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2021年文章

[1] Guangming Bai, Tiantian Jiao, Chuhan Ren, Yaqing Zhang, Shiwei Wang, Xiaobin Wang, Xing Fan, Peng Liang *. Study on extract-pyrolysis cascading utilization of chlorella based on green chemistryJournal of Analytical and Applied Pyrolysis, 157 (2021) 105204.

[2] Yanshi Zhang, Jianan Zhu, Xiangping Li, Tiantian Jiao, Yaqing Zhang, Peng Liang*. Facile synthesis of PteCe0.63Zr0.37O2-Y catalysts and the application in catalytic oxidation of tolueneChemosphere, 276 (2021) 130207.

[3] Xiangping Li, Jianguang Zhang, Bin Liu, Zhenping Su, A critical review on the application and recent developments of post-modified biochar in supercapacitors. Journal of Cleaner Production, 310(2021) 127428.

[4] Yaqing Zhang, Xiaobin Wang, Linken Ji, Tiantian Jiao, Huawei Zhang, Lin Li, Peng Liang*. Influence of Solid Heat Carriers on Mercury Migration Characteristics in Coal Pyrolysis/Circulating Fluidized Bed Combustion-Staged Conversion Process. Energy & Fuels, 35(2021) 2485–2492.

[5] Wenrui Zhang*, Yonghui Wang, Meilu Hao, Huawei Zhang, Peng Liang*. Pollutants Under Visible Light Using Ag-Modified TiO2 on Activated Carbon Fibers. NANO, 16(2021) 130009.

[6] Wenrui Zhang*, Yonghui Wang, Meilu Hao, Biao Kong, Peng Liang*, Yan Yang, Shengtao Ma. Development and validation of a multi-residue method for the simultaneous analysis of brominated and organophosphate flame retardants, organochlorine pesticides, and polycyclic aromatic compounds in household dust. Analytical Methods, 39(2021) 4623-4633.

[7] Qiuping Qi, Wenrui Zhang*, Yanshi Zhang, Guangming Bai, Shiwei Wang, Peng Liang*. Formaldehyde oxidation at room temperature over layered MnO2. Catalysis Communications, 153(2021) 106293.

[8] Huawei Zhang, Juan Wang, Ting Liu, Peng Liang. Cu-Zn oxides nanoparticles supported on SBA-15 zeolite as a novel adsorbent for simultaneous removal of H2S and Hg0 in natural gas. Chemical Engineering Journal. 426 (2021) 131286.

[9] Juan Wang, Mingzhu Zhang, Ge Li, Yifan Zhou, Yuhan Zhang, Wenrui Zhang, Tiantian Jiao, Yaqing Zhang, Peng Liang, Huawei Zhang. Ultrafine Au nanoparticles confined in three-dimensional mesopores of MCM-48 for efficient and regenerable Hg0 removal sorbent in H2S and H2O containing natural gas. Fuel. 286 (2021), 119479.

[10] 张亚青, 王相, 孟凡荣, 张文睿, 焦甜甜, 张华伟, 梁鹏. 基于熵权和层次分析法的VOCs处理技术综合评价[J] 中国环境科学, 2021(6): 10.

[11] 王世伟, 焦甜甜, 张亚青, 李湘萍, 张华伟, 梁鹏*. 费托合成渣蜡资源化利用研究进展[J] 洁净煤技术, 2021(27): 26-33.

[12] Yan Zhao, Hao Zhang, Peijie Zong, Haifeng Zhou, Yuanyu Tian. Evaluation of pyrolysis characteristics and product distribution of black liquor using Py-GC/MS and down tube reactor: Comparison with lignin. Fuel. 292 (2021), 120286.

[13] Weidong Wu, Haifeng Zhou. One-pot preparation of NaBiO3/PNMA composite: Surface properties and photocatalytic performance. Applied Surface Science. 544 (2021), 148910.

