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nitrobacteria相关的网络例句

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Seaweed extract-EClean was applied to treatment for eutrophication water. Quantative detection of nitrogen cycle bacteria showed that seaweed extract could improve the growth of ammonifying bacteria, nitrosobacteria and nitrobacteria in the treated water. There was also an increasing trend in the number of denitrifying bacteria in aerated treatment water, which showed that the seaweed extract could accelerate nitrogen cycle and the release of nitrogen from water.

利用国外引进的海藻提取物EClean制剂对富营养化水体进行处理试验,经过定量测定处理和对照水体中氮循环细菌数量的变化,得出EClean制剂能够促进水体的氨化细菌、亚硝化细菌、硝化细菌的生长,并维持了曝气条件下一定数量的反硝化细菌,通过此处理使得在同一反应器中、同一条件下完成硝化作用和反硝化作用成为可能,加速了水体的氮素循环,使水体总氮下降明显。

Objective To study the best conditions of nitrification for nitrobacteria so as to provide the basis for nitrobacteria production and application.

目的探讨硝化细菌最佳工作条件,为应用和生产提供依据。

Through the accumulation of nitrobacteria from activated sludge, the concentration of nitrobacteria was to 10 7/ml.

通过对活性污泥中硝化细菌的富集,使硝化细菌浓度达107个/ml。

Nitrification is one of the most important step is the nitrogen cycle, this series of reactions are responsible for chemoautotrophic nitrobacteria, therefore the chemoautotrophic nitrobacteria play an important role in nitrogen cycle.

摘要 硝化作用为整个氮循环的必须步骤之一,这一连串的反应主要由自营性的硝化菌负责,因此,自营性硝化菌在氮循环中扮演著关键的角色。

Nitrobacteria are sensitive to the environment. Even if FA is as low as 0.06mg NH〓-N/L, it can inhibit the nitrobacteria.

硝酸菌属对外界很敏感,即使游离氨浓度低至0.06mgNH〓-N/L,也会产生抑制作用。

The result indicated that nitrobacteria enriched the best, and the diversity index decreased 62.80% compared with the initial data. Nitrobacteria were predominant in the reactor.

结果表明,培养48 h后,硝化细菌富集效果最佳,多样性指数与初始培养相比下降了62.80%,富集出的硝化细菌主要为亚硝酸盐氧化菌。

Nitrobacteria in the sediment in Liaohe estuarine were investigated by MPN-Griess and MPN-PCR in spring, summer and autumn of 2007. The summarization of the results on temporal and spatial distribution of nitrobacteria in sediment was done.

采用MPN-Gtiess和MPN-PCR两种方法,于2007年春季(5月份)、夏季(8月份)和秋季(11月份)分3个航次,对辽河口区域沉积物中的硝化细菌进行了计数,并对硝化细菌在时间和空间上的分布进行了定量分析。

The amounts of microorganisms in a new denitrification and phosphorus removing integration equipment in its initial stage of running was measured and the change of total bacteria ,Molds,nitrobacteria, Actinomycetes, Nitrobacteria ,Nitrosobacteria and Nitrate reducing bacteria in different times were also studied.

对反硝化聚磷除磷脱氮污水处理新工艺运行初期系统中的微生物数量进行了跟踪检测,并对细菌总数、霉菌、放线菌、硝化细菌、亚硝化细菌、反硝化细菌在不同日期的数量变化进行了研

The sludge age in the reactor is large, so that nitrobacteria and nitrosomonas live together. The nitrogen removal via nitrite was possible mainly because the activity of nitrobacteria was inhibited rather than rushed out in number.

反应器内的污泥龄较长,硝酸菌和亚硝酸菌长期共存,发生短程硝化反硝化主要因为硝酸菌的活性受到抑制,而不是数量上受到淘汰。

Experimental results showed that, in this process, the optimal pH of the shortcut nitrification was 8.0~8.5; when the pH was less than 6,the nitrification is completely inhibited; when the pH was 6~7, at the end of aeration, the Nitrobacteria become the dominant bacteria because of the dropping of the free ammonia concentration. It is known to all, the activity of the Nitrobacteria and Nitrosomonas was affected by FA concentration, so nitrification was affected by FA concentration. According to the author's research results, the FA concentration which inhibit the Nitrobacteria was below 1.0mg/L,which inhibit the Nitrosomonas was above 10mg/L.

实验研究结果表明:本工艺中,短程硝化反应的最佳pH值在8.0~8.5之间,当pH小于6时,整个硝化反应都会受到抑制,当pH在6~7之间时,随着游离氨浓度的降低,在曝气后期,硝化菌将会占据优势;FA浓度对短程硝化反应的影响是通过对亚硝酸菌和硝酸菌的抑制来实现的,在本研究条件下,游离氨对亚硝酸菌的抑制浓度在10mg/L以上,对硝酸菌的抑制浓度在1.0mg/L以下;温度对短程硝化反应的影响是双重的,既影响微生物的生理活性,又影响FA浓度。

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