CN114874427A - 一种用于破除油田采油中超强乳状液及油水过渡层的原油破乳剂的合成方法 - Google Patents

一种用于破除油田采油中超强乳状液及油水过渡层的原油破乳剂的合成方法 Download PDF

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CN114874427A
CN114874427A CN202210561368.XA CN202210561368A CN114874427A CN 114874427 A CN114874427 A CN 114874427A CN 202210561368 A CN202210561368 A CN 202210561368A CN 114874427 A CN114874427 A CN 114874427A
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刘玉民
刘国伟
李国庆
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Heze Keteng Biotechnology Co ltd
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Abstract

本发明公开了一种用于破除油田采油中超强乳状液及油水过渡层的原油破乳剂的合成方法,分子结构独特,可以应用于超强乳状液体系及含有过渡层聚集物生产环境中破乳脱水,达到水清油净,维持生产正常进行。

Description

一种用于破除油田采油中超强乳状液及油水过渡层的原油破 乳剂的合成方法
技术领域
本发明涉及破乳剂技术领域,具体的说,尤其涉及一种用于破除油田采油中超强乳状液及油水过渡层的原油破乳剂的合成方法。
背景技术
油田采油中存在的一种形态稳定的超强乳状液。另外,在联合站破乳脱水过程中产生存在于一次沉降罐、电脱水器、污水罐的聚集物,似油非油悬浮在水层之上油层之下的“过渡层”。这两种现象虽然不是经常普遍存在,一旦出现时,通用型嵌段聚醚破乳剂无法应对解决。会造成停工停产或跑油等生产事故发生。
因此,需要一种用于破除油田采油中超强乳状液及油水过渡层的原油破乳剂的合成方法解决此问题。
发明内容
本发明的目的在于提供一种用于破除油田采油中超强乳状液及油水过渡层的原油破乳剂的合成方法,以解决上述背景技术中提出的问题。
为实现上述目的,本发明提供如下技术方案:一种原油破乳剂,分子式为:
Figure BDA0003655548490000011
R为起始剂系C2-C5多元醇的一种;
x1为环氧氯丙烷的份数,为R的30-50倍(摩尔数);
x2为聚氧化丙烯嵌段的份数,是R的99-119整数倍(质量数);
x3为聚氧化乙烯嵌段的份数,是R的50-80整数倍(质量数);
y为x1的0.3-0.9。
优选的,
x1、x2为亲油嵌段;
x3、y为亲水嵌段,y有一定阳离子度,为30-90%;
分子链段中,亲油段与亲水段比例可调。
一种原油破乳剂的合成方法,
(1)卤代聚醚的合成及工艺控制
选用丙三醇为起始剂,环氧氯丙烷为单体,进行聚合反应,生成中间体A,
反应化学式如下:
Figure BDA0003655548490000021
x1=a1+b1+c1(摩尔数)
(2)用(1)式中间体A与环氧丙烷反应,加成为聚环氧丙烯醚嵌段,为中间体B,
Figure BDA0003655548490000031
式中:x2=a2+b2+c2
(3)用(2)式中间体B与环氧乙烷反应,加成聚氧乙烯醚嵌段为中间体C。
Figure BDA0003655548490000032
Figure BDA0003655548490000041
式中:x3=a3+b3+c3
(4)用(3)式中间体C与三甲胺水溶液原料反应,制得目的物产品。
Figure BDA0003655548490000042
式中:y=y1+y2+y3
优选的,
步骤(1)中的起始剂也可为季戊四醇。
一种原油破乳剂的应用,
(1)在破乳剂应用到油水乳状液出现过渡层,加药处理;
(2)在破乳剂应用到热化学脱水工艺中;
(3)在破乳剂应用到三次采油采出高含聚含表活剂油水乳状液中;
