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采用分子生物学手段PCR-DGGE技术对亚硝化-电化学生物反硝化全自养脱氮工艺细菌的多样性进行了研究。结果表明,亚硝化段内主要的细菌种群为相似于Nitrosomonas sp.(AJ224410)和Nitrosomonas sp.NM41(AF272421)的种群,相似性分别为97%和94%;电化学生物反硝化段细菌类群主要有β-proteobacteria类群、γ-proteobacteria类群和Chlo-roflexi类群。填料上生物膜细菌种群较底部泥水混合物丰富,两者细菌种群相似性为75%;底部泥水混合物样中存在与厌氧氨氧化菌Brocadia anammoxidans(AF375994)相似性为93%的菌种,而填料上生物膜中存在与Thioalkalivibrio sp.K90mix(EU709865)和Thiobacillus thioparus(AJ243144)相似性分别为94%、97%的菌种,其中Thiobacillus thioparus(AJ243144)是典型的硫自养反硝化菌,表明填料上生物膜中有大量的硫自养反硝化菌。 相似文献
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Delbert J. Eatough Yanbo Pang Norman L. Eatough 《Journal of the Air & Waste Management Association (1995)》2013,63(9):69-75
ABSTRACT Ambient particles contain substantial quantities of material that can be lost from the particles during sample collection on a filter. These include ammonium nitrate and semi-volatile organic compounds. As a result, the concentrations of these species are often significantly in error for results obtained with a filter pack sampler. The accurate measurement of these semi-volatile fine particulate species is essential for a complete understanding of the possible causes of health effects associated with exposure to fine particles. Past organic compound diffusion denuder samplers developed by the authors (e.g., the Brigham Young University Organic Sampling System [BOSS]) are not amenable to routine field use because of the need to independently determine the gas-phase semi-volatile organic material efficiency of the denuder for each sample. This problem has been eliminated using a combined virtual impactor, particle-concentrator inlet to provide a concentrated stream of 0.1-2.5-μm particles. This is followed by a BOSS diffusion denuder and filter packs to collect particles, including any semi-volatile species lost from the particles during sampling. The samp ler (Particle Concentrator-Brigham Young University Organic Sampling System [PC-BOSS]) contains a post-denuder multifilter pack unit to allow for the routine collection of several sequential samples. The PC-BOSS can be used for the determination of both fine particulate nitrate and semi-volatile organic material without significant “positive” or “negative” sampling artifacts. Validation of the sampler for the determination of PM2.5 sulfate and nitrate based on comparison of results obtained at Riverside, CA with collocated PC-BOSS, annular denuder, and Chem Spec samplers indicates the PC-BOSS gives accurate results for these species with a precision of ±5-8%. An average of 33% of the PM2.5 nitrate was lost from the particles during sampling for both denuder and single filter samplers. 相似文献
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Zhaozhong Feng Jing Pang Isamu Nouchi Takashi Yamakawa 《Environmental pollution (Barking, Essex : 1987)》2010,158(12):3539-3545
We studied leaf apoplastic ascorbates in relation to ozone (O3) sensitivity in two winter wheat (Triticum aestivum L.) varieties: Yangfumai 2 (Y2) and Yangmai 16 (Y16). The plants were exposed to elevated O3 concentration 27% higher than the ambient O3 concentration in a fully open-air field from tillering stage until final maturity. The less sensitive variety Y16 had higher concentration of reduced ascorbate in the apoplast and leaf tissue by 33.5% and 12.0%, respectively, than those in the more sensitive variety Y2, whereas no varietal difference was detected in the decline of reduced ascorbate concentration in response to elevated O3. No effects of O3 or variety were detected in either oxidized ascorbate or the redox state of ascorbate in the apoplast and leaf tissue. The lower ascorbate concentrations in both apoplast and leaf tissue should have contributed to the higher O3 sensitivity in variety Y2. 相似文献
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考察了水中苦味酸在弱碱性离子交换树脂D301R上的吸附与解吸。研究了吸附热力学、动力学特性及吸附机理。结果表明,树脂在pH=2.7~10.2时,吸附能力最好。等温平衡吸附遵循Freundlich模型。吸附过程为吸热、熵增的自发过程。吸附动力学符合Lagergren准二级速率方程,颗粒内扩散为吸附速率的主要控制步骤,吸附速率常数为7.23×10-5~1.20×10-4g/(mg.min),吸附活化能为19.4 kJ/mol。树脂上吸附的苦味酸可用HNO3+丙酮混合液定量洗脱,洗脱率达99%。静态吸附和脱附的比较结果证实了吸附过程中存在不可逆化学吸附。树脂对苦味酸的吸附主要是通过静电吸附、酸碱络合吸附、氢键吸附等协同作用来完成的。 相似文献
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太湖内源释放及营养盐输运研究 总被引:1,自引:0,他引:1
从对流-扩散方程出发,通过公式推导,建立了包含底泥污染的水流-水质模型,对模型进行了率定和验证后,应用于太湖.该模型将湖泊水相和内源悬移相污染作为一个整体,结合污染物在悬移泥沙上的各种迁移过程,研究了太湖总氮、总磷内源释放的分布和数量,过程中考虑了悬移泥沙的各种影响因素,得到了较理想的模拟结果,当风速≤3.5 m/s时,冲刷和悬移造成的内源污染物释放量较小,内源污染物释放主要通过泥-水界面的静态释放;当风速>3.5 m/s时,冲刷和悬移造成的内源污染物释放量随风速增加迅速增大.通过计算得出2001年太湖内源释放的总氮为3.0万t,总磷为0.8万t. 相似文献