研究成果

Selected representative works from our group

80. Vapor-liquid equilibrium measurement and thermodynamic modeling of CO2 capture using nonaqueous EAE-EGHE: Activity coefficient behavior in weak solvation environment

Ziru Zhao, Yu Feng, Shuai Wang, Yue Gu, Guoping Hu, Shufeng Shen*

Chemical Engineering Science, 2026, DOI: https://doi.org/10.1016/j.ces.2026.124981

通过气液平衡测量和热力学建模研究了非水EAE-EGHE溶剂捕集CO2的过程,揭示了弱溶剂化环境下的活度系数行为。

79. Process simulation and analysis of pressure equalization and reflux in flue gas CO2 capture via vacuum pressure swing adsorption

Bo Ren, Jinbiao Luo, Hao Yuan, Yalou Guo*, Shengying Zhao, Tao Qi, Sayed Alireza Hosseinzadeh Hejazi, Guoping Hu*

Adsorption, 2026, DOI: https://doi.org/10.1007/s10450-026-00708-w

通过流程模拟分析了真空变压吸附捕集烟气CO2过程中均压与回流的作用。

78. Shortening Intracrystalline Diffusion Pathways of Mordenite for Enhanced CO2/CH4 Separation

Zhifu Liu, Chenghao Liu, Chuhan Fu, Gang Kevin Li, Tao Qi, Guoping Hu

Chemical Communications, 2026, DOI: https://doi.org/10.1039/D6CC04243K

通过缩短丝光沸石晶内扩散路径,提升CO2/CH4分离性能。

Shortening Intracrystalline Diffusion Pathways of Mordenite for Enhanced CO2/CH4 Separation

77. The role of heavy reflux in pressure swing adsorption for industrial carbon capture

Jinbiao Luo, Hao Yuan, Yalou Guo*, Shuangjun Li, Qingchuan Chen, Tao Qi, Guoping Hu*

Chemical Engineering Journal, 2026, DOI: https://doi.org/10.1016/j.cej.2026.180819

研究了重回流在变压吸附工业碳捕集中的作用。

76. Mass-balance separation-limits framework for efficient PVSA cycle design

Gongkui Xiao*, Libin Liu, Guoping Hu, Ehsan Sadeghi Pouya, Eric May*

Industrial & Engineering Chemistry Research, 2026, DOI: https://doi.org/10.1021/acs.iecr.6c02315

提出了质量平衡分离极限框架,用于高效PVSA循环设计。

75. Zipf-like statistical regularities in molecular sequence representations for chemical language models

Anyu Liu, Chao Fang*, Yuntao Li, Zongguo Wang, Tao Qi, Guoping Hu*

The Journal of Physical Chemistry Letters, 2026, DOI: https://doi.org/10.1021/acs.jpclett.6c02089

揭示了化学语言模型分子序列表示中的Zipf类统计规律。

74. Promoting the regeneration of polyethylenimine-impregnated sorbents through in situ vapor purge for direct air capture

Yongqiang Wang, Qiuran Yang, Paul Webley*, Guoping Hu*, Gang Kevin Li*

AIChE Journal, 2026, DOI: https://doi.org/10.1002/aic.70571

通过原位蒸气吹扫促进聚乙烯亚胺浸渍吸附剂的再生,用于直接空气捕集。

73. Direct air capture technologies: Innovations, integration, and pathways to scale

Chuhan Fu†, Wenkang Deng†, Yalou Guo, Zhifu Liu, Zhe Lu, Yong Wang, Na Geng, Xiaofeng Xie, Fu Rao, Yangyang Guo*, Xiaolei Fan*, Gang Kevin Li*, Tingyu Zhu, Tao Qi*, Guoping Hu*

Chemical Society Reviews, 2026, DOI: https://doi.org/10.1039/d6cs00475j

系统综述了直接空气碳捕集技术的最新进展、技术集成策略及规模化应用路径。

Direct air capture technologies: Innovations, integration, and pathways to scale

72. Lewatit® VP OC 1065吸附剂对CO2的吸附行为实验与模拟研究

郭亚楼,曾文懋,罗锦标,胡国平*,Paul A. Webley*

化工进展, 2026, DOI: https://doi.org/10.16085/j.issn.1000-6613.2026-0694

通过实验与模拟相结合的方法研究了Lewatit® VP OC 1065吸附剂对CO2的吸附行为。

71. Machine-learning-assisted performance prediction and elucidation of governing factors in R solvent extraction systems

Anyu Liu†, Xin Ding†, Yang Yuan†, Chao Fang*, Zongguo Wang*, Geng Li, Yangang Wang, Tao Qi, Guoping Hu*

Separation and Purification Technology, 2026, DOI: https://doi.org/10.1016/j.seppur.2026.138089

利用机器学习辅助预测R溶剂萃取体系的性能,并揭示了关键控制因素。

70. Controllable synthesis and characterization of spherical CeO2 abrasives for chemical mechanical polishing

Chao Fang†, Guanghui Shi†, Sibin Li, Xiaofeng Xie, Chenghao Liu, Zhi Qi, Peiyu Zhang, Geng Li, Tao Qi, Xiao Wang*, Guoping Hu*

