2018 Publications

Author: Time:2019-01-30 Click:

1)Selective conversion of CO2 and H2 into aromatics. Youming Ni, Zhiyang Chen, Yi Fu, Yong Liu, Wenliang Zhu*,Zhongmin Liu*.Nature Communications,9:3457, 2018.

2)Coupling of Methanol and Carbon Monoxide over H-ZSM-5 to Form Aromatics. Zhiyang Chen, Youming Ni, Yuchun Zhi, Fuli Wen, Ziqiao Zhou, Yingxu Wei, Wenliang Zhu,*Zhongmin Liu*. Angew. Chem. Int. Ed. 57:12549-12553, 2018.

3)Evolution of C−C Bond Formation in the Methanol-to-Olefins Process: From Direct Coupling to Autocatalysis.Xinqing Wu, Shutao Xu, Yingxu Wei*, Wenna Zhang, Jindou Huang, Shuliang Xu, Yanli He, Shanfan Lin, Tantan Sun,Zhongmin Liu*. ACS Catalysis,8:7356-7361,2018.

4)Methanol to Olefins Reaction over Cavity-type Zeolite: Cavity Controls the Critical Intermediates and Product Selectivity.Wenna Zhang, Jingrun Chen, Shutao Xu, Yueying Zhe, Yingxu Wei*,Yunchun Zhi, Jindou Huang, Anmin Zheng*,Xinqiang Wu,Xiangju Meng, Fengshou Xiao,Feng Deng,Zhongmin Liu*.ACS Catalysis,8:10950-10963,2018

5)A novel approach for facilitating the targeted synthesis of silicoaluminophosphates.Nana Yan, Lei Wang, Xiaona Liu, Pengfei Wu, Tantan Sun, Shutao Xu, Peng Guo*, Peng Tian*,Zhongmin Liu*, Journal of Materials Chemistry A, 2018.

6)Investigation of the coupled reaction of methyl acetate and n‐hexane over HZSM‐5.Kuo Yang, Jinzhe Li, Xiao Zhang,Zhongmin Liu*, Chinese Journal of Catalysis,39(12):1960-1970, 2018.

7)One step synthesis of N-doped activated carbons derived from sustainable microalgae-NaAlg composites for CO2 and CH4 adsorption.Yaqi Wu, Zhaoan Chen, Yanan Liu, Yunpeng Xu*,Zhongmin Liu*, Fuel,233:574-581, 2018.

8)Eco‐friendly synthesis of high silica zeolite Y with choline as green and innocent structure‐directing agent.Dawei he, Danhua Yuan, Zhijia Song, Yunpeng Xu*,Zhongmin Liu*, Chinese Journal of Catalysis,40(1):52-59, 2018.

9)Performance of CuCl2/13X catalyst in acetylene hydrochlorination.Zhijia Song, Shaofeng Liu, Dawei He, Guangye Liu, Yunpeng Xu*,Zhongmin Liu*, Chinese Science: Chemistry,48(2):186-195, 2018.

10)One-step aldol condensation reaction of dimethoxymethane and methyl acetate over supported Cs/ZSM-35 zeolite catalysts. Zhanling Ma, Xiangang Ma, Hongchao Liu, Wenliang Zhu*, Xinwen Guo,Zhongmin Liu*, Chinese Journal of Catalysis, 39(6):1129-1137, 2018.

11)HZSM‐35 zeolite catalyzed aldol condensation reaction to prepare acrylic acid and its ester: Effect of its acidic property. Zhanling Ma, Xiangang Ma, Youming Ni, Hongchao Liu, Wenliang Zhu*, Xinwen Guo,Zhongmin Liu*, Chinese Journal of Catalysis, 39(11):1762-1769, 2018.

12)Insight into the deactivation mode of methanol-to-olefins conversion over SAPO-34: Coke, diffusion, and acidic site accessibility. Shushu Gao, Shutao Xu*, Yingxu Wei*, Qinglong Qiao, Zhaochao Xu, Xinqiang Wu, Mozhi Zhang, Yanli He, Shuliang Xu,Zhongmin Liu*, Journal of Catalysis, 367:306-314, 2018.

13)Increasing the selectivity to ethylene in the MTO reaction by enhancing diffusion limitation in the shell layer of SAPO-34 catalyst. Jiawei Zhong, Jingfeng Han, Yingxu Wei*, Shuliang Xu, Yanli He, Yijun Zheng, Mao Ye, Xinwen Guo, Chunshan Song,Zhongmin Liu*, Chemical Communications, 54(25):3146-3149, 2018.

