太阳能制氢、新能源材料、光催化
碳捕集与利用
空气取水
超临界流体
能质传递与转化
太阳能制氢、新能源材料、光催化
碳捕集与利用
空气取水
超临界流体
能质传递与转化
| 项目编号 | 项目名称 | 项目来源 | 起讫时间 | 承担角色 | 项目类别 |
|---|---|---|---|---|---|
| 52576229 | 超临界CO2光热催化还原及能质传输强化机制研究 | 国家自然科学基金项目 | 2026-01~2029-12 | 负责人 | 纵向项目 |
| 202511299 | 汽轮发电机组低负荷节能降碳技术研究 | 西安西热节能技术有限公司 | 2025-11~2026-08 | 负责人 | 横向项目 |
| 202511298 | 空冷岛低温气液两相流动多参数调控研究 | 西安西热节能技术有限公司 | 2025-11~2026-02 | 负责人 | 横向项目 |
| J202504032 | 碳捕集系统研制技术支持服务 | 中国船舶集团有限公司第七〇四研究所 | 2025-03~2027-03 | 负责人 | 横向项目 |
| 202502106 | 直接空冷系统热力计算软件开发 | 山东蓝想环境科技股份有限公司 | 2025-03~2026-02 | 负责人 | 横向项目 |
| 20250317 | 背压机组源侧参数深度优化研究 | 西安热工研究院有限公司 | 2025-01~2025-12 | 负责人 | 横向项目 |
| 202412319 | 太阳能光热电一体化制氢系统试验验证及集成设计 | 中海石油气电集团有限责任公司 | 2025-01~2025-10 | 负责人 | 横向项目 |
| 20240501 | 太阳能光热耦合吸附水制氢体系设计关键技术研究 | 中国电建集团西北勘测设计研究院有限公司 | 2024-05~2025-09 | 负责人 | 横向项目 |
| 20240502 | 大型建筑设施对空冷机组冷端流场及热力性能影响研究 | 西安西热节能技术有限公司 | 2024-04~2024-07 | 负责人 | 横向项目 |
| 2024GX-YBXM-459 | 太阳能光热耦合吸附水制氢体系设计关键技术研究 | 陕西省科技厅 | 2024-01~2025-12 | 其它 | 纵向项目 |
| 20231202 | 含氟化合物的GWP预估测试 | 西安近代化学研究所 | 2023-11~2024-03 | 负责人 | 横向项目 |
| 20230991 | DAC变温吸附材料机理分析研究及检测服务 | 西安热工研究院有限公司 | 2023-09~2024-02 | 负责人 | 横向项目 |
| 2023KXJ-064 | 陕西省秦创原 “科学家+工程师”队伍建设 | 陕西省科技厅 | 2023-01~2025-12 | 负责人 | 纵向项目 |
| 52276213 | 太阳能驱动空气取水耦合制氢的能质传递协同机制研究 | 国家自然科学基金项目 | 2023-01~- | 负责人 | 纵向项目 |
| 2022YFB3803604-ZKT02 | 光催化材料中试生产关键技术及规模化制氢系统探索 | 国家重点研发计划子课题 | 2022-11~- | 负责人 | 纵向项目 |
| 202211175-ZKT01 | 燃气电厂二氧化碳捕集工艺包开发及试验研究 | 中海石油气电集团有限责任公司 | 2022-10~- | 负责人 | 横向项目 |
| 20220863 | 电调峰特性和供热能力调节耦合特性等燃煤机组灵活性关键技术研究 | 西安热工研究院有限公司 | 2022-08~- | 负责人 | 横向项目 |
| JM-202208001 | XX*******研究 | 西安航天动力研究所 | 2022-08~- | 负责人 | 横向项目 |
| 20220898 | 锅炉集汽集箱管道裂纹成因分析项目服务 | 国家电投集团山西铝业有限公司 | 2022-07~- | 负责人 | 横向项目 |
| xpt022022003 | 制氢多相反应体系热质传递微观机理及有序化调控机制 | 西安交通大学基本科研业务费 | 2022-05~- | 负责人 | 纵向项目 |
| 专利名称 | 申请号 | 专利类型 | 申请日期 |
|---|---|---|---|
| 一种基于超临界二氧化碳诱导剥层超分子前驱体改性的石墨相氮化碳光催化剂及制备方法和应用 | CN2025118677819 | 发明 | 2025.12.11 |
| 一种负载复合纳米点多孔氮化碳光催化剂及其制备方法和应用 | CN202511078376.9 | 发明 | 2025.08.01 |
| 干湿不对称吸湿结构的制备方法及基于干湿不对称吸湿结构的环境湿气捕集自发电的系统 | CN202511048644.2 | 发明 | 2025.07.29 |
