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排序方式: 共有481条查询结果,搜索用时 15 毫秒
81.
82.
G. A. Klevezal A. E. Bakhur A. A. Sokolov V. A. Serezhenkov N. L. Krushinskaya 《Russian Journal of Ecology》2001,32(2):110-116
The results of the electron paramagnetic resonance (EPR) analysis of pure tooth enamel and the data on the radionuclide content in bones were used for estimating the radiation load on reindeer that lived on Wrangel Island in the 1970s and early 1980s. Based on the measurements of the lower jaws, some biological parameters of the Wrangel reindeer population were estimated and compared with those in the Novaya Zemlya and Taimyr populations. Changes in only two of these parameters—the degree of root cementum resorption and animal life span–might be attributed to the effect of the radiation load. 相似文献
83.
84.
为探讨微生物燃料电池(microbial fuel cell,MFC)处理经预处理后剩余污泥的可行性以及不连续供电能力,采用双室MFC,以剩余污泥热处理上清液为基质进行启动和运行,通过改变电池阴极电子受体而导致电势差变化来监测其产电的运行稳定性.结果表明,反应器以氧气作为阴极电子受体148 h后启动成功,最大输出电压0.24 V,将阴极电子受体换为铁氰化钾时,能获得0.66 V的最大输出电压和4.21 W·m~(-3)的最大功率密度.当将阴极电子受体分别替换为氧气或者开路,又转换为铁氰化钾后,电池输出功率恢复迅速,电池对有机物去除效率基本不受影响,对化学需氧量(COD)、氨氮去除效率分别达70%和80%.本研究表明,利用预处理剩余污泥进行MFC处理和产电是可行的,可获得较高的功率密度,同时MFC可以实现不连续供电. 相似文献
85.
分别以硝酸盐、亚硝酸盐、氧气为电子受体,采用3组SBR反应器培养除磷污泥,连续126d的稳定运行表明:以硝酸盐、亚硝酸盐、氧气为电子受体除磷污泥对TP平均去除率分别为84.8%, 78.7%, 87.4%,出水TP平均浓度分别为0.758, 0.931, 0.632mg/L.采用高通量测序技术对不同电子受体除磷污泥的相似性与菌群结构进行了研究,结果表明,以硝酸盐,亚硝酸盐为电子受体的反硝化除磷污泥具有近似的菌群结构,与好氧除磷污泥菌群结构差异较大.基于各样品主导OTUs序列的系统发育关系及其比例的分布,主导微生物主要可以分为5个簇.通过序列比对,在97%的序列相似度条件下,种泥中聚磷菌与聚糖菌序列比例为0.716%与0.368%,以硝酸盐、亚硝酸盐、氧气为电子受体除磷污泥中聚磷菌与聚糖菌序列比例分别为1.78%, 2.53%, 4.80%与1.44%, 1.32%, 30.9%,厌氧-缺氧条件有利于抑制聚糖菌.亚硝酸盐为反硝化除磷污泥电子受体时潜在公共卫生安全隐患. 相似文献
86.
Guo Jin Ma Jun Shi Xuehua 《Frontiers of Environmental Science & Engineering in China》2007,1(2):251-256
To understand the water purification mechanism of potassium permanganate as a coagulation-aid during the preoxidation process,
the microtopography of its reductive products, the newly formed hydrous manganese dioxide and the aged hydrous manganese dioxide,
was investigated. The morphology of natural organic matter (NOM) adsorbed by the newly formed hydrous manganese dioxide was
also compared with that of NOM alone. By using the tapping mode atomic force microscopy (AFM), the observation results show
that the newly formed hydrous manganese dioxide possess a perforated sheet (with a thickness of 0–1.75 nm) as well as some
spherical particle structures compared with the hydrous manganese dioxide with 2 h aging time, which demonstrated that the
newly formed hydrous manganese dioxide had a large surface area and adsorption capacity. When 1 mmol/L newly formed hydrous
manganese dioxide was added, the microtopography of NOM molecules shifted from a loosely dispersed pancake shape (with adsorption
height of 5–8.5 nm) to a densely dispersed and uniform spherical structure. These results provide a valid proof that it is
the perfect adsorption capability of the newly formed hydrous manganese dioxide that might result in the coagulation aid effect
of potassium permanganate preoxidation.
Translated from Environmental Science, 2006, 27(5): 945–949 [译自: 环境科学] 相似文献
87.
88.
探讨了电子束法净化电厂烟道气过程中自由粒子的产生以及SO2与NOx的脱除机理。结果表明:SO2的脱除有两条途径——热化学和辐射化学,在当量氨的存在下,热化学起主导作用;脱除NOx的过程则纯粹是辐射诱发的氧化-还原反应。 相似文献
89.
聚硅酸溶胶和凝胶的电镜观察 总被引:8,自引:1,他引:8
用透射电子显微镜(TEM)和扫描电子显微镜(SEM)观察了硅酸溶胶的聚合过程。在pH值与Na2O·nSiO2模数一定时,其聚合速度与温度有关,温度高聚合快。聚硅酸溶胶粒子主要是圆形或椭圆形颗粒,粒子由于聚集变大,硅酸凝胶具有毛刷结构,其间隙被水填充。反应时,聚集、聚合和溶解同时进行,最后聚集起主要作用,凝胶形成。 相似文献
90.
Xiaoping Hu Satoshi Osaki Miki Hayashi Mureo Kaku Susumu Katuen Hiroshi Kobayashi Fusako Kawai 《Journal of Polymers and the Environment》2008,16(2):103-108
We intended to find thermophilic degraders of terephthalate-containing Biomax® films. Films in mesh bags were buried in composts (inside temperature: approximately 55–60 °C), resulting in the degradation of them in 2 weeks. Fluorescent microscopy of films recovered from composts showed that microorganisms gradually covered the surface of a film during composting. DGGE analysis of microorganisms on the composted film indicated the presence of Bacillus species as main species (approximately 80% of microbial flora) and actinomycetes (approximately 10–20%) as the second major flora. Isolation of Biomax®-utilizing bacteria was focused on these two genera: two actinomycetes and one Bacillus species were isolated as pure best degraders from the composted polymer films, which were fragmented into small pieces. All the strains were thermophilic and identified, based on their 16S rDNA analyses. Degradation of polymer films was confirmed by (1) accelerated fragmentation of films in composts, compared with a control (no inoculum) and resultant decrease in molecular weights, (2) growth in a powdered Biomax® medium, compared with a control without powdered Biomax®, and (3) production of terephthalate in a powdered Biomax® medium. In this way, we concluded that these bacteria were useful for degradation of thermostable Biomax® products. 相似文献