铁细菌,Iron bacteria
1)Iron bacteria铁细菌
1.Aiming at the three harmful microbes (sulfate reducing bacteria, iron bacteria and saprophytic bacteria) within oilfield water, this paper illustrates disadvantage and advantage of the two testing methods including checker vanishing dilution method and culture microscope check.针对油田水中3种有害微生物(硫酸盐还原菌、铁细菌、腐生菌),阐述了测试瓶绝迹稀释法和培养-镜检法两种测定方法的优缺点。
2.It was found that there were sulfate reducing bacteria(SRB)and iron bacteria(IB) and a little Thiobacillus in these samples.结果表明 ,这些样品中都含有硫酸盐还原菌 (Sulfate reducingBacteria ,SRB)、铁细菌 (IronBacteria ,IB)及少量硫杆菌。
3.The technology of biological iron removal is to make use of iron bacteria to oxidize and remove Fe(Ⅱ).生物除铁技术是利用铁细菌对Fe(Ⅱ)的快速氧化性能而达到除铁目的。
英文短句/例句

1.Industrial circulating cooling water--Examination of iron bacteria--MPN testGB/T14643.6-1993工业循环冷却水中铁细菌的测定MPN法
2.Isolation of Siderophore Producing Bacteria C19 from the Soil and Analysis of Its Antagonism土壤嗜铁细菌C19的筛选、分子鉴定及其对炭疽菌和镰刀菌的拮抗作用
3.Growth Characteristics and Control of Iron Bacteria on Cast Iron in Drinking Water Distribution Systems给水管网管壁铁细菌生长特性模拟及控制对策研究
4.Primary Study of Aerobic Ocean Bacteriaum YSC-1 and Purification of Its Ferric Reductase;海洋细菌YSC-1及其高铁还原酶的研究
5.Isolation and identification of siderophore producing bacteria CAS15 from the soil土壤产嗜铁素拮抗细菌CAS15的分离鉴定
6.Isolation of Sulfur-oxidizing Acidophilic Bacteria and Bioleaching of Chalcopyrite by Its Mixed Culture with Iron-oxidizing Acidophiles;硫氧化细菌的分离鉴定以及与铁氧化细菌混合浸出黄铜矿
7.Basic Research and Technical Study on Bioleaching of Zinc Sulfide Ore Bearing High Content of Iron;高铁锌硫化矿的细菌浸出基础及其工艺研究
8.Study on Mechanism of SO_2 Oxidation by Pyrolusite Slurry Combined with Thiobacillus Ferrooxidans and Manganese Bacteria;软锰矿浆与铁、锰细菌催化氧化SO_2的机理研究
9.Study on Application of Bacterial Leaching in Iron-removal and Whitening of Non-metallic Minerals;细菌浸出在非金属矿除铁增白中的应用研究
10.Research of the Bacterium Effect in Fe、Mn、Ca Depositing;洞穴细菌对铁、锰、钙元素的沉积作用研究
11.Identification of the Two Strains with Iron and Manganese Oxydase Activity and Phylogenetic Analysis两株产铁锰氧化酶细菌的鉴定及系统发育分析
12.Isolation and Identification of a Strain of Endogenous Antagonist Bacteria from Banana一株产铁载体香蕉拮抗内生细菌的分离及鉴定
13.The Effect of Iron Precipitate on Biomembrane during the Amplification Culture of Uranium-leaching Bacteria浸铀细菌扩大培养中铁沉淀对生物膜的影响
14.Fe(Ⅲ) reduction characteristics of three iron reducers using different carbon sources3株铁还原细菌利用不同碳源的还原特征分析
15.Many experiments have shown a fierce competition for this element between bacterial, fungal and protozoan pathogens and their hosts.大量试验表明,细菌、真菌、原生物病原体和母体间都竞相争夺铁元素。
16.Purification, Characterization, Crystal Growth and Identification of Nitrogenase MoFe Protein from Mutant DJ35 and Bacterioferritin from UW3 of Azotobacter Vinelandii;固氮菌突变种DJ35钼铁蛋白和UW3细菌铁蛋白的纯化、特性、晶体生长及鉴定
17.Study on the Characteristics of Ferromanganese-oxidation Bacteria in Pyrolusite Flue Gas Desulphurization;应用于软锰矿脱硫中的铁、锰氧化细菌的特性研究
18.Basic Research of Flotation and Bacterial Leaching of Complex Sulfide Minerrals of Lead, Antimony, Zinc and Iron;铅锑锌铁多金属硫化矿浮选分离与细菌浸出的基础研究
相关短句/例句

microstrainer[,maikr?u'strein?]杆铁细菌
3)iron consuming bacteria耗铁<细>菌
4)siderophore producing bacteria嗜铁细菌
1.In this study, we isolated a series of siderophore producing bacteria from the rhizosphere soil of the rubber trees in Hainan Island by CAS agar plate assay, and CAS15, which produced distinct orange halo at CAS agar plate and had strong antagonism to common plant pathogens, was selected for the following studies.本研究首次通过CAS(Chrome Azurol Sulphonate)检测平板法从海南岛橡胶树根际土壤分离获得一批嗜铁细菌,并以在CAS检测平板上产生较大橘黄色晕圈的拮抗细菌枯草芽孢杆菌CAS15为研究对象,克隆了B。
5)iron-reducing bacteria铁还原细菌
1.Sulfate-reducing bacteria and iron-reducing bacteria were found in the rust layer by microbial enrichment and molecular biological analysis.微生物富集培养和初步的分子生物学分析结果表明,海水钢铁锈层中至少生存有硫酸盐还原细菌和铁还原细菌两种厌氧细菌。
6)bacterioferritin细菌铁蛋白
1.The effect of Zn ̄(2+) on the synthesis of bacterioferritin was identified by the EL-ISA method.用酶联免疫法(ELISA)检测了Zn ̄(2+)对细菌铁蛋白(bacterioferritin(B。
延伸阅读

铁细菌铁细菌ironbacteria在菌体荚膜内、鞘内或细胞外分泌物上沉积铁和(或)锰氧化物的细菌。铁细菌在含铁的淡水中分布广泛;好气,嗜中性环境。这类菌也能在供水的管道内生长繁殖,形成锈层或锈瘤,污染水质,可导致管子局部穿孔,造成经济损失。