目录
硕士报考志愿采集    更新日期:2024年2月3日
姓 名 曲虹霞 性 别
出生年月 1971年3月 籍贯
民 族 汉族 政治面貌 无党派人士
最后学历 博士研究生毕业 最后学位 工学博士
技术职称 教授 导师类别 博士生导师
导师类型 校内 兼职导师
行政职务 Email qhx@njust.edu.cn
工作单位 南京理工大学化工学院 邮政编码 210014
通讯地址 南京市孝陵卫200号
单位电话 13814021502
个人主页
指导学科
学科专业(主) 0817|化学工程与技术 招生类别 博、硕士 所在学院 化学与化工学院
研究方向

招收化学工程、化学工艺、工业催化和应用化学方向的硕士研究生和博士研究生,主要研究方向为

1.催化反应过程研究;

2.无机多孔材料设计、组装及其应用;

3.光、电催化剂的设计、性能及应用研究。

获奖、荣誉称号
中国化学会会员
科研项目

近期承担主要项目

1.疏水核壳结构SSZ分子筛的构建及其在SCR反应中构效关系研究,国家自然科学基金;

2.过渡金属氧化物在ZSM-5表面双酸活性位形成及对低温脱硝影响,国家自然科学基金;

3.低浓度03催化臭氧氧化资源化脱硫脱硝技术关键技术研发,江苏省重点研发项目;

4.富钾板岩提取物的分离技术及高纯度产物制备,企业合作项目

5.船用中高速柴油机氮氧化物催化减排技术研发,江苏省产学研联合创新基金。

发表论文

近期发表主要SCI论文:

1.Progressive regulation of Al sites and Cu distribution to increase hydrothermal stability of hierarchical SSZ-13 for the selective catalytic reduction reaction.Applied Catalysis B: Environmental,2022

2.Fe-carbon dots enhance the photocatalytic nitrogen fixation activity of TiO2@CN heterojunction.Chemical Engineering Journal,2022

3.Inducing the SnO2-based electron transport layer into NiFe LDH/NF as efficient catalyst for OER and methanol oxidation reaction.Journal of Materials Science &Technology,2022

4.Insight into the surface property modification-enhanced C3N4 performance of photocatalytic nitrogen fixation. Chemical Communications,2022

5. Boron doped C3N5 for photocatalytic nitrogen fixation to ammonia: The key role of boron in nitrogen activation and mechanism.Chemical Engineering Journal,2022

6 In situ precipitated NiCo nanoparticles synergize with metaborate to promote hydrogen evolution and couple with urea oxidation to reduce overall water splitting potential.Electrochimica Acta,2022

7 A regulation strategy using trace copper boosting electrocatalytic activity of bifunctional metallic dihydroxy in hydrogen evolution and methanol oxidation.eApplied Surface Science,2022

8 Mesoporous–optimized BaMnO3 perovskite small-scale nanocrystals in SSZ-13 to enhance activity for the selective catalytic reduction reaction of NO.Applied Catalysis A- General,2022

9 Green synthesis of ZSM-5 zeolite for selective catalytic reduction of NO via template-free method from tailing residue.Journal of Environmental Chemical Engineering,2022

10.Site-exposed Ti3C2 MXene anchored in N-defect g-C3N4 heterostructure nanosheets for efficient photocatalytic N2 fixation.Catalysis Science &Technology,2021

11.NCoCu Carbon Dots Intertwined NiCo Double Hydroxide Nanorod Array for Efficient Electrocatalytic Hydrogen Evolution.ChemCatChem,2021

 

12.Migration of cations and shell functionalization for Cu-Ce-La/SSZ-13@ZSM-5: The contribution to activity and hydrothermal stability in the selective catalytic reduction reaction. Journal  of Catalysis,2020

13.Controllable positions of Cu2+ to enhance low-temperature SCR activity on novel Cu-Ce-La-SSZ-13 by a simple one-pot method. Chemical Communication

14. The Effect of CeO2 Dispersity and Active Oxygen Species on the SCR Reaction Over Fe-ZSM-5@Ce/meso-SiO2Catalysis Letters

15.3D network Ni-based electrocatalysts with interfacial active sites of Ru QDs and Ni(OH)2 for efficient hydrogen evolution reaction under large current density in alkaline environment.Electrochimica Acta

16.Dual-template assembled hierarchical Cu-SSZ-13:morphology evolution, crystal growth and stable high-temperature selective catalytic reduction performance.CrystEngComm.

17.Synergistic effect of Cu2+ doping and sulfation in Cu-Ce-S, tolerance to H2Oand SO2 and decomposition behaviors of ammonia salts.Molecular Catalysis

18.Synthesis of Fe-ZSM-5@Ce/mesoporous-silica and its enhanced activity by sequential reaction process for NH3-SCR.Chemical Engineering Journal

19.Assembly of hollow CeO2@Fe-ZSM-5 and SCR performance.Journal of Alloys and Compounds 

20.H2O and SO2 tolerance, activity and reaction mechanism of sulfated Ni–Ce–La composite oxide nanocrystals in NH3-SCR.Chemical Engineering Journal

 

  

 

 

出版专著和教材

《化工原理》,十三五国家级规划教材,精品教材

《化工原理习题解》,十二五国家级规划教材

科研创新

申请主要专利

1.一种以提钾后固体渣为原料无模板制备ZSM-5分子筛的方法[P].2019072900640980

2.核壳结构的脱硝催化剂及其制备方法[P].201810881492.8.

3.Cu-Cu-Ce-La-SSZ-13分子筛催化剂的制备方法[P].201711459925.2

 

 

 

 

指导学生情况

指导研究生多次获校、国家奖学金。