ni in bio-oils were at surprisingly high levels. Quantitative risk assessment of HM in bio-oils was performed by the method of risk assessment code (RAC), potential ecological risk index (PERI) and geo-accumulation index (GAI). Ni in bio-oil produced by pyrolysis at 850°C (PBO850) and Zn in bio-oil by liquefaction at 360°C with ethanol as solvent (LBO-360E) were evaluated to possess very high risk to the environment according to RAC. Additionally, Cd in PBO850 and LBO-360E were evaluated by PERI to have very high risk and high risk, respectively, while Cd in all bio-oils was assessed moderately contaminated according to GAI.
Science of The Total Environment | 2016
Fei Li; Guangming Zeng; Wenchu Liu; Xiaolong Huang; Zhihua Xiao; Haipeng Wu; Yanling Gu; Xue Li; Xiaoxiao He; Yan He
Modified eco-risk assessment method (MEAM) integrated with the hierarchical bioavailability determined by the fraction detection of Cd, Pb, Zn, Cu, Cr in road dust samples and the local population distribution derived from the local land use map, was proposed to make the hierarchical eco-risk management strategy in Xiandao District (XDD), China. The geo-accumulation index (Igeo), the original potential eco-risk index (Er(i)) and the modified eco-risk assessment index (MEAI) were used to identify the priority pollutant. Compared with the Hunan soil background values, evaluated metal concentrations were found to different extent. The results of mean Igeo, Er(i) and bioavailability of studied metals revealed the following orders: Cd>Pb ≈ Zn>Cu ≈ Cr, Cd>Pb>Cu>Cr>Zn and Cd>Zn>Cu ≈ Pb>Cr, respectively. Therefore, Cd was regarded as the priority pollutant. To identify the priority areas taking into account cost consideration, the hierarchical risk map based on the results of the modified eco-risk assessment index with overlay of the population density map was needed and made. The west and partly south areas of XDD were under higher eco-risk generally. Moreover, the whole XDD area was divided into 4 area categories with different management priorities based on the possibility of occurrence of eco-risk, and the hierarchical risk management strategy associated with protecting local population was suggested to facilitate allocation of funds for risk management.
Science of The Total Environment | 2015
Zhihua Xiao; Xingzhong Yuan; Hui Li; Longbo Jiang; Lijian Leng; Xiaohong Chen; Guangming Zeng; Fei Li; Liang Cao
Combustion of pelletized municipal sewage sludge (MSS) can generate pestilent byproducts: fly ash and slag. Comparisons of heavy metal sequential extraction results among MSS, fly ash and slag showed that after combustion, the bioavailable heavy metal fractions (acid soluble/exchangeable, reducible and oxidizable fractions) were mostly transformed into the very stable heavy metal fractions (residual fractions). On the other hand, the results of toxicity characteristic leaching procedure (TCLP), diethylenetriamine pentaacetic acid and HCl extraction (phyto-accessibility assessment) demonstrated that the mobility and toxicity of heavy metals were greatly reduced. The direct and long-term bioavailability and eco-toxicity of heavy metals in fly ash and slag were relieved, which implied that combustion of pelletized MSS could be a promising and completely safe disposal technology for MSS treatment.
Bioresource Technology | 2015
Liang Cao; Xingzhong Yuan; Hui Li; Changzhu Li; Zhihua Xiao; Longbo Jiang; Binbin Huang; Zhihong Xiao; Xiaohong Chen; Hou Wang; Guangming Zeng
In this study, complementary of torrefaction and co-pelletization for biomass pellets production was investigated. Two kinds of biomass materials were torrefied and mixed with oil cake for co-pelletization. The energy consumption during pelletization and pellet characteristics including moisture absorption, pellet density, pellet strength and combustion characteristic, were evaluated. It was shown that torrefaction improved the characteristics of pellets with high heating values, low moisture absorption and well combustion characteristic. Furthermore, co-pelletization between torrefied biomass and cater bean cake can reduce several negative effects of torrefaction such as high energy consumption, low pellet density and strength. The optimal conditions for energy consumption and pellet strength were torrefied at 270°C and a blending with 15% castor bean cake for both biomass materials. The present study indicated that compelmentary performances of the torrefaction and co-pelletization with castor bean cake provide a promising alternative for fuel production from biomass and oil cake.
Chemical Engineering Journal | 2016
Yifu Li; Xingzhong Yuan; Zhibin Wu; Hou Wang; Zhihua Xiao; Yan Wu; Xiaohong Chen; Guangming Zeng
Energy Conversion and Management | 2015
Longbo Jiang; Xingzhong Yuan; Hui Li; Zhihua Xiao; Jie Liang; Hou Wang; Zhibin Wu; Xiaohong Chen; Guangming Zeng
Fuel Processing Technology | 2016
Longbo Jiang; Xingzhong Yuan; Hui Li; Xiaohong Chen; Zhihua Xiao; Jie Liang; Lijian Leng; Zhi Guo; Guangming Zeng
Fuel | 2015
Lijian Leng; Xingzhong Yuan; Guangming Zeng; Xiaohong Chen; Hou Wang; Hui Li; Lihuan Fu; Zhihua Xiao; Longbo Jiang; Cui Lai
Environmental Science and Pollution Research | 2016
Xingzhong Yuan; Zhibin Wu; Hua Zhong; Hou Wang; Xiaohong Chen; Lijian Leng; Longbo Jiang; Zhihua Xiao; Guangming Zeng
Energy | 2015
Zhihua Xiao; Xingzhong Yuan; Longbo Jiang; Xiaohong Chen; Hui Li; Guangming Zeng; Lijian Leng; Hou Wang; Huajun Huang