| 基于HATN-Zn双效电池耦合动态解耦水电解电氢联产系统及方法 | CN202511043175.5 | 发明 | 2025.07.28 |
| 一种双段真空解吸式常温脱碳塔 | CN202510982263.5 | 发明 | 2025.07.16 |
| 一种具有自热功能的一体化氨分解制氢与提纯膜反应器 | CN202510628296.X | 发明 | 2025.05.15 |
| 基于吸湿盐原位掺杂的高保水性水凝胶材料和制备方法及其应用 | CN202510491798.2 | 发明 | 2025.04.18 |
| 一种高保湿性空气取水-光催化氢水联产复合材料及其制备方法和应用 | CN202510491794.4 | 发明 | 2025.04.18 |
| 一种结合光伏发电、连续式空气取水及电解制氢的集成系统及方法 | CN202510491820.3 | 发明 | 2025.04.18 |
| 一种可降低启动电压的铁基液流解耦水电解制氢系统及方法 | CN202510335424.1 | 发明 | 2025.03.20 |
| 太阳能驱动空气集水耦合制氢系统的动态控制方法及装置 | CN202510000512.6 | 发明 | 2025.01.02 |
| 基于太阳能驱动的吸附式空气取水系统及方法 | CN202411946764.X | 发明 | 2024.12.27 |
| 一种深度岩层稠油热驱替开发协同绿电供给系统及方法 | CN202411862365.5 | 发明 | 2024.12.17 |
| 压裂返排液洁净处理及稠油热采一体化实验系统和方法 | CN202411862359.X | 发明 | 2024.12.17 |
| 一种具有宽光谱响应的过渡金属硫化物异质结及其制备方法与应用 | CN202411859569.3 | 发明 | 2024.12.17 |
| 一种偏远油气田氢储能及原油降阻集输一体化系统和方法 | CN202411862366.X | 发明 | 2024.12.17 |
| 一种石墨相氮化碳光催化剂及其制备方法与应用 | CN202411518162.4 | 发明 | 2024.10.29 |
| 二氧化碳捕集吸附剂及其制备方法和应用以及二氧化碳吸附设备 | CN202411351182.7 | 发明 | 2024.09.26 |
| 光热-光催化系统及其制备方法以及产氢设备和氢燃料电池 | CN202411344864.5 | 发明 | 2024.09.25 |
| 一种S、Na、B 共掺杂富氰基石墨相氮化碳光响应催化剂及其制备方法及应用 | CN202411316823.5 | 发明 | 2024.09.20 |
[31] Jinwen Shi, Binjiang Zhai, Yazhou Zhang, Cheng Cheng, “Bulk/surface engineering of g-C3N4 for high-efficiency photocatalytic H2 production”, 10th International Workshop on Modeling in Crystal Growth, Xi'an, China, Oct. 16-19, 2022.
[30] Jinwen Shi, Yanbing Liu, Hui Jin, Liejin Guo, “Current research progress in recycling and degradation of waste plastics: a review”, 25th Conference on Process Integration, Modelling and Optimisation for Energy Saving and Pollution Reduction, Split and Bol, Croatia, Sep. 5-8, 2022.
[29] Jinwen Shi, Yanbing Liu, Zongyuan Zhu, Hui Jin, “Facile synthesis and economic analysis of cheap biochar-based metal catalyst Cu/C for efficient biodiesel production from soybean oil”, 25th Conference on Process Integration, Modelling and Optimisation for Energy Saving and Pollution Reduction, Split and Bol, Croatia, Sep. 5-8, 2022.
