论文著作:
(1)期刊论文
[1] Peng, W.; Yang, Q.; Huang, X.J.; Fang, Q.Z.; Han, S.X.; He, J.J.; Gao, Z.W.*. (2025) Properties analysis of catalyst particles during stripper distributor fault in industrial fluid catalytic cracking unit. Fuel. 381, 133279.
[2] Wei, W.J.; He L.; Qi, X.Y.; Zhang, X.Q.; Wan, W.B.; Wang, J.; Li, J.; Gao, Z.W.*. (2025) Efficient oil–water separation of petroleum coke/melamine sponge for the topic of taking from the oil and using for the oil. Separation and Purification Technology. 354, 129411.
[3] Peng, W.; Huang, X.J.; Zhang, H.D.; Han, S.X.; He, J.; Gao, Z.W.*. (2024) Effect of regenerated standpipe flow pattern on catalyst transport in fluid catalytic cracking unit. Energy. 310, 133146.
[4] He, L.; He, J.J.; Qi, X.Y.; Wei, W.J.; Zhang, X.Q.; Wang, J.; Li, J.; Gao, Z.W.*. (2024) Superhydrophobic sponge with self-cleaning properties for continuous and efficient oil-water separation in harsh environment. Construction and Building Materials, 441, 137505.
[5] Wei, W.J.; He, J.J.; He, L.; Qi, X.Y.; Zhang, X.Q.; Wan, W.B.; Gao, Z.W.*. (2024) Study of direct drinking water production and sea salt recovery from photothermal conversion based on MWCNTs. Separation and Purification Technology. 335, 126068.
[6] He, L.; Qi, X.Y.; Wei, W.J.; Zhang, X.Q.; Wang, J.; Gao, Z.W.*. (2024) Biomass-activated carbon-based superhydrophobic sponge with photothermal properties for adsorptive separation of waste oil. Journal of Hazardous Materials, 477, 135222.
[7] He, L.; Wang, S.H.; Qi, X.Y.; Wei, W.J.; Zhang, X.Q.; Wang, J.; Li, J.; Gao, Z.W.*. (2024) Eco-friendly, high-hydrophobic polybutylene succinate foam for oil-water separation. Journal of Environmental Chemical Engineering, 12(6), 114265.
[8] Li, C.X.; Wei, W.J.; He, L.; Qi, X.Y.; He, J.J.; Zhang, X.Q.; Han, X.T.; Wang, J.; Gao, Z.W.*. (2024) Super-hydrophobic Fe/TiO2 membrane prepared by dynamic etching of ferric salt (II) for efficient oil-water separation and photocatalytic removal of oil pollution. Journal of Water Process Engineering, 65, 105734.
[9] Wei, W.J.; Li, C.X.; Qi, X.Y.; He, L.; Zhang, X.Q.; He, J.J.; Gao, Z.W.*. (2024) Solid waste reutilization of FCC petroleum coke for solar evaporation as a photothermal conversion material. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 692, 133968.
[10] He, L.; Qi, X.Y.; He, J.J.; Li, C.X.; Wei, W.J.; Zhang, X.Q.; Gao, Z.W.*. (2024) Research progress in hydrophobic modification of melamine sponge and its application in oil-water separation field. Journal of Environmental Chemical Engineering, 12(3), 112536.
[11] Qi, X.Y.; Li, C.X.; Zou, X.; He, L.; Liu, Z.X.; Gao, Z.W.*. (2023) Super-hydrophobic graphene-based high elastic sponge with superior photothermal effect for efficient cleaning of oil contamination. Chemical Engineering Journal, 476, 146317.
[12] Gao, Z.W.*; Wei, Y.D; Liu, Z.X. (2023) A review on complex turbulent dynamic phenomenon of natural vortex length in cyclone separator. Reviews in Chemical Engineering, 50.
[13] Gao, Z.W.*; Li, C.X.; He, J.J.; Wang, Z.; Qi, X.Y.; He, L.; Wang, S.H.; Liu, Z.X. (2023) Waste to treasure: Reutilization of FCC coke block as photothermal conversion material for water evaporation. Particuology, 88, 62-70.
[14] Wang, S.H.; Gao, Z.W.*; Qi, X.Y.; Li, C.X.; He, L.; Bi, J.M.; Liu, Z.X. (2023) Superhydrophobic carbon black-loaded polyurethane sponge for efficient oil-water separation and solar-driven cleanup of high-viscosity crude oil. Journal of Water Process Engineering, 53, 103812.
