倪珺(浙江工業大學化學工程學院教授,博士生導師)

倪珺(浙江工業大學化學工程學院教授,博士生導師)

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倪珺,教授,博士生導師。2008年博士畢業於英國貝爾法斯特女王大學化學與化學工程系;之後分別於2009-2010年在法國國家科學研究中心、以及2010-2012年在新加坡國立大學從事博士後研究;2012年至今在浙江工業大學任教。目前研究方向為可再生資源催化轉化與循環利用。已主持4項國家自然科學基金項目、2項省部級項目。被聘為浙江省石油學會青年工作委員會副主任、《石油學報(石油加工)》首屆和第2屆青年編委,擔任國家自然科學基金項目、浙江省自然科學基金項目、重慶市自然科學基金項目、河北省科學技術獎勵、教育部學位與研究生教育發展中心等的評審專家,入選浙江省錢江人才計畫D類、浙江省科技專家。

基本介紹

  • 中文名:倪珺
  • 國籍中國
  • 民族:漢族
  • 學位/學歷:博士 
  • 專業方向:可再生資源催化轉化與循環利用 
  • 職務:教授,博士生導師 
人物經歷,研究方向,科研項目,科研成果,社會服務,

人物經歷

我們課題組長期專注於醇類原料(特別是甲醇與乙醇)的高效催化轉化及其高附加值利用,已成功實現多種高附加值化學品的高效合成,包括高碳醇(如正丁醇、正己醇、異丁醇等)、高碳烯烴(如1,3-丁二烯、異丁烯、異戊二烯等)以及甲酯類化合物(如甲酸甲酯、丙烯酸甲酯、甲基丙烯酸甲酯等)。相關研究項目的產業化將有望全面替代傳統依賴化石資源的三苯、三烯工藝路線,為實現人類社會的可持續發展提供重要支撐。
倪珺
醇類轉化反應路徑圖

研究方向

可再生資源催化轉化與循環利用。

科研項目

[1] 基於非晶氧化物缺陷調控的乙醇低溫定向直接合成丁二烯的新催化體系(國家自然科學基金面上項目)
[2] 基於二維催化劑電子密度調控的乙醇氫轉移選擇性加氫餐廚油脂的機理及套用(國家自然科學基金面上項目)
[3] 新型節點功能化金屬有機框架催化劑高效定向催化乙醇轉化的研究(國家自然科學基金面上項目)
[4] 溢流氧對甲烷重整反應中鎳基催化劑的消碳作用(國家自然科學基金青年基金項目)
[5] 新型二維複合材料的製備及其催化合成生物質燃料的研究(浙江省自然科學基金一般項目)
[6] 綠藻直接連續化製備生物柴油的研究(浙江省錢江人才計畫D類)
[7] 甘油三酯原位加氫製備第二代生物柴油的研究(浙江省教育廳項目)