ENGINEERING Chemical Engineering, 2026, DOI: https://doi.org/10.1007/s11705-026-2672-4

实现了球形CeO2磨料的可控制备与表征,应用于化学机械抛光领域。

69. Porous carbon materials for carbon dioxide capture

Zhifu Liu, Chuhan Fu, Tao Qi, Hui Zhou*, Guangping Hao*, Yalou Guo*, Guoping Hu*

Carbon Energy, 2026, DOI: https://doi.org/10.1002/cey2.70229

综述了多孔碳材料在二氧化碳捕集领域的应用与研究进展。

Porous carbon materials for carbon dioxide capture

68. Selective adsorption of hafnium using SBA-15 mesoporous silica for efficient separation from zirconium

Li Wan†, Renfeng Huang†, Cai-Xin Zhang*, Qianze Li, Yong Wang, Tao Qi, Guoping Hu*

Industrial & Engineering Chemistry Research, 2026, DOI: https://doi.org/10.1021/acs.iecr.6c00618

利用SBA-15介孔二氧化硅选择性吸附铢,实现镨铢高效分离。

Selective adsorption of hafnium using SBA-15 mesoporous silica for efficient separation from zirconium

67. Uncovering the role of Li+-H2O ion-dipole interaction in zeolite deactivation

Chenghao Liu, Yong Li*, Zhe Lu, Shuzhuang Sun, Yong Wang, Zhifu Liu, Gang (Kevin) Li, Jingyue Shang, Songbai Hu, Lunhua He, Tao Qi, Guoping Hu*

Chemical Engineering Journal, 2026, DOI: https://doi.org/10.1016/j.cej.2026.175273

揭示了Li+-H2O离子-偶极相互作用在沸石失活过程中的关键作用。

Uncovering the role of Li+-H2O ion-dipole interaction in zeolite deactivation

66. Combined aperture widening and strong polarization in Li+-exchanged mordenite for efficient direct air capture of CO2

Zhifu Liu, Guanghui Shi, Shuzhuang Sun, Yong Wang, Jingyue Shang, Songbai Hu, Wenkang Deng, Chuhan Fu, Chenghao Liu, Xiao Wang*, Tao Qi, Guoping Hu*

Chemical Engineering Journal, 2026, DOI: https://doi.org/10.1016/j.cej.2026.173599

通过孔道拓宽与强极化协同策略,实现了Li+交换丝光沸石对空气中CO2的高效直接捕集。

Combined aperture widening and strong polarization in Li+-exchanged mordenite for efficient direct air capture of CO2

65. Room temperature photochemical synthesis of metal–organic frameworks for enhanced photocatalysis

Yong Wang, Jingzhuo Guan, Kush Kumar, Wanting He, Jesus Valdez, Ruiqi Yang, Guoping Hu, Shengyun Huang, Audrey Moores, Santosh Kumar Meena, Yongfeng Zhou, Yannan Liu*, Dongling Ma*

Nature Communications, 2026, DOI: https://doi.org/10.1038/s41467-026-70927-w

开发了室温光化学合成金属有机框架的方法,显著提升了光催化性能。

64. Alkylsilane-extended hydrogen migration enhanced photothermal Sabatier reaction

Zhe Lu, Wenxuan Liu, Zeshu Zhang, Zhongyi Chen, Junchuan Sun, Wanguo Gao, Xiaolu Zhuo, Wenguang Tu, Guoping Hu, Yingfang Yao*, Dongxu Ji*, Junhua Zhao*, Zhigang Zou, Lu Wang*

Nature Communications, 2026, DOI: https://doi.org/10.1038/s41467-026-70109-8

通过烷基硅烷延伸的氢迁移策略增强了光热Sabatier反应效率。

63. Industrial advances in helium recovery and purification technologies: a review

Diandian Jin†, Gongkui Xiao†*, Zhe Lu, Roman Weh, Luke McElroy, Guoping Hu*, Eric May*

Separation and Purification Technology, 2026, DOI: https://doi.org/10.1016/j.seppur.2025.135136

综述了氦气回收与纯化技术的工业最新进展。

62. Rapid and scalable synthesis of CALF-20 extrudates for VPSA-based CO2 capture

Jifu Wang, Jianyu Sun, Lina Zhang, Guoping Hu, Gaobing Sheng, Keming Chen, Tianyang Zhu, Yufeng Hao, Hongyu Zhao*, Baodeng Wang*, Wei Wei, Nannan Sun*

Chemical Engineering Journal, 2026, DOI: https://doi.org/10.1016/j.cej.2025.171623

开发了CALF-20分子筛挤出物的快速可控制备方法,用于VPSA二氧化碳捕集。

61. Hydride vacancy−driven photothermal C−H activation over Ni/TiH2 catalysts

Jianheng Xu, Bingqiao Xie, Zeshu Zhang*, Zhe Lu, Xiangyu Yan*, Niannian Meng, Xiaotao Zhou, Kaijie Liu, Cheng Rao, Guoping Hu, Xiangguang Yang, Yibo Zhang*

