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41.
Renewable Resources and Enzymatic Processes to Create Functional Polymers: Adapting Materials and Reactions from Food Processing 总被引:1,自引:0,他引:1
Christopher M. Aberg Tianhong Chen Gregory F. Payne 《Journal of Polymers and the Environment》2002,10(3):77-84
We are exploiting materials and concepts from food science to create functionalized, environmentally friendly derivatives of the biopolymer chitosan, a byproduct of seafood processing. Functional groups are grafted onto chitosan using tyrosinase, the enzyme responsible for food browning. The functionalizing groups studied include low-molecular-weight phenols derived from natural sources and high-molecular-weight proteins. The approach of using low-molecular-weight phenols to functionalize chitosan is illustrated with arbutin, a natural phenol found in pears. Results demonstrate that tyrosinase initiates reactions that lead to the conversion of arbutin–chitosan solutions into gels. These gels can be rapidly broken by treatment with the chitosan-hydrolyzing enzyme chitosanase, demonstrating that the chitosan derivatives remain biodegradable. We briefly review other studies in which low-molecular-weight natural phenols are enzymatically grafted onto chitosan to confer functional properties. The creation of co-polymers is illustrated by results in which tyrosinase is used to couple gelatin onto chitosan. Gelatin is a proteinaceous byproduct of meat production. The tyrosinase-generated gelatin–chitosan conjugates have been observed to offer interesting rheological and thermal properties. These results demonstrate the potential for using renewable resources and enzymatic processing to create environmentally friendly polymers with useful functional properties. 相似文献
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Model studies were and are still being used to verify certain theories in ground-water flow systems in general. In complex cases, the model studies may be extremely useful especially when a theoretical rigorous analysis does not exist. The models cannot be considered entirely satisfactory due to the several drawbacks in each type in addition to the normal human errors in experimentation. This paper is concerned only with the viscous flow models. However, a brief summary of the other types of models, which may possibly be used in connection with salt water intrusion problems is given. It should be noted that some of such experiments are not directly related to the field of salt water intrusion. Two main types lie within this category: The gravity flow systems which are analogous to some phases of salt intrusion problems and problems in oil fields which bear general similarities to sea water intrusion zones. In oil fields, gas cycling studies give valuable information to sea water problems. Model studies are used by hydraulic engineers, geologists, petroleum engineers, physicists, foundation engineers and several other professional groups. 相似文献
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Wunsam Sybille Kamenik Christian Schmidt Roland 《Water, Air, & Soil Pollution: Focus》2002,2(4):93-108
Traunsee, a 191 m deep Alpine lake in Austria, is affected by industrial tailings from the soda and salt mining industries since 1883. In 1998 littoral water chloride concentrations ranged between 40 and 85 mg L-1 and the highest conductivity was 560 S cm-1, which is almost double as high as the values reported from the two nearby reference lakes. Chloride concentrations increased towards the location of the industrial salt and soda emission into the lake. Analogously to the chloride gradient, the epilithic littoral diatom flora changes towards the waste inlet. Shifts in the species percentages towards the emission source, a high percentage of taxa with large conductivity tolerances, the presence of a small Achnanthes minutissima Kützing morphotype, and occurrences of taxa focused at habitats of higher electrolyte content, indicate subtle impacts on the epilithic diatom flora. An analysis of the seasonal succession of the epilithic diatoms at the waste inlet compared to a lake intern reference site, reveals that only during the late summer period in 1998 the diatom assemblage at the waste inlet became significantly different, indicating seasonally restricted effects of the industrial emissions. 相似文献
45.
