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1.
通过将环氧醚和甲基醚分别加到含氢硅油的基本骨架上,合成环氧醚甲基醚共改性硅油中间体。通过环氧氯丙烷和正二丁胺亲核加成反应得到聚-2-羟基丙基二丁基氯化铵,与有机交联剂多乙烯多胺交联得到聚季铵盐。再将共改性硅油与聚季铵盐进行环氧开环反应,得到聚醚聚季铵盐水包油型反相破乳剂。利用FTIR和1H NMR分析了聚醚季铵盐型水包油型反相破乳剂的结构,考察了破乳条件对破乳性能的影响。实验结果表明,在适宜的破乳条件(破乳剂用量100 mg/L、破乳时间4 h、破乳温度为65℃)下,使用聚醚季铵盐型水包油型反相破乳剂的除油率94.9%,破乳后污水含油量为25.8 mg/L,破乳性能优于聚醚季铵盐破乳剂。  相似文献   

2.
针对乳化原油破乳难度较大的问题,提出了在磁化破乳剂上枝接聚乙烯亚胺(PEI),增加磁性粒子表面官能团的解决方案,并对其结构进行了表征。研究了破乳剂加量、沉降时间和pH对其破乳效果的影响,磁性粒子的循环利用率,并对其破乳机理进行了探讨。结果表明:磁化破乳剂最优加量为600 mg/L;沉降2 h后,乳化原油透光率仍可达到98.3%;磁化破乳剂Fe3O4-PEI在酸性环境中的破乳效果优于碱性环境;磁性粒子重复利用10次后,透光率仍超过90%。   相似文献   

3.
为了解决陕北油田现用原油破乳剂脱水率低、污水含油和悬浮物多等问题,合成TA4812和AP442两种新破乳剂单剂,并与助剂ECH用不同比例复配,用陕北油田有代表性的河庄坪和子长原油进行脱水实验。结果表明,对河庄坪原油,在55℃,破乳剂总用量100 mg.L-1,脱水时间6 h,TA4812、AP442与ECH复配比例为4:1时,脱水率最高,分别达到96.7%和97.7%;对子长原油,在65℃,破乳剂总用量200 mg.L-1,脱水时间6 h,TA4812与ECH复配比例为4:1、AP442与ECH复配比例为2:3时,脱水率最高,达到98.3%。  相似文献   

4.
新型高效原油破乳剂PNT-05的研制与应用   总被引:10,自引:0,他引:10  
针对中原油田采油六厂二区原油破乳脱水过程中存在的脱水速度慢,乳化中间层厚等问题,通过分子结构设计手段,在非离子型破乳剂基础上,经酯化,在破乳剂分子中引入阳离子基团,合成出季胺盐阳离子型破乳剂PNT-05,利用季胺盐阳离子型破乳剂与助剂复配的方法室内解决了中原油田二区原油破乳脱水过程中顾在的问题,与油田现场用破乳剂相比,新的破乳剂体系脱水速度快,脱水效率高,使乳化中间层变薄或消失,同时探讨了季胺盐阳离子型破乳剂PNT-05的作用机制。  相似文献   

5.
2018年渤海某聚驱稠油油田开始大幅提产,原油流程超负荷运行导致外输原油含水率升高至15%。通过分析原油系统各级分离器乳化液稳定性,确定了深度脱水破乳剂的开发方向。分别以乙二醇、丙二醇和丙三醇为起始剂合成EO-PO-EO型嵌段聚醚破乳剂。室内实验表明,破乳剂A2321能够大幅降低聚驱稠油中的含水率和乳化液含量,其脱水效果明显优于破乳剂AE8051、BP169和SP169。矿场试验结果表明,破乳剂A2321可将外输原油含水率从15%降低至8%,有效解决了电脱水器中乳化液的深度脱水问题。  相似文献   

6.
破乳剂对油水界面膜作用机理研究   总被引:18,自引:0,他引:18  
研究了破乳剂存在下油膜寿命、油膜薄化速率以及油水界面性质与破乳效果的关系.结果表明,破乳剂使油水界面弹性降低,导致油水界面强度减弱,界面膜寿命变短,界面膜厚度变薄.当膜厚度变薄到一临界值时,膜破裂,导致破乳脱水.同种破乳剂,随着其浓度的增加,界面弹性降低.当浓度超过某一值时,界面弹性值基本不变.不同种破乳剂,界面弹性降低幅度越大,其破乳效果越好.界面弹性值可以很好解释破乳剂的脱水率变化规律.  相似文献   