ACS Catalysis, 2025, DOI: https://doi.org/10.1021/acscatal.6c01215

揭示了氢化物空位驱动的Ni/TiH2催化剂光热C-H活化机理。

60. Process simulation and analysis of air separation for oxygen production via fast vacuum swing adsorption

Zhi Qi†, Bo Ren†, Yalou Guo*, Chuhan Fu, Jinbiao Luo, Sibin Li, Jianbin Qin, Gang Wang, Tao Qi, Paul Webley, Guoping Hu*

Adsorption, 2025, DOI: https://doi.org/10.1007/s10450-025-00646-z

通过快速变真空吸附工艺模拟与分析,实现空气分离制氧的优化设计。

59. Exploring metal-organic framework design strategies for CO2 capture using explainable artificial intelligence

Anyu Liu, Yifei Xiao, Xiaofeng Xie*, Chenghao Liu, SuLei Hu, Jianbin Qin, Gang Wang, Yong Wang, Wei-Xue Li, Tao Qi, Guoping Hu*

ACS Applied Materials & Interfaces, 2025, DOI: https://doi.org/10.1021/acsami.5c05529

利用可解释人工智能探索金属有机框架CO2捕集材料的设计策略。

Exploring metal-organic framework design strategies for CO2 capture using explainable artificial intelligence

58. The template-free synthesis of zeolite NaY for CO2 capture

Fu Rao, Wenkang Deng, Chenghao Liu, Xiaofeng Xie*, Biao Wang, Chunfa Liao, Tao Qi, Guoping Hu*

Chinese Journal of Chemical Engineering, 2025, DOI: https://doi.org/10.1016/j.cjche.2025.06.003

开发了无模板剂合成NaY沸石的新方法,用于CO2捕集。

57. High CO2 conversion via plasma assisted reverse water-gas shift reaction over Ag/ZnO catalyst

Chunhong Pan, Biao Wang*, Jinman Mao, Mengjia Li, Feng Gao, Wenyi Chen, Huimin Wang, Guoping Hu*, Xiaolei Fan*, Feng Huang

Frontiers of Chemical Science and Engineering, 2025, DOI: https://doi.org/10.1007/s11705-025-2588-4

在Ag/ZnO催化剂上通过等离子体辅助逆水煤气变换反应实现高CO2转化。

56. Manipulated directional hydrogen spillover for enhanced photothermal tandem ethane dehydrogenation

Zeshu Zhang*, Zhe Lu, Yajun Wang, Zhi-Yuan Wang, Junchuan Sun, Xue Ding, Wenxuan Liu, Guoping Hu, Junhua Zhao*, Guo-Ling Li*, Zhigang Zou, Lu Wang*

ACS Catalysis, 2025, DOI: https://pubs.acs.org/doi/10.1021/acscatal.5c01667

通过调控定向氢溢流效应增强光热串联乙烷脱氢反应性能。

55. Exploring enhanced CO2 separation from blast furnace gas: A multicolumn vacuum swing adsorption approach with process design and experimental assessment

Tingsheng Ren, Liying Liu*, Yaxin Jing, Meixin Dou, Jian Wang, Xu Chen, Zhe Wang, Peng Gao, Guoping Hu*, Eric F. May

Separation and Purification Technology, 2025, DOI: http://doi.org/10.1016/j.seppur.2024.129300

设计了多柱变真空吸附工艺并进行了实验验证,用于从高炉煤气中强化分离CO2。

54. Separation of methane, nitrogen and helium using a layered triple reflux pressure swing adsorption

Chuhan Fu, Yalou Guo*, Jinbiao Luo, Zhi Qi, Tao Qi*, Guoping Hu*

Industrial & Engineering Chemistry Research, 2025, DOI: https://doi.org/10.1021/acs.iecr.4c02843

提出分层三重回流变压吸附工艺,实现甲烷、氮气和氦气的高效分离。

Separation of methane, nitrogen and helium using a layered triple reflux pressure swing adsorption

53. The separation of methane and nitrogen in natural gas processing: A review

Fu Rao, Zhe Lu, Yalou Guo, Zhifu Liu, Chuhan Fu, Xiaofeng Xie, Chunfa Liao, Tao Qi, Guoping Hu

Separation and Purification Technology, 2025, DOI: https://doi.org/10.1016/j.seppur.2025.132107

综述了天然气加工中甲烷与氮气分离技术的研究进展。

52. A numerical comparison of heavy-purge and dual-reflux strategies in pressure swing adsorption for methane enrichment

Guoping Hu†*, Yalou Guo†, Jinbiao Luo, Gongkui Xiao, Roman Weh, Kevin Gang Li, Tao Qi, Paul A. Webley, Eric F. May