科研成果

發表論文:
2025年
[1]Xuemei Liao*, Xiaoli Wei, Yunye Wang, Huanqi Gou, Yingchun Yang,Xiaoxiao Luo, Shuang Wang, Xiaopeng Li, JunNi*, Cuong Pham-Huu. An effective way to produce fatty alcohol throughcoupling fatty acid with CO2 hydrogenation over CuZnZrOx/C-Ncatalyst. Journal of Catalysis, 2025, 452: 116455.
[2]棘雲飛, 王天姿, 陳欣輝, 張建林, 倪珺*. 無氫條件下間戊二烯的異構化反應. 熱固性樹脂, 2025, 40(3): 8-11.
[3]Peng Wang, Shaowen Hou, HuanqiGou, Fenghao Guo, Mengchuang Wang, Tianzi Wang, Jinde Liu, Jiangke Tao, HuiPan, Jun Ni*. Amorphous ZnO as anactive catalyst for hydrogen production from ethanol dehydrogenation. InternationalJournal of Hydrogen Energy, 2025, 135: 104-110.
2024年
[1]Yali Zhao, Ziru Wang, Jun Ni, Peilei He*. Self-Assembly ofPolyoxometalate Clusters into Nanostructures with Different Dimensions. EuropeanJournal of Inorganic Chemistry, 2024, 27(21): e202400184.
[2]王棟, 何耀輝, 周丹楓, 關偉鑫, 何亞軍, 馮啟龍, 王鵬, 侯少文, 陳欣輝, 王奕星, 苟煥其, 郭鋒浩, 王夢闖, 王天姿, 劉金德, 倪珺*. 配體缺陷Pd@UiO-66催化乙醇合成正丁醇. 石油學報(石油加工), 2024, 40(5): 1254-1263.
[3]薛冰, 關偉鑫, 王鵬, 侯少文, 陳欣輝, 王奕星, 苟煥其, 郭鋒浩, 王夢闖, 王天姿, 劉金德, 鄭洲, 柴壽根, 陳家銳, 張建林, 棘雲飛, 倪珺*. 氮改性ZnO-ZrO2/SBA-15催化劑的酸鹼性與其催化乙醇合成1,3-丁二烯反應性能的關係. 化學學報, 2024, 82(5): 493-502.
[4]Yaohui He, Huanqi Gou, Danfeng Zhou, Peng Wang, Shaowen Hou, XinhuiChen, Yixing Wang, Fenghao Guo, Mengchuan Wang, Chi Wang, Jinshu Tian, XiaonianLi, Jun Ni*. Functionalized ligandsmediated microenvironment of Pd@UiO-66-X catalysts for ethanol upgrading ton-butanol, Fuel, 2024, 368: 131477.
[5]Peng Wang, Shaowen Hou, Pengxiang Tu, Bing Xue, Weixin Guan, DongWang, Danfeng Zhou, Yajun He, Xinhui Chen, Yixing Wang, Kegong Fang, XiaonianLi, Jun Ni*. Coordinating theinteraction of ZnO and ZrO2 for an efficient ethanol-to-butadieneprocess, Catalysis Science & Technology, 2024, 14(7): 1822-1836.
2023年
[1]Jinxian Feng, Junyan Li, Lulu Qiao, Dong Liu, Pengfei Zhou, JunNi, Hui Pan*. Reconstructed anti-poisoning surface for enhancedelectrochemical CO2 reduction on Cu-incorporated ZnO. AppliedCatalysis B: Environmental, 2023, 330, 122665.
[2]Jinxian Feng, Xiongwei Zhong, Mingpeng Chen, Pengfei Zhou, LuluQiao, Haoyun Bai, Dong Liu, Di Liu, Yu-Yun Chen, Weng Fai Ip, Shi Chen, JunNi, Detao Liu, Hui Pan*. Iron-incorporated defective graphite by in-situelectrochemical oxidization for oxygen evolution reaction. Journal of PowerSources, 2023, 561, 232700.
[3]Jinxian Feng, Lulu Qiao, Pengfei Zhou, Haoyun Bai, Chunfa Liu, ChonChio Leong, Yuyun Chen, Weng Fai Ip, Jun Ni, Hui Pan*. NanocrystallineCoOx glass for highly-efficient alkaline hydrogen evolutionreaction. Journal of Materials Chemistry A, 2023, 11, 316-329.
2022年
