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马存花

作者:马存花时间:2023-02-19点击数:

马存花1978.08-

副教授,硕导

研究方向:盐湖资源、环境催化材料

电子邮箱:107522445@qq.com

个人简介:

主要承担本科生《物理化学》和《应用电化学》、硕士研究生《高等物理化学》教学工作,并从事大气和水污染防治、盐湖资源转化等国家重大需求和国际前沿科学方面的研究,通过对环境功能材料的微纳结构调控、界面吸附/催化过程强化和反应机制探究,设计开发新型高效吸附剂和催化剂。基于该研究领域,近年来主持国家自然科学基金1项;参与国家863项目、国家自然科学基金等科研项目10多项;获兵团省部级科技进步奖2项;发表SCI论文20多篇。其中在Nanomaterials上发表题为“A Review of Recent Advances of Dielectric Barrier Discharge Plasma in Catalysis”综述论文1篇,在Chemical Engineering Journal发表题为“Construction of graphitic-N-rich TiO2-N-C interfaces via dye dissociation and reassembly for efficient oxygen evolution reaction”的论文1篇。

教育与工作经历:

教育经历:

2010/09-2013/12,天津大学化工学院,应用化学,博士,导师:代斌

2002/09-2005/06,青海民族学院化学系,物理化学,硕士,导师:吴启勋

1998/09-2002/06,青海民族学院化学系,应用化学,本科,班主任:林鹏程

工作经历:

2005/07 – 2020/12,石河子大学,化学化工学院应用化学系,副教授

2021/01 – 至今,青海师范大学,化学化工学院化学系,副教授

研究领域:

盐湖资源以及能源环境催化材料的基础和应用研究

获奖及荣誉情况:

1. 2012年获兵团科技进步二等奖(第六完成人)

2. 2018年获兵团科技进步二等奖(第三完成人)

3. 2016年获石河子大学优秀本科毕业论文指导教师

论文、专利及主要科研项目:

论文:

  1. Zhang Qiang, Chen Xiejie, Xie Yu, Ji Xinyue, An Qihong, Ma Cunhua*, Xu Caixia*. Supported ionic liquid-copper catalyst for synergistically catalytic and highly efficient hydration of acetylene. International Journal of Hydrogen Energy, 2022, 47 (13) : 8238-8246.

  2. Ke Lu, Zongyuan Wang, Bin Dai, You Han, Xunxin Chen, Jie Yu, Kun Yang, Dezheng Yang*, Cunhua Ma*, Feng Yu*. Construction of graphitic-N-rich TiO2-N-C interfaces via dye dissociation and reassembly for efficient oxygen evolution reaction. Chemical Engineering Journal, 2022, 431:133246.

  3. Jinhong Gao, Cunhua Ma*, Ajit Kumar. Au-decorated semiconducting AlN nanosheet as an electronic sensor for theophylline drug. Molecular Simulation, 2021:47(6), 500–509.

  4. Zhang, Qiang, Liu, Xiaohong, Luo, Jiannan, Ma, Cunhua*, Xu, Caixia*. Complexation effect of copper(ii) with HEDP supported by activated carbon and influence on acetylene hydration. New Journal of Chemistry, 2021, 45(3): 1712-1720.

  5. Ju Li, Cunhua Ma*, Shengjie Zhu, Feng Yu, Bin Dai, Dezheng Yang. A Review of Recent Advances of Dielectric Barrier Discharge Plasma in Catalysis. Nanomaterials, 2019, 9(10), 1428.

  6. Ju Li, Xingwu Zhai, Cunhua Ma*, Shengjie Zhu, Feng Yu, Bin Dai. Guixian Ge*, Dezheng Yang*. DBD Plasma Combined with Different Foam Metal Electrodes for CO2 Decomposition: Experimental Results and DFT Validations. Nanomaterials 2019, 9(11), 1595.

  7. Shengjie Zhu, Amin Zhou, Feng Yu, Bin Dai and Cunhua Ma*. Enhanced CO2 decomposition via metallic foamed electrode packed in self-cooling DBD plasma device. Plasma Science and Technology. 2019, 21, 085504.

  8. Yanqin Li, Wei Wang, Fu Wang, Lanbo Di, Shengchao Yang, Shengjie Zhu, Yongbin Yao, Cunhua Ma, Bin Dai, Feng Yu. Enhanced Photocatalytic Degradation of Organic Dyes via Defect-Rich TiO2 Prepared by Dielectric Barrier Discharge Plasma. Nanomaterials 2019, 9(11), 1595.

  9. Dan Zhao, Feng Yu*, Amin Zhou, Cunhua Ma, Bin Dai*. High-efficiency removal of NOx using dielectric barrier discharge nonthermal plasma with water as an outer electrode. Plasma Science and Technology, 2018, 20(1):014020.