AIChE Journal, 2025, DOI: http://doi.org/10.1002/aic.18573

数值对比了变压吸附中重吹扫与双重回流策略在甲烷富集方面的性能差异。

A numerical comparison of heavy-purge and dual-reflux strategies in pressure swing adsorption for methane enrichment

51. Fe-mordenite for high-performance N2 rejection

Zhi Yu, Jianing Yang, Seyed Hesam Mousavi, Penny Xiao, Xue Yan, Ali Zavabeti, Yongqiang Wang, Kaifei Chen, Zhe Jefferson Liu, Guoping Hu, Xiaoling Liu, Yu Zhou*, Paul A. Webley*, Gang Kevin Li*

Chemical Engineering Journal, 2025, DOI: https://doi.org/10.1016/j.cej.2024.157224

铁交换丝光沸石实现了高性能氮气脱除,适用于气体分离领域。

50. Breakthroughs in CH4 capture technologies: Key to reducing fugitive methane emissions in the energy sector

Wenkang Deng, Xiaofeng Xie, Yalou Guo*, Guoping Hu*

Carbon Capture Science & Technology, 2024, DOI: https://doi.org/10.1016/j.ccst.2024.100316

综述了CH4捕集技术的突破性进展,为减少能源领域逃逸性甲烷排放提供关键支撑。

Breakthroughs in CH4 capture technologies: Key to reducing fugitive methane emissions in the energy sector

49. Synthesis of binder-free pelletized Y zeolite for CO2 capture

Fu Rao, Meiling Liu, Chenghao Liu, Wenkang Deng, Renfeng Huang, Chunfa Liao, Tao Qi, Guoping Hu*

Carbon Capture Science & Technology, 2024, DOI: https://doi.org/10.1016/j.ccst.2023.100166

合成了无粘结剂Y型沸石颗粒用于CO2捕集。

Synthesis of binder-free pelletized Y zeolite for CO2 capture

48. Hydrogen generation from the atmospheric water

Jining Guo, Joshua Davis Butson, Yuecheng Zhang, Guoping Hu*, Xiaolei Fan*, Gang Kevin Li*

Journal of Materials Chemistry A, 2024, DOI: https://doi.org/10.1039/D4TA00848K

实现了从大气水中直接制取氢气的突破性方法。

47. Upgrading low-concentration oxygen-bearing coal bed methane by dual-reflux vacuum swing adsorption

Yalou Guo, Guoping Hu, Liying Liu, Paul A. Webley*, Gang Kevin Li*

Adsorption, 2024, DOI: https://doi.org/10.1007/s10450-024-00513-3

利用双重回流变真空吸附工艺升级含氧低浓度煤层气。

46. CO2 capture using low silica X zeolite synthesized from low-grade coal gangue via a two-step activation method

Chenghao Liu, Fu Rao, Yalou Guo, Zhe Lu, Wenkang Deng, Guobiao Li, Hui Zhang, Tao Qi, Guoping Hu*

Journal of Environmental Chemical Engineering, 2024, DOI: https://doi.org/10.1016/j.jece.2024.112074

通过两步活化法从低品位煤矸石合成低硅X型沸石用于CO2捕集。

45. Self-healing coatings for large-scale damages via ultrahigh load capacity of healing agents in short kapok microtubules

Aoli Liu, Yan Zhai, Chuhan Fu, Hao Lan, Tao Qi, Siwen Cui*, Guoping Hu*, Junpeng Wang*

Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2024, DOI: https://doi.org/10.1016/j.colsurfa.2024.134045

利用短Kapok微管中超高负载修复剂实现了大面积损伤自修复涂层。

44. Surface-enriched room-temperature liquid bismuth for catalytic CO2 reduction

Jining Guo, Xing Zhi*, Dingqi Wang, Longbing Qu, Ali Zavabeti, Qining Fan, Yuecheng Zhang, Joshua D. Butson, Jianing Yang, Chao Wu, Jefferson Zhe Liu, Guoping Hu, Xiaolei Fan, Gang Kevin Li*

Small, 2024, DOI: https://doi.org/10.1002/smll.202401777

表面富集室温液态铋用于催化CO2还原反应。

43. Quantitative analysis of sintered NdFeB backscattered electron images based on a general large model

Qichao Liang, Tongyun Zhao, Guoping Hu, Xianglong Zhou, Haibo Xu, Bo Jiang, Qiang Ma*, Tao Qi*

Journal of Alloys and Compounds, 2024, DOI: https://doi.org/10.1016/j.jallcom.2024.174196

基于通用大模型对烧结NdFeB背散射电子图像进行定量分析。

42. A comprehensive review of carbon capture science and technologies

Chunfei Wu* et. al.