[1]Jinxian Feng, Mingpeng Chen, Pengfei Zhou, Di Liu, Yu-Yun Chen,Bingchen He, Haoyun Bai, Dong Liu, Weng Fai Ip, Shi Chen, Detao Liu, WenlinFeng, Jun Ni, Hui Pan*. Reconstruction optimization of distortedFeOOH/Ni hydroxide for enhanced oxygen evolution reaction. Materials TodayEnergy, 2022, 27, 101005.
2021年
[1]Jian Zhou, Yaohui He, Bing Xue, Yunhui Cheng, Danfeng Zhou, Dong Wang,Yajun He, Weixin Guan, Kegong Fang, Lijun Zhang, Jun Ni*, Xiaonian Li. Benefits of active site proximity inCu@UiO-66 catalysts for efficient upgrading of ethanol to n-butanol.Sustainable Energy Fuels, 2021, 5, 4628-4636.
[2]Jinxian Feng, Jun Ni, HuiPan*. Synergistic carbon and hydrogen reactions in the electrochemicalreduction of CO2 to liquid fuels. Journal of Materials Chemistry A,2021, 9: 10546-10561.
2020年
[1]Jian Zhou, Yuqin Tong, Yaohui He, Pengxiang Tu, Bing Xue, YunhuiCheng, Jie Cen, Yifan Zheng, Jun Ni*,Xiaonian Li. Role of Lewis acids of MIL-101 (Cr) in the upgrading of ethanol ton-butanol. Frontier in Chemical Engineering, 2020, 2: 586142.
[2]Yuqin Tong, Jian Zhou, Yaohui He, Pengxiang Tu, Bing Xue, YunhuiCheng, Jie Cen, Yifan Zheng, Jun Ni*,Xiaonian Li. Structure-activity Relationship of Cu Species in the EthanolUpgrading to n-Butanol. ChemistrySelect, 2020, 5(26): 7714-7719.
[3]Pengxiang Tu, Bin Xue, Yuqin Tong, Jian Zhou, Yaohui He, JunhuiCheng, Jun Ni*, Xiaonian Li. Effectof Doping Metal Oxide in ZnO/SBA-15 on Its Acid-Base Properties and Performancein Ethanol-to-Butadiene Process. ChemistrySelect, 2020, 5(24): 7258-7266.
[4]Yuxue Yue, Bolin Wang, Saisai Wang, Chunxiao Jin, Jinyue Lu, ZhengFang, Shujuan Shao, Zhiyan Pan, Jun Ni, Jia Zhao*, Xiaonian Li*. Boron-dopedcarbon nanodots dispersed on graphitic carbon as high-performance catalysts foracetylene hydrochlorination. Chemical Communications, 2020, 56, 5174-5177.
[5]Tongdong Shen, Wentao Su, Qiangqiang Yang, Jun Ni, Shaoping Tong*. Synergetic mechanism for basic and acidsites of MgMxOy (M = Fe, Mn) double oxides in catalyticozonation of p-hydroxybenzoic acid and acetic acid. Applied Catalysis B:Environmental, 2020, 119346.
2019年
[1]Aiqing Ma, Huaqing Chen, Yanhong Cui, Zhenyu Luo, Ruijing Liang,Zhihao Wu, Ze Chen, Ting Yin, Jun Ni,Mingbin Zheng*, Lintao Cai*. Metalloporphyrin Complex-Based Nanosonosensitizersfor Deep-Tissue Tumor Theranostics by Noninvasive Sonodynamic Therapy. Small,2019, 15(5): 1804028.
[2]Fushan Chen, Tao Yang, Songlin Zhao, Taotao Jiang, Lu Yu, HoufengXiong, Chuankun Guo, Yufang Rao, Yan Liu, Liu Liu, Jian Zhou, Pengxiang Tu, JunNi, Qunfeng Zhang*, Xiaonian Li. Highly selective oxidation of amines toimines by Mn2O3 catalyst under eco-friendly conditions.Chinese Chemical Letters, 2019, 30(12): 2282-2286.