7.
何德磊  万永乾  聂亚  刘磊  严涵 《合成化学》2023,31(2):124-129
采用新癸酰氯(C10H19CIO)对超支化聚乙烯亚胺(HPEI)进行改性,合成了双亲性超支化破乳剂HPEI-C10,并对其化学组分、热稳定性及润湿性进行了表征。考察了破乳剂的质量浓度、破乳温度、沉降时间以及pH对HPEI和HPEI-C10的破乳效率的影响,并借助偏光显微镜观察破乳过程。结果表明:在质量浓度为50 mg·L-1、破乳温度为20℃、沉降时间为30 min以及pH为6的条件下,HPEI-C10破乳效率可达91.95%。HPEI-C10在破乳温度为20~60℃时的破乳效率均大于90.00%。与HPEI相比,HPEI-C10具有添加量少、适用温度范围广和沉降时间短等优势,为HPEI-C10的广泛应用提供了数据支撑。  相似文献   

8.
多元复合原油破乳剂的研究和应用   总被引:2,自引:0,他引:2  
本文评价了几种破乳剂对克拉玛依原油的破乳效果。进行了单剂和复配剂的化学破乳及除油率的筛选。结果表明复配破乳剂在加药浓度、净化油含水和净化水含油、脱水速度等方面均优于单剂。表明复配破乳剂是高效原油破乳剂的研究方向之一。  相似文献   

9.
以N-丙烯酰-1,2-乙二胺盐酸盐(ADE)合成为基础,通过ADE的Michael加成反应制备阳离子超支化聚合物聚N-丙烯酰-1,2-乙二胺盐酸盐(HADE),并对其结构进行了表征。研究表明,50℃下,HADE破乳剂(质量浓度为200 mg/L)对含煤油质量分数5%的水包油(O/W)煤油乳液的除油率可高达95.6%,显示了产品在乳液破乳除油方面良好的发展前景。  相似文献   

10.
2014年以来渤海某注聚稠油油田产出液聚合物浓度高、原油黏度大导致原油脱水困难,原破乳剂脱水效果无法满足要求。通过苯酚、多乙烯多胺与甲醛合成酚胺树脂起始剂,然后与环氧乙烷、环氧丙烷聚合得到多支化嵌段聚醚破乳剂108#。破乳剂108#具有使用浓度低、脱水速度快的特点,且最终脱水率接近90%。矿场试验结果表明,108#破乳剂加注量比原破乳剂减少48%,外输原油含水从15%-16%降低至9%,原油脱水效果明显改善。  相似文献   

11.
以十八胺、丙烯酸甲酯为原料,甲醇为溶剂通过迈克尔加成反应制备了0.5G(Generation)超支化有机物,再以0.5G为原料与乙二胺通过酰胺化缩合反应制备了1.0G超支化有机物.并对1.0G进行了合成条件探索,最佳反应条件为n(乙二胺)∶n(0.5G)=60∶1,反应温度60℃,反应时间24 h,产物的产率为99.11%,同时采用红外光谱对两种超支化分子进行了结构表征.  相似文献   

12.
超支化聚酯的改性及其结晶性能的研究   总被引:11,自引:0,他引:11  
用十六酰氯和十八异氰酸酯分别对端羟基的超支化聚酯Boltorn^TMH20改性,可获得粉末状超支体低聚物,具有无定形“内核”及可结晶”外壳”的分子结构,实验结果表明,采用十八异氰酸酯改性的丙烯酸化超支化聚酯的熔点高于十六酰氯改性聚合物。  相似文献   

13.
以利巴韦林为模板分子,甲基丙烯酸为功能单体,采用沉淀聚合法制备利巴韦林分子印迹聚合物(MIP).以利巴韦林分子印迹聚合物掺杂氧化石墨烯(GO)为离子载体,聚氯乙烯为基质,癸二酸二辛酯为增塑剂制备电极敏感膜.结果表明,敏感膜组成为100.8 mg MIP、14.7 mg GO、450.8 mg聚氯乙烯和901.6 mg癸二酸二辛酯,内充液组成为0.1 mol/L NaCl+0.05 mol/L NaAc-0.05 mol/L HAc缓冲溶液+ 1.0×10.-5 mol/L利巴韦林,电极的响应性能最好.此电极的能斯特响应斜率为45.565 mV/decade,线性范围为1.0×10.-6~1.0×10.-4 mol/L, 检出限为1.0×10.-7 mol/L(S/N=3),工作pH范围为3~5,响应时间小于3 min.此电极对利巴韦林具有高选择性,可用于检测饲料和注射液中利巴韦林含量,加标回收率为90%~110%,RSD为3.0%~7.9%.  相似文献   