Carbon Capture Science & Technology, 2024, DOI: https://doi.org/10.1016/j.ccst.2023.100178

全面综述了碳捕集科学与技术的研究现状与发展趋势。

41. Extraction of PGMs from insoluble Fe-Si-PGMs alloy by combined thermochemical and mechanochemical leaching: Sustainable, efficient, and scalable

Minghui Liu, Yutong Zhao, Ming Tian, Kejia Liu, Guoping Hu, Jian Zhang, Tianyan Xue*, Tao Qi*, Hui Zhang

Separation and Purification Technology, 2024, DOI: https://doi.org/10.1016/j.seppur.2023.125925

结合热化学与机械化学浸出方法从难溶Fe-Si-PGMs合金中提取铂族金属。

40. Efficient self-cleaning and antibacterial ceramics with ultra-low doping and high exposure of silver

Kaibo Hu, Chuanqi Zhang, Guobiao Li*, Yucheng Liu, Dong Wang, Ke Li, Guoping Hu, Liuyimei Yang, Yinhua Wan*

Journal of Hazardous Materials, 2024, DOI: https://doi.org/10.1016/j.jhazmat.2023.132533

通过超低掺杂和高银暴露策略制备了高效自清洁抗菌陶瓷。

39. Separation of methane and nitrogen using heavy reflux pressure swing adsorption: Experiments and modelling

Guoping Hu*, Yalou Guo, Qinghu Zhao, Gongkui Xiao, Kevin Gang Li*, Eric F. May*

Industrial & Engineering Chemistry Research, 2023, DOI: https://doi.org/10.1021/acs.iecr.3c00094

通过实验与建模研究了重回流变压吸附分离甲烷与氮气的性能。

Separation of methane and nitrogen using heavy reflux pressure swing adsorption: Experiments and modelling

38. Lanthanide-doped upconversion glass-ceramic photocatalyst fabricated from fluorine-containing waste for the degradation of organic pollutants

Yucheng Liu, Guobiao Li*, Dong Wang, Zhenchen Zhong, Kaibo Hu, Chuanqi Zhang, Guoping Hu, Xuewei Li, Yinhua Wan*

Journal of Colloid and Interface Science, 2023, DOI: https://doi.org/10.1016/j.jcis.2023.01.142

以含氟废料为原料制备镳系掺杂上转换玻璃陶瓷光催化剂,用于降解有机污染物。

37. Three-dimensional architecture using hollow Cu/C nanofiber interpenetrated with MXenes for high-rate lithium-ion batteries

Jingchong Liu, Linlin Ma, Shuai Li, Lanlan Hou, Xinran Qi, Yongqiang Wen, Guoping Hu*, Nü Wang*, Yong Zhao, Xiaoxian Zhao*

Rare Metals, 2023, DOI: https://doi.org/10.1007/s12598-023-02372-3

构建了中空Cu/C纳米纤维与MXene穿插的三维结构用于高倍率锂离子电池。

36. Recovery of rare earth, lithium, and fluorine from rare earth molten salt electrolytic slag by mineral phase reconstruction combined with vacuum distillation

Yaobin Lai, Jian Li, Sitian Zhu, Kejia Liu, Qiwen Xia, Mengling Huang, Guoping Hu, Hui Zhang*, Tao Qi*

Separation and Purification Technology, 2023, DOI: https://doi.org/10.1016/j.seppur.2023.123105

通过矿物相重构结合真空蒸馏从稀土熔盐电解渣中回收稀土、锂和氟。

35. We commercialized a methane capture technology in ten years — here’s how

Guoping Hu*, Eric May*, Kevin Li*

Nature, 2022, DOI: https://doi.org/10.1038/d41586-022-00999-3

回顾了甲烷捕集技术从实验室到工业化十年的商业化历程与经验。

We commercialized a methane capture technology in ten years — here’s how

34. Hydrogen production from the air

Jining Guo, Yuecheng Zhang, Ali Zavabeti, Kaifei Chen, Yalou Guo, Guoping Hu*, Xiaolei Fan*, Gang Kevin Li*

Nature Communications, 2022, DOI: https://doi.org/10.1038/s41467-022-32652-y

实现了直接从空气中生产氢气的新型技术。

33. Enrichment of low-grade methane by dual reflux vacuum swing adsorption

Yalou Guo, Xuewei Gu, Guoping Hu*, Paul A. Webley, Gang Kevin Li*

Separation and Purification Technology, 2022, DOI: https://doi.org/10.1016/j.seppur.2022.121907

利用双重回流变真空吸附工艺实现低品位甲烷的富集。

32. Separation of methane and nitrogen using ionic liquidic zeolites by pressure vacuum swing adsorption

Guoping Hu, Gongkui Xiao, Yalou Guo, Mitch Manning, Li Chen, Lanjin Yu, Kevin Gang Li*, Eric May*

AIChE Journal, 2022, DOI: https://doi.org/10.1002/aic.17668

利用离子液体改性沸石通过变压真空吸附分离甲烷与氮气。

Separation of methane and nitrogen using ionic liquidic zeolites by pressure vacuum swing adsorption

31. Pilot scale assessment of methane capture from low concentration sources to town gas specification by pressure vacuum swing adsorption (PVSA)

Guoping Hu, Qinghu Zhao, Mitch Manning, Li Chen, Lanjin Yu, Eric May, Kevin Gang Li

Chemical Engineering Journal, 2022, DOI: https://doi.org/10.1016/j.cej.2021.130810