[3]Fushan Chen, Songlin Zhao, Tao Yang, Taotao Jiang, Jun Ni,Houfeng Xiong, Qunfeng Zhang*, Xiaonian Li. Controllable synthesis of novelnanoporous manganese oxide catalysts for the direct synthesis of imines fromalcohols and amines. Chinese Journal of Chemical Engineering, 2019, 27(10):2438-2446.
[4]Fushan Chen, Songlin Zhao, Tao Yang, Taotao Jiang, Jun Ni, QunfengZhang*, Xiaonian Li*. Highly Efficient Oxidative Dehydrogenation Aromatizationof 1,2,3,4-Tetrahydroquinoline by Cu2-MnOx Catalyst. Acta Physico -Chimica Sinica, 2019, 35(7): 775-786.
[5]Zhe Liang, Dahao Jiang, Geqian Fang, Wenhua Leng, Pengxiang Tu,Yuqin Tong, Liu Liu, Jun Ni*,Xiaonian Li*. Catalytic Enhancement of Aldol Condensation by Oxygen Vacancy onCeO2 Catalysts. ChemistrySelect, 2019, 4(14), 4364-4370.
[6]Jun Ni*, Wenhua Leng, Jun Mao, Jianguo Wang, Jianyi Lin, Dahao Jiang*,Xiaonian Li*. Tuning electron density of metal nickel by support defects inNi/ZrO2 for selective hydrogenation of fatty acids to alkanes andalcohols. Applied Catalysis B: Environmental, 2019, 253, 170-178.
[7]Qunfeng Zhang*, Kang Li, Yizhi Xiang*, Yuan Zhou, QingtaoWang,Lingling Guo, Lei Ma, Xiaoliang Xu, Chunshan Lu, Feng Feng, Jinhui Lv, JunNi, Xiaonian Li*. Sulfur-doped porous carbon supported palladium catalystfor high selective o-chloro-nitrobenzene hydrogenation. Applied Catalysis A:General, 2019, 581, 74-81.
2018年
[1]Dahao Jiang, Geqian Fang, Yuqin Tong, Xianyuan Wu, Yifan Wang,Dongsen Hong, Wenhua Leng, Zhe Liang, Pengxiang Tu, Liu Liu, Kaiyue Xu, Jun Ni*, Xiaonian Li*. MultifunctionalPd@UiO-66 Catalysts for Continuous Catalytic Upgrading of Ethanol to n‑Butanol. ACS Catalysis, 2018, 8, 11973−11978.
[2]Xianyuan Wu, Geqian Fang, Yuqin Tong, Dahao Jiang*, Zhe Liang,Wenhua Leng, Liu Liu, Pengxiang Tu, Hongjing Wang, Jun Ni*, Xiaonian Li. Catalytic upgrading of ethanol to n-butanol:Progress in catalyst development. ChemSusChem, 2018, 11, 71-85.
2017年
[1]Xianyuan Wu, Zheng Fang, Hui Pan, Yifan Zheng, Dahao Jiang, Jun Ni*, Xiaonian Li*. Active oxygenspecies on Mg–La mixed oxides: the effect of Mg and La oxide interactions.Catalysis Science & Technology, 2017, 7, 797-801.(封面論文)
[2]Xianyuan Wu, Geqian Fang, Zhe Liang, Wenhua Leng, Kaiyue, Xu, DahaoJiang*, Jun Ni*. Catalytic upgradingof ethanol to n-butanol over M-CeO2/AC (M = Cu, Fe, Co, Ni and Pd)catalysts. Catalysis Communications, 2017, 100, 15-18.
[3]Hangjia Shen, Xianyuan Wu, Dahao Jiang, Xiaonian Li, Jun Ni*. Identification of active sitesfor hydrogenation over Ru/SBA-15 using in situ Fourier-transform infraredspectroscopy. Chinese Journal of Catalysis, 2017, 38, 1597-1602.
