[张贴报告]Effects of nano-CaCO3 and inhibitor compound on hydrate formation and agglomeration

Effects of nano-CaCO3 and inhibitor compound on hydrate formation and agglomeration
编号:2914 稿件编号:1351 访问权限:私有 更新:2023-04-12 18:50:10 浏览:118次 张贴报告

报告开始:2023年05月07日 09:30 (Asia/Shanghai)

报告时间:1min

所在会议:[SP] 张贴报告专场 » [SP-6-1] 6、海洋地球科学

暂无文件

摘要
Addition of nanoparticle into drilling fluid is an effective way to reduce fluid infiltration. Moreover, hydrophilic nanoparticles has been proved to inhibit hydrate formation at certain concentrations and particle sizes. However, the inhibition effect will fail under high subcooling conditions, which requires the addition of chemical hydrate inhibitors into the drilling fluid to assist in inhibiting hydrate formation and agglomeration. Therefore, this study addressed this issue by experimentally exploring the effects of the compound of different particle sizes (20, 70 and 700 nm) of hydrophilic nano-CaCO3 and hydrate inhibitors (THI, KHI and AA) on methane hydrate formation in a dynamic system. And the macroscopic kinetic parameters (induction time, the amount of methane consumption, and the average rate of methane consumption) of hydrate formation were obtained. The results show that although hydrophilic nanoparticles, THI (3.5 wt% NaCl) and KHI (0.5 wt% PVCap) in single component systems all can inhibit hydrate nucleation and growth, their compound does not have synergistic effect, and the inhibition ability of the compound system is between that of the single component system, which is better than nano-CaCO3 aqueous solution alone; While AA (0.5 wt% PKO) can prevent hydrate agglomeration, the kinetic inhibition ability of the compound system will be weakened to some extent with the AA added. Besides, when PVCap and NaCl are involved in the compounding, the anti-agglomeration effect of PKO is enhanced. Hence, hydrophilic nanoparticles, 3.5 wt% NaCl and 0.5 wt% PVCap are selected as drilling fluid additives, and AA will not be added to the hydrate drilling fluid system in this study. In addition, a possible compounding mechanism model has been proposed. The results of this work will be of great theoretical and practical reference value for the design of deepwater and hydrate drilling fluids using nanoparticles, and also provide some insights into the compounding mechanism of multiple hydrate inhibitors in the field of flow assurance.
 
关键字
Gas hydrate, Nano-CaCO3 particles, Hydrate inhibitors, Compound effect, Drilling fluids
报告人
郭东东
安徽理工大学

稿件作者
郭东东 安徽理工大学
发表评论
验证码 看不清楚,更换一张
全部评论

联系我们

会务总协调、疫情防控:

沈焕锋(13163235536;shenhf@whu.edu.cn)

管小彬(18007973663;guanxb@whu.edu.cn)

魏秀琴(15871750333;weixiuqin@whu.edu.cn)

会场安排:

沈焕锋(13163235536;shenhf@whu.edu.cn)

李长冬(15327198910;lichangdong2008@126.com)

张 亮(15827200707;lzhang@whigg.ac.cn)

徐 鹏(13554674258;xupengwhu@whu.edu.cn)

学术安排:

王伦澈(13349889828;wang@cug.edu.cn)

庄艳华(13349889826;zhuang@apm.ac.cn)

李星华(15527964369;lixinghua5540@whu.edu.cn)

会议注册:

管小彬(18007973663;guanxb@whu.edu.cn)

赵 林(18071070948;linzhao@whu.edu.cn)

会议财务:

张传喜(13627137374;zhangchuanxi@whu.edu.cn)

石玉婷(13476286537;yutingshi@vip.qq.com)

商业赞助:

阮志敏(15871826028;ruanzm@whu.edu.cn)

黄文丽(13693626212;wenli.huang@whu.edu.cn)

会议服务,酒店预定,网站、注册系统服务:

曹雪峰(18971567453;carol@chytey.com)

金钰壹(18271358859;jinyuyi@whu.edu.cn)

会务总协调、疫情防控:
沈焕锋(13163235536;shenhf@whu.edu.cn)
管小彬(18007973663;guanxb@whu.edu.cn)
魏秀琴(15871750333;weixiuqin@whu.edu.cn)
会场安排:
沈焕锋(13163235536;shenhf@whu.edu.cn)
李长冬(15327198910;lichangdong2008@126.com)
张 亮(15827200707;lzhang@whigg.ac.cn)
徐 鹏(13554674258;xupengwhu@whu.edu.cn)
学术安排:
王伦澈(13349889828;wang@cug.edu.cn)
庄艳华(13349889826;zhuang@apm.ac.cn)
李星华(15527964369;lixinghua5540@whu.edu.cn)
会议注册:
管小彬(18007973663;guanxb@whu.edu.cn)
赵 林(18071070948;linzhao@whu.edu.cn)
会议财务:
张传喜(13627137374;zhangchuanxi@whu.edu.cn)
石玉婷(13476286537;yutingshi@vip.qq.com)
商业赞助:
阮志敏(15871826028;ruanzm@whu.edu.cn)
黄文丽(13693626212;wenli.huang@whu.edu.cn)
会议服务,酒店预定,网站、注册系统服务:
曹雪峰(18971567453;carol@chytey.com)
金钰壹(18271358859;jinyuyi@whu.edu.cn)
注册缴费 提交稿件