[15] Yang, Y.J.; Li, C.X.; Gao, Z.W.*; Qi, X.Y.; He, L.; Huang, W.; Wang, J.Q.; Liu, Z.X. (2023) Photo-responsive Mn-doped TiO2-based superhydrophobic/ underwater superoleophobicity membrane for efficient oil-water separation and photothermal decontamination. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 670, 131519.
[16] Li, Y.F.; Ni, Y.Y; Li, C.C.; Tian, X.L.; Wang, J.Q.; Gao, Z.W.; Wang, D.; Huang, W.; Zhang, M.X.; Shen, Y.J. (2023) 2D Meshy Metal Solar Evaporator Facilitating High-Efficiency Vapor Diffusion and Water Harvesting in Environments of Minimal Convective Flows. ACS Applied Engineering Materials, 1, 1759-1765.
[17] Qi, X.Y.; Gao, Z.W.*; Li, C.X.; Wang, S.H.; Zou, X.; He, L.; Cui, H.; Liu, Z.X. (2023) A superhydrophobic/superoleophilic rGO modified melamine sponge for efficient oil sorption under static, continous and photothermal condition. Journal of Cleaner Production, 404, 136963.
[18] Qi, X.Y.; Gao, Z.W.*; Li, C.X.; Wang, S.H.; Zou, X.; He, L.; Liu, Z.X. (2023) Underwater superoleophobic copper mesh coated with block nano protrusion hierarchical structure for efficient oil/water separation. Journal of Industrial and Engineering Chemistry, 119, 450-460.
[19] Yang, X.; Wei, S.R.; Ma, X.L.; Gao, Z.W.; Huang, W.; Wang, D.; Liu, Z.X.; Wang, J.Q. (2023) Core–shell CoTiO3@MnO2 heterostructure for the photothermal degradation of tetracycline. Journal of Materials Science, 58, 3551-3567.
[20] Wang, S.H.; Gao, Z.W.*; Qi, X.Y.; Li, C.X.; Xie, Y.X.; Yang, X.; Lin, Z.L.; Liu, Z.X*. (2022) Eco-friendly graphene-doped cellulose acetate superhydrophobic polymer for efficient oil-water separation. Journal of Water Process Engineering, 49, 103098.
[21] Wang, S.H.; Gao, Z.W.*; Qi, X.Y.; Li, C.X.; Xie, Y.X.; Yang, X.; Song, W.J.; Liu, Z.X*. (2022) Eco-friendly superhydrophobic MOF-doped with cellulose acetate foam for efficient oil-water separation. Journal of Environmental Chemical Engineering, 10(6), 108521.
[22] Gao, Z.W.*; Li, C.X.; Qi, X.Y.; Wei, Y.D; Liu, Z.X. (2022) Flow analysis on carbonaceous deposition of heavy oil droplets and catalyst particles for coking formation process. Energy, 260, 124988.
[23] Li, C.X.; Gao, Z.W.*; Qi, X.Y.; Han, X.T; Liu, Z.X*. (2022) Preparation and research of Mn-TiO2/ Fe membrane with high efficiency light-oil/water emulsion separation. Surfaces and Interfaces, 31, 101995.
[24] Gao, Z.W.*; Liu, Z.X.; Song, Z.H.; Li, C.X.; Qi, X.Y.; Ling, H.R.; Wei, Y.D. (2022) Peculiarities of particle motion inside cyclone separator by using LES-DRW model. Chemical Engineering Research and Design, 183, 512-524.
[25] Gao, Z.W.*; Liu, Z.X.; Wang, S.H.; Li, C.X.; Qi, X.Y.; Ling, H.R. Experiment of hydrocyclone under different inlet velocity and its wear analysis of wall and particle. (2022) Powder Technology, 405, 117541.
[26] Gao, Z.W.*; Liu, Z.X.; Wei, Y.D.; Li, C.X.; Wang, S.H.; Qi, X.Y.; Huang, W. (2022) Numerical analysis on the influence of vortex motion in a reverse Stairmand cyclone separator by using LES model. Petroleum Science, 19(2), 848-860.
[27] Li, C.X.; Gao, Z.W.*; Liu, Z.X. (2021) Preparation and properties of substrate PVA-GO composite membrane for solar photothermal conversion. Frontiers of Materials Science, 15(4), 632-642.
