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北京石油化工學(xué)院趙宏教授2026年招收碩士研究生
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研究方向: 1.電解水制氫催化電極、隔膜材料及制氫裝備與工藝研究 2.氫能組件/裝備流場模擬與設(shè)計 3.綠氫氨醇系統(tǒng)研究與智能優(yōu)化算法 4.鋰電池正負(fù)極材料研究開發(fā) 科研平臺與項目支持: 在科研項目方面,趙老師科研成果獲得863計劃,國家重點(diǎn)研發(fā)計劃,國家自然科學(xué)基金,國家科技支撐技劃等國家項目的支持,主持了江蘇省重大創(chuàng)新載體建設(shè)、主持了多個橫向課題包括中石油、中海油、中石化、寶鋼集團(tuán)、國家能源集團(tuán)、中車集團(tuán)等多個項目,橫向及縱向課題數(shù)十個個。學(xué)生在讀期間參與的課題大多來源于真實(shí)的工程需求,而非單純的實(shí)驗室模擬。 經(jīng)費(fèi)保障充足,學(xué)生開展實(shí)驗、參加學(xué)術(shù)會議、赴企業(yè)現(xiàn)場實(shí)踐均有支持。組內(nèi)科研氛圍務(wù)實(shí),強(qiáng)調(diào)解決實(shí)際問題,注重培養(yǎng)學(xué)生的工程思維與系統(tǒng)能力。 學(xué)生發(fā)展與畢業(yè)去向: 趙老師始終以“夯實(shí)基礎(chǔ)、賦能實(shí)踐、服務(wù)社會”為育人導(dǎo)向,對學(xué)生提出明確要求:態(tài)度上,需腳踏實(shí)地、主動進(jìn)取,保持肯拼搏的韌勁,不畏困難、持續(xù)精進(jìn);方法上,注重獨(dú)立思考與問題解決能力的培養(yǎng),將專業(yè)知識轉(zhuǎn)化為實(shí)踐工具,在探索中創(chuàng)新突破。培養(yǎng)目標(biāo):將理論知識與行業(yè)需求緊密結(jié)合,學(xué)以致用,錘煉解決實(shí)際問題的能力,真正實(shí)現(xiàn)“學(xué)用相長,論文落地”。 學(xué)生在就業(yè)市場上具有較強(qiáng)競爭力。學(xué)生研究方向與產(chǎn)業(yè)需求高度契合,學(xué)生在讀期間接觸的課題正是行業(yè)前沿難題,項目訓(xùn)練扎實(shí),畢業(yè)時已有豐富的工程實(shí)踐經(jīng)驗,在就業(yè)市場上廣受認(rèn)可,部分畢業(yè)生進(jìn)入寧德時代、欣旺達(dá)、華友鈷業(yè)、天賜新材料、中石化、中石油、煤科院、航天工程、中車集團(tuán)等知名企業(yè)。 招生信息: 北京石油化工學(xué)院 新材料與化工學(xué)院 招收碩士/博士生。 有意向的同學(xué)可將個人簡歷發(fā)送至:zhaoh#bipt.edu.cn(請將#改為@),建議郵件標(biāo)題注明“研究生/博士-姓名-畢業(yè)院校”。 選導(dǎo)師是學(xué)術(shù)生涯的重要一步。祝大家都能找到心儀的導(dǎo)師,順利上岸! 導(dǎo)師個人介紹 趙宏,工學(xué)博士,教授,博士生導(dǎo)師。2025年11月起任教于北京石油化工學(xué)院。此前在北京化工大學(xué)有著15年的教研經(jīng)歷,任職研究員,博導(dǎo),并曾擔(dān)任北京化工大學(xué)蘇州研究院院長,在科研管理和產(chǎn)學(xué)研合作方面積累了豐富經(jīng)驗。所屬團(tuán)隊科研條件完善,學(xué)術(shù)氛圍濃厚。 在“Advanced Materials”、“Small”等期刊發(fā)表SCI、EI等學(xué)術(shù)論文70余篇;申請國內(nèi)外發(fā)明專利40余件。曾獲曾獲中國專利金獎,北京市科學(xué)技術(shù)獎一等獎,教育部技術(shù)發(fā)明一等獎(2項),北京市優(yōu)秀博士論文,全國優(yōu)秀博士論文提名,中國石油和化學(xué)工業(yè)專利獎金獎,中國石油和化工聯(lián)合會科技進(jìn)步獎一等獎(2項),中國石油和化學(xué)工業(yè)聯(lián)合會技術(shù)發(fā)明獎一等獎,中國化工學(xué)會技術(shù)發(fā)明獎一等獎,中國專利優(yōu)秀獎(2 項),浙江省專利金獎等。 主要成就: 創(chuàng)制海洋平臺天然氣凈化新工藝與裝備,可使單個海洋鉆采平臺建設(shè)成本顯著降低,創(chuàng)制國五/國六汽油凈化新工藝,成果已在中石油全面推廣,創(chuàng)制鋰電行業(yè)低濕度回收資源化利用新技術(shù),每GWh鋰電產(chǎn)能回收效益約2500萬元,共促成企業(yè)新增產(chǎn)值10億元以上。 利用專業(yè)技術(shù)優(yōu)勢和多年研發(fā)經(jīng)驗,以氫能領(lǐng)域納米催化材料合成為基礎(chǔ),進(jìn)行氫能關(guān)鍵部件和裝備的開發(fā),涵蓋氫氣制、儲、用等領(lǐng)域,開發(fā)了AEM電解水制氫裝備、模塊化堿性電解水制氫裝備、綠色氫氨醇與綠色航煤等全系統(tǒng)研究與應(yīng)用、氫儲能熱電氧三聯(lián)供系統(tǒng)、甲醇重整/氨分解供能燃料電池系統(tǒng)等多項氫能領(lǐng)域核心技術(shù)與裝備。 制氫方面,針對電解水制氫行業(yè)的痛點(diǎn),創(chuàng)新提出低成本模塊化堿性電解槽產(chǎn)業(yè)化技術(shù)方案,開發(fā)了電解槽分模塊分級控制技術(shù),實(shí)現(xiàn)寬功率動態(tài)響應(yīng),適配光伏、風(fēng)電等波動性電源,創(chuàng)新電解槽標(biāo)準(zhǔn)化、自動化裝配工藝,將電解槽生產(chǎn)周期縮短70%,成本下降30%,滿足綠氫規(guī);瘧(yīng)用需求。 