论文(已发表)
1, Qingzhong Zhu, Ling Lin, Zhong Liu, et al. Coalbed methane diffusion and water blocking effects investigated by mesoscale all-atom molecular dynamic simulations, RSC Advances, 2020, 10:41747-41754. (三区,IF=3.094)
2, Chenliang Shi, Ling Lin*, Yukun Yang, et al. Synthesis of aminated polystyrene and its self-assembly with nanoparticles at oil/water interface, E-polymers, 2020, 20(1):317-327. (四区,IF=1.491)
3, Di Pu, Ya-Chun Xiong, Ling Lin*, et al. Study on the adaptability of alkanolamide (LDEA) lowering oil/water interfacial tension to different crude oils, Journal of Surfactants and Detergents, 2020, 12430. (四区,IF=1.525)
4, Qi Chu*, Junlin Su, Ling Lin, Inhibition performance of amidocyanogen silanol in water-based drilling fluid, Applied Clay Science, 2019, 105315. (一区TOP,IF=3.890)
5, Qi Chu*, Ling Lin, Junlin Su, Amidocyanogen silanol as a potential shale inhibitor for water-based drilling fluids, Applied Clay Science, 2019, 184, 105396. (一区TOP,IF=3.890)
6, Ling Lin*, Xin Li, Chenliang Shi, et al., The desorption mechanism of hydrolyzed poly(AM/DMDAAC) from bentonite and its decomposition in saltwater under high temperatures, E-polymers, 2019, 19(1):257-354. (四区,IF=1.491)
7, Yanhui Yang, Ling Lin, Mengxi Li, et al., A Multi-scale Modeling of CH4 and H2O Adsorption on Coal Molecules and the Water Blocking Effect in Coalbed Methane Extraction, Applied Sciences, 2019, 9(16):3421. (三区,IF=3.127)
8, Qi Chu*, Ling Lin*, Yukun Zhao, Hyperbranched polyethylenimine modified with silane coupling agent as shale inhibitor for water-based drilling fluids, Journal of Petroleum Science and Engineering, 2019, 182:106333. (三区,IF=2.886)
9, Ling Lin*, Yuanhao Luo, Xin Li, Synthesis of diblock polyampholyte PAMPS-b-PMAPTAC and its adsorption on bentonite, Polymers, 2019, 11(1):41. (二区,IF=3.164)
10, Qi Chu*, Ling Lin, Synthesis and properties of an improved agent with restricted viscosity and shearing strength in water-based drilling fluid, Journal of Petroleum Science and Engineering, 2019, 173(2):1254-1263. (三区,IF=2.886)
11, Qi Chu, Ling Lin*, Effect of molecular flexibility on rheological and filtration properties of synthetic polymer as fluid loss additive in water-based drilling fluid, RSC Advances, 2019, 15(9):8608-8619. (三区,IF=3.094)
12, Ling Lin*, Pingya Luo, Effect of polyampholyte-bentonite interactions on properties of saltwater mud, Applied Clay Science, 2018, 163(10):10-19. (二区,IF=3.890)
13, Ling Lin*, Pingya Luo, Amphoteric hydrolyzed poly(acrylamide/dimethyl diallyl ammonium chloride) as a filtration reducer under high temperatures and high salinities, Journal of Applied Polymer Science, 2015, 132(10): 41581-41591. (四区,IF=2.188)
14, 林凌*, 罗平亚, 鲍晋, 等, 聚苯乙烯微球对疏水缔合聚合物溶液流变性能的影响, 油田化学, 2019, 36(1): 134-138.
15, 林凌*, 罗平亚, 分子结构对水解AM/DMDAAC聚合物流变性能的影响, 精细化工, 2017, 34(6):708-715.
16, 罗源皓, 林凌*, 罗平亚, MnCl2/NaHSO3引发丙烯酰胺-二甲基二烯丙基氯化铵共聚反应, 石油化工, 2016, 45(10): 1215-1221.
17, 林凌*, 罗平亚, 水解AM/DMDAAC/AMPS聚合物用作饱和盐水钻井液的高温高压降滤失剂, 精细化工, 2014, 31(12): 1417-1421.
发明专利(已授权)
1, Yang Bai, Pingya Luo, Ling Lin, et al. High-temperature cross-linking deep-well drilling fluid and preparation method thereof, US10005946 (美国).
2, 白杨, 罗平亚, 林凌, 等, 深井聚磺钻井液及其制备方法, ZL201710565459.X.
3, 白杨, 罗平亚, 林凌, 等, 高温交联深井钻井液及其制备方法, ZL201710565460.2.
3, 林凌, 陈彬, 曾小勤, 等, Mg97Y2Zn1 合金加锆增强法, ZL200910051633.4.
4, 陈彬, 林凌, 曾小勤, 等, 具有超细晶粒的Mg97Y2Zn1 合金的制备方法, ZL200910051634.9.
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