[28] Gao, Z.W.*; Wei, Y.D; Liu, Z.X.; Jia, C.M.; Wang, J.; Wang, J.Y.; Mao, Y. (2021) Internal Components Optimization in Cyclone Separators: Systematic Classification and Meta-analysis. Separation & Purification Reviews, 50(4), 400-416.
[29] Gao, Z.W.*; Wang, J.; Liu, Z.X.; Wei, Y.D; Wang, J.Y.; Mao, Y. (2020) Effects of different inlet structures on the flow field of cyclone separators. Powder Technology, 372, 519-531.
[30] Gao, Z.W.; Wang, J.; Wang, J.Y.; Mao, Y.; Wei, Y.D. (2019) Analysis of the effect of vortex on the flow field of a cylindrical cyclone separator. Separation and Purification Technology, 211, 438-447.
[31] Gao, Z.W.; Wang, J.; Wang, J.Y.; Mao, Y. (2019) Time-frequency analysis of the vortex motion in a cylindrical cyclone separator. Chemical Engineering Journal, 373, 1120-1131.
[32] 何兰,高助威*,亓欣雨,李成欣,王世豪,刘钟馨.三聚氰胺海绵疏水改性及在油水分离领域的研究进展[J].化工进展,2024,43(02):984-1000.
[33] 韩欣彤,曹阳,文峰,高助威,李成欣,于晓龙.氧化石墨烯与氮掺杂氧化石墨烯量子点负载去氧地胆草内酯抑制肿瘤细胞的研究[J].材料导报,2023,37(14):5-11.
[34] 高助威*,凌浩然,邹馨,陈锋宇,曹夏馨,王卓,刘钟馨.循环流化床锅炉下排气旋风分离器的研究进展[J].中国粉体技术,2023,29(03):35-46.
[35] 高助威*,李小高,刘钟馨,饶健民.氢燃料电池汽车的研究现状及发展趋势[J].材料导报,2022,36(14):74-81.
[36] 李成欣,高助威*,刘钟馨,褚镇,高睿彤,王世豪,韩欣彤.氧化石墨烯负载无纺布复合膜的制备及光热转换性能[J].复合材料学报,2021,38(12):4255-4264.
[37] 王娟,高助威,张雪淼,王江云,毛羽.旋流雾化喷嘴内气液两相流动的特性研究[J].石油炼制与化工,2020,51(03):54-61.
[38] 黄金,冯婷,高助威,张雁青,王洁琼,曹阳,刘钟馨.基于静电纺丝实验法的氧化石墨烯复合无纺布光热转换性能的特性研究[J].发光学报,2020,41(02):134-139.
[39] 王娟,李军,高助威,何星晨,邹槊,万加亿.热风混合器内部流场的数值模拟与结构改进[J].过程工程学报,2020,20(02):148-157.
[40] 高助威,王娟,王江云,毛羽.旋风分离器自然旋风长的影响因素[J].石油学报(石油加工),2019,35(03):613-620.
[41] 高助威,王娟,王江云,马卓越,毛羽,魏耀东.内构件技术在旋风分离器内的应用进展[J].石油学报(石油加工),2019,35(02):393-402.
[42] 高助威,王娟,王江云,马卓越,毛羽.大长径比直筒型旋风分离器内部流动特性研究[J].高校化学工程学报,2018,32(06):1288-1298.
[43] 高助威,王娟,王江云,毛羽,李军,魏耀东.基于Q判据的不同排气管直径旋风分离器内部涡分析[J].石油学报(石油加工),2018,34(06):1172-1180.
[44] 高助威,王娟,王江云,毛羽.两种不同入口结构旋风分离器内涡核摆动的对比[J].化学反应工程与工艺,2018,34(04):297-306.
[45] 高助威,王娟,王江云,冯留海,毛羽,魏耀东.基于DPM模型的旋风分离器内颗粒浓度场模拟分析[J].石油学报(石油加工),2018,34(03):507-514.
[46] 高助威,王娟,王江云,毛羽,魏耀东.旋风分离器内涡核摆动的特性研究[J].工程热物理学报,2017,38(12):2610-2618.
[47] 高助威,王娟,姜龙骏,王江云,任文建,毛羽.FCC沉降器内不同结构旋风分离系统的模拟分析[J].石油学报(石油加工),2017,33(06):1120-1127.
[48] 高助威,王江云,王娟,毛羽,魏耀东.蜗壳式旋风分离器内部流场空间的涡分析[J].化工学报,2017,68(08):3006-3013.
