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101.
随着油田深部调剖应用的不断推广,以及环保要求的提高,适用于深部调剖调驱体系的低污染有机锆交联剂逐渐受到关注。以ZrOCl2·8H2O、乳酸、乙二胺、硫脲为原料,制备了有机锆交联剂和HPAM-锆交联凝胶,其结构和性能经SEM和岩心驱替装置表征。并利用正交实验法优化了制备条件。结果表明:制备有机锆交联剂的最佳条件为:氧氯化锆、乳酸、乙二胺及硫脲的质量比为7.8/1/6.7/5,反应温度为70 ℃,反应时间为3 h。交联温度为60 ℃,HPAM浓度为2 g·L-1、聚锆比为30/1时,聚合物凝胶成胶强度达到24968 mPa·s,成胶时间约8 h,凝胶体系可维持90 d不破胶。在级差为3.9的双管驱替岩心实验中,两管的岩心分流率均接近50%,剖面改善率达到66.77%。 相似文献
102.
以顺丁烯二酸酐及二乙醇胺为原料,采用“一步熔融法”合成了端羟基超支化聚酯酰胺(HBP-OH);以环氧氯丙烷改性HBP-OH制得端基为氯甲基的超支化聚酯酰胺(HBP-ECH);以三乙胺改性HBP-ECH制得端基为季铵基的超支化聚酯酰胺(HBP-L),其结构经IR表征。研究了HBP-L的静态防膨率、耐水洗能力及对岩心的渗透伤害率。结果表明:HBP-L加量为1 wt%时,粘土防膨率为90.36%;经10次水洗后,其防膨率仍超过85%;模拟地层温度为45 ℃时,HBP-L对岩心的渗透伤害率仅3.86%。采用XRD和Zeta电位法分析了HBP-L对粘土水化膨胀及运移分散的抑制机理。结果表明:经1 wt%HBP-L处理的粘土,其晶层间距为6.91 nm,较去离子水处理层间距(4.71 nm)小;粘土表面的zeta电位由-39.2 mV升高至-19.6 mV。 相似文献
103.
FuShengWANG BingKuiSONG XiaoLiHAN BaoGuiZHANG 《中国化学快报》2004,15(12):1487-1490
Black lead, Ti-Ru and Ti-PbO2 were used as anode and stainless steel was used as cathode The electrolytic process of producing hypophosphorous acid with four-compartment electrodialytic cell was studied. The comparison of some factors, such as anodic voltage, product concentration and current efficiency, of black lead, Ti-Ru, and Ti-PbO2 electrodes was conducted. As a result, theTi-PbO2 electrode is the optimal anode material used, it can be in electrolytic process for producing hypophosphorous acid. 相似文献
104.
An intensely sweet polyoxypregnane glycoside, telosmoside A15 (15), was isolated from an Asian Asclepiadaceae plant, Telosma procumbens, collected in Vietnam. This is the first time a sweet pregnane glycoside has been found, and its sweetness intensity is 1000 times greater than that of sucrose. From the same plant, 17 other new glycosides were isolated, having the same aglycone; they are named telosmosides A1-A14 (1-14) and A16-A18 (16-18). Some of these glycosides are also sweet, but others are tasteless or bitter. Chemical structures of the 18 glycosides were determined, and the structure-taste relationship was discussed. 相似文献
105.
106.
含八齿苦味酸根的超分子苦味酸钾的合成和结构 总被引:1,自引:0,他引:1
A supramolecular complex, [Kpic]n (pic- is picratol, (NO2)3C6H2O-), has been synthesized unexpectedly in acetone solution, and characterized by elemental analysis, IR and X-ray crystallography. In the complex, the K+∶pic- is 1∶1, and one K(Ⅰ) ion is surrounded by six picrate anions, one picrate anion can coordinate to six K(Ⅰ) ions. The coordination number of every potassium atom is eight. Interestingly, the picratol adopts an eight-coordinated ideal mode unreported. CCDC: 630627. 相似文献
107.
Yue Ming Zhou Jian Hua Ding Xie Zhang Huan Wen Chen 《中国化学快报》2007,18(1):115-117
Extractive electrospray ionization source(EESI)was adapted for ion-ion reaction,which was demonstrated by using a linear quadrupole ion trap mass spectrometer for the first ion-ion reaction of biopolymers in the atmospheric pressure ambient. 相似文献
108.
The interaction of Methylthymol Blue(MTB)-Zinc(Ⅱ) compound and Alizarin Red S(ARS)-Aluminum(Ⅲ) compound with Bovine serum albumin (BSA) was investigated by UV-Vis spectrophotometric method in acidic buffer solution. MTB-Zn(Ⅱ)-BSA was a blue color compound, which possesses maximum absorption at 613 nm with 172 nm, 174 nm and 18 nm of red shift compared to the MTB, MTB-BSA and MTB-Zn(Ⅱ) complexes respectively. Dual wavelength substantial amount ratio method, balance dialysis substantial amount ratio method and unity wavelength substantial amount ratio method were compared. The following results were obtained: the apparent molar absorptivity of MTB-Zn(Ⅱ) with BSA was ε=2.20×104 L·mol-1·cm-1. Conditional proportion were defined, nMTB∶nZn(Ⅱ)∶nBSA=2∶2∶1; condition combination constant, K=2.07×1010. Combination proportion were defined, nARS∶nAl(Ⅲ)∶nBSA=6∶4∶1. Condition equilibrium constant of reaction of ARS-Al(Ⅲ) with BSA was K=8.80×108. The apparent molar absorptivity of ε=2.65×104 L·mol-1·cm-1. It is suggested that combination between BSA and MTB-Zn(Ⅲ) is due to coordination force. That combination between BSA and ARS-Al(Ⅲ) is due to the coordination bond and electrostatic force. 相似文献
109.
110.
HongBingJI DuGuiHE JunSONG YuQIAN 《中国化学快报》2004,15(10):1241-1244
Clean liquid oxidation of aldehydes can be accomplished using solid catalyst in the presence of molecular oxygen at room temperature, which is a valuable alternative to traditional counterparts. 相似文献