  10. Yiqing Wang, Feng Yu*, Mingyuan Zhu, Cunhua Ma, Dan Zhao, Chao Wang, Amin Zhou, Bin Dai, Junyi Ji*, Xuhong Guo*, N-doping of plasma exfliated graphene oxide via dielectric barrier discahrge plasma treatment for oxygen reduciton reaction. Journal of Materials Chemistry A, 2018, 6(5): 2011-2017.

  11. Amin Zhou , Dong Chen, Cunhua Ma *, Feng Yu, and Bin Dai *, DBD Plasma-ZrO2 Catalytic Decomposition of CO2 at Low Temperatures, Catalysts, 2018, 8(7), 256.

  12. Amin Zhou, Dong Chen, Bin Dai, Cunhua Ma*, Panpan Li, Feng Yu. Direct decomposition of CO2 using self-cooling dielectric barrier discharge plasma. Greenhouse Gas: Sciences and Technology. 2017, 7(4): 721-730.

  13. Cai-Xia Xu, Cunhua Ma, Fu-Rong Xiao, Hong-Wei Chen, Bin Dai. Catalyst-free hydrochlorination protocol for terminal arylalkynes with hydrogen chloride. Chin. Chem. Lett. 2016, 27, 1683–1685.

  14. Cunhua Ma, Chen Dong, Liu Fupeng, Sun Xishang, Xiao Furong, Dai Bin. Oxidative desulfurization of model fuel using ozone oxidation generated by dielectric barrier discharge plasma combined with Co3O4/Al2O3 catalysis[J]. RSC Advancesy, 2015, 5, 96945 - 96952.

  15. Lili Ban, Ping Liu, Cunhua Ma, Bin Dai. Deep extractive desulfurization of diesel fuels by FeCl3/ionic liquids [J]. Chinese Chemical Letters2013, 24(8): 755–758.

  16. Lili Ban, Ping Liu, Cunhua Ma, Bin Dai. Deep Oxidative Desulfurization of Diesel Fuels with Plasma/air Catalyzed by Diperiodatocuprate (III) Using Ionic Liquid as Extraction Solvent [J]. Plasma Science and Technology, 2013, 15 (12): 1226-1231.

  17. Lili Ban, Ping Liu, Cunhua Ma, Bin Dai. Deep oxidative/adsorptive desulfurization of model diesel oil by DBD/FeCl3–SiO2 [J]. Catalysis Today, 2013, 211:78–83.

  18. Cunhua Ma, Bin Dai, Ping Liu, Aijun Shi, Na Zhou, Lili Ban, Hongwei Chen. Deep oxidative desulfurization of diesel fuel using ozone generated by dielectric barrier discharge plasma combined with ionic liquid extraction [J]. Journal of Industrial and Engineering Chemistry, 2014, 20(5): 2769-2774.

  19. Cunhua Ma, Bin Dai, Caixia Xu, Ping Liu, Liangliang Qi, Lili Ban. Deep oxidative desulfurization of model fuel via dielectric barrier discharge plasma oxidation using MnO2 catalysts and combination of ionic liquid extraction [J]. Catalysis Today, 2013, 211:84–89.

专利

1. 于锋; 卢可; 马存花 ; 一种以染料废水为原料制备碳材料的方法, 2021-6-1, 中国, CN202110200078

2. 代斌, 赵丹, 于锋, 马存花. 一种毫米级球形催化剂及其制备方法及其在烟气脱硝中的应用. 专利申请号: 201610414362.4(专利申请日:2016614日),授权公告号:CN106076305B(授权公告日:2019827日)

3. 代斌, 于锋, 陈冬, 李盼盼, 马存花. 一种核壳型催化剂及其制备方法和应用. 专利申请号: 201410634492.X(专利申请日:20141112日,授权公告日:201788日)

主要科研项目

主持或参加科研项目:

1. 国家自然科学基金地区基金,21663022、介质阻挡放电等离子体协同TiO2光催化剂分解CO2研究,2017/01-2020/1239万元,结题,主持。

2. 兵团博士基金,2015AG001,乙炔水合制乙醛液相非汞催化体系的研究,2015/01-2017/12, 30万元,结题,参与。

3. 国家自然科学基金地区基金,21463002、仿生催化剂Trans-AB-金属卟啉的设计合成及仿生催化研究、2015/01-2018/1248万元,结题,参与。

4. 国家自然科学基金委员会,联合基金项目,U1203293,基于合成气的甲烷化催化剂的制备及工程基础研究,2013-01 2016-12243万元,结题,参与。

5. 国家自然科学基金地区基金,21063102、介质阻挡放电与离子液体协同作用柴油深度脱硫机制研究、2011/01-2013/1228万元,结题,第二参与人。

6. 国家自然科学基金地区基金,20961009、大黄酸金属配合物的合成、表征及生物活性研究、2010/01-2012/1210万元,结题,参与。

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