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51.
采用乙二醇对聚2,6-萘二甲酸乙二醇酯(PEN)进行降解,表征了醇解产物,探讨了醇解原理。结果表明:醇解后PEN中的酯键断裂,PEN分子内的蟄合羟基变成2,6-萘二甲酸乙二醇酯(BHEN)上分子间缔合羟基和游离羟基;醇解后产物的O与C的原子比由醇解前的0.28增至0.38,醇解产物中C=O和C—O两种O结构的质量比为1∶2.18,C—C、C—O和O—C=O三种C结构的质量比为5.38∶2.22∶1,产物的平均分子量降为200左右;醇解产物主要为BHEN及其低聚物,BHEN单体纯度在90%以上,收率为25.95%。该醇解反应是酯基断裂又聚合,PEN长链变短的过程。 相似文献
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IntroductionTrichloroethyleneisaveryeffectivesolventtoremoveoilfromsiliconandothermaterialsusedinsemiconductorindustry.TheC2HC... 相似文献
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Hae Sang Jun Bong Oh Kim Yeon Chul Kim Ho Nam Chang Seong Ihl Woo 《Journal of Polymers and the Environment》1994,2(1):9-18
Copolyesters containing poly(ethylene terephthalate) (PET) and poly(-caprolactone) (PCL) were synthesized from PET and PCL homopolymers by transesterification reaction at 270°C in the presence of catalyst. The copolyesters were characterized by13C-NMR and differential scanning calorimetry (DSC). The degradation behavior of PCL byPseudomonas sp. lipase in buffer solution (pH 7) and tetrahydrofuran (THF) was investigated by gel permeation chromatography (GPC) and1H-NMR. From these experiments, it was found thatPseudomonas sp. lipase acted endoenzymatically on PCL. Using this lipase, degradation tests for PET/PCL copolyesters whose PCL content was below 50% by weight were also performed in buffer solution (pH 7). However, evenPseudomonas sp. lipase with high degradation activity on PCL did not easily degrade the PCL unit in PET/PCL copolyesters. 相似文献
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采用共浸渍法制备了一系列Al2O3负载金属Pd、Cu催化剂.通过元素分析(ICP)、氮气吸脱附(BET)、X射线粉末衍射(XRD)、透射电镜(TEM)等技术对催化剂进行了表征,并以1,2-二氯乙烷气相加氢脱氯为探针反应,考察了Pd-Cu/Al2O3催化剂的钯铜比、反应温度、反应时间等因素对催化活性以及反应产物乙烯选择性的影响.结果发现,提高Cu负载量可在催化剂中形成Pd-Cu合金,并促进催化剂对乙烯的选择性.此外,当温度为250℃,Pd、Cu负载量分别为0.78%和1.9%时的Pd-Cu/Al2O3催化剂对1,2-二氯乙烷的催化加氢脱氯效果最佳,最终产物乙烯的选择性可达到80%以上. 相似文献
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Tadeusz Spychaj Ewa Fabrycy Stanislawa Spychaj Michal Kacperski 《Journal of Material Cycles and Waste Management》2001,3(1):24-31
This paper describes the chemical degradation of waste poly(ethylene terephthalate) (PET) with polyamines or triethanolamine,
the characteristics of the products, and a search for ways to use these products. Solvolysis of the polymer ester bonds was
caused by diethylenetriamine, triethylenetetramine, and their mixtures, as well as mixtures of triethylenetetramine and p-phenylenediamine or triethanolamine. Products of aminolysis or aminoglycolysis of PET obtained in reactions performed at
200–210°C (with a molar ratio of the recurrent polymer unit to amine of 1 : 2) have been characterized using nuclear magnetic
resonance (NMR). Viscosity and hydroxyl number measurements have been done for PET/triethanolamine products. Substances from
aminolytical reactions with polyamines were tested as hardeners for liquid epoxy resins, and the product of polymer aminoglycolysis
with triethanolamine was tested as an epoxy resin hardener, e.g., for water-borne paints, and a polyol component for rigid
polyurethane foams. The compositions of epoxy resin hardeners have been characterized using DSC and rheometry. Comparative
analyses of the hardened epoxy materials have been done on the basis of glass temperature and mechanical properties data,
as well as some specific properties of the coating materials and rigid polyurethane foams.
Received: September 15, 2000 / Accepted: September 21, 2000 相似文献
59.
Gerić M Ceraj-Cerić N Gajski G Vasilić Ž Capuder Ž Garaj-Vrhovac V 《Chemosphere》2012,87(11):1288-1294
Despite that the use of DDT has been restricted for more than 40 years to malaria affected areas, low doses of this pesticide and its metabolites DDE and DDD can be found in the environment around the world. Although it has been shown that these pollutants induce cell and DNA damage, the mechanisms of their cytogenotoxic activity remains largely unknown. This study looks into their possible genotoxic effects, at doses that can be found in body fluids, on human lymphocytes using the cytokinesis-block micronucleus assay and the comet assay. After exposure for 1, 6, and 24 h compounds p,p′-DDT (0.1 μg mL−1), p,p′-DDE (4.1 μg mL−1), and p,p′-DDD (3.9 μg mL−1) showed increase in DNA damage. The most significant results were observed at exposure period of 24 h where number of micronucleated cells increased from control 2.5 ± 0.71 to 23.5 ± 3.54, 13.5 ± 0.71, and 16.5 ± 6.36 for DDT, DDE, and DDD, respectively. Similar effect was observed using comet test where the percentage of DNA in comets tail increased from control 1.81 ± 0.16 to 17.24 ± 0.55, 11.21 ± 0.56 and 9.28 ± 0.50 for each compound, respectively. At the same time Fpg-comet assay failed to report induction of oxidative DNA damage of these pollutants. Additionally, the type of cell death was determined using diffusion assay and necrosis dominated. Our findings suggest that even at low concentrations, these pesticides could induce cytogenetic damage to human peripheral blood lymphocytes and in that manner have the impact on human health as well. 相似文献
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