論文
1.1 SCI論文情況
[1] Huang X, Sun J, Li H, et al. Fabrication of a Hydrophobic Hierarchical Surface on Shale Using Modified Nano-SiO2 for Strengthening the Wellbore Wall in Drilling Engineering[J]. Engineering, 2021. (SCI一區TOP)
[2] Huang X, Shen H, Sun J, et al. Nanoscale laponite as a potential shale inhibitor in water-based drilling fluid for stabilization of wellbore stability and mechanism study[J]. ACS applied materials & interfaces, 2018, 10(39): 33252-33259. (SCI一區TOP)
[3] Huang X B, Sun J S, Huang Y, et al. Laponite: a promising nanomaterial to formulate high-performance water-based drilling fluids[J]. Petroleum Science, 2021, 18(2): 579-590. (SCI一區TOP)
[4] Huang X, Sun J, Lv K, et al. Application of core-shell structural acrylic resin/nano-SiO2 composite in water based drilling fluid to plug shale pores[J]. Journal of Natural Gas Science and Engineering, 2018, 55: 418-425. (SCI二區)
[5] Huang X, Sun J, Jin J, et al. Use of silicone quaternary ammonium salt for hydrophobic surface modification to inhibit shale hydration and mechanism study[J]. Journal of Molecular Liquids, 2021, 341: 117369. (SCI二區)
[6] Huang X, Meng X, Lv K, et al. Development of a High Temperature Resistant Nano-Plugging Agent and the Plugging Performance of Multi-Scale Micropores[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2022: 128275. (SCI二區)
[7] Huang X, Lv K, Sun J, et al. Enhancement of thermal stability of drilling fluid using laponite nanoparticles under extreme temperature conditions[J]. Materials Letters, 2019, 248: 146-149. (SCI二區)
[8] Huang X, Jiang G, He Y, et al. Improvement of rheological properties of invert drilling fluids by enhancing interactions of water droplets using hydrogen bonding linker[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2016, 506: 467-475. (SCI二區)
[9] Lv K, Huang X※, Li H, et al. Modified biosurfactant cationic alkyl polyglycoside as an effective additive for inhibition of highly reactive shale[J]. Energy & Fuels, 2020, 34(2): 1680-1687. (SCI三區、通訊)
[10] Huang X, Sun J, Lv K, et al. An alternative method to enhance w/o emulsion stability using modified dimer acid and its application in oil based drilling fluids[J]. RSC advances, 2018, 8(46): 26318-26324. (SCI三區)
[11] Huang X, Jiang G, Deng Z. Oil extraction from oil-contaminated drill cuttings using a recyclable single-phase o/w microemulsion[J]. Tenside Surfactants Detergents, 2015, 52(6): 454-463. (SCI四區)
1.2 EI和中文論文情況
[1] 黃賢斌,蔣官澄,萬偉,馬克迪.含油鑽屑微乳狀液除油劑的研製及機理[J].石油學報,2016,37(06):815-820. (EI檢索)
[2] Huang X B, Jiang G C. Hydrogen Bonds-Enhanced Organoclay-Free Oil Based Drilling Fluid System[C]//Materials Science Forum. Trans Tech Publications Ltd, 2017, 890: 227-234. (EI檢索)
[3] 黃賢斌,孫金聲,蔣官澄,呂開河,王金堂,劉敬平,羅少傑.改性脂肪酸提切劑的研製及其應用[J].中國石油大學學報(自然科學版),2019,43(03):107-112. (EI檢索)
[4] 黃賢斌,蔣官澄,鄧正強.水性丙烯酸樹脂在油包水鑽井液中的作用[J].鑽井液與完井液,2017,34(02):26-32. (中文核心)
[5] 孫金聲,黃賢斌※,呂開河,邵子樺,孟旭,王金堂,李偉.提高水基鑽井液高溫穩定性的方法、技術現狀與研究進展[J].中國石油大學學報(自然科學版),2019,43(05):73-81. (EI檢索、通訊)
[6] 蔣官澄,黃賢斌※,呂燭,楊崢,魏怡君,李穎穎.一種酸化用無氟緩速酸的性能評價[J].油田化學,2013,30(02):168-172. (通訊)
[7] 蔣官澄,黃賢斌※,賈欣鵬,羅少傑,魏怡君,楊崢.新型酸化解堵劑與體係研究[J].鑽采工藝,2012,35(06):89-93. (通訊)
[8] 孫金聲,黃賢斌,蔣官澄,呂開河,劉敬平,代誌文.無土相油基鑽井液關鍵處理劑研製及體係性能評價[J].石油勘探與開發,2018,45(04):713-718. (SCI一區)
[9] 盧震,黃賢斌,孫金聲,李明,楊崢,周誌世.水基鑽井液用耐高溫納米聚合物封堵劑的研製[J].石油鑽采工藝,2020,42(05):587-591.