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nitric bacteria相关的网络例句

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The number of heterotrophic bacteria and nitrifying bacteria increased with the time of the hydraulic retention time, contrary to the nitrobacter.

根际细菌和硝化细菌数量随着水力停留时间增加而增加,而根际反硝化细菌数量则减少。

A submerged membrane sequencing batch bioreactor was used to treat coke wastewater.Long running performance showed that due to the membrane interception,the nitrobacter is enriched in reactor in the interest of improving the nitrification rate;the maximum ammonia nitrogen loading can be 0.19 kg/(m3·d) with effluent ammonia nitrogen<1 mg/L (removal rate 99%).Long sludge retention time may result in the accumulation of metabolic products and high molecular materials,and thus inhibiting activity of nitrate bacteria and causing a ccumulation of NO2-,which is beneficial to the running of short-cut denitrif ication.However,too long retention time will affect the activity of nitrite bacteria,detrimental to the treatment effect of ammonia nitrogen.

采用浸没式膜生物反应器处理焦化废水的试验结果表明:膜的截留作用可使硝化菌在反应器内富集而有利于提高系统的硝化能力,其去除氨氮的最高负荷为0.19kg/(m3·d),出水氨氮<1mg/L(去除率为99%);泥龄长可能使微生物的代谢产物或其他大分子物质积累,从而抑制硝酸盐细菌的活性,导致NO2-积累而有利于短程脱氮的进行,但泥龄过长也会影响亚硝酸盐细菌的活性,从而影响对氨氮的处理效果。

A submerged membrane sequencing batch bioreactor was used to treat coke wastewater.Long running performance showed that due to the membrane interception,the nitrobacter is enriched in reactor in the interest of improving the nitrification rate;the maximum ammonia nitrogen loading can be 0.19 kg/(m3·d) with effluent ammonia nitrogen<1 mg/L (removal rate 99%).Long sludge retention time may result in the accumulation of metabolic products and high molecular materials,and thus inhibiting activity of nitrate bacteria and causing a ccumulation of NO2-,which is beneficial to the running of short-cut denitrif ication.However,too long retention time will affect the activity of nitrite bacteria,detrimental to the treatment effect of ammonia nitrogen.

简介: 采用浸没式膜生物反应器处理焦化废水的试验结果表明:膜的截留作用可使硝化菌在反应器内富集而有利于提高系统的硝化能力,其去除氨氮的最高负荷为0.19kg/(m3·d),出水氨氮<1mg/L(去除率为99%);泥龄长可能使微生物的代谢产物或其他大分子物质积累,从而抑制硝酸盐细菌的活性,导致NO2-积累而有利于短程脱氮的进行,但泥龄过长也会影响亚硝酸盐细菌的活性,从而影响对氨氮的处理效果。

The results showed that the percentage of ammonia oxidizing bacteria and nitrite oxidizing bacteria in the activated sludge was 15.7%±3.7% and 12.9%±3.2%, Nitrosomonas europaea-Nitrosococcus mobilis lineage were the dominant AOB, Nitrobacter spp.

结果表明,污泥中氨氧化菌的含量为15.7%±3.7%,优势菌属为Nitrosomonas europaea-Nitrosococcus mobilis;亚硝酸氧化菌的含量为12.9%±3.2%,优势菌属为Nitrobacter spp。。

The Heterotrophic bacteria, nitrosomonas, epiphyte and rhizosphere in non-rhizosphere zones are more than the contrast in the sample with the inoculants and enzyme, contrary to the nitrobacter and denitrifying bacteria.

菌剂和酶制剂的加入使得非根际泥样异养细菌、真菌、放线菌和亚硝酸细菌比对照组稍高,硝酸细菌和反硝化细菌则较少;而根际泥样中加菌剂和酶制剂组微生物数量比空白组高出1—2个数量级,在投加菌和酶制剂后酶活性无论在根际还是非根际都得到提高,高于对照组约5—6个酶活单位。

The effect of PPC preoxidation on nitrification was conducted by measuring the quantity of nitrite bacteria and nitrate bacteria ,nitrosification performance and nitrification performance in the BAC process.

结果表明,高锰酸盐预氧化后的生物活性炭与单独生物活性炭上亚硝酸菌和硝酸菌的分布具有相同规律;但高锰酸盐预氧化后生物活性炭工艺中亚硝酸菌和硝酸菌数量、亚硝化速度及硝化速度都要高于单独的生物活性炭,这是高锰酸盐促进后续生物活性炭工艺去除氨氮和亚硝酸盐氮的主要原因

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

This interaction occurs through formation of a nonbacterial thrombus, followed by bacteremia and adherence of bacteria to the thrombus, and, then, proliferation of bacteria within the egetation.

这种相互作用开始表现为非细菌性血栓形成,接下来出现菌血症,然后是细菌在血栓上黏附,随后细菌在这片&沃土&上增殖。

Results: Among 327 gram-negative bacillus isolated from patients in ICU, the nonfermentative bacteria covered 65.41%(214/327), pseudomonas aeruginosa, stenotrophomonas maltophilia and ancinetobacter baumanni were the main nonfermentative bactria, the resistance rate of pseudomonas aeruginosa, stenotrophomonas maltophilia and ancinetobacter baumanni to imipenem were over 31%, and the isolated bacteria showed serious multidrug-resistance.

结果:共分离到的革兰阴性杆菌327株,其中非发酵菌214株,占65.41%(214/327);非发酵菌以铜绿假单胞菌、嗜麦芽黄单胞菌、鲍曼溶血不动杆菌为主,对常用抗菌药物表现为严重耐药和多重耐药,对亚胺培南的耐药率达到31.0%以上。

Results: Pericoronitis was a complex odontogenic infection with aerobic bacteria and anaerobic bacteria.

结果:冠周炎为需氧菌和厌氧菌的混合感染,药物敏感试验显示氯林可霉素对需氧菌和厌氧菌均有显著的抑制作用。

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