Synthesis and evaluation of poly(N-vinyl caprolactam)-co-tert-butyl acrylate as kinetic hydrate inhibitor

被引:1
作者
Xing Huang [1 ,2 ]
Ran Zhu [1 ]
Liwei Cheng [3 ]
Yijian Zhu [1 ]
Peng Xiao [1 ]
Xiaohui Wang [1 ]
Bei Liu [1 ]
Changyu Sun [1 ]
Weixin Pang [4 ]
Qingping Li [4 ]
Guangjin Chen [1 ]
Xinjing Xu [5 ]
Jinfeng Ji [5 ]
机构
[1] State Key Laboratory of Natural Gas Hydrates/College of Chemical Engineering and Environment, China University of Petroleum
[2] College of Chemistry and Chemical Engineering, Neijiang Normal University
[3] Faculty of Engineering, China University of Geosciences
[4] State Key Laboratory of Natural Gas Hydrate,CNOOC
[5] Hainan Longpan Oilfield Technology Co., Ltd
基金
中国国家自然科学基金;
关键词
Hydrate; Kinetics; Inhibitor; Poly(N-vinyl aprolactam)–co-tert-butyl acrylate; Synergist; Synthesis;
D O I
暂无
中图分类号
TE31 [基础理论];
学科分类号
082002 ;
摘要
Low dosage kinetic hydrate inhibitors(KHIs) are a kind of alternative chemical additives to high dosage thermodynamic inhibitors for preventing gas hydrate formation in oil & gas production wells and transportation pipelines.In this paper,a new KHI,poly(N-vinyl caprolactam)-co-tert-butyl acrylate(PVCapco-TBA),was successfully synthesized with N-vinyl caprolactam(NVCap) and tert-butyl acrylate.The kinetic inhibition performances of PVCap-co-TBA on the formations of both structure Ⅰ methane hydrate and structure Ⅱ natural gas hydrate were investigated by measuring the onset times of hydrate formation under different conditions and compared with commercial KHIs such as PVP,PVCap and inhibex 501.The results indicated that PVCap-co-TBA outperformed these widely applied inhibitors for both structure Ⅰ and structure Ⅱ hydrates.At the same dosage of KHI,the maximum tolerable degree of subcooling under which the onset time of hydrate formation exceeded 24 hours for structure Ⅰ hydrate was much lower than that for structure Ⅱ hydrate.The inhibition strength increased with the increasing dosage of PVCap-co-TBA;The maximum tolerable degree of subcooling for the natural gas hydrate is more than10 K when the dosage was higher than 0.5%(mass) while it achieved 12 K when that dosage rose to0.75%(mass).Additionally,we found polypropylene glycol could be used as synergist at the dosage of 1.0 %(mass) or so,under which the kinetic inhibition performance of PVCap-co-TBA could be improved significantly.All evaluation results demonstrated that PVCap-co-TBA was a very promising KHI and a competitive alternative to the existing commercial KHIs.
引用
收藏
页码:317 / 325
页数:9
相关论文
共 47 条
  • [1] Insights into kinetic inhibition effects of MEG, PVP, and L-tyrosine aqueous solutions on natural gas hydrate formation[J]. Amir Saberi,Abdolmohammad Alamdari,Ali Rasoolzadeh,Amir H. Mohammadi.Petroleum Science. 2021(02)
  • [2] A short review on natural gas hydrate, kinetic hydrate inhibitors and inhibitor synergists
    Wei Ke
    Daoyi Chen
    [J]. Chinese Journal of Chemical Engineering, 2019, 27 (09) : 2049 - 2061
  • [3] Fundamental mechanisms and phenomena of clathrate hydrate nucleation[J]. Jinlong Cui,Zhenfeng Sun,Xiaohui Wang,Bin Yu,Shudong Leng,Guangjin Chen,Changyu Sun.Chinese Journal of Chemical Engineering. 2019(09)
  • [4] 气体水合物研究进展(英文)
    孙长宇
    李文志
    杨新
    李风光
    袁青
    穆亮
    陈俊
    刘蓓
    陈光进
    [J]. ChineseJournalofChemicalEngineering, 2011, 19 (01) : 151 - 162
  • [5] Study on the spatial differences of methane hydrate dissociation process by depressurization using an L-shape simulator[J] . Cui Jin-Long,Cheng Li-Wei,Kan Jing-Yu,Pang Wei-Xin,Gu Jun-Nan,Li Kun,Wang Ling-Ban,Sun Chang-Yu,Wang Xiao-Hui,Chen Guang-Jin,Li Xing-Xun.Energy . 2021
  • [6] High efficient development of green kinetic hydrate inhibitors via combined molecular dynamic simulation and experimental test approach[J] . Cheng Liwei,Cui Jinlong,Li Jia,Zhu Ran,Liu Bei,Ban Shuai,Chen Guangjin.Green Chemical Engineering . 2021 (prep)
  • [7] Review on the Applications and Modifications of the Chen-Guo Model for Hydrate Formation and Dissociation
    Wang, Ling-Ban
    Cui, Jin-Long
    Sun, Chang-Yu
    Ma, Qing-Lan
    Fan, Shuan-Shi
    Wang, Xiao-Hui
    Chen, Guang-Jin
    [J]. ENERGY & FUELS, 2021, 35 (04) : 2936 - 2964
  • [8] Generation of methane gas hydrate equilibrium curve for the thermodynamic gas hydrate inhibitor propylene glycol[J] . Deka Barasha,Barifcani Ahmed,Al Helal Ammar,Badi Dana,Mahto Vikas,Vuthaluru Hari.Journal of Petroleum Science and Engineering . 2020 (prep)
  • [9] Gas hydrates in sustainable chemistry
    Hassanpouryouzband, Aliakbar
    Joonaki, Edris
    Farahani, Mehrdad Vasheghani
    Takeya, Satoshi
    Ruppel, Carolyn
    Yang, Jinhai
    English, Niall J.
    Schicks, Judith M.
    Edlmann, Katriona
    Mehrabian, Hadi
    Aman, Zachary M.
    Tohidi, Bahman
    [J]. CHEMICAL SOCIETY REVIEWS, 2020, 49 (15) : 5225 - 5309
  • [10] Recent advances in ionic liquids as alternative to surfactants/chemicals for application in upstream oil industry[J] . Achinta Bera,Jatin Agarwal,Maunish Shah,Subhash Shah,Rakesh Kumar Vij.Journal of Industrial and Engineering Chemistry . 2020 (C)