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Jason S. Lee Belinda L. Daniels David T. Eberiel Richard E. Farrell 《Journal of Polymers and the Environment》2000,8(2):81-89
Soil retrieval, processing and storage procedures can have a profound effect on soil microorganisms. In particular, changes in soil microbial populations may adversely affect the biological activity of a soil and drastically alter the soil's potential to mineralize added substrates. The effects of cold storage on the biodegradation of a series of test polymers was investigated using two soils—a synthetic soil mix (SM-L8) and a field soil (Bridgehampton silt loam) from Rhode Island (RI-1). Biodegradation tests were conducted using freshly prepared/collected soil and again following storage at 4°C for 3 to 8 months. Prior to each biodegradation test, the soils were incubated at 60% water-holding capacity (WHC) and 25°C to rejuvenate the microbial populations; the soils were incubated for periods of 48 h (freshly collected soil) or 25 days (soils stored at 4°C). Soil microbial populations were assessed by enumerating different segments of the population on agar plates containing different selective media. Mineralization of the test polymers (cellulose, poly-3-hydroxybutyrate, and starch acetate, d.s. 1.5) was monitored using standard respirometric techniques. Our results demonstrated that cold storage had a generally negative effect on the soil microbial populations themselves but that its effect on the capacity of the soil microorganisms to degrade the test polymers varied between soils and polymer type. Whereas cold storage resulted in dramatic shifts in the community structure of the soil microbial populations, substantial restoration of these populations was possible by first conditioning the soils at 60% WHC and ambient temperatures for 25 days. Likewise, although the effects of cold storage on polymer mineralization varied with the test polymer and soil, these effects could be largely offset by including an initial 25-day stabilization period in the test. 相似文献
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醋酸纤维素吸附剂的制备及其性能表征 总被引:9,自引:0,他引:9
研究开发了1种球形醋酸纤维素吸附剂,对其制备方法、形态结构及其对水中4种有机氯农药的吸附性能进行了研究.扫描电镜结果表明,所制备醋酸纤维素吸附剂的外表面是一层致密的醋酸纤维素膜,内部为网状结构;对水中狄氏剂、艾氏剂、异狄氏剂、七氯4种有机氯农药有较强的吸附能力,12h后去除率均达到85%以上;并且对正辛醇-水分配系数(lgKow)较大的有机物具有更快的吸附速度,对七氯、艾氏剂的去除率在0·5h后可达99%.说明该吸附剂对水中亲脂性的有机物具有较高的吸附效能. 相似文献
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为了更好地发挥产氢产酸/同型产乙酸耦合系统在废水厌氧发酵生产乙酸方面的优势,有必要寻找一种简单有效的方法以获得该系统产酸的优化条件.利用经过加热处理并活化的厌氧污泥作种泥,以模拟废水中的葡萄糖为底物,针对发酵时间、底物浓度、种泥浓度、初始pH进行4因素10水平均匀设计实验,得到了乙酸生产指标与产酸条件之间关系的回归方程;也得到了以高乙酸产量为主要目标导向同时兼顾高乙酸产率和高乙酸生产强度目标的优化条件;优化条件实验乙酸浓度比均匀设计中最高乙酸浓度提高20%左右.研究表明,将均匀设计应用于废水产氢产酸/同型产乙酸耦合产酸条件优化,可以避免盲目性,迅速获得满意结果. 相似文献
36.
用MTT法及TUNEL法检测醋酸铅对PC12细胞活力和凋亡率的影响,并用荧光标记的特异性caspase-3抑制剂来测量caspase-3的激活.结果显示,PC12细胞暴露于浓度为0.1、1、10、100 μmol·L-1的醋酸铅中24 h后,凋亡率和caspase-3的激活显著增加,并具有剂量-效应关系;当铅浓度达到1 μmol·L-1及以上时,细胞活力明显下降.因此可以推论,铅能够诱导PC12细胞发生凋亡,caspase-3的激活可能在这过程中起了非常重要的作用. 相似文献
37.
周波 《安全.健康和环境》2020,(1):12-15
聚乙烯醇是一种用途相当广泛的水溶性高分子聚合物,某企业采用醋酸乙烯溶液聚合生产聚醋酸乙烯溶液,聚醋酸乙烯溶液再经过醇解反应生产聚乙烯醇。在聚乙烯醇装置醇解罐区共有12个储罐用于储存聚醋酸乙烯,分析储罐氮封系统现状,存在尾气管道积液不畅、呼吸阀频繁开启、供氮阀不按设定值开闭等问题,从本质安全的角度,提出了解决措施,确保储罐安全运行。 相似文献
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Changes in speciation and mobility of As by indigenous bacteria in As-contaminated sediments (339 mg/kg) from an abandoned
Au–Ag mine area in Korea were investigated after biostimulation with a variety of carbon sources, including acetate, lactate
and glucose in batch experiments. Sequential extraction analysis designed to determine the form of As occurrence revealed
that 40 and 47% of As were present in the sediment as Fe-associated and residual fractions, respectively. After 22-day incubation
with acetate and lactate, the presence of indigenous bacteria increased the amount of total dissolved As from both Fe-associated
and residual fractions in the sediment. More than 99% of dissolved As existed as As(V) in biotic slurries in contrast to sterile
controls (less than 50% of total dissolved As), which indicated that indigenous bacteria transformed some dissolved As(III)
to As(V). In real environments, depending on the pH, microbially-produced aqueous As(V) may be either immobilized through
adsorption or reduced to As(III) after migration to the anoxic subsurface. 相似文献