用氫方面,建成了氫燃料電池CCM卷對卷雙面精密涂布產(chǎn)線,產(chǎn)能10萬平米/年,開發(fā)了高效高一致性氫燃料電池膜電極,產(chǎn)能100萬片/年。 氫能綜合利用方面,承擔(dān)了長慶油田零碳抽油機(jī)供能項目課題,驗證了“綠電制氫-儲氫-氫燃料電池發(fā)電”全鏈條技術(shù)路線的可行性,將油田的“棄風(fēng)棄光”資源轉(zhuǎn)化為綠氫儲能,變廢為寶,極大提升了能源綜合利用效率,為油田清潔能源轉(zhuǎn)型開辟了新路徑。為國家能源集團(tuán)開發(fā)了高效撬裝二氧化碳加氫制綠甲醇系統(tǒng),突破傳統(tǒng)工藝瓶頸,提高甲醇轉(zhuǎn)化效率,為化工行業(yè)低碳轉(zhuǎn)型與可持續(xù)發(fā)展提供了系統(tǒng)性解決方案。 榮譽(yù)獎項: 2009.1,教育部技術(shù)發(fā)明一等獎-納微結(jié)構(gòu)藥物顆粒超重力法制備新工藝 2017.2,教育部技術(shù)發(fā)明一等獎-大型超重力分離裝備及工業(yè)應(yīng)用 2018.12,中國專利金獎-一種連續(xù)化穩(wěn)定維生素 A微膠囊的制備方法 2011.11,北京市科學(xué)技術(shù)獎一等獎-面向節(jié)能減排的過程強(qiáng)化新技術(shù)及應(yīng)用 2015.11,中國專利優(yōu)秀獎-一種低壓降納微結(jié)構(gòu)化填料旋轉(zhuǎn)床超重力裝置及應(yīng)用 2016.11,中國專利優(yōu)秀獎-納米分散的高全反式類胡蘿卜素微膠囊的制備方法 2018.12,浙江省專利金獎-連續(xù)化納米分散維生素 A微膠囊的制備方法 2017.11,中國石油和化學(xué)工業(yè)聯(lián)合會科技進(jìn)步獎一等獎-環(huán)保型液化氣深度脫硫成套技術(shù)開發(fā)與工業(yè)應(yīng)用 2017.12,中國石油和化學(xué)工業(yè)聯(lián)合會專利獎金獎-一種連續(xù)化穩(wěn)定維生素 A微膠囊的制備方法 2019.12,中國石油和化學(xué)工業(yè)聯(lián)合會技術(shù)發(fā)明獎一等獎-面向工業(yè)含硫氣體深度凈化的"超重力+"新技術(shù)及應(yīng)用 2019.12,中國化工學(xué)會技術(shù)發(fā)明獎一等獎-超重力氧化反應(yīng)器裝備新技術(shù)及工業(yè)應(yīng)用 代表性論文: [1] Zhao H, Chen J-F, Zhao Y, Jiang L, Sun J-W, Yun J. Hierarchical Assembly of Multilayered Hollow Microspheres from an Amphiphilic Pharmaceutical Molecule of Azithromycin[J]. Advanced Materials, 2008, 20(19): 3682-3686. [2] Zhao H, Shao L, Chen J-F. High-Gravity Process Intensification Technology and Application[J]. Chemical Engineering Journal, 2010, 156(3):588-593. [3] Zhao H, Wang J X, Wang Q A, Chen J-F, Yun J. Controlled Liquid Antisolvent Precipitation of Hydrophobic Pharmaceutical Nanoparticles in a Microchannel Reactor[J]. Industrial & Engineering Chemistry Research, 2007, 46(24): 8229-8235. [4] Zhao H, Le Y, Liu H-Y, Hu T-T, Shen Z-G, Chen J-F. Preparation of Microsized Spherical Aggregates of Ultrafine Ciprofloxacin Particles for Dry Powder Inhalation (DPI)[J]. Powder Technology, 2009, 194(1-2): 81-86. [5] Zhao H, Wang J-X, Zhang H-X, Shen Z-G, Yun J, Chen J-F. Facile Preparation of Danazol Nanoparticles by High-Gravity Anti-solvent Precipitation (HGAP) Method[J]. Chinese Journal of Chemical Engineering, 2009, 17(2): 318-323. [6] Zhao H, Kang X-L, Chen X-L, Wang J-X, Le Y, Shen Z-G, Chen J-F. Antibacterial Activities of Amorphous Cefuroxime Axetil Ultrafine Particles Prepared by High Gravity Antisolvent Precipitation (HGAP)[J]. Pharmaceutical Development and Technology, 2009, 14 (5): 485-491. [7] Zhang H-X, Zhao H, Wang J-X, Chen J.-F., Lu Y.