Liujunteng头像

Liujunteng

Professor

Research direction: Efficient adsorption separation technologies and equipment, non-standard chemical equipment, membrane separation processes and technologies

Education: Doctoral graduate

  • Department: College of Chemical Engineering
  • ORCID:
  • DBLP:

10 Access

  • Email: liujt@mail.buct.edu.cn
  • Office : Room 526, Comprehensive Building, Beijing University of Chemical Technology

Introduction

Engaged in research in the field of mass transfer and separation for a long time, with a solid theoretical foundation in mass transfer mechanisms and process intensification, accumulating rich experience, particularly in CO2 absorption and adsorption separation, achieving notable research outcomes. In the past decade, focused on the design and R&D of non-standard chemical equipment and processes, especially in the systematic, modular, and automated design and precision machining of pilot-scale chemical equipment, with significant achievements. As a project leader and participant, involved in multiple National Natural Science Foundation and major research projects from the Ministry of Science and Technology. Published over 30 academic papers in international journals such as Poly. Chem., Chem. Eng. J., Ind. Eng. Chem. Res., and J Membrane Sci., applied for more than 10 patents, and authored one monograph. Research achievements have received the First-Class Award for Scientific and Technological Progress from the China Petroleum and Chemical Industry Federation.


Education

Work Experience

Social Position

Social Activities

Research

Teaching

1). Fundamentals of Chemical Engineering Design (32 hours, core course, 2017 to present)

2). Chemical Engineering Design Practice (64 hours, core course, 2020 to present)

3). Chemical Process Analysis and Synthesis (48 hours, core course, 2020)


Postgraduates

Funding


Serial Number

Project Name

Project Source

总金额

(万元)

Received Amount (in ten thousand yuan)

到款日

1

XJZ202211004603

JW科技委173项目

(课题负责人)

385

300

2023.05.04

2

抗热震耐高压多孔无机膜制备与应用关键技术

(国家重点研发计划,课题负责人)

105

52.5

2023.03.24

2022.04.12

3

BHJG2020030

JW科技委173项目

100

70

2022.01.04
2022.10.25

4

船用盐雾采样方法研究

北京航空航天大学

12

6

 

5

关于成立“北京化工大学-双乐有机颜料联合研发中心”的协议

双乐颜料股份有限公司

60

20

2023.10

6

过滤测试系统开发

中国船舶集团有限公司系统工程研究院

36.4

36.4

2023.10

7

离子色谱仪维护

中国船舶集团有限公司系统工程研究院

9

9

2023.02.20

8

碘废物固化设备

化工工艺计算

中国原子能科学研究院

21.5

21.5

2023.02.20

2022.03.21

9

关于成立北京化工大学-双乐有机颜料联合研发中心的协议

双乐颜料股份有限公司

50

50

2021.01.12

10

等动力采样系统维修

中国船舶工业

系统工程研究院

9

4.5

2021.11.10

 

 

 

 

 

 

12

盐雾采样阵列

开发与维护

中国船舶工业

系统工程研究院

9

9

2021.12.24

2020.10.09

总计(万元)

806.9

593.4

  


Vertical Project

Horizontal Project

Publications

(1) M. Li, L. Hua, J. Liu*, Z. Ren*. Recent advances in regulating the excited states of conjugated thermally activated delayed fluorescence polymers for high-efficiency OLEDs. Mater. Chem. Front., 2023. IF=8.683

(2) Z. Zhao, H. Zhao, J. Liu*, Z. Ren*. Synthesis and Properties of Bipolar Ladder‐Like Polysiloxane with Carbazole and Triphenylphosphine Oxygen Groups. Macromol Rapid Commun, 2023. IF=2.923

(3) S. Xu, J. Wang, Y. Feng, J. Liu*. Study on the adsorption mechanism and properties of silver-loaded zeolite for radioactive iodine. Nucl. Mater. Energy, 2023: 101517. IF=3.037

(4) M. Li, Z. Zhu, J. Liu*, J. Jin, L. Du*, J. Mi. Grafting Poly(ethyleneimine) on Macroporous Core−Sheath Copolymer Beads with a Robust Framework for Stable CO2 Capture under Low-Temperature Regeneration. Ind. Eng. Chem. Res., 2022, 62(1): 385-394. IF=3.579

(5) S. Chi, Y. Ye, X. Zhao, J, Liu*, J. Jin, L. Du*, J. Mi. Porous molecular sieve polymer composite with high CO2 adsorption efficiency and hydrophobicity. Sep. Purif. Technol., 2023, 307: 122738. IF=5.597

(6) J. Wang, M. Li, Y. Feng, Y. Liu*, J. Liu*. Efficient capture of radioactive iodine by Ag-attached silica gel and its kinetics. Nucl. Mater. Energy, 2022: 101270. IF=3.037

(7) C, Li, Y. Liu, Z. Zhao, J. Liu*, Z. Ren*, S. Yan*. Photoluminescent Behaviors of Thermally Activated Delayed Fluorescence Polymeric Emitters in Nanofibers. Macromol Rapid Commun. 2021, 42(4), 2000588. IF=2.923

(8) M. Kashif, H. Li*, J. Liu*, S. Rasul, Q. Ullah, Y. Liu*. Competitive Behavior of Isotactic Polybutene-1 Polymorphs in Electrospun Membranes and Solution Cast Films via Cold Crystallization. J Macromol Sci B, 2022, 61(7-8): 897-913. IF=0.901

(9) M. Guo, S. Liang, J. Liu*, J. Jin, J. Mi*. Epoxide-functionalization of grafted tetraethylenepentamine on the framework of an acrylate copolymer as a CO2 sorbent with long cycle stability. ACS Sustainable Chem. Eng., 2020, 8: 3853-3864. IF=7.632 

(10) Z. Zhao, J. Wang, Y. Liu, J. Liu*, Z. Ren*, S. Yan. Synthesis and performance of non-conjugated main-chain thermally activated delayed fluorescence polymers with arylsilanes as host. Org. Electron, 2020, 77: 105539. IF=3.868

(11) C. Mi, N. Gao, H. Li, J. Liu*, X. Sun, S. Yan. The Effect of Poly(vinyl phenol) on the Ferroelectric Performance of Poly (vinylidene fluoride-trifluoroethylene). ACS Appl. Polym. Mater, 2019, 1: 1971-1978. IF=4.855


Awards

1). 2023, Ministry of Education, National-Level First-Class Undergraduate Course, Course Team Member (Fourth)

2). 2021, Beijing University of Chemical Technology, Excellent Undergraduate Innovation and Entrepreneurship Mentor

3). 2020, Beijing University of Chemical Technology, School of Chemical Engineering, Advanced Individual in Teacher Ethics and Conduct

4). 2019, Beijing Excellence Alliance Cup Science and Technology Innovation Competition, Second Prize, Supervising Teacher


Patent

Honor Reward

Admissions Information