14)Enhancing ethylene selectivity in MTO reaction by incorporating metal species in the cavity of SAPO‐34 catalysts. Jiawei Zhong, Jingfeng Han, Yingxu Wei*, Shutao Xu, Tantan Sun, Xinwen Guo, Chunshan Song*,Zhongmin Liu*, Chinese Journal of Catalysis, 39(11):1821-1831, 2018.

15)Heterogeneous non-mercury catalysts for acetylene hydrochlorination: progress, challenges, and opportunities. Jiawei Zhong, Yunpeng Xu*,Zhongmin Liu*, Green Chemistry, 20(11):2412-2427, 2018.

16)Fast detection and structural identification of carbocations on zeolites by dynamic nuclear polarization enhanced solid-state NMR. Dong Xiao, Shutao Xu, ownbill, Subhradip Paul, Li-Hua Chen, Shane Pawsey, Fabien Aussenac, Bao-Lian Su, Xiuwen Han, Xinhe Bao,Zhongmin Liu, Frédéric Blanc*, Chemical Science, 9(43):8184-8493, 2018.

17)Influence of Al Coordinates on Hierarchical Structure and T Atoms Redistribution during Base Leaching of ZSM‑5. Junjie Li,Min Liu*,Xinwen Guo,Shu Zeng, Shutao Xu, Yingxu Wei,Zhongmin Liu, Chunshan Song*, Ind. Eng. Chem. Res., 57(45):15375-15384, 2018.

18)In Situ Aluminum Migration into Zeolite Framework during Methanol-To-Propylene Reaction: An Innovation To Design Superior Catalysts. Junjie Li, Min Liu,* Xinwen Guo, Chengyi Dai, Shutao Xu, Yingxu Wei,Zhongmin Liu,Chunshan Song*,NDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH,57(24):8190-8199, 2018.

19)Probing locations of organic structure-directing agents (OSDAs) and hostguest interactions in CHA-type SAPO-34/44. Nana Yan, Hongyi Xu,Wenna Zhang, Tantan Sun, Peng Guo*, Peng Tian*,Zhongmin Liu*, MICROPOROUS AND MESOPOROUS MATERIALS, 264:55-59, 2018.

20)The influence of low-temperature hydration methods on the stability of Cu-SAPO-34 SCR catalyst. Yi Cao, Dong Fan, Peng Tian*, Lei Cao, Tantan Sun, Shutao Xu, Miao Yang,Zhongmin Liu*, Chemical Engineering Journal, 354:85-92, 2018.

21)Exploring Brønsted acids confined in the 10-ring channels of the zeolite ferrierite. Lei Wang,Hongyi Xu,Nana Yan,Sascha Correll,Shutao Xu,Peng Guo*, Peng Tian*,Zhongmin Liu*, CrystEngComm, 20:699-702, 2018.

22)Preparation of Spherical Mordenite Zeolite Assemblies with Excellent Catalytic Performance for Dimethyl Ether Carbonylation. Lingyun Li, Quanyi Wang, Hongchao Liu, Tantan Sun, Dong Fan, Miao Yang, Peng Tian*,Zhongmin Liu*, ACS applied materials & interfaces, 10:32239-32246, 2018.

23)Synthesis of high-Si hierarchical beta zeolites without mesoporogen and their catalytic application in the methanol to propene reaction. Xuebin Zhao, Linying Wang, Peng Guo, Nana Yan, Tantan Sun, Shanfan Lin, Xinwen Guo, Peng Tian*,Zhongmin Liu*, Catalysis Science & Technology,8:2966-2974, 2018.

24)External surface modification of as‐made ZSM‐5 and their catalytic performance in the methanol to propylene reaction. Xuebin Zhao, Yang Hong, Linying Wang, Dong Fan, Nana Yan, Xiaona Liu, Peng Tian*, Xinwen Guo*,Zhongmin Liu*, Chinese Journal of Catalysis, 39:1418-1426, 2018.

25)Silicoaluminophosphate molecular sieve DNL-6: Synthesis with a novel template, N,N ′-dimethylethylenediamine, and its catalytic application. Pengfei Wu, Miao Yang, Wenna Zhang, Shu Zeng, Mingbin Gao, Shutao Xu, Peng Tian*,Zhongmin liu*, Chinese Journal of Catalysis, 39:1511-1519, 2018.

26)Improving the low-temperature hydrothermal stability of Cu-SAPO-34 by the addition of Ag for ammonia selective catalytic reduction of NOx. Xiao Xiang, Yi Cao, Lijing Sun, Pengfei Wu, Lei Cao, Shutao Xu, Peng Tian*,Zhongmin liu*, Applied Catalysis A, General, 551:79-87, 2018.

27)Investigation of gas-solid bubbling fluidized beds using ECT with a modified Tikhonov regularization technique. Qiang Guo, Shuanghe Meng, Dehu Wang, Yinfeng Zhao, Mao Ye*,Wuqiang Yang,Zhongmin Liu,AIChE Journal, 64(1):29-41, 2018.

