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吳海榮 副研究員

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吳海榮

博士,副研究員,碩士生導(dǎo)師,校青年拔尖人才
辦公室:新綜合樓北樓A301
手機(jī):15010260120
E-mail: [email protected]




個(gè)人簡(jiǎn)介

吳海榮,博士,,副研究員,碩士生導(dǎo)師,,2016年入選中國(guó)石油大學(xué)(北京)重點(diǎn)學(xué)科青年拔尖人才計(jì)劃,,2019年入選北京市優(yōu)秀人才培養(yǎng)資助計(jì)劃。20159月從荷蘭University of Twente MESA+納米技術(shù)研究所博士畢業(yè),,同年10月起至今在中國(guó)石油大學(xué)(北京)工作,。主要從事提高采收率與油田化學(xué)、納米驅(qū)油劑開(kāi)發(fā)與應(yīng)用,、膠體與界面化學(xué)等方面的研究,。近年來(lái),,先后主持國(guó)家自然基金項(xiàng)目2項(xiàng),、北京市優(yōu)秀人才培養(yǎng)資助項(xiàng)目1項(xiàng),、北京市自然科學(xué)基金1項(xiàng),、中石油創(chuàng)新基金項(xiàng)目1項(xiàng)和油田企業(yè)委托項(xiàng)目等多個(gè)科研項(xiàng)目,;作為科研骨干,,完成和參與十三五國(guó)家科技重大專項(xiàng)等國(guó)家級(jí)和橫向課題十余項(xiàng),,獲省部級(jí)獎(jiǎng)勵(lì)2項(xiàng),。在Fuel,、Energy & Fuels等本領(lǐng)域高水平期刊上公開(kāi)發(fā)表學(xué)術(shù)論文50余篇,,其中第一作者和通訊作者SCI論文近30篇;此外,,獲邀在第五屆國(guó)際提高采收率會(huì)議,、美國(guó)化學(xué)年會(huì)等國(guó)際會(huì)議上做口頭報(bào)告多次。



研究方向

1.      智能納米驅(qū)油劑與Pickering乳狀液

2.      非常規(guī)油氣藏提高采收率

3.      CO2吞吐提高致密油藏采收率

4.      調(diào)剖堵水理論與技術(shù)

5.      油田開(kāi)發(fā)膠體與界面化學(xué)



招生方向

油氣田開(kāi)發(fā)工程(學(xué)碩),,石油與天然氣工程(專碩)


工作經(jīng)歷

2016.06-至今     中國(guó)石油大學(xué)(北京)  副研究員,,校青年拔尖人才

2015.10-2016.06   中國(guó)石油大學(xué)(北京)  助理研究員


教育背景

2011.09-2015.09   荷蘭特文特大學(xué)MESA+納米技術(shù)研究所   博士研究生

2009.07-2011.07   中科院蘭州化學(xué)物理研究所固體潤(rùn)滑國(guó)家重點(diǎn)實(shí)驗(yàn)室  碩士

2008.09-2009.07   中國(guó)科學(xué)院研究生院(現(xiàn)中國(guó)科學(xué)院大學(xué))  碩士

2003.09-2007.07   山東師范大學(xué)  大學(xué)本科


主講課程

界面化學(xué)(核心課程),授課對(duì)象:碩士,、博士研究生


科研項(xiàng)目

1.  國(guó)家自然基金面上項(xiàng)目,,2024.01-2027.12,,主持

2.  國(guó)家自然基金青年項(xiàng)目,2024.01-2026.12,,主持

3.  北京市自然基金青年基金項(xiàng)目,,2020.01-2021.12,主持

4.  北京市優(yōu)秀人才培養(yǎng)資助青年骨干個(gè)人項(xiàng)目,,表面改性納米顆粒改善低滲透油藏巖石潤(rùn)濕性及其提高采收率研究,,2018.10-2020.10,主持

5.  中國(guó)石油大學(xué)(北京)拔尖人才資助項(xiàng)目,,2015.12-2019.12,,主持

6.  中國(guó)石油科技創(chuàng)新基金,雙親納米流體制備及其提高采收率機(jī)理研究,,2020.12-2022.12,,主持

7.  中海油田服務(wù)股份有限公司天津分公司項(xiàng)目,2021.07-2022.12,,主持

8.  致密油藏納米驅(qū)油劑研究及作用機(jī)理表征,,中國(guó)石油天然氣股份有限公司勘探開(kāi)發(fā)研究院廊坊分院,2017.01-2018.03,,主持

9.  強(qiáng)非均質(zhì)礫巖油藏CO2吞吐機(jī)理與方案優(yōu)化研究,,中石油戰(zhàn)略合作科技專項(xiàng),2020.01-2024.12,,科研骨干

10.  新型表面活性劑綠色高效合成及動(dòng)態(tài)界面行為研究,,中國(guó)石油化工股份有限公司,2020.07-2022.12,,科研骨干

11.  不同類型巖石孔隙結(jié)構(gòu)表征方法研究,,中國(guó)石油化工股份有限公司石油勘探開(kāi)發(fā)研究院,2019.11-2021.12,,科研骨干

12.  復(fù)雜油氣田地質(zhì)與高效鉆采新技術(shù)-低滲-致密油藏高效提高采收率新技術(shù),,十三五國(guó)家科技重大專項(xiàng)課題,2017.01-2020.12,,科研骨干

13.   CO2驅(qū)采出液脫水及污水處理技術(shù)研究,,中國(guó)石油天然氣股份有限公司吉林油田分公司(勘察設(shè)計(jì)院),2016.11-2017.02,,科研骨干


代表性期刊論文(第一或通訊作者)

1.  Controllable regulation of emulsion stability by a pH-responsive zwitterionic/anionic surfactant system, Fuel 2022, 312, 122921.