-F. and Yun J. Facile Preparation of Monodisperse Pharmaceutical Colloidal Spheres of Atorvastatin Calcium via Self-Assembly[J]. Small, 2009, 5(16): 1846-1849. [8] Liang Z-Z, Yi Q-H, Wang W, Han X-L, Chen J-F, Le Y, Wang J-X, Xue C-Y, Zhao H*. A Systematic Study of Solvent Effect on the Crystal Habit of Dirithromycin Solvates by Computer Simulation[J]. Computer and Chemical Engineering, 2014, 62(0): 56-61. [9] Liang Z-Z, Chen J-F, Ma Y, Wang W, Han X-L, Xue C-Y, Zhao H*, Qualitative rationalization of crystal growth morphology of benzoic acid controlled using solvents[J]. CrystEngComm. 2014, 16(27): 5997-6002. [10] Zuozhong Liang, Qinhua Yi, Wei Wang, Xianglong Han, Jianfeng Chen, Yuan Le,Jiexin Wang, Chunyu Xue, Hong Zhao*. A Systematic Study of Solvent Effect on the Crystal Habit of Dirithromycin Solvates by Computer Simulation[J]. Computer and Chemical Engineering, 2014, 62: 56-61. [11] Zuozhong Liang, Jian-Feng Chen, Ying Ma, Wei Wang, Xianglong Han, Chunyu Xue and Hong Zhao*. Qualitative rationalization of crystal growth morphology of benzoic acid controlled using solvents[J]. CrystEngComm. 2014, 16: 5997-6002. [12] Wei Wang, Zuozhong Liang, Xianglong Han, Jianfeng Chen, Chunyu Xue, Hong Zhao*. Mechanical and thermodynamic properties of ZrO2under high-pressure phase transition: A first-principles study[J]. Journal of Alloys and Compounds, 2015, 622: 504-12. [13] Xianglong Han, Zuozhong Liang, Wei Wang, Jianfeng Chen, Chunyu Xue, Hong Zhao*. Characterization and synthesis of ZTA nanopowders and ceramics by rotating packed bed (RPB)[J]. Ceramics International, 2015, 41(3, Part A): 3568-73. [14] Xianglong Han, Zuozhong Liang, Li Feng, Wei Wang, Jianfeng Chen, Chunyu Xue, Hong Zhao*. Co-precipitated synthesis of Al2O3–ZrO2 composite ceramic nanopowders by precipitant and drying method regulation: A systematic study[J]. Ceramics International, 2015, 41(1, Part A): 505-13. [15] Zuozhong Liang, Yuan Wang, Wei Wang, Xianglong Han, Jian-Feng Chen, Chunyu Xue,and Hong Zhao*. Structural Correspondence of the Oriented Attachment Growth Mechanism of Crystals of the Pharmaceutical Dirithromycin[J]. Langmuir. 2015, 31, 13802−13812. [16] Zuozhong Liang, Wei Wang, Min Zhang, Fei Wu, Jian-Feng Chen, Chunyu Xue, Hong Zhao*. Structural, Mechanical and Thermodynamic Properties of ZrO2 Polymorphs by First-Principles Calculation[J]. Physica B: Condensed Matter. 2017, 511: 10-19. [17] Zuozhong Liang, Min Zhang, Fei Wu, Jian-Feng Chena, Chunyu Xue, Hong Zhao*. Supersaturation Controlled Morphology and Aspect Ratio Changes of Benzoic Acid Crystals[J]. Computers & Chemical Engineering. 