28)Experimental Verification of Solid-like and Fluid-like States in the Homogeneous Fluidization Regime of Geldart A Particles. Qiang Guo, Shuanghe Meng, Yinfeng Zhao, Linkun Ma, Dehu Wang, Mao Ye*,Wuqiang Yang,Zhongmin Liu, Industrial & Engineering Chemistry Research, 57(7):2670-2686, 2018.

29)High-temperature electrical capacitance tomography for gas–solid fluidised beds. Kai Huang, Shuanghe Meng, Qiang Guo, Mao Ye*, JIngjing Shen, Tao Zhang, Wuqiang Yang,Zhongmin Liu,Measurement Science and Technology, 29(10), 104002, 2018.

30)Study on air regeneration dynamics ofDMTOcatalyst. Xing Xu, Yinfeng Zhao, Mao Ye*,Zhongmin Liu, Industrial Catalysis, 26(7):54-59, 2018.

31)Analysis of particle rotation in fluidized bed by use of discrete particle model. Runjia Liu,Rui Xiao*,Mao Ye*,Zhongmin Liu, Advanced Powder Technology, 29(7):1655-1663, 2018.

32)Sintered precipitated iron catalysts with enhanced fragmentation-resistance ability for Fischer–Tropsch synthesis to lower olefins. Yanping Chen, Youming Ni, Yong Liu, Hongchao Liu, Xiangang Ma, Shiping Liu,Wenliang Zhu*,Zhongmin Liu*, Catal. Sci. Technol., 8:5943-5954, 2018.

33)A short review of recent advances in CO2 hydrogenation to hydrocarbons over heterogeneous catalysts.Wenhui Li, Haozhi Wang, Xiao Jiang, Jie Zhu,Zhongmin Liu,Xinwen Guo*, Chunshan Song*,RSC ADVANCES,8(14):7651-7669, 2018.

34)ZrO2 support imparts superior activity and stability of Co catalysts for CO2 methanation.Wenhui Li, Xiaowa Nie, Xiao Jiang, Anfeng Zhang, Fanshu Ding, Min Liu,Zhongmin Liu, Xinwen Guo*, Chunshan Song*, APPLIED CATALYSIS B-ENVIRONMENTAL, 220:397-408, 2018.

35)The anti-sintering catalysts: Fe-Co-Zr polymetallic fibers for CO2 hydrogenation to C2= -C4= -rich hydrocarbons. Wenhui Li, Anfeng Zhang, Xiao Jiang, Michael J Janik, Jieshan Qiu,Zhongmin Liu, Xinwen Guo*, Chunshan Song*, Journal of CO2Utilization, 23:219-225, 2018.

36)Frontiers of Catalysis Chemistry and Technology.Zhongmin Liu, Jinzhe Li, Frontiers of Chemical Science and Engineering, 12(1):1-2, 2018.

37)Effect of mass-transfer control on HY zeolites for dimethoxymethane carbonylation to methyl methoxyacetate. Dongxi Zhang, Lei Shi, Yan Wang, Fei Chen, Jie Yao, Jie Yao, Xinyu Li, Youming Ni, Wenliang Zhu,Zhongmin Liu*, Catalysis Today, 316:114-121, 2018.

38)Partial Regeneration of the Spent SAPO-34 Catalyst in the Methanol-to-Olefins Process via Steam Gasification. Jibin Zhou, Jinling Zhang, Yuchun Zhi, Jianping Zhao, Tao Zhang, Mao Ye*,Zhongmin Liu, Industrial & Engineering Chemistry Research, 57(51):17338-17347, 2018.

39)A highly efficient sulfonic acid resin for liquid-phase carbonylation of dimethoxymethane. Fei Chen, Lei Shi*, Jie Yao, Yan Wang, Dongxi Zhang, Wenliang Zhu,Zhongmin Liu*, Catalysis Science & Technology, 8(2):580-590, 2018.

40)Synthesis of nanosized SAPO-34 with the assistance of bifunctional amine and seeds. Pengfei Wu, Miao Yang, Lijing Sun, Shu Zeng, Shutao Xu, Peng Tian*, Zhongmin Liu*, CHEMICAL COMMUNICATIONS, 54:11160-11163, 2018.

41)Simulation of a large methanol-to-olefins fluidized bed reactor with consideration of coke distribution.Jingyuan Zhang, Bona Lu*, Feiguo Chen, Hua Li, Mao Ye, Wei Wang, Chemical Engineering Science, 189:212-220, 2018.

Email:heshasha@dicp.ac.cn   Copyright Division of Low-Carbon Catalysis and Engineering,DICP, CAS