[49] 高助威,宋健斐,张志莲.基于ABAQUS的热交换器管板热-机耦合场分析[J].石油化工设备,2015,44(03):21-24.
(2)会议论文
[1] 高助威*,亓欣雨,何兰,魏伟杰,刘钟馨.催化裂化石油焦碳基复合材料的制备及其光热转换特性研究[C]//第十二届全国流态化会议暨颗粒技术会议. 2023年全国流态化会议暨颗粒技术会议论文集. (一作,通讯,大会报告)
[2] 何兰,高助威*,亓欣雨,魏伟杰,刘钟馨.光热驱动自清洁的超疏水Fe/TiO2膜用于油水分离[C]//第十二届全国流态化会议暨颗粒技术会议. 2023年全国流态化会议暨颗粒技术会议论文集.
[3] 高助威*,王世豪,李成欣,亓欣雨,何兰,刘钟馨. 流化催化裂化焦化碳质沉积的机理研究及焦炭的再利用技术[C]//中国颗粒学会,第二届中国化学链会议.2023年中国化学链会议学术论文集. (一作,通讯,大会报告)
[4] 高助威*,王世豪,李成欣,亓欣雨,刘钟馨. 焦化过程中的碳沉积分析及其工业应用[C]//中国颗粒学会,第十二届中国颗粒大会.2023年中国颗粒大会学术论文集. (一作,通讯,大会报告)
[5] 王世豪,高助威*,李成欣,亓欣雨. 生态友好型石墨烯掺杂醋酸纤维素超疏水聚合物用于高效油水分离[C]//中国颗粒学会,第十二届中国颗粒大会.2023年中国颗粒大会学术论文集.
[6] 李成欣,高助威*,王世豪,亓欣雨. 一种具有光催化去污的高效油水分离膜的研究[C]//中国颗粒学会,第十二届中国颗粒大会.2023年中国颗粒大会学术论文集.
[7] 亓欣雨,高助威*,李成欣,王世豪. 在铜网表面涂覆亲水/水下超疏油块状纳米突起分层结构以实现高效油水分离,第十二届中国颗粒大会.2023年中国颗粒大会学术论文集.
[8] 高助威*,何兰,亓欣雨,等.聚合物纳米材料阻燃改性与油水分离中的阻燃应用[C]//海南省机械工程学会,海南省机械工业质量管理协会.2023年海南机械科技学术论坛论文集.
[9] 亓欣雨,高助威*,何兰,等.水凝胶在可穿戴设备领域的多功能特性和应用[C]//海南省机械工程学会,海南省机械工业质量管理协会.2023年海南机械科技学术论坛论文集.
[10] 杨昊,高助威*,何兰.糖精钠在电镀领域的应用[C]//海南省机械工程学会,海南省机械工业质量管理协会.2023年海南机械科技学术论坛论文集.
[11] 何兰,高助威*,亓欣雨,等.三维多孔气凝胶在油水分离中的研究应用[C]//海南省机械工程学会,海南省机械工业质量管理协会.2023年海南机械科技学术论坛论文集.
[12] 亓欣雨,高助威*,何兰,等.海藻酸钠基水凝胶在光热领域的应用[C]//海南省机械工程学会,海南省机械工业质量管理协会.2023年海南机械科技学术论坛论文集.
[13] 魏伟杰,高助威*,亓欣雨,等.低维碳材料在界面光热海水淡化的研究进展[C]//海南省机械工程学会,海南省机械工业质量管理协会.2023年海南机械科技学术论坛论文集.
[14] 高助威*,王世豪,李成欣,亓欣雨. 入口结构对旋风分离器内部流场空间涡的影响[C]//中国颗粒学会,第十一届全国流态化会议.2021年全国流态化会议学术论文集. (一作,通讯,大会报告)
[15] 亓欣雨,高助威*,李成欣,王世豪. 固体废弃物中植物纤维素的回收及其在油水分离中的应用[C]//中国颗粒学会,第十一届全国流态化会议.2021年全国流态化会议学术论文集. (通讯作者)
[16] 李成欣,高助威*,刘钟馨等. 浅析棉布及无纺布在高效油水分离膜基底中疏水性的研究[C]//海南省机械工程学会,海南省机械工业质量管理协会.2021年海南机械科技学术论坛论文集.
[17] 亓欣雨,高助威*,李成欣等. 植物纤维素类固体废物在油水分离中的应用[C]//海南省机械工程学会,海南省机械工业质量管理协会.2021年海南机械科技学术论坛论文集.
