云南大学化学科学与工程学院
宁致远(博士,副教授,硕士生导师)
专业:化学工程
主讲课程:化工分离工程、传递过程、石油化工工艺学
所属团队:等离子体强化催化课题组
电话:17608803727
电子信箱:Zhiyuan_Ning@outlook.com
研究领域和兴趣:
研究领域: 低温等离子体强化催化过程及其机理研究;化工过程模拟与仿真
兴趣: 化学工程与环境工程交叉领域,污染物降解/控制的新方法与新工艺。
教育及工作经历
(1) 2023-08至今,云南大学,化学科学与工程学院,副教授;
(2) 2016-09至2023-08,云南大学,化学科学与工程学院,讲师;
(3) 2013-09至2016-06,浙江大学,化学工程与生物工程学院,博士;
(4) 2011-09至2013-06,昆明理工大学,环境科学与工程学院,硕士;
(5) 2006-09至2011-06,中国石油大学,化学工程与工艺学院,学士。
论文、专著
[1] Z. Ning, P. Liu, K. Xin, L. Liu, W. Fang, and P. Ning, “Deciphering the mechanisms of plasma-enhanced CO reduction of SO2 on Ag-based catalysts supported by Al2O3: An in-situ desorption approach,” Sep Purif Technol, vol. 354, Feb. 2024, doi: 10.1016/j.seppur.2024.129128.
[2] Z. Ning et al., “Understanding the Enhanced Catalytic Desulfurization Mechanism: Gas-Phase and Surface Reactions with a CuCeOx Catalyst under Nonthermal Plasma Conditions,” J Phys Chem Lett, vol. 15, no. 5, pp. 1397–1411, Feb. 2024, doi: 10.1021/acs.jpclett.3c02894.
[3] Z. Ning et al., “Elevating hydrogen evolution performance with plasma-induced sulfur vacancies and heteroatom doping in hollow-structured MnS–CoS catalysts,” J Alloys Compd, vol. 977, no. October 2023, p. 173461, 2024, doi: 10.1016/j.jallcom.2024.173461.
[4] Z. Ning et al., “Oxygen vacancy-enriched Cu/CeO2–ZrO2 catalyst with highly dispersed Cu0 towards plasma catalytic advanced CO2 utilization,” J Clean Prod, vol. 442, no. October 2023, p. 141010, Feb. 2024, doi: 10.1016/j.jclepro.2024.141010.
[5] Z. Ning et al., “Heterogeneous Surface Reaction Analysis of Non-Thermal Plasma-Enhanced Spherical MOx/(Ce0.7Ti0.3)O2 Catalyst Desulfurization: Effects of Plasma and MOx Loading on Surface Oxygen Defects,” The Journal of Physical Chemistry C, vol. 127, no. 16, pp. 7640–7658, Apr. 2023, doi: 10.1021/acs.jpcc.2c08979.
[6] X. Shi et al., “Excellent capture of Pb(II) and Cu(II) by hierarchical nanoadsorbent Fe3O4@SiO2@PAA-SO3H: A combined experimental and theoretical study,” Chemosphere, vol. 309, no. October, 2022, doi: 10.1016/j.chemosphere.2022.136791.
[7] Y. Wang et al., “Theoretical Exploration of Peculiar Sandwich-Type Clusters Formed by the Coordination of E92-(E = Si, Ge, Sn) Zintl Clusters: Structural Properties, Active Sites, and Hydrogen Storage,” Langmuir, vol. 38, no. 47, pp. 14485–14496, 2022, doi: 10.1021/acs.langmuir.2c02600.
[8] Y. Wang, G. Zhang, X. Shi, L. Tang, and Z. Ning, “New insights in the hydrolysis mechanism of carbon disulfide (CS2): a density functional study,” Struct Chem, vol. 34, no. 1, pp. 71–82, Feb. 2023, doi: 10.1007/s11224-022-01963-7.
[9] Z. Ning, R. Hu, R. Zhu, S. Gong, Z. Yang, and L. Tang, “Enhancing the catalytic desulfurization capacity of CuO-LaCoO3 using two dielectric barrier discharge configurations,” Molecular Catalysis, vol. 517, p. 112024, Jan. 2022, doi: 10.1016/j.mcat.2021.112024.
[10] X. Zhang et al., “Stability study of the As(V)-Fe(III) oxyhydroxide coprecipitate over a broad pH range: Characteristics and mechanism,” Science of The Total Environment, vol. 806, p. 150794, Feb. 2022, doi: 10.1016/j.scitotenv.2021.150794.
[11] Z. Ning, J. Chen, and K. Yan, “Numerical analysis of ionic wind induced EHD turbulence flow inside ESP,” Plasma and Electrostatic Technologies for Environmental Application 2015 (PETEA 2015), vol. 11, no. 1, pp. 64–68, 2017.
[12] Z. Ning, Z. Zhou, Z. Yang, X. Liu, L. Duan, and L. Tang, “Two configurations of a dielectric barrier discharge enhanced nanoparticle (CexTi1-x)O2 catalyst for the removal of low-concentration SO2,” Sep Purif Technol, vol. 278, no. July 2021, p. 119501, Dec. 2021, doi: 10.1016/j.seppur.2021.119501.
[13] 周正华, 蒋连爽, 张震宇, 黄锐, 宁静远, 宁致远, “CuSnZr三元催化剂应用于NTP强化催化脱硫过程的特性研究,” 中国环境科学, 2021, doi: 10.19674/j.cnki.issn1000-6923.20210713.002.
[14] 张志宾、宁致远, 化工安全概论. 电子科技大学出版社, 2021.
