Jianying Liu
Chengdu University of Information Technology
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Publication
Featured researches published by Jianying Liu.
international conference on bioinformatics and biomedical engineering | 2008
Shengyu Liu; Pei Liu; Jin Gao; Jianying Liu; Zhixiang Ye; Chenghua Xu
The effects of organic acids on limestone dissolution rate were investigated by pH-stat method. The results showed that the dissolution rate of -60+80 mesh with 50 mmol/L acetic acid was the same as that of -300 mesh without organic acid. With the same concentration of acetic acid and benzoic acid, the former had stronger ability than the latter to increase the limestone dissolution. By increasing concentration of organic acid added, the granular limestone can be used as a desulfurizing reagent directly. Furthermore, the mechanism of organic acid promoting limestone dissolution was suggested.
international conference on energy and environment technology | 2009
Shengyu Liu; Bin Qu; Jin Gao; Jianying Liu; Zhixiang Ye; Chenghua Xu
A new wet FGD processes which SO2 was absorbed in the spray tower using granular limestone simultaneously adding acetic acid had been proposed. The main difference compared to conventional wet FGD process was to utilize granular limestone directly as a desulphurization reagent simultaneously adding acetic acid. Thus, the pulverizing of limestone, which causes power consumption, can be saved. Only using granular limestone¿210μm¿ directly as absorbent without acetic acid, SO2 removal efficiency and limestone utilization were too low respective 60.7% and 44%. Adding 10-30 mmol/L acetic acid, degree of desulphurization was increased to 95% and the limestone utilization was enhanced to 93.5%, comparison with fine limestone, the desulphurization efficiency and limestone utilization were respective 88% and 92.9% at the same operating conditions. Adding organic acid, buffer capacity of system was enhanced. And the influent factors such as the concentration of acetic acid, limestone slurry and SO2, residence time of flue gas were tested. The mechanism of acetic acid promoting SO2 absorption was suggested.
Synthesis and Reactivity in Inorganic Metal-organic and Nano-metal Chemistry | 2015
Jianying Liu; Ming Zhao; Chenghua Xu; Shengyu Liu; Xueqiao Zhang; Yaoqiang Chen
CeZrAl oxides (CZA) used as the support of Pd catalyst for purification of gasohol exhausts were synthesized by hydrothermal and coprecipitation method. CZA samples were characterized by N2 adsorption–desorption, XRD, H2–TPR, oxygen pulse adsorption, and XPS. The results show that the interactions between Pd and CZA with hydrothermal treatment lead to charge transfer from Pd species to Ce, which results in the presence of defect CeOx and more lattice oxygen in the catalyst. Catalytic tests demonstrate that hydrothermal treatment of CZA decreases the light-off temperature of propane, carbon monoxide, and ethanol by 50, 15, and 59°C, respectively.
Catalysis Communications | 2011
Chenghua Xu; Liangke Zheng; Danfeng Deng; Jianying Liu; Shengyu Liu
Reaction Kinetics, Mechanisms and Catalysis | 2012
Chunni Fan; Chenghua Xu; Chuanqi Liu; Zun-Yu Huang; Jianying Liu; Zhixiang Ye
Heteroatom Chemistry | 2012
Chuanqi Liu; Chenghua Xu; Tongwei Xia; Yan Guo; Jianying Liu
Heterocycles | 2012
Chenghua Xu; Chunni Fan; Chuanqi Liu; Zun-Yu Huang; Jianying Liu; Zhixiang Ye
Archive | 2008
Shengyu Liu; Zhixiang Ye; Jianying Liu; Yijin Yang; Yingchun Yang; Huaijin Yang
Heteroatom Chemistry | 2013
Yu Chen; Chenghua Xu; Chuanqi Liu; Xue Li; Jianying Liu; Yang Cao; Jie Yang
Chinese Chemical Letters | 2013
Xue Li; Chenghua Xu; Chuanqi Liu; Yu Chen; Jianying Liu