(4)在破乳剂应用到特稠油,油水乳状液破乳脱水的应用,(高温>70℃)。
有益效果:本发明的有益效果是:
1)一个分子链中同时具有非离子聚醚嵌段和阳离子聚醚嵌段;对破除双电层乳状液,油包水、水包油多重乳液性能突出;
2)阳离子嵌段大小可调,在具有电脱水器的破乳脱水工艺中,不受影响,电脱水器正常工作,在单一热化学脱水工艺中,阳离子大小不受限制;
3)产品为水溶性单剂,没有有机溶剂存在,使用更加安全环保;
4)在适应特殊油藏超强乳状液及含有“过渡层”乳状液破乳脱水的同时,也适应高温高矿化度稠油的破乳脱水;
本发明的一种用于破除油田采油中超强乳状液及油水过渡层的原油破乳剂的合成方法,分子结构独特,可以应用于超强乳状液体系及含有过渡层聚集物生产环境中破乳脱水,达到水清油净,维持生产正常进行。
具体实施方式
下面结合具体实施方式对本专利的技术方案作进一步详细地说明。
一种原油破乳剂,分子式为:
Figure BDA0003655548490000061
R为起始剂系C2-C5多元醇的一种;
x1为环氧氯丙烷的份数,为R的30-50倍(摩尔数);
x2为聚氧化丙烯嵌段的份数,是R的99-119整数倍(质量数);
x3为聚氧化乙烯嵌段的份数,是R的50-80整数倍(质量数);
y为x1的0.3-0.9。
本发明中,
x1、x2为亲油嵌段;
x3、y为亲水嵌段,y有一定阳离子度,为30-90%;
分子链段中,亲油段与亲水段比例可调。
一种原油破乳剂的合成方法,
(1)卤代聚醚的合成及工艺控制
选用丙三醇为起始剂,环氧氯丙烷为单体,进行聚合反应,生成中间体A,
反应化学式如下:
Figure BDA0003655548490000071
x1=a1+b1+c1(摩尔数)
(2)用(1)式中间体A与环氧丙烷反应,加成为聚环氧丙烯醚嵌段,为中间体B,
Figure BDA0003655548490000072
式中:x2=a2+b2+c2
(3)用(2)式中间体B与环氧乙烷反应,加成聚氧乙烯醚嵌段为中间体C。
Figure BDA0003655548490000081
式中:x3=a3+b3+c3
(4)用(3)式中间体C与三甲胺水溶液原料反应,制得目的物产品。
Figure BDA0003655548490000082
Figure BDA0003655548490000091
式中:y=y1+y2+y3
本发明中,
步骤(1)中的起始剂也可为季戊四醇。
一种原油破乳剂的应用,
(1)在大庆油田联合站,油水乳状液出现过渡层,加药处理应用。
(2)在新疆克拉玛依油田(热化学脱水工艺)。
(3)在大庆油田三次采油采出高含聚含表活剂油水乳状液中应用。
(4)在辽河油田---特稠油,油水乳状液破乳脱水的应用,(高温>70℃)。
(5)新疆克拉玛依油田---稠油。
红外光谱、质谱,确认结构、分子量
1.卤代聚醚;
2.中间体C、三前段聚醚、分子量;
3.目的物(KD50)阴离子非-阴结构。
应用:联合站:
A:油水乳状液数据(油/水比例、pH、含P、OH-、SAA、稳定性)液量;
B:破乳剂的加入量,效果,型号,单剂/复配;
C:净化油,(含水,%);
污水,(含油、含机杂);
界面层
执行标准
创新点有:
1)一个分子链中同时具有非离子聚醚嵌段和阳离子聚醚嵌段;对破除双电层乳状液,油包水、水包油多重乳液性能突出;
2)阳离子嵌段大小可调,在具有电脱水器的破乳脱水工艺中,不受影响,电脱水器正常工作,在单一热化学脱水工艺中,阳离子大小不受限制;
3)产品为水溶性单剂,没有有机溶剂存在,使用更加安全环保;
4)在适应特殊油藏超强乳状液及含有“过渡层”乳状液破乳脱水的同时,也适应高温高矿化度稠油的破乳脱水;
本发明的一种用于破除油田采油中超强乳状液及油水过渡层的原油破乳剂的合成方法,分子结构独特,可以应用于超强乳状液体系及含有过渡层聚集物生产环境中破乳脱水,达到水清油净,维持生产正常进行。
以上所描述的实施例是本发明的优选实施方式,而不是全部的实施例。本发明的实施例的详细描述并非旨在限制要求保护的本发明的范围,而是仅仅表示本发明的选定实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。