[15] Z. Ning et al., “Electrohydrodynamic Flow and Its Impact on Particle Trajectories Inside Wet Electrostatic Precipitator: Experimental and Numerical Analysis,” Environ Eng Sci, vol. 38, no. 6, pp. 513–525, Jun. 2021, doi: 10.1089/ees.2020.0151.
[16] Z. Ning et al., “Non-thermal plasma-enhanced low-temperature catalytic desulfurization of electrolytic aluminum flue gas by CuO-ZrSnO4: experimental and numerical analysis,” Environmental Science and Pollution Research, vol. 27, no. 31, pp. 39474–39489, Nov. 2020, doi: 10.1007/s11356-020-09602-6.
[17] Z. Y. Ning, Q. Q. Guan, N. Ping, and J. J. Gu, “Partial Oxidation of Phenol in Supercritical Water,” Adv Mat Res, vol. 726–731, pp. 2714–2717, Aug. 2013, doi: 10.4028/www.scientific.net/AMR.726-731.2714.
[18] 宁致远, 沈欣军, 李树然, and 闫克平, “湿式除尘器内部湍流场与粒子轨迹的数值分析,” 浙江大学学报(工学版), vol. 51, no. 2, pp. 384–392, 2017.
[19] Z. Ning et al., “Electrode geometry optimization in wire-plate electrostatic precipitator and its impact on collection efficiency,” J Electrostat, vol. 80, pp. 76–84, 2016, doi: 10.1016/j.elstat.2016.02.001.
[20] 沈欣军, 郑钦臻, 宁致远, 王仕龙, 韩平, and 闫克平, “燃煤电厂电除尘PM10和PM2.5的排放控制 IV:采用二维PIV除尘,” 科技导报, vol. 32, no. 33, pp. 43–50, 2014, doi: 10.3981/j.issn.1000-7857.2014.33.005.
[21] Z. Ning, L. Cheng, X. Shen, S. Li, and K. Yan, “Electrode configurations inside an electrostatic precipitator and their impact on collection efficiency and flow pattern,” The European Physical Journal D, vol. 70, no. 6, p. 126, Jun. 2016, doi: 10.1140/epjd/e2016-60736-2.
专利
[1] 宁致远,杨正璐,龚世友, “一种同时处理生活垃圾热解烟气中焦油和CO的系统及方法,” ZL202210034080.7,2022
[2] 魏家峰,宁致远, “一种利用溢流水幕进行阳极清洁的湿式电捕焦装置,” ZL202121568438.1, 2022
[3] 宁致远, 王则月, 郝天辉, 蒋连爽, 黄锐, and 张震宇, “一种用于等离子体降解VOCs装置的自清洁防火系统,” ZL202010137356.5, 2021
[4] 宁平, 殷在飞, 王学谦, 宁致远, “一种完全熄灭黄磷电炉放散火炬的装置,” CN202852836 U, 2013
[5] 田森林, 宁致远, 宁平, “一种浆料混合输送装置及其应用方法,” CN201210191759.3, 2012
科研项目
(1) 云南省科技厅, 基础研究专项-面上项目,202101AT070239低温等离子体强化催化脱除低浓度SO2的机理研究,2022-06至2025-05,10万元,在研,主持
(2) 云南省科技厅,创新引导与科技型企业培育计划,202104AP080081,基于复合金属催化剂的绿色高效烟气脱硫工工艺,2021-01至2022-12,10万元,在研,主持
(3) 云南省人才工作领导小组,2020年云南省高层次人才培养支持计划“青年拔尖人才”专项入选人才,2022-01至2025-12,50万元,在研,主持
(4) 云南大学,2021年东陆中青年骨干教师培养计划入选,2019-01至2022-12,8万元,在研,主持
(5) 云南省科技厅,基础研究青年项目,2018FB004,电解铝工业烟气中SO2的等离子体协同催化降解研究,2018-06至2021-05,5万元,已结题,主持
(6) 浙江省科技厅,浙江省重点科技创新团队计划项目,2013TD07,燃煤工业锅炉窑烟气污染控制技术创新团队,2014-01至2016-12,30万元,已结题, 参与
(7) 中华人民共和国科学技术部,国家863项目,2013AA065000,重点行业PM2.5过程控制与减排技术与装备,2013-01至2015-12,628万元,已结题,参与
(8) 中华人民共和国科学技术部,科技部支撑计划,2011BAC01B0301,高炉煤气的资源化利用关键技术,2011-01至2015-12,213万元,已结题,参与
(9) 中华人民共和国科学技术部,国家863项目,2008AA062602,氰化氢混合废气净化技术与设备研究,2009-05至2012-12,160万元,已结题,参与
学科竞赛
(1) 华文婷,宁致远,汤立红. 第七届云南省“互联网+大学生创新创业大赛”“锌有灵吸”——国内首款基于氨基改性超顺磁纳米材料开发的镀锌废水资源化处理方案. 2021,省级金奖
(2) 胡然,朱忍,周正华,宁致远. 第七届云南省“互联网+大学生创新创业大赛”. 乾净硫空——以废治废可快速推广的绿色高效烟气脱硫工艺. 2021,省级银奖
(3) 张震宇,胡然,章子恒,朱忍,何钊,周志伟,张庆芳,蒋连爽,宁致远. 第六届云南省“互联网+”大学生创新创业大赛. 以废治废、片甲不“硫”——可快速推广的绿色高效烟气脱硫工艺项目. 2020,省级金奖
(4) 叶子义,杨晓康,宁致远.“赢创杯”第二届全国“互联网+化学反应工程”课模设计大赛,2018,全国三等奖