[28] Jinwen Shi, Yazhou Zhang, Cheng Cheng, “The kinetics regulation of photo-generated carriers in g-C3N4 by bulk/surface engineering towards high-efficiency photocatalytic H2 production”, 1st World Conference on Multiphase Transportation, Conversion and Utilization of Energy, Virtual, Jul. 27-31, 2022. Keynote
[27] Jinwen Shi, Yazhou Zhang, Cheng Cheng, “The kinetics regulation of photo-generated carriers in g-C3N4 by bulk/surface engineering in photocatalytic H2 production”, 14th International Green Energy Conference, Virtual, Jul. 4-8, 2022. Invited
[26] Jinwen Shi, Cheng Cheng, Liejin Guo, “Structure regulation of ultrathin graphitic carbon nitride for significantly enhanced photocatalytic H2 evolution under visible-light irradiation”, 23rd World Hydrogen Energy Conference, Istanbul, Turkey, Jun. 26-30, 2022.
[25] Jinwen Shi, Liuhao Mao, Hui Jin, Bingru Lu, “Rapid high-temperature hydrothermal post treatment on graphitic carbon nitride for enhanced photocatalytic H2 evolution”, International Workshop on Solar Fuel, Wuhan, China, Dec. 10-13, 2021.
[24] Jinwen Shi, Cheng Cheng, Liuhao Mao, “NiCo2O4 nanosheet as a novel oxygen-evolution-reaction cocatalyst in-situ bonded on g-C3N4 photocatalyst for excellent overall water splitting”, ACS Fall 2021, Atlanta, USA, Aug. 22-26, 2021.
[23] Jinwen Shi, Yazhou Zhang, “Ultrathin g-C3N4 porous nanosheets with abundant nitrogen vacancies towards highly photocatalytic H2 production under visible light”, 4th International Symposium on Energy and Environmental Photocatalytic Materials, Xi'an, China, Jul. 25-29, 2021.
[22] Jinwen Shi, Cheng Cheng, “Cyano group-rich crystalline carbon nitride towards ultrahigh photocatalytic H2 evolution under visible-light irradiation”, 4th International Symposium on Energy and Environmental Photocatalytic Materials, Xi'an, China, Jul. 25-29, 2021.
[21] Jinwen Shi, Yazhou Zhang, Liejin Guo, “Hydrothermal growth of Co3(OH)2(HPO4)2 nano-needles on LaTiO2N for enhanced photocatalytic O2 evolution under visible-light irradiation”, International Symposium on Inorganic Materials and Energy Chemistry 2019, Auckland, New Zealand, Jan. 18-21, 2019. Invited
[20] Jinwen Shi, Yazhou Zhang, Liejin Guo, “Rapid high-temperature treatment on graphitic Carbon nitride for excellent photocatalytic H2-evolution performance”, 22nd International Conference on Photochemical Conversion and Storage of Solar Energy, Hefei, China, Jul. 29-Aug. 3, 2018.
[19] Jinwen Shi, Yazhou Zhang, Liejin Guo, “Hydrothermal growth of Co3(OH)2(HPO4)2 nano-needles on LaTiO2N for enhanced photocatalytic O2 evolution under visible-light irradiation”, 12th International Conference on Ceramic Materials and Components for Energy and Environmental Applications, Singapore, Jul. 22-27, 2018. Invited
[18] Jinwen Shi, Cheng Cheng, Liejin Guo, “One-pot preparation of WO3/g-C3N4 composites towards enhanced photocatalytic H2 production under visible-light irradiation”, 15th International Conference on Clean Energy, Xi'an, China, Dec. 8-11, 2017.
[17] Jinwen Shi, Cheng Cheng, Liejin Guo, “WO3/g-C3N4 composites: One-pot preparation and enhanced photocatalytic H2 production under visible-light irradiation”, International Conference on Functional Nanomaterials and Nanodevices 2017, Budapest, Hungary, Sep. 24-27, 2017. Invited
[16] Jinwen Shi, Shichao Zong, Leijin Guo, “Molten Ag2SO4-based ion-exchange preparation of Ag0.5La0.5TiO3 for photocatalytic O2 evolution”, UK-China International Particle Technology Forum VI, Yangzhou, China, Sep. 8-10, 2017.
[15] Jinwen Shi, Yazhou Zhang, Liejin Guo, “LaTiO2N-LaCrO3: Novel continuous solid solutions towards enhanced photocatalytic H2 evolution under visible-light irradiation”, 8th International Conference on Hydrogen Production, Brisbane, Australia, Jul. 29-31, 2017.