[4]Jia Zhao, Yi Yu, Xiaolong Xu, Shuxia Di, Bolin Wang, Hao Xu, Jun Ni, LingLing Guo, Zhiyan Pan,Xiaonian Li*. Stabilizing Au(III) in supported-ionic-liquid-phase (SILP)catalyst using CuCl2 via a redox mechanism. Applied Catalysis B:Environmental, 2017, 206, 175-183.
[5]Jun Mao, Dahao Jiang*, Zheng Fang, XianyuanWu, Jun Ni*, Xiaonian Li. Efficient hydrothermal hydrodeoxygenation oftriglycerides with in situ generated hydrogen for production of diesel-likehydrocarbons. Catalysis Communications, 2017, 90, 47-50.
2016年
[1]Dahao Jiang, Xianyuan Wu, Jun Mao, Jun Ni*, Xiaonian Li*. Continuous catalytic upgrading of ethanol ton-butanol over Cu–CeO2/AC catalysts. Chemical Communications, 2016,52, 13749-13752.(封面論文)
[2]Jun Ni, Jia Zhao, Luwei Chen*, Jianyi Lin, Sibudjing Kawi*. Lewis AcidSites Stabilized Nickel Catalysts for Dry (CO2) Reforming ofMethane. ChemCatChem 2016, 8, 3732-3739.(封面論文)
2015年
[1]Sibudjing Kawi*, YasothaKathiraser, Jun Ni, Usman Oemar, Ziwei Li, Eng Toon Saw. Progress insynthesis of highly active and stable nickel-based catalysts for carbon dioxidereforming of methane, ChemSusChem, 2015, 8(21): 3556-3575.
2014年
[1]Hangjia Shen, Haodong Tang*, Haiyu Yan, Wenfeng Han, Ying Li, Jun Ni*. Geometric effect ofRu/HSAG@mSiO2: a catalyst for selective hydrogenation ofcinnamaldehyde. RSC Advances, 2014, 4, 30180-30185.
[2] Jinhui Xu, Jia Zhao, Jiangtao Xu, Tongtong Zhang, Xiaonian Li*, XiaoxiaDi, Jun Ni, Jianguo Wang*, Jie Cen.Influence of Surface Chemistry of Activated Carbon on the Activity ofGold/Activated Carbon Catalyst in Acetylene Hydrochlorination. Industrial &Engineering Chemistry Research. 2014, 53, 37, 14272–14281.
[3]Guojun Lan, Haodong Tang, Huazhang Liu, Jun Ni, Ying Li*.Effect of Sulfuric Acid on Textural Properties and Catalytic Performance ofRuthenium-Containing Ordered Mesoporous Carbon Prepared via a Direct RuCl3/SBA-15Hard Templated Method. Journal of Nanoscience and Nanotechnology, 2014, 14,7131-7138.
2013年
[1]Wei Xu, Jun Ni, QunfengZhang, Feng Feng, Yizhi Xiang, Xiaonian Li*. Tailoring supported palladiumsulfide catalysts through H2-assisted sulfidation with H2S.Journal of Materials Chemistry A, 2013, 1, 12811-12817.
[2]Jun Ni, Luwei Chen, Jianyi Lin, Martin Karl Schreyer, Zhan Wang, SibudjingKawi*. High performance of Mg-La mixed oxides supported Ni catalysts for dryreforming of methane: The effect of crystal structure. International Journal ofHydrogen Energy, 2013, 38, 13631-13642.
[3]Like Ouyang, Guo-Jin Da, JunNi, Jing Xu, Yi-Fan Han*. Heterogeneous Catalysis by Gold-based BimetallicCatalysts. Recent Patents on Catalysis, 2013, 2, 2-46.
2012年前
