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denitrifying相关的网络例句

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与 denitrifying 相关的网络例句 [注:此内容来源于网络,仅供参考]

The results showed that PSB and organic fertilizer could promote the growth of actinomyces, heterotroph bacteria, azotobbacter, ammonifying bacteria and nitrobacteria significantly, and restrain the growth of denitrifying bacteria in the soils.

结果表明,光合细菌和有机肥显著促进土壤中放线菌、异养细菌、固氮菌、氨化细菌和硝化细菌的生长,而抑制反硝化细菌数量。

Denitrifying bacteria such as Pseudomonas, Micrococcus, and Clostridium use nitrate as the terminal electron acceptor in anaerobic respiration.

反硝化细菌有假单胞菌,微球菌以及梭菌。它们在厌氧呼吸中都能使用硝酸盐作为最终电子受体。

According to the above study results, especially the steady operation of two-sludge system(2A/O+N 2SBR), it can be proved that denitrification and excess phosphorus uptake are relatively independent and intersectant biological processes. The overlap is that denitrifying phosphorus removing bacteriawhich possesses the two bacterial metabolisms, could utilize nitrate as an electron acceptor for phosphorus uptake. The two-sludge system can not only combined biological phosphorus removal and denitrification processes to form a process in practical wastwater treatment , but also solved the main difficulties of current single-sludge systems:①the sludge age competition between phosphorus removing bacteria and nitrifier;② the substrate competition between denitrification and dephosphatation.

以上的研究结果,尤其是时间序列的双泥生物反硝化除磷脱氮系统工艺(2A/O+N 2SBR法)的稳定运行,不仅证明了生物脱氮与生物除磷是两个既相对独立又相互交叉的生理过程,其交叉点是同时拥有硝酸盐还原性和超量吸磷这两种生化特性的细菌进行的反硝化吸磷脱氮生化反应,而且双泥系统工艺克服了常规单泥生物脱氮除磷工艺的两大问题(①聚磷菌和硝化菌的SRT相互干扰;②反硝化与生物除磷竞争VFA),同时保证了脱氮和除磷效果,排水指标达到污水综合排水标准(GB8978-1996)的一级标准,具有实际工程使用价值。

The effects of immobilized microbes including Rhodospirillaceae, Bacillus, Nitrobacteria and denitrifying bacteria on the changes in species, quantity and biomass of algae and zooplankton in aquiculture water and on the physicochemical environmental factors, such as nitrogen, were studied.

研究了固定化微生物(含有光合细菌、芽胞杆菌、硝化细菌以及反硝化细菌)对养殖水体中藻类和浮游动物的种类、数量、生物量以及水体氮素等理化环境的影响。

Our study was the first report comparing the microbial structure of two effective denitrifying communities which could efficiently degrade quinoline and indole.

首次报道并比较了可高效降解喹啉和吲哚的反硝化生物反应器的微生物群落结构。

Aerobic denitrifying bacteria were isolated from soil and water. The ammonia could be aerobically oxidized to nitrates, then aerobically reduced to molecular nitrogen.

从土壤和水中筛选分离到混合脱氮微生物菌群,能在好氧条件下将NH+4一步步转化为N2排放,整个过程无NO-3的积累。

Results of P-uptake experiments show that 11 isolates have denitrifying and P-uptake ability, and JB2 and JB3 identified as Pseudomonas and Alcaligenes have the best P-uptake ability. After 8 h, 13.76 mg/L and 11.85 mg/L PO(superscript 3- subscript 4)-P can be removed.

结果表明有11株菌均具有不同程度反硝化吸磷能力,其中假单胞菌属的JB2和产碱菌属的JB3脱氮除磷效果最好,8h后磷的去除量分别为13.76mg/L和11.85mg/L。

The streptomyces was found for the first time to be able to oxidize ammonia to nitrite. The denitrifying bacteria were found for the first time to be able to oxidize ammonia anaerobically. The ANAMMOX bacteria were isolated for the first time in pure culture and a new method for ANAMMOX bacteria isolation was developed.

首次发现链霉菌具有亚硝化能力,首次发现反硝化细菌具有ANAMMOX能力,首次获得具有ANAMMOX活性的腐霉状菌纯培养物,并建立ANAMMOX菌的分离方法。

Denitrifying phosphorus removal bacteria is a kind of bacteria that can release phosphorus under anaerobic condition and take up phosphorus under anoxic conditions while simultaneous denitrify nitrate or nitrite.

反硝化聚磷菌是一类能够在厌氧状态下释磷,缺氧存在硝酸盐NO3(上标-或亚硝酸盐NO2(上标-的情况下聚磷,并同时反硝化的聚磷菌。

The mount of germ and fungus quantity in soil are remarkably increased for the continuous cropping about 5 years, puts the trichobacteria quantity always change tendency to reduce;The edaphon total quantity, the bacterium quantity change reduces generally above the continuous cropping 5 years and below 5 years (including 5 years) the change are not obvious;In the nitrogen physiology group by ammoniates the bacterium primarily and the quantity changes are not very big;The nitrifying bacteria quantity is lower than the comparison (non- continuous cropping), the quantity of denitrifying bacteria is opposite;The alkalinity phosphatase, the urease, invertin activeness have a closed relations with the continuous cropping when it will increase less than 5 years or decrease in more than 5 years. The relation between catalase activeness and the continuous cropping is not very big. The reduction of the invertin activeness, the alkalinity phosphatase, urease activeness have slightly elevates, catalase activeness have no the regular changes.

表现为连作条件下土壤真菌数量显著增大,放线菌数量总的变化趋势降低;土壤微生物总量、细菌数量变化在连作5年以上普遍降低,5年以下(包括5年)则变化差异不明显;氮素生理群中以氨化细菌为主,但数量变化不大;硝化细菌数量低于对照组,反硝化细菌数量则相反:多酚氧化酶、转化酶活性在5年之前逐渐上升,5年之后逐渐下降,,脲酶活性随着连作年限增加持续上升,过氧化氢酶活性、碱性磷酸酶活性变化无规律。

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