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81.
苯并噻吩脱硫菌株的筛选及脱硫活性研究   总被引:1,自引:0,他引:1  
从孤岛油田油浸土样中筛选到1株能降解苯并噻吩(BT)的脱硫菌,经初步鉴定该菌为戈登氏菌属(Gordona sp.).实验证明:该菌能以类似于4S途径脱除BT及其衍生物中的硫,但是不能脱除二苯并噻吩(DBT)及其衍生物中的硫.GC-MS分析表明该途径的终产物为邻羟基苯乙醛或其异构体苯并呋喃.在以BT为唯一硫源的培养基中30℃培养48h,Gordona sp.C-6能降解0.15mmol/L的BT,终产物占发酵培养基中BT加入量的50%,其余BT在有氧培养过程中挥发.通过Matlab拟合曲线确定以邻羟基苯乙酸为标准品进行产物定量检测的方法.  相似文献   
82.
The microbial reduction of U(VI) by Bacillus sp. dwc-2, isolated from soil in Southwest China, was explored using transmission electron microscopy (TEM), X-ray photoelectron spectroscopy (XPS) and X-ray absorption near edge spectroscopy (XANES). Our studies indicated that approximately 16.0% of U(VI) at an initial concentration of 100 mg/L uranium nitrate could be reduced by Bacillus sp. dwc-2 at pH 8.2 under anaerobic conditions at room temperature. Additionally, natural organic matter (NOM) played an important role in enhancing the bioreduction of U(VI) by Bacillus sp. dwc-2. XPS results demonstrated that the uranium presented mixed valence states (U(VI) and U(IV)) after bioreduction, which was subsequently confirmed by XANES. Furthermore, the TEM and high resolution transmission electron microscopy (HRTEM) analysis suggested that the reduced uranium was bioaccumulated mainly within the cell and as a crystalline structure on the cell wall. These observations implied that the reduction of uranium may have a significant effect on its fate in the soil environment in which these bacterial strains occur.  相似文献   
83.
Lactobacillus plantarum SF5.6 is one of the lactic acid bacteria (LAB) that has the highest ability of molasses melanoidin (MM) decolorization among the 2114 strains of LAB. The strains were isolated from spoilage, pickle fruit and vegetable, soil and sludge from the wastewater treatment system by using technical step of enrichment, primary screening and secondary screening. This LAB strain SF5.6 was identified by 16S rDNA analysis and carbohydrate fermentation (API 50 CH). The top five LAB strains having high MM decolorization (> 55%), namely TBSF5.8-1, TBSF2.1-1, TBSF2.1, FF4A and SF5.6 were selected to determine the optimal condition. It was found that the temperature at 30°C under facultative conditions in GPY-MM medium (0.5% glucose, 0.1% peptone, 0.1% yeast extract, 0.1% sodium acetate, 0.05% MgSO4 and 0.005% MnCl2 in MM solution at pH 6) giving a high microbial growth and MM decolorization for all five strains. It was noticed that the decolorization of MM by LAB strains might be cell growth associated. L. plantarum SF5.6 grew rapidly within one day while the other strains took 2–3 days. This L. plantarum SF5.6 could rapidly decolorize MM to 60.91% without any lag phase, and it also had the ability to remove 34.00% phenolic compounds and 15.88% color from treated palm oil mill e uent.  相似文献   
84.
A new phenol-degrading bacterium with high biodegradation activity and high tolerance of phenol, strain PD 12, was isolated from the activated sludge of Tianjin Jizhuangzi Wastewater Treatment Facility in China. This strain was capable of removing 500 mg phenol/L in liquid minimal medium by 99.6% within 9 h and metabolizing phenol at concentrations up to 1100 mg/L. DNA sequencing and homologous analysis of 16S rRNA gene identified PD12 to be an Acinetobacter sp. Polyvinyl alcohol (PVA) was used as a gel matrix to immobilize Acinetobacter sp. strain PDI2 by repeated freezing and thawing. The factors affecting phenol degradation of immobilized cells were investigated, and the results showed that the immobilized cells could tolerate a high phenol level and protected the bacteria against changes in temperature and pH. Storage stability and reusability tests revealed that the phenol degradation functions of immobilized cells were stable after reuse for 50 times or storing at 4℃ for 50 d. These results indicate that immobilized Acinetobacter sp. strain PD 12 possesses a good application potential in the treatment of phenol-containing wastewater.  相似文献   
85.
1株海洋异养硝化-好氧反硝化菌的分离鉴定及其脱氮特性   总被引:7,自引:11,他引:7  
以海水为基质,采用传统的微生物分离纯化方法,从海底沉积物中分离筛选得到1株耐盐异养硝化-好氧反硝化细菌y5,经形态、生理生化特性以及16S rRNA基因序列分析,鉴定该菌为克雷伯氏菌(Klebsiella sp.).对其脱氮特性及影响因素进行了研究,结果表明,菌株y5的最佳碳源为柠檬酸三钠,最适p H值为7.0,最适C/N为17.菌株均能以NH4Cl、Na NO2和KNO3为唯一氮源进行反应,36 h的去除率分别为77.07%、64.14%和100%.3种氮源共存时,36 h的去除率达到100%.表明菌株y5在高盐废水中具有独立高效的异养硝化和好氧反硝化作用.  相似文献   
86.