在pilot规模上评估了变压真空吸附从低浓度气源捕集甲烷至城镇燃气标准。

30. Synthesis of zeolite from circulated fluidized bed coal fly ash

Wei Feng, Guoping Hu, Eric F. May, Gang Kevin Li*

Inorganic Chemistry Frontiers, 2022, DOI: https://doi.org/10.1039/D1QI01571K

以循环流化床粉煤灰为原料合成沸石分子筛。

29. Print media representations of carbon capture utilization and storage (CCUS) technology in China

Kai Jiang*, Peta Ashworth, Shiyi Zhang*, Guoping Hu

Renewable and Sustainable Energy Reviews, 2022, DOI: https://doi.org/10.1016/j.rser.2021.111938

分析了中国印刷媒体对碳捕集利用与封存(CCUS)技术的报道与表征。

28. Separation of He/N2/CH4 ternary mixtures by a triple-reflux pressure swing adsorption process

Yalou Guo, Vincent Jusko, Gongkui Xiao, Jurgen Hanekom, Guoping Hu, Paul A. Webley, Eric F. May, Gang Kevin Li*

AIChE Journal, 2022, DOI: https://doi.org/10.1002/aic.17569

开发三重回流变压吸附工艺分离He/N2/CH4三元混合气体。

27. Efficient near-infrared response antibacterial ceramics based on method of facile In-situ etching upconversion glass-ceramics

Chuanqi Zhang, Guobiao Li*, Kaibo Hu, Weijie Song, Dong Wang, Yucheng Liu, Guoping Hu, Yinhua Wan*

ACS Applied Materials & Interfaces, 2022, DOI: https://doi.org/10.1021/acsami.2c14475

通过简便的原位刻蚀上转换玻璃陶瓷方法制备了高效近红外响应抗菌陶瓷。

26. Distinct community assembly processes underlie significant spatiotemporal dynamics of abundant and rare bacterioplankton in the Yangtze River

Malan Yi, Yao Fang, Guoping Hu, Shufeng Liu, Jinren Ni, Tang Liu*

Frontiers of Environmental Science and Engineering, 2022, DOI: https://doi.org/10.1007/s11783-021-1513-4

揭示了长江中丰度和稀有浮游细菌群落组装过程的显著时空动态差异。

25. Capture of dilute methane with a novel dynamic-feed dual-reflux pressure swing adsorption process

Yalou Guo, Guoping Hu, Kaifei Chen, Jining Guo, Paul A Webley, Gang Kevin Li*

AIChE Journal, 2022, DOI: https://doi.org/10.1002/aic.17390

提出动态进料双重回流变压吸附新工艺用于捕集低浓度甲烷。

24. Enrichment of low grade CH4 from N2/CH4 mixtures using vacuum swing adsorption with activated carbon

Guoping Hu, Qinghu Zhao, Lefu Tao, Penny Xiao, Paul Webley, Gang Kevin Li*

Chemical Engineering Science, 2021, DOI: https://doi.org/10.1016/j.ces.2020.116152

利用活性炭变真空吸附从N2/CH4混合气中富集低品位甲烷。

23. Selective removal of iron (III) from highly salted chloride acidic solutions by solvent extraction using di(2-ethylhexyl) phosphate

Guoping Hu*, Yue Wu, Desheng Chen, Yong Wang, Tao Qi, Lina Wang*

Frontiers of Chemical Science and Engineering, 2021, DOI: https://doi.org/10.1007/s11705-020-1955-4

利用D2EHPA溶剂萃取法从高盐氯化物酸性溶液中选择性去除铁(III)。

22. Signalling the cost of intermittency: What is the value of curtailed renewable power?

Chao Chen*, Ziming Yang, Guoping Hu

Journal of Cleaner Production, 2021, DOI: https://doi.org/10.1016/j.jclepro.2021.126998

研究了间歇性成本的信号传递机制及弃风弃光可再生能源的经济价值。

21. Experiencing process plant conditions through a pilot plant based laboratory class

Colin Scholes*, Guoping Hu

Chemical Engineering Education, 2021, DOI: https://doi.org/10.18260/2-1-370.660-120870

介绍了基于中试装置的实验课程设计,让学生体验真定过程工厂的操作条件。

20. The opportunity of membrane technology for hydrogen purification in the power to hydrogen (P2H) roadmap: A review

Hiep Thuan Lu*, Wen Li, Ehsan Soroodan Miandoab, Shinji Kanehashi, Guoping Hu*

Frontiers of Chemical Science and Engineering, 2021, DOI: https://doi.org/10.1007/s11705-020-1983-0

综述了膜技术在电力制氢路线中氢气纯化的机遇与挑战。

19. Small step, great rewards: rethinking mining sustainability from old perspectives to new frames

Bing Wang*, Xiangqian Pei, Yongjin Zhang, Yunbing Hou, Guoping Hu

Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 2021, DOI: https://doi.org/10.1080/15567036.2021.1977429

