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楊紅斌

中國石油大學(華東)石油工程學院博士

楊紅斌,男,中國,漢中國石油大學(華東)石油工程學院博士。

人物經歷


2006.9-2010.6,中國石油大學(華東),石油工程,學士;
2010.9-2013.6,中國石油大學(華東),油氣田開發工程,碩士;
2013.9-2016.6,中國石油大學(北京),油氣田開發工程,博士;
2016.8-2018.7,中國石油大學(華東),石油與天然氣工程博士后流動站,師資博士后
2018.7-至今,中國石油大學(華東)石油工程學院,油氣田化學研究所,講師。

研究方向


(1)功能型凝膠顆粒類調驅劑的研發及作用機理研究
(2)低成本高效化學驅油體系研發與驅油機理研究
(3)油田采出液處理理論與技術研究
(4)耐溫型清潔壓裂液的研發及性能調控研究
(5)稠油油藏深穿透解堵技術研究
(6)低滲油藏氣驅防竄、封堵體系研發及作用機理研究

學術兼職


1、SPE中國化學會會員;
2、擔任《Industrial & Engineering Chemistry Research》、《Journal of Natural Gas Science and Engineering》、《Journal of Petroleum Science and Engineering》、《Colloids and Surfaces A: Physicochemical and Engineering Aspects》等SCI期刊審稿人。

主講課程


《Principles and Methods for Enhanced Oil Recovery》留學生研究生課程

指導研究生


協助指導碩士研究生7人,博士研究生3人。

承擔科研課題


(1)示蹤型熒光聚合物微球與油藏多孔介質的匹配作用機制研究(ZR2017LEE001),山東省自然科學基金,2017-2019,主持;
(2)採用熒光聚合物微球研究其與油藏的匹配機制及驅油機理(2017M612378),中國博士后科學基金,2017-2018,主持;
(3)耐溫型超長碳鏈季銨鹽清潔壓裂液粘控方法及機理研究(201702026),山東省博士后基金,2017-2019,主持;
(4)高溫高鹽低滲裂縫性油藏CO2驅防竄及封堵體系研究與應用(2016222),青島市博士后資助項目,2016-2018,主持;
(5)耐溫抗鹽納米顆粒/兩親聚合物複合凝膠研製及其CO2驅封竄機制研究(18CX05013A),自主創新科研計劃項目(理工科),2018-2020,主持;
(6)納米SiO2聚合物功能微球的研製及其與油藏的匹配作用機制研究(YJ201601088),學校項目(人才引進),2017-2019,主持;
(7)低濃度兩親聚合物驅油體系增效方法與機理研究(51774309),國家自然科學基金面上項目,2018-2021,參與;
(8)低滲高溫油藏超分子清潔壓裂液的粘控機理及應用研究(2018GGX102010),山東省重點研發計劃,2018-2019,參與;
(9)渤海注聚井區堵塞機理研究,中海油服,2018-2019,主持
(10)不同複合驅體系對驅油效率與波及係數的影響規律實驗測試,勝利油田,2017-2018,主持;
(11)防竄泡沫體系及封堵材料研發,長慶油田,2016-2017,參與;
(12)綏中36-1油田非均衡注聚提高採收率研究,中海油天津分公司,2016-2017,參與;
(13)隴東地區原油低溫破乳劑配方研究,長慶油田,2015-2016,參與;
(14)非均相粘彈體複合驅油技術研究,大港油田,2013-2014,參與。

獲獎情況


校級教學成果獎一等獎,排名6/9;
中國化學會第31屆學術年會優秀牆報獎,2018.5;
博士研究生國家獎學金,2015.12;
碩士研究生國家獎學金,2012.12。

榮譽稱號


山東省優秀畢業生;
山東省大中專學生志願者暑期“三下鄉”社會實踐優秀學生;
中國石油大學(北京)優秀畢業生。

發表著作


1. 論文集《油田化學新進展》,中國石油大學出版社,2018年11月,編委;
2. 論文集《中國化學會第十六屆膠體與界面化學會議論文集》,中國石油大學出版社,2017年7月,編委。