[14] Jinwen Shi, Liejin Guo, “Novel ABO3-based materials: Tailored components and structures towards photocatalytic H2 evolution under visible-light irradiation”, 8th International Symposium on Multiphase Flow, Heat Mass Transfer and Energy Conversion, Chengdu, China, Dec. 16-19, 2016. Keynote
[13] Jinwen Shi, Cheng Cheng, Liejin Guo, “Porous Cr2O3/g-C3N4 composites: One-pot preparation and enhanced visible-light-driven photocatalytic H2 evolution”, 8th International Symposium on Multiphase Flow, Heat Mass Transfer and Energy Conversion, Chengdu, China, Dec. 16-19, 2016.
[12] Jinwen Shi, Yazhou Zhang, Liejin Guo, “Molybdenum sulfide nanosheets: Ammonia post-treatment towards improved visible-light-driven hydrogen production”, XXIV International Materials Research Congress, Cancun, Mexico, Aug. 14-20, 2015. Invited
[11] Jinwen Shi, Yazhou Zhang, Liejin Guo, “NH3-Treated MoS2 Nanosheets for Enhanced H2 Evolution under Visible-light Irradiation”, SPIE Optics and Photonics 2015, San diego, USA, Aug. 8-14, 2015.
[10] Jinwen Shi, Liejin Guo, “Novel ABO3-based photocatalysts for water splitting under visible-light irradiation”, International Conference on Clean Energy, Istanbul, Turkey, Jun. 8-12, 2014.
[9] Jinwen Shi, Liejin Guo, “Design and structure-activity relationships of novel ABO3 structure-based visible-light-driven photocatalysts”, Materials Science & Technology 2013 Conference & Exhibition, Montreal, Canada, Oct. 27-31, 2013.
[8] Jinwen Shi, Liejin Guo, “Novel ABO3-based photocatalysts for visible-light-driven water splitting”, 8th International Conference on High Temperature Ceramic Matric Composites, Xi’an, China, Sep. 22-26, 2013.
[7] Jinwen Shi, Liejin Guo, “Tin(II) antimonates with adjustable compositions: Bandgap and nanostructure control for visible-light-driven photocatalytic H2 evolution”, XXI International Materials Research Congress 2012, Section Mexico, Cancun, Quintana Roo, Mexico, Aug. 12-17, 2012.
[6] Jinwen Shi, Jinhua Ye, Lijing Ma, Shuxin Ouyang, Dengwei Jing, Liejin Guo, “Upconversion luminescent Er doped SrTiO3: Site-selected substitution and visible-light-driven photocatalytic H2 or O2 evolution”, 36th International Conference and Exposition on Advanced Ceramics and Composites (ICACC’12), Daytona Beach, Florida, USA, Jan. 22-27, 2012.
[5] 师进文,马利静,郭鹏慧,敬登伟,郭烈锦*, “暴露{001}面的单晶纳米片NaSbO3分等级结构的水热合成及光催化产氢性能研究”, 第12届全国氢能会议暨第4届两岸三地氢能研讨会, 武汉, 湖北, 中国, 2011.10.14-17.
[4] Jinwen Shi, Jinhua Ye, Dengwei Jing, Shuxin Ouyang, Lijing Ma, Liejin Guo, “Site-selective doping of upconversion luminescent Er into SrTiO3 for visible-light-driven photocatalytic H2 or O2 evolution”, 11th International Conference on Clean Energy (ICCE-2011), Taichung, Taiwan, Nov. 2-5, 2011.
[3] Jinwen Shi, Jinhua Ye, Qiuye Li, Penghui Guo, Guangcheng Xi, Liejin Guo, “Self-templated synthesis of single-crystal AgSbO3 nanosheets for visible-light-driven photocatalytic O2 evolution”, 9th International Meeting of Pacific Rim Ceramic Societies (PacRim 9), Cairns, North Queensland, Australia, Jul. 10-14, 2011.
[2] Jinwen Shi, Zhaohui Zhou, Shaohua Shen, Dengwei Jing, Liejin Guo, “Synthesis of SnSb2O6 with different micro-/nano-structures for visible-light-driven photocatalytic H2 evolution”, 2011 MRS Spring Meeting and Exhibit, San Francisco, California, USA, Apr. 25-29, 2011.
[1] 师进文,叶金花,周朝晖,郭烈锦, “Cr-doped Na0.5La0.5TiO3纳米立方体单晶的水热合成及可见光催化产氢性能研究”, 第12届全国氢能会议暨第4届两岸三地氢能研讨会, 杭州, 浙江, 中国, 2010.10.24-27. 优秀论文奖