[18] 高睿彤,高助威*,曹夏馨等. 太阳能增湿除湿海水淡化技术研究进展[C]//海南省机械工程学会,海南省机械工业质量管理协会.2021年海南机械科技学术论坛论文集.
[19] 李成欣,高助威*,刘钟馨. 浅析海南地区新材料产业的发展[C]//海南省机械工程学会,海南省地球物理学会,海南省机械工业质量管理协会.2020年海南科技学术论坛论文集.
[20] 高助威*,李成欣,王世豪等. 关于加快南海油气资源产业链战略部署的建议[C]//海南省机械工程学会,海南省地球物理学会,海南省机械工业质量管理协会.2020年海南科技学术论坛论文集.
[21] Zhuwei Gao*, Jin Huang, Zhen Chu, Zhongxin Liu, Ting Feng, Juan Wang, Chunman Jia. Experimental research of atomization performance of gas-liquid two-phase flow in a swirling atomizing nozzle[A]. The First International Symposium on Tropical Marine Resources Utilization and Green Chemical Engineering[C]. Haikou, P.R. China, 2019:30. (2019.12.14-2019.12.16, 一作,通讯,大会报告)
[22] Zhuwei Gao*, Jin Huang, Zhongxin Liu. An advanced graphene load nonwoven of photothermal conversion for desalination of air-water interface[A]. The First International Symposium on Tropical Marine Resources Utilization and Green Chemical Engineering[C]. Haikou, P.R. China, 2019:86-87. (2019.12.14-2019.12.16,一作(共同))
[23] Zhen Chu, Zhuwei Gao*, Zhongxin Liu. Effect of different CO2 sorbents on the purity of hydrogen production from glycerol catalytic cracking under constant temperature[A]. The First International Symposium on Tropical Marine Resources Utilization and Green Chemical Engineering[C]. Haikou, P.R. China, 2019:92-93. (2019.12.14-2019.12.16,通讯)
[24] Ting Feng, Zhuwei Gao*, Zhongxin Liu. Formulation of graphene oxide hair dye based on advanced hummers method[A]. The First International Symposium on Tropical Marine Resources Utilization and Green Chemical Engineering[C]. Haikou, P.R. China, 2019:94-95. (2019.12.14-2019.12.16)
[25] Zhuwei Gao, Juan Wang, Jiangyun Wang, Yu Mao, Yaodong Wei. Dynamic performance of flow field in a cylindrical cyclone separator[A]. The 2019 AIChE Spring Meeting & 15th Global Congress on Process Safety[C]. US New Orleans, 2019:4.
[26] Zhuwei Gao, Juan Wang, Jiangyun Wang, Yu Mao, Yaodong Wei. Analysis of a cylindrical cyclone separator based on the RMS data[A]. The 2019 5th International Conference Chemical Materials and Process[C]. Thailand Bangkok, 2019.5.1-5.4.(一作,大会报告)
[27] Zhuwei Gao, Juan Wang, Jiangyun Wang, Yu Mao, Yaodong Wei. Flow analysis of an atypical cylindrical cyclone separator with a large ratio of length to diameter[A]. The 2018 AIChE Spring Meeting and 14th Global Congress on Process Safety[C]. Florida, USA, 2018.4.22-4.26.
[28] 王娟,马卓越,高助威,任文建. 不同底部结构的气升式环流反应器内气泡粒径分布的数值模拟研究[A]. 中国石油学会第十届青年学术年会论文集[C].北京,2017:11.
[29] 王娟,任文建,高助威,毛羽. 烃类制氢转化炉的研究现状和发展展望[A]. 2017中国工程热物理学会燃烧学学术会议论文集[C].南京,2017:10.
[30] 高助威,王娟,王江云,冯留海,毛羽,魏耀东. 基于DPM模型的旋风分离器内颗粒浓度场模拟分析[A]. 第九届全国流态化会议暨颗粒技术会议论文集[C].银川,2017:8. (大会报告)
[31] 高助威,王娟,王江云,任文建,李雅琴,张雪淼.基于RMS的旋风分离器内旋流不稳定性模拟分析[A]. 2017中国化工学会年会论文集[C].北京,2017:10.
[32] 高助威,王娟,王江云,任文建,李雅琴,张雪淼,魏耀东.旋风分离器内旋流不稳定性模拟分析[A]. 2017中国化工学会年会论文集[C].北京,2017:14.
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