發表論文


發表期刊學術論文40餘篇,其中以第1或通訊作者發表SCI論文19篇,其中二區論文5篇。
1. Hongbin Yang, Leilei Hu*, Chao Chen, Yongbo Gao, Xuechen Tang, Xia Yin, Wanli Kang*. Synthesis and plugging behavior of fluorescent polymer microspheres as a kind of conformance control agent in reservoirs[J]. RSC Advances, 2018, 8(19): 10478-10488.SCI檢索.
2. Hongbin Yang, Leilei Hu*, Xuechen Tang, Yongbo Gao, Shuo Shao, Xiangfeng Zhang, Pengxiang Wang, Zhou Zhu, Wanli Kang*. Preparation of a Fluorescent Polymer Microsphere and Stability Evaluation of its Profile Control System by a Fluorescence Stability Index[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects,2018,558:512-519.SCI檢索.
3. Hongbin Yang, Wanli Kang*, Xuechen Tang, et al. Gel kinetic characteristics and creep behavior of polymer microspheres based on bulk gel [J]. Journal of Dispersion Science and Technology,2018, 39(12):1808-1819. SCI檢索.
4. Hongbin Yang*, Wanli Kang*, Yang Yu, et al. A new approach to evaluate the particle growth and sedimentation of dispersed polymer microsphere profile control system based on multiple light scattering[J]. Powder Technology,2017,315:477-485.SCI檢索.
5. Hongbin Yang*, Wanli Kang*, Xia Yin, et al. Research on Matching Mechanism Between Polymer Microspheres with Different Storage Modulus and Pore Throats in the Reservoir[J]. Powder Technology,2017,313:191-200.SCI檢索.
6. Hongbin Yang, Wanli Kang*, Hairong Wu, et al. Passive microrheology for measurement of gelation behavior of a kind of polymer gel P(AM-AA-AMPS). Journal of Applied Polymer Science,2016, 133(17):43364. SCI檢索.
7. Hongbin Yang, Wanli Kang*, Yang Lu, et al. Effects of surfactants on rheological properties of a dispersed viscoelastic microsphere[J]. Journal of Applied Polymer Science, 2015,132(30):42278. SCI檢索.
8. Hongbin Yang, Wanli Kang*, Shuren Liu, et al. Mechanism and Influencing Factors on the Initial Particle Size and Swelling Capability of Viscoelastic Microspheres[J]. Journal of Dispersion Science and Technology,2015, 36(11):1673-1684. SCI檢索.
9. Hongbin Yang, Wanli Kang*, Jian Zhao, Bin Zhang. Energy dissipation behaviors of a dispersed viscoelastic microsphere system[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects,2015,487:240-245. SCI檢索.
10. Wanli Kang*, Zhou Zhu, Hongbin Yang, et al. Study on the association behavior of a hydrophobically modified polyacrylamide in aqueous solution based on host-guest inclusion [J]. Journal of Molecular Liquids,2019, 275:544-553. SCI檢索.
11. Wanli Kang, Yilu Zhao, Pengxiang Wang, Zhe Li, Xiaoyu Hou, Zitong Huang, Hongbin Yang*. Rheological behavior and mechanism of pH-responsive wormlike micelle variations induced by isomers of phthalic acid[J]. Soft matter, 2018, 14(22): 4445-4452. SCI檢索.
12. Xiangfeng Zhang, Hongbin Yang, Zhou Zhu, Pengxiang Wang, Xia Yin, Changxiao Cao, Shujun Guo, Wanli Kang*. Effect of different molecular weight amphiphilic polymers on emulsifying behavior[J]. Petroleum Science and Technology, 2018, 36(19):1544-1551. SCI檢索.
13. Pengxiang Wang, Wanli Kang, Shujie Tian, Xia Yin, Yilu Zhao, Xiaoyu Hou, Xiangfeng Zhang, Hongbin Yang*. A responsive anionic wormlike micelle using pH-directed release of stored sodium based on the polybasic acids[J]. Soft Matter, 2018, 14(24): 5031-5038.SCI檢索.
14. Zeeshan Ali Lashari, Hongbin Yang*, Zhou Zhu, Xuechen Tang, Changxiao Cao, Muhammad Waseem Iqbal, Wanli Kang*. Experimental research of high strength thermally stable organic composite polymer gel[J]. Journal of Molecular Liquids,2018,263:118-124. SCI檢索.
15. Haishun Feng, Jirui Hou, Tao Ma, Ziyu Meng, Hairong Wu, Hongbin Yang, Wanli Kang*. The ultra-low interfacial tension behavior of the combined cationic/anionic-nonionic gemini surfactants system for chemical flooding[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects,2018,554:74-80.SCI檢索.
16. Xuechen Tang, Hongbin Yang*, Yongbo Gao, Zeeshan Ali Lashari, Changxiao Cao, Wanli Kang*. Preparation of a micro-size silica-reinforced polymer microsphere and evaluation of its properties as a plugging agent[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects,2018,547:8-18.SCI檢索.
17. Wanli Kang*, Xia Yin, Hongbin Yang*, et al. Demulsification performance, behavior and mechanism of different demulsifiers on the light crude oil emulsions[J].Colloids and Surfaces A: Physicochemical and Engineering Aspects,2018,545:197-204. SCI檢索.