从新视角重新审视采矿业可持续发展,提出小步骤大收益的理念。

18. A review of technical advances, barriers and solutions in the power to hydrogen (P2H) roadmap

Guoping Hu, Chao Chen, Hiep Thuan Lu, Yue Wu, Congmin Liu, Lefu Tao, Yuhan Men, Guangli He, Gang Li*

Engineering, 2020, DOI: https://doi.org/10.1016/j.eng.2020.04.016

系统综述了电力制氢(P2H)路线的技术进展、障碍与解决方案。

17. Nucleation kinetics of glycine promoted concentrated potassium carbonate solvents for carbon dioxide absorption

Yue Wu, Masood Sheikh Alivand, Guoping Hu, Geoff Stevens, Kathryn Mumford*

Chemical Engineering Journal, 2020, DOI: https://doi.org/10.1016/j.cej.2019.122712

研究了甘氨酸促进浓碳酸钾溶剂吸收CO2的成核动力学。

16. Precipitation study of the CO2-loaded glycinate solution with the introduction of ethanol as an antisolvent

Siming Chen, Yue Wu, Geoff Stevens, Guoping Hu, Wenshou Sun*, Kathryn Mumford*

Frontiers of Chemical Science and Engineering, 2020, DOI: https://doi.org/10.1007/s11705-019-1882-4

研究了以乙醇为反溶剂对负载CO2的甘氨酸盐溶液的沉淀行为。

15. Do the performance and efficiency of China’s carbon emission trading market change over time?

Shiyi Zhang, Kai Jiang*, Lan Wang, Geoff Bongers, Guoping Hu, Jia Li

Environmental Science and Pollution Research, 2020, DOI: https://doi.org/10.1007/s11356-020-09168-3

评估了中国碳交易市场绩效和效率的时序变化规律。

14. A carbonic anhydrase inspired temperature responsive polymer based catalyst for accelerating carbon capture

Guoping Hu, Zeyun Xiao, Kathryn Smith, Sandra Kentish, Luke Connal, Geoff Stevens

Chemical Engineering Journal, 2018

受碳酸酮酶启发,开发了一种温敏聚合物催化剂用于加速碳捕集。

13. Carbon dioxide capture by solvent absorption using amino acids: A review

Guoping Hu, Kathryn Smith, Yue Wu, Sandra Kentish, Geoff Stevens

Chinese Journal of Chemical Engineering, 2018

综述了氨基酸溶剂吸收法捕集CO2的研究进展。

12. Modelling of a post-combustion carbon dioxide capture absorber using potassium carbonate solvent in aspen custom Modeller

Yue Wu, Fan Wu, Guoping Hu, Nouman Mirza, Geoff Stevens, Kathryn Mumford

Chinese Journal of Chemical Engineering, 2018

利用Aspen Custom Modeller对碳酸钾溶剂燃烧后CO2捕集吸收塔进行建模。

11. Screening amino acid salts as rate promoters in potassium carbonate solvent for carbon dioxide absorption

Guoping Hu, Kathryn Smith, Yue Wu, Sandra Kentish, Geoff Stevens

Energy & Fuels, 2017

筛选了氨基酸盐作为碳酸钾溶剂中CO2吸收的速率促进剂。

10. Enzymatic carbon dioxide capture using a thermally stable carbonic anhydrase as a promoter in potassium carbonate solvents

Guoping Hu, Kathryn Smith, Nathan Nicholas, Joel Yong, Sandra Kentish, Geoff Stevens

Chemical Engineering Journal, 2017

利用热稳定碳酸酮酶作为促进剂实现碳酸钾溶剂中酶法CO2捕集。

9. Recent progress on the performance of different rate promoters in potassium carbonate solvents for CO2 capture

Guoping Hu, Kathryn Smith, Yue Wu, Sandra Kentish, Geoff Stevens

Energy Procedia, 2017

综述了碳酸钾溶剂中不同速率促进剂在CO2捕集中的最新研究进展。

8. Reaction kinetics and mechanism between histidine and carbon dioxide

Guoping Hu, Kathryn Smith, Liang Liu, Sandra Kentish, Geoff Stevens

Chemical Engineering Journal, 2017

研究了组氨酸与CO2反应的动力学和反应机理。

7. Precipitating characteristics of potassium bicarbonate using concentrated potassium carbonate solvent for carbon dioxide capture. Part I: Nucleation

Yue Wu, Nouman Mirza, Guoping Hu, Kathryn Smith, Geoff Stevens, Kathryn Mumford

Industrial & Engineering Chemistry Research, 2017

研究了浓碳酸钾溶剂捕集CO2时碳酸氢钾的沉淀成核特性。

6. Kinetics of CO2 Absorption in an Ethylethanolamine Based Solution

Siming Chen, Guoping Hu, Kathryn Smith, Kathryn Mumford, Yongchun Zhang, Geoff Stevens

Industrial & Engineering Chemistry Research, 2017

研究了乙基乙醇胺溶液吸收CO2的动力学。

5. Carbon dioxide absorption into promoted potassium carbonate solutions: A review

Guoping Hu, Nathan Nicholas, Kathryn Smith, Kathryn Mumford, Sandra Kentish, Geoff Stevens