[1]Jun Ni, Luwei Chen, Jianyi Lin, Sibudjing Kawi*. Carbon deposition onborated alumina supported nano-sized Ni catalysts for dry reforming of CH4.Nano Energy, 2012, 1, 674-686.
[2] Jun Ni, Frederic C. Meunier*, Saul Robles-Manuel, Joel Barrault, SabineValange. Characterisation of surface acidity of carbonated samples byIR-sensitive molecular probes: advantage of using tert-butyl cyanide. TheJournal of Physical Chemistry C, 2011, 115 (50): 24931-24936.
[3] Jun Ni D. Rooney, F.C. Meunier*.CsF and alumina: A mixed homogeneous–heterogeneous catalytic system for thetransesterification of sunflower oil with methanol. Applied Catalysis B:Environmental, 2010, 97(1-2): 269-275.
[4] Jiahui Xu, ConnieM.Y.Yeung, Jun Ni, Frederic Meunier,Nadia Acerbi, Martin Fowles, Shik Chi Tsang*. Methane steam reforming forhydrogen production using low water-ratios without carbon formation over ceriacoated Ni catalysts. Applied Catalysis A: General, 2008, 345(2): 119-127.
[5] Jun Ni, F.C. Meunier*. Batch andfixed-bed recirculating reactors for the esterification of palmitic acid insunflower oil using solid acid catalysts. Applied Catalysis A: General, 2007, 333(1): 122-130.
發明專利:
[1]倪珺,郭鋒浩, 一種乙醇脫氫耦合動植物油脂加氫合成脂肪醇的方法,2025-04-17, 中國, CN202510481687.3.
[2]呂亮,杜王龍,倪珺,賁海婕,曹海波,方兵華, 苯並噻唑基COFs增強聚合物電解質膜及其製備方法與在全固態鋰電池中的套用, 2025-01-17, 中國, CN202510074109.8.
[3]倪珺,朱旭江, 王燕剛, 一種負載型甲醇水蒸氣重整制氫催化劑及其製備方法與套用, 2025-01-13, 中國, CN202510047530.X.
[4]廖雪梅,倪珺, 王雲燁, 楊迎春,李小鵬, 楊秀山, 肖鑫,田雲龍, 未小莉, 羅曉曉,一種脂肪醇的一鍋法合成工藝, 2024-12-20, 中國, CN202411893216.5.
[5]倪珺,王奕星, 一種降低苯酚/雙酚A產品色度的方法, 2024-11-22, 中國, ZL202310748689.5.
[6]倪珺,劉金德, 鄭洲, 陳家銳,傅桂萍, 柴壽根, 一種N,N-二異丙基乙胺的連續合成方法, 2024-10-22, 中國, CN202411475351.8.
[7]倪珺,王鵬, 侯少文, 鄭洲,一種高溫穩定的非晶氧化鋅材料及其製備方法與套用, 2024-10-01, 中國, ZL202311043967.3.
[8]倪珺,關偉鑫, 薛冰, 王棟,一種氮摻雜負載型氧化物催化劑及其製備方法與套用, 2024-07-19, 中國, ZL202210083312.8.
[9]倪珺,王夢闖, 一種配體功能化的MOFs限域金屬催化劑及其製備方法與套用, 2024-03-29, 中國, CN202410375824.0.
[10] 倪珺, 郭鋒浩, 鄭洲,陳家銳, 傅桂萍, 一種N,N-二異丙基乙胺的合成方法, 2024-01-03, 中國, CN202410006222.8.
[11] 倪珺,陳欣輝, 張建林, 棘雲飛,一種間戊二烯順反異構催化劑及其製備方法與套用, 2023-09-21, 中國, ZL202311222866.2.
[12] 倪珺,何亞軍, 陳欣輝, 負載型複合金屬-氧化物催化劑及其製備與在甲醇和乙醇直接合成高碳異構烯烴中的套用, 2023-08-22, 中國, CN202311056391.4.
[13] 倪珺,王奕星, 鄭洲, 一種甲醇直接氧化合成甲酸鈣的方法, 2023-08-18, 中國, CN202311041997.0.
[14] 倪珺,成筠暉, 周健, 何耀輝,一種MOFs限域金屬催化劑及其製備方法與套用, 2021-08-31, 中國, CN202111017785.X.
[15] 江大好, 方葛錢, 童雨琴, 王逸凡, 洪東森, 倪珺, 李小年, 一種金屬有機框架材料封裝的納米貴金屬催化劑及其製備方法和套用, 2020-11-13, 中國, ZL201810305090.3.
[16] 江大好, 吳先元, 倪珺, 李小年, 活性炭負載型銅-金屬氧化物催化劑及其製備方法和套用, 2018-08-21, 中國, ZL201610399455.4.
[17] 倪珺, 江大好, 毛軍, 吳先元, 李小年, 一種無氫轉化高含水量油脂製備航空燃料的方法, 2017-11-17, 中國, ZL201610396049.2.

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浙江省石油學會青年工作委員會副主任、《石油學報(石油加工)》首屆和第2屆青年編委

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