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21.
A variety of novel polymeric materials ranging from elastomers to tough, rigid plastics have been prepared by the cationic copolymerization of regular soybean oil, low-saturation soybean oil, or conjugated low-saturation soybean oil with various alkene commonomers. Using appropriate compositions and reaction conditions, 70–100% of the soybean oil is covalently incorporated into the cross-linked polymer networks, contributing significantly to cross-linking during copolymerization. The resulting thermosets exhibit thermophysical and mechanical properties that are competitive with those of their petroleum-based counterparts. In addition, good damping and shape memory properties have been obtained by controlling the degree of cross-linking and the rigidity of the polymer backbone. New materials with similar characteristics have also been produced from other biological oils, including tung, and fish oils using the same technique. The new, more valuable properties of these bioplastics suggest numerous promising applications of these novel polymeric materials. 相似文献
22.
Anne Calmon Serge Guillaume Véronique Bellon-Maurel Pierre Feuilloley Françoise Silvestre 《Journal of Polymers and the Environment》1999,7(3):157-166
This work validated a burial protocol for in situ testing and presents a robust, repeatable and time-saving technique to measure degraded areas in the sample, i.e. an image analysis method. 1440 specimens of degraded samples have been compiled in a data base. To this end, twenty samples presenting different levels of biodegradability (i.e. PHBV/HV, PLA, PCL, PCL-Starch, paper, PE, PE-Starch) were buried at 4 different locations and then disinterred at 4, 6, 9, 12, 18, and 24-month intervals. The biodegradation levels of these samples were determined by computing weight and area loss. Weight loss was measured after careful cleaning, whereas area loss was quantified using image analysis. Image analysis gives reliable information on visual pollution while only requiring a rudimentary and thus quicker cleaning of the samples. 相似文献
23.
The polyester amide BAK 1095 is fully degraded by microorganisms. Bacteria that can grow on this polymer were isolated from various environments, such as freshwater, saltwater, arable land, woodland and compost. The mechanism of polymer degradation was examined using selected isolates. It was discovered that the bacteria selectively cleave the polymer at its ester bonds, releasing low-molecular water-soluble oligoamides. These can then be metabolised by other microorganisms [1, 2, 3]. The isolates were also tested for their ability to break down other ester-containing polymers such as Degranil W 50, a linear polyester urethane urea. Eight of the 12 strains examined were also able to break down this polymer.The isolated microorganisms predominantly belong to the genus Bacillus. Mesophilic, halophilic and thermophilic species were isolated. The studies show that polyester amide-degrading bacteria occur in numerous ecosystems and provide data on the microbial breakdown of random copolymers. Information was also obtained on the mechanism involved in the microbial breakdown of polyester amides. 相似文献
24.
经济型阳离子淀粉絮凝剂的制备及其对印染废水的处理效果 总被引:3,自引:0,他引:3
采用玉米淀粉为原料、氯化缩水甘油三甲基铵(GTA)作阳离子化试剂、水-乙醇混合液作分散剂、NaOH作碱催化剂,制备了经济型阳离子淀粉絮凝剂(简称经济型阳离子淀粉)。实验结果表明:在淀粉加入量110g、GTA加入量30g、NaOH加入量1.6g、分散剂中m(水):m(乙醇)=1:1、m(分散剂):m(淀粉)=0.50:1、反应温度80℃、反应时间2.5h的条件下,可制得取代度(DS)为0.31的经济型阳离子淀粉;用该经济型阳离子淀粉与聚丙烯酰胺(PAM)联用处理印染废水,当经济型阳离子淀粉加入量为140mg/L、PAM加入量为4mg/L、废水pH为8时,印染废水的色度去除率和COD去除率分别达92%和82%。该方法絮凝效果好,药剂费用低,产生的污泥少。 相似文献
25.
阳离子表面活性剂十六烷基三甲基溴化铵对酞酸酯类化合物增溶性研究 总被引:4,自引:0,他引:4
用阳离子表面活性剂十六烷基三甲基溴化铵对六种酞酸酯类化合物(五种脂肪链酞酸酯和一种苯基酞酸酯)进行了增溶性实验.结果表明,在表观浓度(Cs)小于临界胶速浓度(CMC)时,十六烷基三甲基溴化铵对四种酞酸酯(DMP和DPhP除外)有一定程度的增溶作用;当Cs大于CMC时,对六种化合物的增溶性显著增强.其增溶性(St/Sw)随Cs增大而线性递增:当Cs<CMC时,St/Sw=a+Kmn·Cs,r>0.90,n=5;当Cs>CMC时,St/Sw=a+Kmc·Cs,r>0.99,n=5. 各化合物增溶系数随各自固有水溶性(Sw)减小而增大(苯基酞酸酯有所反常),lgKmn和lgKmc与各自lgl/Sw具有良好的线性正相关性.本文进一步对增溶机理进行了分析解释. 相似文献
26.