壳聚糖-丙烯酰胺-二甲基二烯丙基氯化铵三元接枝共聚物的合成及应用 总被引:2,自引:0,他引:2
在N2保护下,以硝硬驱铈铵为引发剂,将壳聚糖(CTS)、丙烯酰胺(AM)及二甲基二烯丙基氯化铵(DMDAAC)接枝共聚得到CTS-AM-DMDAAC三元接枝共聚物,考察了反应条件对接枝共聚反应的影响。实验结果表明,在反应温度50℃、反应时间5-6h,m(CTS):m(AM):m(DMAAAC)=1:6:0.67、c(Ce^4+)=0.8mmol/L的最佳反应条件下,接枝共聚反应的接枝率和接枝效率分别为64%和10.5%。用傅里叶变换红外光谱仪对CTS-AM-DMDAAC进行了表征。絮凝实验结果表明:CTS-AM-DMDAAC对高岭土水样具有较强的絮凝能力,可在很宽的pH范围内使用。用CTS-AM-DMDAAC处理COD为165.5mg/L的啤酒生产废水,COD去除率达90.1%. 相似文献
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本文对兰州市不同交通路口铅污染现场监测及交警人群健康体检,结果表明各路口受汽车尾气污染严重,铅浓度在1.16~2.64μg/m3之间。将120名交警分外勤警70人作为污染组,内勤警及户藉警50人作为对照组,调查结果尿中δ-氨基乙酰丙酸两组比较没有统计学差异(P>0.05);污染组发铅、尿铅浓度均显著高于对照组,发锌、铜、钙及血中IgA、IgG、IgM均低于对照组,并具有统计学差异(P<0.05,P<0.01)。提示街道空气铅污染对交警体内无机盐水平及机体免疫能力具有一定的影响。 相似文献
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目的 开展镍基单晶高温合金DD6在950 ℃下的热盐腐蚀试验(95%Na2SO4+5%NaCl),探明涂盐量和涂盐方式(周期涂盐和单次涂盐)对DD6高温热腐蚀的影响规律和机理。方法 结合扫描电子显微镜、X射线能量色散谱、X射线衍射等设备,对不同涂盐量及涂盐方式下DD6的表面及横截面形貌进行观察分析,分析不同涂盐量和涂盐方式下DD6的高温热腐蚀机理。结果 DD6在950 ℃下主要发生碱性熔融热腐蚀,同时伴随氧化、硫化和氯化等过程。高温热腐蚀使得DD6合金表面生成的保护性氧化膜被熔融态的腐蚀介质破坏,导致O、S、Cl等外部元素通过氧化膜的缺陷进入DD6基体中,在合金的亚表面发生内氧化、内硫化以及内氯化反应,横截面上出现明显的腐蚀层,其主要由氧化物以及硫化物组成。随着热腐蚀的进行,DD6表面物质发生了剥蚀,沉积盐量的增加导致剥蚀现象越加严重,合金内部致密的组织结构也被破坏,横截面上出现了大量孔洞、裂纹等缺陷。在相同涂盐量下,周期涂盐法使得DD6的腐蚀程度高于单次涂盐法。结论 DD6高温热腐蚀行为与涂盐量及涂盐方式密切相关,相同涂盐方式下,涂盐量越大,DD6热腐蚀更加严重。涂盐量一定时,周期涂盐法使得DD6的热腐蚀剧烈程度大于单次涂盐法,且DD6在上述热腐蚀条件下均发生剥蚀破坏。 相似文献
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对东滩植被带光量子通量密度的调查研究表明:互花米草带与海三棱藨草带光量子通量密度没有显著性差异,其值分别为1 570和1 556μmol/(m2·s)。光照对两物种的生长、繁殖等植物行为的影响只取决于其对光照的利用能力和效率;在互花米草和海三棱藨草混生带,到达互花米草和海三棱藨草的光量子通量密度之间存在显著差异(P0.05),互花米草对海三棱藨草的遮荫效应达63%,表明互花米草对海三棱藨草具有强的遮荫作用。光照不足严重影响海三棱藨草的生长,在混生带,海三棱藨草生长速率降低,种群密度和生物量减少,植株高度增加。因此,互花米草对海三棱藨草的遮荫作用,抑制了海三棱藨草在中潮滩的更新过程,因而也是造成海三棱藨草生境丧失的重要原因之一。 相似文献
50.
以壳聚糖/蒙脱土插层复合物为载体,吸附法制备固定化多酚氧化酶,并以此催化氧化去除水中的苯酚、4-氯苯酚和2,4-二氯苯酚.考察了固定化多酚氧化酶的制备条件,对酚类化合物的催化氧化条件、动力学特性以及固定化酶的重复使用性能.结果表明,固定化多酚氧化酶的最佳制备条件为p H 5.0,酶与载体质量比20 mg·g-1,固定化6 h,所得固定化酶的载酶量为12.12 mg·g-1,每克单位载体酶活为12.76×103U·g-1.固定化多酚氧化酶对酚类化合物的最佳去除条件为:苯酚溶液p H 7.0,温度30℃;4-氯苯酚溶液p H 5.0,温度20℃;2,4-二氯苯酚溶液p H 5.0,温度30℃.在最佳反应条件下,酶与底物质量比为20 mg·mg-1时,固定化多酚氧化酶对苯酚、4-氯苯酚和2,4-二氯苯酚溶液去除率分别为63.6%、85.8%和87.8%.苯酚、4-氯苯酚和2,4-二氯苯酚的米氏常数Km值依次减小,最大反应速率Vmax依次增大,表明固定化酶对2,4-二氯苯酚的亲和力最强,催化速度最快.固定化酶循环使用6次(24 h)后对苯酚、4-氯苯酚和2,4-二氯苯酚的去除率分别为15.7%、24.2%和27.8%. 相似文献