[14] Weidong Wu, Cong Lu, Meng Yuan, Yuanyu Tian, Haifeng Zhou. Acidification of potassium bismuthate for enhanced visible-light photocatalytic degradation ability: An effective strategy for regulating the abilities of adsorption, oxidation, and photocatalysis. Applied Surface Science. 544 (2021), 148873.

[15] Cong Lu, Weidong Wu, Haifeng Zhou. In situ fabrication of BiOBr/BiFeWO6 heterojunction with excellent photodegradation activity under visible light. Journal of Solid State Chemistry. 303 (2021), 122465.

[16] Yaqi Chen, Wenhui Bi, Lijie Chen, Qing Liu, Urea-assisted synthesis towards a renewable rice husk silica-derived Ni-phyllosilicate catalyst for CO2 methanation, International Journal of Hydrogen Energy. 46 (2021), 27567-27575.

[17] Yaqi Chen, Tengfei Zhang, Qing Liu, One-pot or two-pot synthesis? Using a more facile and efficient method to synthesize Ni-phyllosilicate catalyst derived from 3D-SBA-15, International Journal of Hydrogen Energy. 46 (2021), 30373-30381.

[18] Yaqi Chen, Qing Liu, The biogenic silica-derived Ni-phyllosilicate catalyst with Ru modification: effect of the hydroxylation enhancement and reduction procedure, Materials Today Chemistry. 22 (2021), 100619.

[19] Yaqi Chen, Qing Liu, Synthesis and regeneration of Ni-phyllosilicate catalysts using a versatile double-accelerator method: A comprehensive study, ACS Catalysis. 11 (2021), 12570-12584.

[20] Hai Li, Yaqi Chen, Shuqi Liu, Qing Liu, Enhancement of hydrothermal synthesis of FDU-12-derived nickel phyllosilicate using double accelerators of ammonium fluoride and urea for CO2 methanation, Journal of CO2 Utilization. 52 (2021), 101677.

[21] Bowen Wu, Congcong Shan, Xin Zhang, Haoyu Zhao, Sumei Ma, Yunxia Shi, Jing Yang, Hongcun Bai, Qing Liu, CeO2/Co3O4 porous nanosheet prepared using rose petal as biotemplate for photo-catalytic degradation of organic contaminants, Applied Surface Science. 543 (2021), 148677.

[22] Hongyuan Yang, Yang Zhang, Qing Liu, Highly efficient Ni-phyllosilicate catalyst with surface and interface confinement for CO2 and CO methanation, Industrial & Engineering Chemistry Research. 60 (2021), 6981-6992.

[23] Qiaoxia Zhang, Xiangwei Liu, Haoran Wang, Qing Liu, Qingyun Liu, Xianxi Zhang, Photoelectrochemical thrombin biosensor based on perylene-3,4,9,10-tetracarboxylic acid and Au co-functionalized ZnO nanorods with signal-off quenching effect of Ag@Ag2S, Analyst. 146 (2021), 855-863.

[24] Yang Zhang, Yaqi Chen, Qing Liu, Green synthesis of MCM-41 derived from renewable biomass and construction of VOx-modified nickel phyllosilicate catalyst for CO2 methanation, International Journal of Hydrogen Energy. 46 (2021), 32003-32016.

[25] Yang Zhang, Hongchang Duan, Zhaoyang Lv, Qing Liu, Xiaoren Wu, Which is the better catalyst for CO2 methanation-Nanotubular or supported Ni-phyllosilicate?, International Journal of Hydrogen Energy. 46 (2021), 39903-39911.

[26] Yang Zhang, Qing Liu, Nickel phyllosilicate derived Ni/SiO2 catalysts for CO2 methanation: Identifying effect of silanol group concentration, Journal of CO2 Utilization. 50 (2021), 101587.

[27] Y. Zhang, T. F. Zhang, F. Wang, Q. H. Zhu, Q. Liu, Ni/CeO2 catalysts for low-temperature CO2 methanation: Identifying effect of support morphology and oxygen vacancy, Greenhouse Gases-Science and Technology. 11 (2021), 1222–1233.


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