论著获奖 |
发表高水平论文30余篇,部分成果如下: [1] Kang B, Zha FS, Li HC, Xu L, Sun XG, Lu ZT. Bio-Mediated Method for Immobilizing Copper Tailings Sand Contaminated with Multiple Heavy Metals [J]. Crystals, 2022, 12(4): 13. [2] Zha FS, Huang K, Kang B(通讯作者), Sun XG. Deterioration Characteristic and Constitutive Model of Red-Bed Argillaceous Siltstone Subjected to Drying-Wetting Cycles [J]. Lithosphere, 2022, 2022(1): 15. [3] Yang J, Ren WX, Kang B(通讯作者), Tao YZ. Experimental investigation on chemical clogging mechanism of loose porous media in recharge process of groundwater heat pump [J]. Environ Technol: 17. [4] Yang J, Tao YZ, Gao YL, Wang LJ, Kang B(通讯作者). Experimental study on the water-rock interaction mechanism in a groundwater heat pump reinjection process [J]. J Water Clim Chang, 2022, 13(3): 1516-1533. [5] Zha FS, Liu CM, Kang B(通讯作者). Acid rain leaching behavior of Zn-contaminated soils solidified/stabilized using cement-soda residue [J]. Chemosphere, 2021, 281: 9. [6] Zha FS, Qiao BR, Kang B(通讯作者), Xu L, Chu CF, Yang CB. Engineering properties of expansive soil stabilized by physically amended titanium gypsum [J]. Construction and Building Materials, 2021, 303: 311. [7] Zha FS, Liu CM, Kang B(通讯作者), Xu L, Yang CB, Chu CF. Effect of Carbonation on the Leachability of Solidified/Stabilized Lead-Contaminated Expansive Soil [J]. Advances in Civil Engineering, 2021, 2021: 13. [8] Zha FS, Wang H, Kang B(通讯作者), Liu CM, Xu L, Tan XH. Improving the Strength and Leaching Characteristics of Pb-Contaminated Silt through MICP [J]. Crystals, 2021, 11(11): 16. [9] Zha FS, Zhu FH, Kang B(通讯作者), Xu L, Deng YF, Yang CB, Chu CF. Experimental Investigation of Cement/Soda Residue for Solidification/Stabilization of Cr-Contaminated Soils [J]. Advances in Civil Engineering, 2020, 2020: 13. [10] Huang K. Kang B, Zha FS, Li YF, Zhang Q, Chu CF. Disintegration characteristics and mechanism of red-bed argillaceous siltstone under drying-wetting cycle [J]. Environmental Earth Sciences, 2022. [11] Zha FS, Zhu FH, Xu L, Kang B, Yang CB. Laboratory study of strength, leaching, and electrical resistivity characteristics of heavy-metal contaminated soil [J]. Environmental Earth Sciences, 2021, 80(5): 11. [12] Lin F, Ren HL, Wei T, Kang B, Li YC, Tao YZ. Research on the Contaminant Breakthrough Time Algorithm Based on Thermal Penetration Theory [J]. IEEE Access, 2021, 9: 161991-161998. [13] Zha FS, Wang H, Xu L, Yang CB, Kang B, Chu CF, Deng YF, Tan XH. Initial feasibility study in adsorption capacity and mechanism of soda residue on lead (II)-contaminated soil in solidification/stabilization technology [J]. Environmental Earth Sciences, 2020, 79(10): 12. [14] Liu JJ, Zha FS, Xu L, Kang B, Yang CB. Strength and microstructure characteristics of cement-soda residue solidified/stabilized zinc contaminated soil subjected to freezing-thawing cycles [J]. Cold Reg Sci Tech, 2020, 172: 174. [15] Liu JJ, Zha FS, Xu L, Kang B, Yang CB. Zinc leachability in contaminated soil stabilized/solidified by cement-soda residue under freeze-thaw cycles [J]. Applied Clay Science, 2020, 186: 9. [16] Zha FS, Ji CJ, Xu L, Kang B, Yang C B, Chu C F. Assessment of strength and leaching characteristics of heavy metal-contaminated soils solidified/stabilized by cement/fly ash [J]. Environ Sci Pollut Res, 2019, 26(29): 30206-30219. [17] Liu JJ, Zha FS, Xu L, Kang B, Tan XH. Mechanism of stabilized/solidified heavy metal contaminated soils with cement-fly ash based on electrical resistivity measurements [J]. Measurement, 2019, 141: 85-94. [18] 费雅洁,康博(通讯作者),孙献国,查甫生.酸雨淋溶下MICP固化铅污染土的淋滤特性研究[J].工程地质学报:1-8. [19] 李红昌,查甫生,康博(通讯作者),陈林杰,丁丹. 注浆次数对MICP固化尾矿砂效果影响研究[C]//.2020年工业建筑学术交流会论文集(中册).
授权国家发明专利: [1] 康博;邓伟豪;许龙;查甫生;刘从民. 一种微生物诱导碳酸钙沉淀修复土壤重金属污染的方法.发明专利,202010484387.8,2021.08.10. [2]查甫生;刘从民;康博;王昊;许龙.一种可脱模微生物注浆加固粉土的试验装置及方法.发明专利,201910255412.2,2021.07.13. [3] 查甫生;陈宗涵;许龙;康博;刘晶晶. 基于毛细阻滞机理的导吸式膨胀土边坡浅层控水覆盖系统.发明专利,202010337655.3,2021.12.07. [4] 查甫生;潘俊;康博;孙献国;许龙. 一种柔性钙基材料改性包边修复膨胀土边坡的方法.发明专利,202011534784.8,2021.11.23. [5] 许龙;查甫生;朱方华;刘晶晶;康博. 气体渗透过程中土体力学响应全过程监测装置及方法.发明专利,202010932007.2,2021.06.22. [6] 查甫生;朱方华;许龙;储诚富.一种可测毛细管气相渗流影响区大小的试验装置.发明专利,201910203496.5, 2021.06.08. 其他荣誉:
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