2.  Similarity-based laboratory study of CO2 huff-n-puff in tight conglomerate cores, Petroleum Science 2023, 20, 362-369.

3.  Probing surface properties of organic molecular layers by scanning tunneling microscopy, Advances in Colloid and Interface Science 2023, 318, 102956.

4.  Enhanced oil recovery performance of surfactant-enhanced Janus SiO2 nanofluid for high temperature and salinity reservoir, Colloids and Surfaces A: Physicochemical and Engineering Aspects 2023, 657, 130545.

5.  Recent research progress on imbibition system of nanoparticle-surfactant dispersions. Capillarity, 2023, 8(2): 34-44.

6.  Silica-based amphiphilic Janus nanofluid with improved interfacial properties for enhanced oil recovery. Colloids and Surfaces A: Physicochemical and Engineering Aspects 2020, 586, 124162.

7.  Ultra-low interfacial tension biobased and catanionic surfactants for low permeability reservoirs. Journal of Molecular Liquids, 2020, 309, 113099.

8.  Effect of 1-octanol on the stabilization of crude oil emulsions with hydrophobically modified polyacrylamide. Fuel, 2019, 256, 116007.

9.  Synergistic Collaboration between Regenerated Cellulose and Surfactant to Stabilize Oil/Water (O/W) Emulsions for Enhancing Oil Recovery, Energy & Fuels, 2019, 33 (1), 81–88.

10.  Interaction of Amphiphilic Polymers with Medium-Chain Fatty Alcohols to Enhance Rheological Performance and Mobility Control Ability. Energy & Fuels, 2019, 33, 6273-6282.

11.  Study on the oil/water separation performance of a super-hydrophobic copper mesh under downhole conditions. Journal of Industrial and Engineering Chemistry, 2019, 72, 310-318.

12.  SiO2 nanoparticle-assisted low-concentration viscoelastic cationic surfactant fracturing fluid. Journal of Molecular Liquids, 2018, 266, 864-869.

13.  Stability mechanism of O/W Pickering emulsions stabilized with regenerated cellulose. Carbohydrate Polymers, 2018, 181, 224-233.

14.  Spontaneous emulsification via once bottom-up cycle for the crude oil in low permeability reservoirs. Energy & Fuels, 2018, 32, 3119-3126.

15.  Salt effect on hydrophobically modified polyacrylamide-containing crude oil emulsions: stability and rheology study. Colloid and Polymer Science, 2018, 296 (3), 515-527.

16.  Study on the stabilization mechanism of crude oil emulsion with an amphiphilic polymer using the β-cyclodextrin inclusion method. RSC Advances, 2017, 7, 8156-8166.

17.  The rheological characteristics for the mixtures of cationic surfactant and anionic-nonionic surfactants: the role of ethylene oxide moieties. RSC Advances 2017, 7, 13032-13040.

18.  Study on thermally-induced aggregates transformation and its mechanism in cetyltrimethyl ammonium bromide/sodium dodecyl sulfate surfactants mixtures. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2017, 522, 628-634.

19.  Electrochemical atomic force microscopy reveals potential stimulated height changes of redox responsive Cu-azurin on gold. European Polymer Journal 2016, 83, 529-537.

20.  Dynamics of Decanethiol Self-Assembled Monolayers on Au(111) Studied by Time-Resolved Scanning Tunneling Microscopy. Langmuir 2013, 29, 2250-2257.

21.  Friction and wear properties of Babbitt alloy 16-16-2 under sea water environment. Tribology International 2011, 44, 1161-1167.


授權(quán)發(fā)明專利

1,、一種磺化二氧化硅納米顆粒及其制備方法和應(yīng)用,ZL201811541076.X

2,、pH響應(yīng)型驅(qū)油劑組合物,、驅(qū)油劑及其制備方法和應(yīng)用,ZL202011353845.0

3,、一種低滲透油藏驅(qū)油劑,,ZL201910379995.X

4,、陰離子型兩親聚合物構(gòu)筑的驅(qū)油組合物及制備方法和應(yīng)用,ZL201910486703.2

5,、一種低滲透油藏自乳化驅(qū)油體系的自乳化篩選方法,,ZL201811135982.X

6、一種復(fù)合驅(qū)油劑及其制備方法和應(yīng)用,,ZL201811617943.3

7,、多孔介質(zhì)中微球狀態(tài)動(dòng)態(tài)分級(jí)表征方法及裝置,ZL201710096438.8

8,、超疏水井下油水分離器及其同井注采工藝管柱,ZL201611198617.4

9,、一種小分子稠油降粘聚合物及其制備方法,,ZL202011367550.9


榮譽(yù)獎(jiǎng)勵(lì)