一株对氯苯胺降解菌的分离鉴定及其降解特性   总被引:15,自引:2,他引:15  
从某化工厂污水处理车间好氧池活性污泥中分离到一株降解对氯苯胺的细菌PCA039菌株 ,该菌株能够以对氯苯胺为唯一碳源、氮源生长 .经过对其形态特征、生理生化、以及 16SrDNA序列分析 ,该菌株初步鉴定为Diaphorobacter sp..进一步研究表明 ,该菌株的生长过程中 ,氯离子释放同步于对氯苯胺降解 ,并且氯离子的释放量与对氯苯胺的降解量相当 .其利用对氯苯胺生长的最适温度和pH分别为30℃和7.5,3d时间内的最适降解浓度为300mg/L(2.35mmol/L) .测定了降解途径中相关酶的活性 ,表明对氯苯胺经过苯胺双加氧酶初始氧化和羟基化后 ,芳环的裂解是由邻苯二酚2,3-双加氧酶催化.  相似文献   
87.
Rhodococcus sp. Ns对硝基苯酚的好氧生物降解   总被引:1,自引:2,他引:1  
通过驯化富集培养,从红树林底泥中分离出6株硝基苯酚降解菌,其中Rhodococcus sp. Ns为对硝基苯酚(PNP)与邻硝基苯酚(ONP)的高效降解菌.在好氧条件下该菌可以耐受小于1.8 mmol/L的PNP,能够利用PNP和ONP为唯一碳源、能源和氮源生长并将其完全矿化.研究了Rhodococcus sp. Ns在不同pH、盐度与浓度范围下,PNP的降解特性并探讨了该菌降解PNP的途径.实验得出该菌在盐度<5‰、 pH>5的条件下能较快生长,1.5 mmol/L的PNP在96h内被完全降解,并检测到至少2种中间产物4-硝基儿茶酚(4-nitrocatechol)和1,2,4-苯三酚 (1,2,4-benzenetriol).红树林底泥中固有的细菌对PNP和ONP具有高效降解作用.  相似文献   
88.
A strain,USTB-05,isolated from Lake Dianchi,China,degraded the cyanobacterial toxin microcystin-RR(MC-RR) at the rate of 16.7 mg/L per day.Analysis of 16S rDNA sequence showed that the strain was Sphingopyxis sp.Enzymatic degradation pathways for MC-RR by Sphingopyxis sp.USTB-05 were identified.Adda-Arg peptide bond of MC-RR was cleaved and then a hydrogen and a hydroxyl were combined onto the NH 2 group of Adda and the carboxyl group of arginine to form a linear molecule as intermediate product within the ...  相似文献   
89.
利用盆栽试验研究一株具有重金属耐性的伯克霍尔德氏菌(Burkholderia sp.D54)对美洲商陆和籽粒苋生长及对铯富集的影响.结果表明,接种菌株D54,美洲商陆和籽粒苋总干物重分别比对照处理增加19.8%~33.4%和22.9%~76.6%,美洲商陆和籽粒苋地上部铯含量分别增加4.9%~22.4%和8.1%~19.4%,根中铯含量分别增加6.8%~15.7%和1.1%~10.8%.同时,接种微生物还增加了植物对钾的吸收,提高供试植物的光合反应速率、气孔导度、蒸腾速率和水分利用率,增加铯胁迫条件下植物的抗氧化酶CAT、POD、SOD的活性,降低了MDA的含量.  相似文献   
90.
对驯化筛选的多环芳烃(PAHs)高效降解菌CN4与CN2进行了深入研究,澄清了金属离子对其降解多环芳烃的作用,得出结论:对于CN2、CN4降解菌,Mn2+与常量Ca2+、Mg2+同时存在于降解体系中时,对蒽和菲降解起到明显促进作用。Cu2+和常量元素Ca2+、Mg2+混合对菲降解也起到促进作用,但没有Mn2+的促进作用明显。不加任何常量和微量金属元素离子的体系对蒽、菲、芘的降解作用仅次于含Mn2+的降解体系,加入Cu2+、Ca2+、Mg2+、Fe3+、Zn2+对CN2降解蒽、芘产生抑制作用,加入Ca2+、Mg2+、Fe2+、Zn2+对CN2降解菲产生促进作用。Mn2+主要是在降解过程中发挥作用的,外加不同浓度的Mn2+制备的菌悬液,对芘的降解作用基本没有差别。在制备菌悬液时加入Mn2+,菌体对Mn2+有富集作用,但Mn2+的存在与否并不影响菌体的生长繁殖状况。降解体系中加入Mn2+能够有效促进降解过程的进行,加入0.5 mmol/L的Mn2+对CN4菌株降解芘的促进作用最大,而在降解体系中一次性加入5.0 mmol/L的Mn2+则会对降解产生抑制作用。  相似文献   
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