18. Xia Yin, Wanli Kang*, Shuyang Song, Zitong Huang, Xiaoyu Hou, Hongbin Yang. Stabilization mechanism of CO2 foam reinforced by regenerated cellulose[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects,2018,555:754-764.SCI檢索.
19. Pengxiang Wang, Wanli Kang*, Hongbin Yang*, et al. pH-responsive wormlike micelles based on microstructural transition in a C22-tailed cationic surfactant-aromatic dibasic acid system[J]. RSC Advances,2017,7:37699-37705.SCI檢索.
20. Pengxiang Wang, Wanli Kang*, Hongbin Yang*, et al. The N-allyl substituted effect on wormlike micelles and salt tolerance of a C22-tailed cationic surfactant[J]. Soft Matter, 2017, 13(40): 7425-7432, SCI檢索.
21. Xia Yin, Wanli Kang*, Yilu Zhao, Jing Liu, Hongbin Yang*, Caili Dai, Bauyrzhan Sarsenbekuly, Saule Aidarova, Lihua Yang, Huiying Yuan, Junling Tan. Study on the indigenous stabilization mechanism of light crude oil emulsions based on an in situ solvent-dissolution visualization method[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects,2017,530:155-163, SCI檢索.
22. Bauyrzhan Sarsenbekuly, Wanli Kang*, Haiming Fan, Hongbin Yang, Caili Dai, Bo Zhao, Saule B. Aidarova. Study of salt tolerance and temperature resistance of a hydrophobically modified polyacrylamide based novel functional polymer for EOR[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects,2017,514:91-97.SCI檢索.
23.Bauyrzhan Sarsenbekuly, Wanli Kang*, Hongbin Yang*, et al. Evaluation of rheological properties of a novel thermo-viscosifying functional polymer for enhanced oil recovery[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects,2017,532:405-410. SCI檢索.
24. Zhou Zhu, Wanli Kang*, Hongbin Yang*, et al. Study on salt thickening mechanism of the amphiphilic polymer with betaine zwitterionic group by beta-cyclodextrin inclusion method[J]. Colloid and Polymer Science,2017, 295(10):1887-1895. SCI檢索.
25. Zhou Zhu, Wanli Kang*, Sarsenbekuly, Bauyrzhan, Hongbin Yang, Caili Dai, Runmei Yang, Haiming Fan. Preparation and solution performance for the amphiphilic polymers with different hydrophobic groups[J]. Journal of Applied Polymer Science,2017, 134(20):44744. SCI檢索.
26. Wanli Kang*, Pengxiang Wang, Haiming Fan*, Hongbin Yang, Caili Dai, Xia Yin, Yilu Zhao, Shujun Guo. A pH-responsive wormlike micellar system of a noncovalent interaction-based surfactant with a tunable molecular structure[J]. Soft Matter,2017,13(6):1182-1189. SCI檢索.
27. Beatrice Tubuke Mwakasala, Wanli Kang*, Xia Yin, Jie Geng, Yilu Zhao, Hongbin Yang. Demulsifier performance at low temperature in a low permeability reservoir[J]. Petroleum Science and Technology,2016, 34(23):1905-1912. SCI檢索.
28. Yanfeng Ji, Wanli Kang*, Lingwei Meng, Leilei Hu, Hongbin Yang. Study of the solution behavior of β-cyclodextrin amphiphilic polymer inclusion complex and the stability of its O/W emulsion[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2014, 453(1):117-124. SCI檢索.
29. 楊紅斌,蒲春生李淼,等。自適應弱凝膠調驅性能評價及礦場應用[J].油氣地質與採收率,2013,20(6):83-86.
30. 楊紅斌,張啟德,柳娜,等。低溫高礦化度油藏弱凝膠調驅體系的研製及性能評價[J].油田化學,2013,30(4):517-520.
31. 楊紅斌,吳飛鵬,李淼,等。低滲透油藏自適應弱凝膠輔助氮氣泡沫複合調驅體系[J].東北石油大學學報,2013,37(5):78-84.
32. 楊紅斌,馮松林,居迎軍,等。油井合理井底流壓綜合判定方法[J]石油鑽探技術,2012,40(1):103-108.
33. 楊紅斌,王志城,謝新秋,等。應力敏感條件下合理井底流壓的判定研究[J]科學技術與工程,2012,12(7):1492-1495.
34. 楊紅斌,蒲春生,吳飛鵬,等. 空氣泡沫調驅技術在淺層特低滲透低溫油藏的適應性研究[J].油氣地質與採收率,2012,19(6):69-72.
35. 康萬利,楊紅斌,徐浩,等。粘彈微球的合成及分散體系的流變性能[J].高分子材料科學與工程,2015,31(3):1-5. EI檢索
36. 饒鵬,楊紅斌,蒲春生,等. 空氣泡沫/凝膠複合調驅技術在淺層特低滲低溫油藏中的模擬應用研究[J].應用化工,2012,41(11):1868-1871.
37. 朱洲,康萬利,吳瑞坤,林憲傑,楊紅斌。高鹽條件下甜菜鹼兩親聚合物乳狀液體系的穩定性[J].石油化工高等學校學報,2017,30(6):32-36.
38. 朱洲,康萬利,楊紅斌,等。磺基甜菜鹼型兩親聚合物的合成及其流變特性[J].石油化工高等學校學報,2017,30(5):32-36.
39. 康萬利,於泱,楊紅斌,等。基於微流變法的鉻凍膠體系動態成膠過程測定[J].高分子材料科學與工程,2017,33(4):100-106. EI檢索
40. 路遙,康萬利,吳海榮,徐德榮,李哲,楊紅斌,張鵬翼,陳雋。兩親聚合物/β-環糊精包合體系黏度調控方法[J].高分子材料科學與工程,2016,32(12):98-103. EI檢索
41. 康萬利,路遙,李哲,楊紅斌,何羽薇,左金,廖書宇。部分水解聚丙烯醯胺的微流變特性研究[J].石油與天然氣化工,2015,44(4):75-78.
42. 康萬利,路遙,於泱,李哲,楊紅斌,白寶君。化學驅物理模型進展與應用[J].日用化學工業,2015,45(5):285-290.
43. 康萬利,徐浩,楊紅斌,等。預交聯凝膠顆粒膨脹性能的影響因素[J].石油與天然氣化工,2014,43(6):662-665.
44. 李淼,蒲春生,景成,楊紅斌,何羽飛.GY油田儲層成岩儲集相分類及測井響應特徵[J].岩性油氣藏,2013,25(3):48-52.