14.
刘保生  高静  杨更亮 《分析化学》2005,33(4):546-548
研究了吖啶橙(AO)与罗丹明6G(R6G)之间能量转移的最佳条件。在pH=7.20的Tirs-HCl缓冲溶液,十二烷基苯磺酸钠介质中,AO-R6G能够发生有效能量转移,使R6G荧光增强。蛋白质的加入使R6G荧光猝灭,以此建立了利用AO-R6G荧光共振能量转移间接测定蛋白质的新方法。牛血清白蛋白、人血清白蛋白工作曲线线性范围分别为1.0~31和1.0—30mg/L;检出限分别为0.32和0.33mg/L;平行6次测定相对标准偏差为1.1%~2.0%;回收率为96.7%~103.2%。此方法的稳定性好,选择性高,用于人血清试样中总蛋白含量的测定,与常用的双缩脲法基本一致。  相似文献   

15.
Nanoscale protein pores modified with PAMAM dendrimers   总被引:1,自引:0,他引:1  
We describe nanoscale protein pores modified with a single hyperbranched dendrimer molecule inside the channel lumen. Sulfhydryl-reactive polyamido amine (PAMAM) dendrimers of generations 2, 3 and 5 were synthesized, chemically characterized, and reacted with engineered cysteine residues in the transmembrane pore alpha-hemolysin. Successful coupling was monitored using an electrophoretic mobility shift assay. The results indicate that G2 and G3 but not G5 dendrimers permeated through the 2.9 nm cis entrance to couple inside the pore. The defined molecular weight cutoff for the passage of hyperbranched PAMAM polymers is in contrast to the less restricted accessibility of flexible linear poly(ethylene glycol) polymers of comparable hydrodynamic volume. Their higher compactness makes sulfhydryl-reactive PAMAM dendrimers promising research reagents to probe the structure of porous membrane proteins with wide internal diameters. The conductance properties of PAMAM-modified proteins pores were characterized with single-channel current recordings. A G3 dendrimer molecule in the channel lumen reduced the ionic current by 45%, indicating that the hyperbranched and positively charged polymer blocked the passage of ions through the pore. In line with expectations, a smaller and less dense G2 dendrimer led to a less pronounced current reduction of 25%. Comparisons to recordings of PEG-modified pores revealed striking dissimilarities, suggesting that differences in the structural dynamics of flexible linear polymers vs compact dendrimers can be observed at the single-molecule level. Current recordings also revealed that dendrimers functioned as ion-selectivity filters and molecular sieves for the controlled passage of molecules. The alteration of pore properties with charged and hyperbranched dendrimers is a new approach and might be extended to inorganic nanopores with applications in sensing and separation technology.  相似文献   

16.
王俊 《分子催化》2019,33(6):429-437
以不同端基烷基链长度的1.0G超支化大分子为桥联基,通过对其端基氨基进行催化功能改性,合成了系列具有不同桥联基长度的超支化PNP铬系催化剂。采用红外光谱(IR)、核磁共振氢谱(1H-NMR)、核磁共振磷谱(31P-NMR)、紫外光谱(UV)和质谱(MS)等表征方法证明合成催化剂的结构与理论结构相符。详细考察了溶剂种类、反应温度、Al/Cr摩尔比、反应压力、催化剂用量和催化剂结构对催化剂乙烯齐聚性能的影响。实验结果表明,当以甲苯为溶剂,甲基铝氧烷(MAO)为助催化剂时,超支化PNP铬系催化剂表现出良好的催化乙烯齐聚性能,产物以低碳烯烃为主。最佳条件下,催化活性最高可达到1.69×105g/mol Cr·h,己烯和辛烯的选择性为43.3%以上。相同聚合条件下,其催化活性随着端基烷基链长度的增加而下降。  相似文献   