2017, 99: 296-303. [18] Min Zhang, Zuozhong Liang, Fei Wu, Jian-Feng Chen, Chunyu Xue, Hong Zhao*. Crystal Engineering of Ibuprofen Compounds: From Molecule to Crystal Structure to Morphology Prediction by Computational Simulation and Experimental Study[J]. Journal of Crystal Growth. 2017, 467: 47–53. [19] Liankun Wu, Weiwei Geng, Lidong Gao, Jianfeng Chen, and Hong Zhao*. Study of Gas Dehydration Process by Ionic Liquid Method in a Rotating Packed Bed[J]. Energy & Fuels, 2017, 31(12). [20] Liangyu Xiang, Liankun Wu, Lidong Gao, Jianfeng Chen, Yingfan Liu, Hong Zhao*. Pilot scale applied research on CO2 removal of natural gas using a rotating packed bed propylene carbonate[J]. Chemical Engineering Research and Design, 2019, 150:33–39. [21] Bo Yu Zhang, Xiao-Kuan Wu, Jun An Gao, Hong Zhao*. Structured Cerium-Manganese Catalysts Supported on Nickel Foam for Toluene Oxidation by Electric Internal Heating[J].Chem Plus Chem, 2023, 89(4):e202300466. [22] Simin Luo, Tengfei Zhang, Hongning Xu, Jie Zhang, Haichao Zhao, Jimmy Yun, and Hong Zhao*. Optimizing Alkaline Water Electrolysis: A Dual-Model Approach for Enhanced Hydrogen Production Efficiency[J]. Energies, 2024, 17:5512. [23] Hongning Xu, Haowen Fan, Haien Yang, Haijian Chen, Jie Zhang, Hong Zhao*. Design, construction, and operation of hydrogen energy storage system for zero-carbon pumping units[J]. International Journal of Hydrogen Energy, 2025, 104, 2-12. [24] Leilei Cai, Zuobo Yang, Tingting Liu, Ningjie Jin, Yaqi Cao, Sung Lai Jimmy Yun, Jie Zhang, and Hong Zhao*. Seed-Mediated Synthesis of High Loading PtCo Intermetallic Compounds Enhanced Catalytic Efficacy and Long-Term Stability for Oxygen Reduction Reaction[J]. Chem Plus Chem, 2024. [25] Xin Teng, Xiao-kuan Wu, Xiao Xu, Xiuzhang Lan, Hongyu Zhang, Zuobo Yang, Zexu Bai, Hong Zhao*, Jimmy Yun, Jie Zhang. Asymmetric Ru–O–Cr active units trigger oxygen radical coupling for efficient oxygen evolution reaction across the entire pH range[J]. Chemical Engineering Journal, 2025, 525, 169832. [26] Zuobo Yang, Xiaokuan Wu, Leilei Cai, Yaqi Cao, Zandong Zhang, Xin Teng, Chaoyang Li, Jiayi Wang, Jimmi Yun, Jie Zhang, Xin Liang, and Hong Zhao*. Mesoporous ATO with Oxygen Vacancies as an Outstanding IrO2 Support for Boosting Oxygen Evolution Reaction in PEM Water Electrolysis[J]. Small, 2025, 21, 37. [27] Zuobo Yang, Xiaokuan Wu, Leilei Cai, Jimmy Yun, Jie Zhang, Xin Liang and Hong Zhao*. Porous Antimony Tin Oxide with a Particle Assembly Structure as an IrO2 Support for an Efficient Oxygen Evolution Reaction in Proton Exchange Membrane Water Electrolysis[J]. ACS ACSAPPLIED MATERIALS INTERFACES, 2025,17, 15. |
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