双氰胺-甲醛聚合物-聚合氯化铝复合絮凝剂的合成及应用 总被引:3,自引:1,他引:2
以双氰胺、甲醛、氯化铝为主要原料,加入添加剂合成了双氰胺-甲醛聚合物(DF)-聚合氯化铝(PAC)复合絮凝剂。采用模拟印染废水考察了各种因素对DF—PAC复合絮凝剂混凝脱色性能的影响。实验结果表明,在双氰胺、甲醛、氯化铝、添加剂加入量分别为29.1,57.8,4.8,12.5g,反应温度(70±1)℃、反应时间2.5h的条件下制得的DF—PAC复合絮凝剂的絮凝脱色性能良好,COD去除率不小于90%,色度去除率不小于99%。与PAC和DF絮凝剂相比,DF—PAC复合絮凝剂对实际印染废水的絮凝脱色效果更好。 相似文献
27.
赵士华 《安全.健康和环境》2012,12(3):16-19
针对丁二烯自聚物闪燃爆炸和后处理胶粒塑化着火的形成机理、形成条件、影响因素进行了分析,并提出了防范措施和应急处理办法。 相似文献
28.
细菌等致病微生物可通过空气、水、土壤、食物等途径在自然界中传播,易对人体造成诸如肺结核、淋病、鼠疫等健康风险。目前广泛使用的灭菌方式包括紫外线、臭氧、氯气、电荷等物理或化学方法,其中电荷杀菌因具有无组织毒性的优点被广泛使用。研究表明:有机阳离子型电荷杀菌材料相比传统的金属离子杀菌材料具有抗菌效能优异、不产生耐药性、生物安全性高等优点,其杀菌性能受分子大小、烷基链、反离子类型、电荷密度等因素影响。本文系统综述了目前有机阳离子型电荷杀菌材料的类型、结构特征、杀菌性能及影响因素,抗菌机理及应用现状,分析了其存在的问题和发展方向,为有机阳离子型电荷杀菌材料的后续研究和应用提供一定的借鉴和指导。 相似文献
29.
Pamornrat Kueseng Mathieu L. Noir Bo Mattiasson Panote Thavarungkul Proespichaya Kanatharana 《Journal of environmental science and health. Part. B》2013,48(8):772-780
A molecularly imprinted polymer (MIP) for atrazine was synthesized by non-covalent method. The binding capacity of MIP was 1.00 mg g? 1 polymer. The selectivity and recovery were investigated with various pesticides which are mostly, found in the environment, for both similar and different chemical structure of atrazine. The competitive recognition between atrazine and structurally similar compounds was evaluated and it was found that the system provided highest recovery and selectivity for atrazine while low recovery and selectivity were obtained for the other compounds. The highest recovery was obtained from MIP compared with non-imprinted polymer (NIP), a commercial C18 and a granular activated carbon (GAC) sorbent. The method provided high recoveries ranged from 94 to 99% at two spiked levels with relative standard deviations less than 2%. The lower detection limit of the method was 80 ng L? 1. This method was successfully applied for analysis of environmental water samples. 相似文献
30.
以丙烯酰胺(AM)和烷基酚聚醚(APAP)为单体,采用反相乳液聚合法制备了流动性好的非离子型聚丙烯酰胺絮凝剂(PAM-APAP)。考察了乳化剂和引发剂的种类、单体总质量分数、单体配比和反应温度等因素对聚合反应的影响。实验结果表明,制备PAM-APAP的最佳工艺条件为:单体总质量分数35%、m(AM)∶m(APAP)=9.0∶1.0、Span80+Tween80复配乳化剂加入量为油水总质量的7%、m(Span80)∶m(Tween80)=7.0∶1.5、V50加入量为单体总质量的1.5‰、反应温度50℃。PAM-APAP具有较好的絮凝效果,与其他絮凝剂相比用量较少,在加入量为100mg/L时,对聚合物驱油中产生的含聚合物污水的浊度去除率为87.9%,去油率为89.5%,且絮体不黏壁。 相似文献