17.
Two hyperbranched bisphosphinoamine (PNP) ligands and chromium complexes were synthesized in good yield with 1.0 generation (1.0 G) hyperbranched macromolecules, chlorodiphenylphosphine (Ph2PCl) and CrCl3(THF)3 as raw materials. The hyperbranched PNP ligands and chromium complexes were characterized by FT-IR, 1H NMR, 31P NMR, UV and ESI-MS. Comparing with the chromium complexes, the hyperbranched PNP ligands, in combination with Cr(III), and activation by methylaluminoxane (MAO) in situ generated species with better catalytic performance for ethylene oligomerization. The effect of solvent, chromium source, ligand/Cr molar ratio, reaction temperature, Al/Cr molar ratio and reaction pressure on the catalytic activity and product selectivity were studied. The results showed that with increase of ligand/Cr molar ratio, reaction temperature and Al/Cr molar ratio, the catalytic activity increased at first and then decreased. However, the catalytic activity continuously increased with increase of reaction pressure. Under the optimized conditions, the catalytic system of hyperbranched PNP/Cr(III)/MAO led to catalytic activity of 2.68 × 105 g/(mol Cr·h) and 37.71% selectivity for C6 and C8.  相似文献   

18.
Radical catalyzed thiol‐ene reaction has become a useful alternative to the Huisgen‐type click reaction as it helps to expand the variability in reaction conditions as well as the range of clickable entities. Thus, direct generation of hyperbranched polymers bearing peripheral allyl groups that could be clicked using a variety of functional thiols would be of immense value. A specifically designed AB2 type monomer, that carries two allyl benzyl ethers groups and one alcohol functionality, was shown to undergo self‐condensation under acid‐catalyzed melt‐transetherification to yield a hyperbranched polyether that carries numerous allyl end‐groups. Importantly, it was shown that the kinetics of polymerization is not dramatically affected by the change of the ether unit from previously studied methyl benzyl ether to an allyl benzyl ether. The peripheral allyl groups were readily clicked quantitatively, using a variety of thiols, to generate an hydrocarbon‐soluble octadecyl‐derivative, amphiphilic systems using 2‐mercaptoethanol and chiral amino acid (N‐benzoyl cystine) derivatized hyperbranched structures; thus demonstrating the versatility of this novel class of clickable hyperscaffolds. © 2011 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem, 2011  相似文献   

19.
A stereospecific CE method was elaborated for the quantification of ibuprofen enantiomers and their major phase I metabolites: 2'-hydroxy-ibuprofen and 2'-carboxy-ibuprofen in plasma and urine. Optimal temperature and pH of BGE were established to obtain complete separation of eight ibuprofen chiral compounds and (+)-S indobufen, applied as an internal standard, during one analytical run. After isolation from biological matrices using SPE on an octadecyl stationary phase, the analytes were separated and resolved up to 10 min in a silica capillary filled with BGE, consisting of heptakis 2,3,6-tri-O-methyl-beta-CD in triethanolamine-phosphate buffer, pH 5.0. Complete enantioseparation of the all analytes confirmed specificity of the method. The calibration curves were linear in the range of 0.1-25.0 mg/L for IBP enantiomers and their chiral metabolites in 0.5 mL of plasma and 1.0-200.0 mg/L in 0.05 mL of urine. Following SPE procedure, recovery of the chiral analytes from the two media was in the ranges of 82-87%, 90-95% and 70-76% for ibuprofen, 2'-hydroxy-ibuprofen and 2'-carboxy-ibuprofen enantiomers, respectively. The validated method was successfully applied in pharmacokinetic investigations of IBP enantiomers as well as free chiral metabolites in reference to the genetic polymorphism of CYP450 2C isoenzymes.  相似文献   

20.
Two new hyperbranched bispyridylamine ligands and multinuclear chromium complexes were synthesized with 1.0?G hyperbranched macromolecules, 2-chloropyridine, 2-chloro-4-methylpyridine and CrCl3(THF)3 as raw materials. The structures of hyperbranched ligands and chromium complexes were characterized by UV, FT-IR, 1H NMR, ESI-MS, and elemental analysis. These hyperbranched chromium complexes were evaluated as catalyst precursors by using MAO as activator in the oligomerization of ethylene. Effects of reaction temperature, reaction pressure, Al/Cr molar ratio, concentration of catalyst, solvent, and the structure of catalysts on the catalytic activity and product selectivity were investigated. The oligomerization results showed that with increase of reaction temperature, reaction pressure, and Al/Cr molar ratio, the catalytic activity increased and then decreased; the catalytic activity continuously decreased as the amount of catalyst increased. The products were mainly based on C6 and C8. Under optimized conditions, the catalytic system of hyperbranched NNN/Cr(III)/MAO led to activity of 1.26?×?105 g/(mol·Cr·h) and 63.34% selectivity for C6 and C8.  相似文献   

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