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561.
改良PVA包埋固定化活性污泥的特性研究 总被引:1,自引:0,他引:1
对比实验发现聚乙烯醇(PVA)中少量添加海藻酸钠包埋微生物效果较好,重点研究了PVA与海藻酸钠混合载体包埋固定化活性污泥系统降解有机物运行过程中凝胶体凝胶溶出特性、包埋工艺对微生物活性的损伤和恢复情况,以及凝胶的物理特性和抗持久性能变化情况。结果表明,包埋固定化微生物小球在反应器中运行时,其物理特性、微生物活性、降解能力及载体本身都要有一定程度的变化;对这些特性的探讨不但能为研究固定化后微生物微观特性打下基础,同时能为工程应用提供理论指导。 相似文献
562.
重金属污染对环境造成了严重破坏,并威胁着人类的生命健康和财产安全。本文从重金属环境污染现状、重金属污染对微生物影响、微生物对重金属离子污染的修复作用、微生物修复方法的作用机理等方面,综述了微生物在重金属污染修复及治理中的研究概况,并对微生物修复及治理重金属污染存在的局限性进行分析,进一步提出相关改进建议,为处理重金属离子污染提供了理论依据。 相似文献
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城市生活垃圾渗透系数测试研究 总被引:7,自引:0,他引:7
采用常水头测渗实验,对不同压实密度和水力梯度下的新鲜垃圾与陈垃圾的渗透系数进行测试,根据达西定律求得渗透系数值。由于垃圾的不均匀性、小颗粒的运动和大孔隙沟道流的形成和改变,实验初始阶段渗透系数值先增大至峰值,然后缓慢降低直至趋于稳定。实验稳定后,新鲜垃圾压实密度为0.75—0.95t/m^3时,渗透系数值约为1.26E-03~1.43E-03cm/s。陈垃圾在压实密度分别为1.2和1.4t/m^3时,渗透系数为8.29E-04和1.35E-04cm/s。 相似文献
565.
Optimum conditions for Al13 polymer formation in PACl preparation by electrolysis process 总被引:2,自引:0,他引:2
This paper introduces a new and effective method for preparation of PACl-electrolysis process. A series of PACl with high content of Al13 polymer was successfully prepared by electrolysis process. The amount of Al13 polymer formed in electrolysis process was found to be highly influenced by current density (di), the distance between the electrodes, electrolysis time and the stirring rate of the electrolyte. For the AlT (total aluminum concentration) of 2.0 M PACl obtained by electrolysis process, the optimal di and distance between the electrodes were 1.1 Adm(-2) and 10 mm respectively. The optimum circulating rate was 5.5 l h(-1). Because of the inhomogeneous pH between the surface of cathode and the bulk solution, the electrolysis process has the advantage to form more Al(OH)4- as precursor of Al13 polymer. At the optimum condition, Al13 polymer accounted for above 70% of AlT (PACl of AlT=2.0 M and B=2.0), which was much higher than that of PACl prepared by other method. 相似文献
566.
Li HY Qu JH Zhao X Liu HJ 《Journal of environmental science and health. Part. B》2004,39(5-6):791-803
The effects of Fe(II), Mn(III) and humic substances on the catalyzed ozonation of alachlor, an endocrine disruptor were investigated. Results revealed that small amounts of Fe(II), Mn(II), and humic substances could enhance the ozonation of alachlor, but larger amounts of them would retard the oxidation. These results were successfully identified by an electron paramagnetic resonance (EPR) spectroscopy spin-trapping method that could quantify hydroxyl radicals. The production of hydroxyl radicals was obviously increased with the increasing of Fe(II) concentration, which contributed to enhance ozonation at low concentrations. But the excess Fe(II) consumed some of the radicals when it was added at a higher concentration (1.5 mg/L). However, no obvious radicals were observed when a different amount of Mn(II) was used, and the catalytic ozonation of alachlor by Mn(II) mainly followed the mechanism of "active sites created on the surface of MnO2." The radical pathway was followed when alachlor was ozonated with different concentrations of humic substances because of its radical initiating, promoting, and inhibiting effects. 相似文献
567.
Virus retention and transport through Al-oxide coated sand columns: effects of ionic strength and composition 总被引:11,自引:0,他引:11
Knowledge of the factors that influence the fate and transport of viruses in porous media is very important for accurately determining groundwater vulnerability and for developing protective regulations. In this study, six saturated sand column experiments were performed to examine the effects of a positively charged Al-oxide, which was coated on sand particles, on the retention and transport of viruses (phiX174 and MS-2) in background solutions of different ionic strength and composition. We found that the Al-oxide coating on sand significantly removed viruses during their transport in a phosphate buffered saline (PBS) solution. Mass balance calculations showed that 34% of the input MS-2 was inactivated/irreversibly sorbed on the surface of Al-oxide coated sand whereas 100% of phiX174 was recovered. Results from this study also indicated that higher ionic strength facilitated the transport of both phiX174 and MS-2 through the Al-oxide coated sand. This was attributed to the effect of ion shielding, which at higher ionic strength decreased the electrostatic attraction between the viral particles and the sand surface and consequently decreased virus sorption. Strong effect of the ionic strength indicates that an outer-sphere complexation mechanism was responsible for the virus sorption on the Al-oxide coated sand. Ion composition of the background solutions was also found to be a significant factor in influencing virus retention and transport. Virus transport was enhanced in the presence of phosphate (HPO(4)(2-)) as compared to bicarbonate (HCO(3)(-)), and the effect of HPO(4)(2-) was more significant on MS-2 than on phiX174. The presence of bivalent cations (Ca(2+) and Mg(2+)) increased virus transport because the cations partially screened the negative charges on the viruses therefore decreased the electrostatic attraction between the positively charged sand surface and the negatively charged viruses. Mass recovery data indicated that bivalent cations gave rise to a certain degree of inactivation/irreversibly sorption of phiX174 on the surface of Al-oxide coated sand. On the contrary, the bivalent cations appeared to have protected MS-2 from inactivation/irreversibly sorption. This study provides some insights into the mechanisms responsible for virus retention and transport in porous media. 相似文献
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按GB11890—89顶空气相色谱法分析苯系物时,发现重复性和分割水平样品平行性较差,经仔细分析,是由于使用普通玻璃注射器造成的。为避免此类误差,建议顶空气相色谱法分析时,使用带特氟龙顶端推杆的气密性注射器。 相似文献