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武汉科技大学资源与环境工程学院导师教师师资介绍简介-王钰
/2021-08-08
资源与环境工程学院教师信息表
姓 名 王钰
性 别 男 出生年月
1986.01
毕业专业最高学历职称/职务
物理化学 博士研究生讲师
毕业学校最高学位所属学科
大连理工大学博士
环境科学与工程
电 话
进修/留学情况
学术/社会兼职
13554665464
yuwang@wust.edu.cn
环境催化材料在环境污染治理领域的应用:研究领域及 1. 室内空气污染控制
研究方向
承担科研工作
代表性成果
2. 大气污染物 VOCs 控制
3. CO2 资源化利用
1. 中国博士后基金面上项目,2016M602303,介微多级孔分子筛负载钌催化剂用于
CVOC 的催化氧化,2016/11-2018/11,主持
2. 高性能陶瓷与国家重点实验室开放基金,SKL201707SIC,多级孔沸石分子筛负载钌用于CVOCS 催化氧化研究,2018/1-2019/12,参与
代表性论文
[1] Y. Wang, D. Yang, S. Li, L. Zhang, G. Zheng, L. Guo*, Layered copper manganese oxide
for the efficient catalytic CO and VOCs oxidation, Chem. Eng. J., 357 (2019) 258-268. (JCR 1
区,IF=6.7)
[2] Y. Wang, W. Deng, Y. Wang, L. Guo*, T. Ishihara, A comparative study of the catalytic oxidation
of chlorobenzene and toluene over Ce-Mn oxides, Molecular Catalysis, 459 (2018) 61-70. (JCR 2
区,IF=4.4)
[3] Y. Wang, D. Yang, S. Li, M. Chen, L. Guo*, J. Zhou*, Ru/hierarchical HZSM-5 zeolite as
efficient bi-functional adsorbent/catalyst for bulky aromatic VOCs elimination.
Microporous Mesoporous Mater. 2018, 258: 17-25. (JCR 2 区,IF=3.6)
[4] Y. Wang, L. Guo*, M. Chen, C. Shi*, The CoMnxOy nanosheets with molecular scale homogeneity:
An excellent catalyst for toluene combustion. Catalysis Science & Technology 2018, 8: 459-471. (JCR
2 区,IF=5.4)
[5] Y. Wang, L. Zhang, L. Guo*, Enhanced Toluene Combustion over Highly
Homogeneous Iron Manganese Oxide Nanocatalysts. ACS Appl. Nano Mater. 2018, 1(3):
1066-1075.
[6] Y. Wang, S. Yao, M. Crocker, X. Zhu, B. Chen, J. Xie, C. Shi*, D. Ma*, An
energy-efficient catalytic process for the tandem removal of formaldehyde and benzene by
metal/HZSM-5 catalysts. Catalysis Science & Technology 2015, 5(11): 4968-4972.(Cover paper)(JCR 2
区,IF=5.4)
[7] Y. Wang, C. Dai, B. Chen, Y. Wang, C. Shi*, X. Guo*, Nanoscale HZSM-5 supported PtAg
bimetallic catalysts for simultaneous removal of formaldehyde and benzene, Catal. Today,
2015, 258: 616-626. (JCR 1 区,IF=4.7)
[8] Y. Wang, X. Zhu, M. Crocker, B. Chen, C. Shi*, A comparative study of the catalytic oxidation
of HCHO and CO over Mn0.75Co2.25O4 catalyst: The effect of moisture, Appl. Catal. B: Environ.,
2014, 160-161: 542-551. (JCR 1 区,IF=11.7)
[9] Y. Wang, B.-b. Chen, M. Crocker, Y.-j. Zhang, X.-b. Zhu, C. Shi*, Understanding on the
origins of hydroxyapatite stabilized gold nanoparticles as high-efficiency catalysts for
formaldehyde and benzene oxidation, Catal. Commun., 2015, 59:195-200. (JCR 3 区,IF=3.5)
[10] Y. Wang, A. Zhu, B. Chen, M. Crocker, C. Shi*, Three-dimensional ordered
mesoporous Co–Mn oxide: A highly active catalyst for “storage–oxidation” cycling for the removal of
formaldehyde, Catal. Commun., 2013, 36: 52-57. (JCR 3 区,IF=3.5)
代表性申请及授权专利
[1] 王钰,李晓辉,黄益群,郭利民,一种层状钴锰双金属氧化物的制备方法,申请号
CN201810186442.8
[2] 王钰,郭利民,一种有机污染土壤热解析尾气处理系统,申请号:CN201611050877.7.
[3] 王钰,空气净化器控制装置、空气净化器系统及空气净化器控制方法,专利号:
ZL201510730971.6
[4] 王钰,钟小键,清除烟雾烟味的装置及其应用,专利号:ZL201510734128.5过滤器及具有其的净化器
[5] ZS. Gan,Y. Wang,Z. Liu,HY. Xie,FILTER AND PURIFIER HAVING SAME,
U.S. patent:WO2017147995
学术会议报告
[1] Y. Wang, J. Han, “VOCs: storage-oxidation cycling process as a promising soft way of
elimination”, International Workshop on Modern Science and Technology (IWMST),
Wuhan, China, October 25 to 26, 2018. (邀请报告)
[2] 王钰,韩军,郭利民,“挥发性有机物(VOCs)吸附氧化分解用催化剂的制备及
性能评价”,第 24 届中国大气环境科学与技术大会——中国环境科学学会大气环境分
会 2018 年学术年会,青岛,2018,11,2-4。(口头报告)
[3] 王钰,郭利民,“高度均匀稳定的锰基复合金属氧化物的制备及 VOCs 催化氧化性能研究”,第二届全国能源与环境科技学术会议,北京,2018, 4, 6-8。(口头报告)
[4] 王钰,郭利民,“负载 Ru 的多级孔沸石分子筛催化剂用于甲苯催化氧化的研究”第十九届全国分子筛学术大会,武汉,2017, 10, 24-28。(口头报告)
[5] Y. Wang, C. Shi, “Three–dimensional ordered mesoporous cobalt-manganese oxide: Highly
active catalyst for “storage-oxidation” cycling process for the removal of
formaldehyde”, 23rd North American Catalysis Society Meeting, Kentucky, USA, June 2-7, 2013.(口头报告)
[6] Y. Wang, C. Shi, “Removal of VOCs by “storage-oxidation” cycling process and
catalytic oxidation”, 8th ICEC in Asheville, NC, USA, August 24-27, 2014.(口头报告)
[7] 王钰,陈冰冰,石川,“室内空气污染物的“存储-氧化”循环脱除新方法”,第十四届全国青年催化学术会议,长春,2013, 7, 28-31。(口头报告)
[8] 王钰,陈冰冰,石川,“三维有序介孔钴锰氧化物的制备及其在室内空气污染物甲醛的“存储-氧化”循环脱除新方法中的应用”,第八届全国环境催化与环境材料学术会议,镇江,2013, 8,
23-26。(口头报告)