Zhuo Xiong
Huazhong University of Science and Technology
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Featured researches published by Zhuo Xiong.
Waste Management | 2017
Peng Ni; Zhuo Xiong; Chong Tian; Hailong Li; Yongchun Zhao; Junying Zhang; Chuguang Zheng
Due to the high cost of pure CO2, carbonation of MSWI fly ash has not been fully developed. It is essential to select a kind of reaction gas with rich CO2 instead of pure CO2. The CO2 uptake and leaching toxicity of heavy metals in three typical types of municipal solid waste incinerator (MSWI) fly ash were investigated with simulated oxy-fuel combustion flue gas under different reaction temperatures, which was compared with both pure CO2 and simulated air combustion flue gas. The CO2 uptake under simulated oxy-fuel combustion flue gas were similar to that of pure CO2. The leaching concentration of heavy metals in all MSWI fly ash samples, especially in ash from Changzhou, China (CZ), decreased after carbonation. Specifically, the leached Pb concentration of the CZ MSWI fly ash decreased 92% under oxy-fuel combustion flue gas, 95% under pure CO2 atmosphere and 84% under the air combustion flue gas. After carbonation, the leaching concentration of Pb was below the Chinese legal limit. The leaching concentration of Zn from CZ sample decreased 69% under oxy-fuel combustion flue gas, which of Cu, As, Cr and Hg decreased 25%, 33%, 11% and 21%, respectively. In the other two samples of Xuzhou, China (XZ) and Wuhan, China (WH), the leaching characteristics of heavy metals were similar to the CZ sample. The speciation of heavy metals was largely changed from the exchangeable to carbonated fraction because of the carbonation reaction under simulated oxy-fuel combustion flue gas. After carbonation reaction, most of heavy metals bound in carbonates became more stable and leached less. Therefore, oxy-fuel combustion flue gas could be a low-cost source for carbonation of MSWI fly ash.
Applied Catalysis B-environmental | 2017
Zhuo Xiong; Ze Lei; Chia-Chien Kuang; Xiaoxiang Chen; Bengen Gong; Yongchun Zhao; Junying Zhang; Chuguang Zheng; Jeffrey C.S. Wu
International Journal of Hydrogen Energy | 2015
Zhuo Xiong; Haibing Wang; Nuoyan Xu; Hailong Li; Baizeng Fang; Yongchun Zhao; Junying Zhang; Chuguang Zheng
Fuel Processing Technology | 2015
Zhuo Xiong; Yongchun Zhao; Junying Zhang; Chuguang Zheng
Physical Chemistry Chemical Physics | 2016
Zhuo Xiong; Ying Luo; Yongchun Zhao; Junying Zhang; Chuguang Zheng; Jeffrey C.S. Wu
International Journal of Hydrogen Energy | 2016
Xiaoxiang Chen; Zhuo Xiong; Yadi Qin; Bengen Gong; Chong Tian; Yongchun Zhao; Junying Zhang; Chuguang Zheng
Journal of CO 2 Utilization | 2017
Zhuo Xiong; Ze Lei; Zuwei Xu; Xiaoxiang Chen; Bengen Gong; Yongchun Zhao; Haibo Zhao; Junying Zhang; Chuguang Zheng
Catalysis Communications | 2017
Zhuo Xiong; Ze Lei; Xiaoxiang Chen; Bengen Gong; Yongchun Zhao; Junying Zhang; Chuguang Zheng; Jeffrey C.S. Wu
Applied Catalysis B-environmental | 2017
Zhuo Xiong; Ze Lei; Siming Ma; Xiaoxiang Chen; Bengen Gong; Yongchun Zhao; Junying Zhang; Chuguang Zheng; Jeffrey C.S. Wu
Archive | 2012
Yongchun Zhao; Zhuo Xiong; Junying Zhang; Yuan Yuan; Chuguang Zheng