近五年已发表的代表性论著 |
专利与软件著作权: [1]吉植强,董佳奇,陈凤振等. 一种天然气水合物开采的保护装置[P]. CN116335567A,2023-06-27.(发明专利,授权) [2]吉植,董佳奇,陈凤振等. 一种岩土工程勘察用钻进取样装置[P]. CN116291424A,2023-06-23. (发明专利,授权) [3]吉植强,董佳奇,陈凤振等. 高压注浆钻杆装置[P]. CN116181227A,2023-05-30. (发明专利,授权) [4]吉植强,刘东浩,杨忠心等. 一种模拟污染物在冻土屏障内运移的有压渗流装置[P]. CN115575294A,2023-01-06. (发明专利,授权) [5] Ji Zhiqiang. Amino acid liquid fertilizer for improving saline-alkali land and preparation method thereof 1/1 专利号:LU504089。(发明专利,授权) [6]Ji Zhiqiang. Method or Repairing Heavy Metal Contaminated Soil and Curing Agent 1/1 专利号:LU504079. (发明专利,授权) [7]吉植强,杨忠心,刘东浩等. 一种离子型稀土开采工艺地下水污染防控方法[P]. CN115404915A,2022-11-29. (发明专利,实审) [8]吉植强,吕昕,于梁梁,李海鹏,徐海兵,何春锋,柴新军,杨桦. 渗流冻结试验装置 [P]. CN205861587U,2017-01-04. (实用新型专利,授权) [9]吉植强,劳丽燕,于梁梁,柴新军,何春锋.真空预压固结试验装置[P]. CN206470103U,2017-09-05. (实用新型专利,授权)
[10]劳丽燕,吉植强,于梁梁,柴新军,何春锋. 建筑用控温板 [P]. CN206469444U,2017-09-05.(实用新型专利,授权) 论文: [1]Yu S, Gao C, Ji Z, et al. Electron-hole separation and microcell-activated peroxymonosulfate driven by Mo/ZnO/NiF@ GO/ZnFe2O4/CC dual electrodes for photocatalytic oxidation degradation of tetracycline hydrochloride[J]. Separation and Purification Technology, 2024, 342: 127044.(中科院一区,通讯作者) [2]Yuan M, Chen F, Zhang L, et al. Luminescent metal organic frameworks and their fluorescence sensing application[J]. Functional Materials Letters, 2024, 17(3): 2451008. (中科院一区,通讯作者) [3]Mu F, Ma Z, Lang L, et al. Solidification/stabilization of Pb-contaminated soil by using low-carbon binder derived from dehydrated waste concrete powders and GGBS[J]. Developments in the Built Environment, 2024: 100357. (中科院二区,通讯作者) [4]Ji Z, Yuan M, He Z, et al. Construction of Porphyrin-Based Bimetallic Nanomaterials with Photocatalytic Properties[J]. Molecules, 2024, 29(3): 708. (中科院二区,第一作者) [5]Wang J, Gao C, Ji Z, et al. An insight into underlying purification mechanism of tannery wastewater based on carbon/sulfur segmented tracing strategy in electrochemical membrane reactor[J]. Separation and Purification Technology, 2023, 327: 124988. (中科院一区,通讯作者) [6]Wang Y, Wang B, Pang S, et al. Study on the Influence of Initial Water Content on One-Dimensional Freezing Process of the Qinghai-Tibet Silty Clay by Using Digital Image Technology[J]. Geofluids, 2022, 2022. (中科院三区,第四作者) [7]Yang X, Ji Z, Zhang P, et al. Model test and numerical simulation on the development of artificially freezing wall in sandy layers considering water seepage[J]. Transportation Geotechnics, 2019, 21: 100293. (中科院三区,第二作者) [8]吉植强,劳丽燕,李海鹏等.渗流速度对砂土人工冻结壁的影响.科学技术与工程,2018,18(02):130-138(核心,第一作者) [9]Lao LY, Ji ZQ, Huang LL, et al.,Research on the temperature field of a partially freezing sand barrier with groundwater seepage. Sciences in Cold and Arid Regions, 2017,9(3): 0280-0288. (中科院三区,通讯作者) [10]吉植强,吕昕,李海鹏等. 人工冻结土污染物隔离屏障应用现状及研究展望. 科学技术与工程,2016,(26):158-165. (核心,通讯作者) [11]Ji Zhiqiang,Xu Xueyan, Zhao Chuankai,Modified porosity rate frost heave model and tests verification. International Conference on Materials (CEABM 2012),Civil Engineering, Architecture and Building,2012.5(EI,第一作者) [12]吉植强,徐学燕,于琳琳. Macroscopic Frost Heave Model Based on Segregation Potential Theory. Transactions of Tianjin University,2010,(04):304-308. (EI,第一作者) [13]徐学燕,吉植强,张晨熙.模拟季节冻土层影响的冻土墙模型试.岩土力学,2010,(06):1705-1708. (EI,通讯作者) [14]徐学燕,吉植强,张晨熙.季节冻土层影响下冻土墙温度场模型试验研究.中国矿业大学学报,2009,(05):629-633. (EI,通讯作者) [15]吉植强,徐学燕.季节冻土地区人工冻土墙的冻结特性研究.岩土力学,2009,(04):971-975. (EI,第一作者) [16]吉植强,徐学燕,徐伯孟,马玉华. 蒲石河电站面板堆石坝垫层料冻胀试验. 重庆建筑大学学报,2008,(06):136-139. (EI,第一作者) |