International Journal of Greenhouse Gas Control, 2016

综述了促进型碳酸钾溶液吸收CO2的研究进展与机理。

4. An extraction process to recover vanadium from low-grade vanadium-bearing titanomagnetite

Desheng Chen, Hongxin Zhao, Guoping Hu, Tao Qi, Hongdong Yu, Guozhi Zhang, Lina Wang, Weijing Wang

Journal of Hazardous Materials, 2015

开发了一种从低品位含铒钛磁铁矿中提取铒的萃取工艺。

3. Extraction of vanadium from chloride solution with high concentration of iron by solvent extraction using D2EHPA

Guoping Hu, Desheng Chen, Lina Wang, JingChong Liu, Hongxin Zhao, Yahui Liu, Tao Qi, Changqiao Zhang, Ping Yu

Separation and Purification Technology, 2014

利用D2EHPA从高浓度铁的氯化物溶液中萃取铒。

2. Extraction of vanadium from chloride solutions using di (2-ethylhexyl) phosphate

Guoping Hu, Desheng Chen, Tao Qi, Changqiao Zhang, Hongxin Zhao, Yahui Liu, Ping Yu, Lina Wang

Advanced Materials Research, 2013

利用D2EHPA从氯化物溶液中萃取铒的初步研究。

1. Desilication from titanium-vanadium slag by alkaline leaching

Desheng Chen, Longsheng Zhao, Tao Qi, Guoping Hu, Hongxin Zhao, Jie Li, Lina Wang

Transactions of Nonferrous Metals Society of China, 2013

研究了钛钒渣碱性浸出脱硅过程。

15. 一种NaY分子筛及其制备方法与应用

谢小峰,饶富,邓文康,胡国平,齐涛

CN202510407850.1

14. 一种用于气体分离的沸石及其应用

胡国平,刘治富,刘成昊,齐涛

ZL.202510131363.7

13. 一种用于直接空气捕集CO2的吸附剂及其制备方法与应用

胡国平,邓文康

CN202610031430.2

12. 一种吸附分离He/N2/CH4混合气的方法

胡国平,富楚涵,罗锦标,任波,齐涛

ZL. 202411924390.1

11. 一种变压吸附系统

胡国平,罗锦标,袁浩,谢小峰,齐涛

ZL. 202522308367.6

10. 一种用于锆铪分离的配体组合物、锆铪分离方法

胡国平,易恩杰,丁昕,黄仁峰,齐涛

ZL. 202510131357.1

9. 一种分离溶液中锆与铪的方法

胡国平,黄仁峰,易恩杰,齐涛

ZL. 202510131364.1

8. 一种改性介孔二氧化硅吸附剂及其制备方法和应用

胡国平,易恩杰,齐涛,万里,黄仁峰,饶富

ZL. 202510131361.8

7. 一种提取铪的分子筛吸附剂及其制备方法和应用

胡国平,万武彬,饶富,刘成昊,李阳,李兴华,王勇,齐涛

CN118892808A

6. 一种变压吸附提纯氦气的方法

胡国平,罗锦标,谢小峰,齐涛

ZL. 202411596110.9

5. 一种抗菌陶瓷、其制备方法及其再生方法和应用

李国标,胡凯博,万印华,王东,胡国平,宋伟杰,张传奇,卞士亮,刘玉城

CN115477536B

4. 一种变压吸附法增浓易吸附气体的方法

胡国平,李刚,肖月竹,保罗·安东尼·韦伯利,米切·曼宁

CN110354637B

3. 一种快速变压真空吸附制氧的装置系统及方法

齐涛,齐志,罗锦标,胡国平,富楚涵

CN117942706A

2. 一种无粘结剂Y型分子筛及其制备方法与应用

胡国平,饶富,黎思滨,齐涛,万武彬,黄仁峰

CN116692894A

1. 一种纳米球形二氧化铈及其制备方法和应用

胡国平,黎思滨,饶富,刘安玉,黄仁峰,谢小峰,齐涛

CN117902614A

1. Advances of 12th CAPS symposium: young chemists and chemical engineers fronts

Guoping Hu, Baiqian Dai

Frontiers of Chemical Science and Engineering, 2021, DOI: https://doi.org/10.1007/s11705-020-2026-6

2. Chapter eleven - Swing technologies for carbon capture: pressure, thermal, vacuum, electrical, and mixed swing processes

Yalou Guo, Zhifu Liu, Guoping Hu, Colin A. Scholes

Advances and Technology Development in Greenhouse Gases: Emission, Capture and Conversion, Elsevier, 2024, 219–241

1. Chapter 7: Technological assessment of CO2 capture and EOR/EGR/ECBM-based storage

Guoping Hu, Kai Jiang, Rui Wang, Gang Li

Green Finance, Sustainable Development, and the Belt and Road Initiative, Routledge, Taylor & Francis Group, 2021, 177–200