擁有專利


以第一或第二發明人申請國家發明專利12項,已授權5項。
1. 一種SiO2增強型聚合物微球製備方法,專利號:ZL201710879614.5,排名第1;
2. 一種鹽增黏水溶性兩親聚合物驅油劑,專利號:ZL201710086348.0,排名第1;
3. 一種甜菜鹼型兩親聚合物超分子驅油體系及其構築方法,專利號:ZL201810031356.X,排名第1;
4. 基於本體膠的微球粘彈性測量方法,專利號:ZL201510179818.9,排名第2;
5. 用於調驅的低彈性微球和含其的複合調驅體系及調驅方法,專利號:ZL201510640200.8,排名第2;
6. 一種基於聚合物微球與兩親聚合物的多相CO2穩定泡沫體系及製備方法,申請號:201710942599.4,排名第1;
7. 一種可調控粘彈性超分子清潔壓裂液體系及其製備方法,申請號:201711101539.6,排名第1;
8. 一種篩板旋轉式的乳化裝置及其乳化方法,申請號:201810036019.X,排名第1;
9. 一種陽離子兩親聚合物超分子驅油體系及其構築方法,申請號:201810031610.6,排名第1;
10. 有機無機複合驅油劑、有機無機複合驅油體系及製備方法和應用,申請號:201810541834.1,排名第1;
11. 調剖堵水劑及應用、調剖堵水體系及其製備方法和應用,申請號:201810543050.2,排名第1;
12. 一種雙季銨鹽長鏈結構的兩親聚合物驅油劑及其製備方法,申請號:2018114347133,排名第1。

學術交流


(1)The 2nd International Symposium on Oilfield Chemistry. 2018.06. Qingdao, China.
(2)8th International Colloids Conference,2018.06,上海.(牆報)
(3)中國化學會第31屆學術年會, 2018.05,杭州. (牆報)
(4)The 5th Global Conference on Polymer and Composite Materials (PCM 2018),2018.04, Kitakyushu, Japan. (口頭報告)
(5)中國化學會第16屆膠體與界面化學會議, 2017.07,青島.
(6)2017 SPE-KSA Annual Technical Symposium & Exhibition (ATS&E), Dammam, Saudi Arabia, 2017.04, (牆報)
(7)21st International Symposium on Surfactants in Solution (SIS2016), 2016.06. Jinan, China. (口頭報告)
(8)2015 International Conference on Enhanced Oil Recovery(EOR2015), 2015.08. Chicago, U.S.A.(優秀口頭報告一等獎)
(9)中國化學會第15屆膠體與界面化學會議, 2015.07,武漢.
(10)第12屆全國流變學學術會議, 2014.12,廣州.(口頭報告)
(11)6th Pacific Rim Conference on Rheology(PRCR6), 2014.07. Melbourne, Australia.(牆報)
(12)2014 International Conference on Enhanced Oil Recovery(EOR2014), 2014.06. Beijing, China(優秀口頭報告三等獎)