Claims (5)

1.一种原油破乳剂,其特征在于,分子式为:
Figure FDA0003655548480000011
R为起始剂系C2-C5多元醇的一种;
x1为环氧氯丙烷的份数,为R的30-50倍(摩尔数);
x2为聚氧化丙烯嵌段的份数,是R的99-119整数倍(质量数);
x3为聚氧化乙烯嵌段的份数,是R的50-80整数倍(质量数);
y为x1的0.3-0.9。
2.根据权利要求1所述的一种原油破乳剂,其特征在于:
x1、x2为亲油嵌段;
x3、y为亲水嵌段,y有一定阳离子度,为30-90%;
分子链段中,亲油段与亲水段比例可调。
3.一种原油破乳剂的合成方法,其特征在于,
(1)卤代聚醚的合成及工艺控制
选用丙三醇为起始剂,环氧氯丙烷为单体,进行聚合反应,生成中间体A,
反应化学式如下:
Figure FDA0003655548480000021
x1=a1+b1+c1(摩尔数)
(2)用(1)式中间体A与环氧丙烷反应,加成为聚环氧丙烯醚嵌段,为中间体B,
Figure FDA0003655548480000022
式中:x2=a2+b2+c2
(3)用(2)式中间体B与环氧乙烷反应,加成聚氧乙烯醚嵌段为中间体C。
Figure FDA0003655548480000031
式中:x3=a3+b3+c3
(4)用(3)式中间体C与三甲胺水溶液原料反应,制得目的物产品。
Figure FDA0003655548480000032
Figure FDA0003655548480000041
式中:y=y1+y2+y3
4.根据权利要求3所述的一种原油破乳剂的合成方法,其特征在于,步骤(1)中的起始剂也可为季戊四醇。
5.一种原油破乳剂的应用,其特征在于,
(1)在破乳剂应用到油水乳状液出现过渡层,加药处理;
(2)在破乳剂应用到热化学脱水工艺中;
(3)在破乳剂应用到三次采油采出高含聚含表活剂油水乳状液中;
(4)在破乳剂应用到特稠油,油水乳状液破乳脱水的应用,(高温>70℃)。
CN202210561368.XA 2022-05-21 2022-05-21 一种用于破除油田采油中超强乳状液及油水过渡层的原油破乳剂的合成方法 Pending CN114874427A (zh)

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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101376707A (zh) * 2008-10-07 2009-03-04 青岛科技大学 聚醚型高分子季铵盐的合成方法
CN103086472A (zh) * 2012-12-31 2013-05-08 克拉玛依市三达新技术开发有限责任公司 一种超稠油高温污水处理反相破乳剂
CN112063413A (zh) * 2020-08-21 2020-12-11 安达市博源泰化工实业有限公司 一种交联型高分子破乳剂及制备方法

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101376707A (zh) * 2008-10-07 2009-03-04 青岛科技大学 聚醚型高分子季铵盐的合成方法
CN103086472A (zh) * 2012-12-31 2013-05-08 克拉玛依市三达新技术开发有限责任公司 一种超稠油高温污水处理反相破乳剂
CN112063413A (zh) * 2020-08-21 2020-12-11 安达市博源泰化工实业有限公司 一种交联型高分子破乳剂及制备方法

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