1、中國(guó)發(fā)明協(xié)會(huì)2021年度發(fā)明創(chuàng)業(yè)獎(jiǎng)創(chuàng)新獎(jiǎng),,二等獎(jiǎng),,2021

2、中國(guó)技術(shù)市場(chǎng)協(xié)會(huì)金橋獎(jiǎng),,一等獎(jiǎng),,2020

3、石油科學(xué)《Petroleum Science》優(yōu)秀青年編委,,2022

4,、青島市科技進(jìn)步獎(jiǎng),二等獎(jiǎng),,2022


代表性會(huì)議論文/報(bào)告

1,、納米顆粒/表面活性劑體系滲吸效果及機(jī)理研究,口頭報(bào)告,,首屆全國(guó)多孔介質(zhì)滲吸理論與應(yīng)用學(xué)術(shù)會(huì)議,,2023.04,北京

2,、Experimental study of CO2 huff-n-puff for enhanced oil recovery in tight conglomerate cores,,口頭報(bào)告/分會(huì)場(chǎng)主持人,2023二氧化碳捕集,、利用與封存(CCUS)國(guó)際會(huì)議,,2023.04,北京

3,、pH響應(yīng)型兩性離子/陰離子表面活性劑體系對(duì)乳液穩(wěn)定性的可控調(diào)節(jié),,口頭報(bào)告,中國(guó)化學(xué)會(huì)第18屆膠體與界面化學(xué)學(xué)術(shù)會(huì)議,,2023.04,,西安

4,、耐溫耐鹽Janus SiO2納米流體的構(gòu)筑及其提高采收率研究,口頭報(bào)告,,第六屆全國(guó)油氣藏提高采收率技術(shù)研討會(huì),,2023.03,合肥

5,、低滲透油藏納米驅(qū)油劑制備與提高采收率機(jī)理研究,,主題報(bào)告,第五屆提高采收率國(guó)際會(huì)議,,2021.10,,重慶

6、Amphiphilic Janus nanofluid designed for enhanced oil recovery in low permeability reservoir,,第二屆中哈納米材料與能源國(guó)際研討會(huì),,邀請(qǐng)報(bào)告,2021.11,,在線

7,、Silica-based amphiphilic Janus nanofluid for enhanced oil recovery,口頭報(bào)告,,2019納米石油科學(xué)與技術(shù)國(guó)際會(huì)議暨第五屆納米地學(xué)在石油工程中的應(yīng)用國(guó)際研討會(huì),,2019.12,中國(guó)石油大學(xué)(北京),,北京

8,、致密砂巖油藏壓驅(qū)一體化納米清潔壓裂液構(gòu)筑與性能研究,墻報(bào)展示,,第四屆地質(zhì)工程一體化論壇展,,2019.11,北京

9,、Potential stimulated height changes of Cu-azurin studied by In-situ electrochemical Atomic Force Microscopy,,口頭報(bào)告/分會(huì)場(chǎng)主持人,21st International Symposium on Surfactants in Solution,,2016.06,,山東濟(jì)南

10、Surface dynamics of self-assembled monolayers on Au(111) explored by ultra-fast scanning tunneling microscopy,,口頭報(bào)告,,International Conference on Scanning Probe Microscopy on Soft and Polymeric Materials2017.08,,吉林長(zhǎng)春

11,、基于再生纖維素穩(wěn)定水包油型Pickering乳狀液的穩(wěn)定機(jī)理研究,中國(guó)化學(xué)會(huì)第十六屆膠體與界面化學(xué)會(huì)議,2017.07,,山東青島

12,、Dynamics of Self-assembled Monolayers on Au(111) Studied by Time-resolved Scanning Tunneling Microscopy,口頭報(bào)告,,249th American Chemical Society National Meeting & Exposition,,2015.03, USA

13、 Ordering and dynamics of oligo(phenylene ethynylene) self-assembled monolayers on Au(111) studied by time-resolved scanning tunneling microscopy, 口頭報(bào)告,,Dutch Polymer Days,,2015.03The Netherlands

14,、Conductivity of a single octanethiol molecule studied by scanning tunneling spectroscopy, 25th International Symposium on Polymer Analysis and Characterization, 2012.06, The Netherlands


學(xué)術(shù)兼職

1.   國(guó)際石油工程師協(xié)會(huì)(SPE)會(huì)員

2.  中國(guó)化學(xué)會(huì)會(huì)員

3.   Fuel,、Journal of Petroleum Science and EngineeringEnergy & Fuels,、Petroleum ScienceChemical Engineering Journal等學(xué)術(shù)期刊審稿人

4.   Petroleum Science期刊青年編委

5.  Advances in Geo-Energy Research期刊青年編委