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1.
微囊藻毒素-R R 高效降解菌的分离鉴定及降解特性   总被引:3,自引:0,他引:3  
从蓝藻爆发期的上海市淀山湖表层水体中筛选分离降解微囊藻毒素-RR(MC-RR)的细菌,研究其降解特性。根据分离菌株的细胞形态结构、生理生化特征及其16S rDNA序列分析鉴定降解菌,高效液相色谱法测定该菌株降解MC-RR的能力。分离菌株DHU-38(GenBank序列登录号为HM047515)属荧光假单胞菌(Pseudomonas fluorescens)。微囊藻毒素降解实验结果表明,该菌株能在以MC-RR为唯一碳源、氮源的无机盐培养基中生长,6 d内可将初始质量浓度为20 mg/L的MC-RR降解为6.23 mg/L,降解效率达到69%。菌株DHU-38的最适生长温度是30℃,最适生长pH值为7.0。酵母粉、蛋白胨、葡萄糖等营养物质可以明显促进菌株对MC-RR的降解效率,尤其是加入100 mg/L酵母粉后,6 d降解率达到89.6%。  相似文献   

2.
萃取膜生物反应器处理苯酚废水的试验研究   总被引:2,自引:0,他引:2  
戴宁  张晟禹  张凤君  李隋  赵文生 《环境科学》2008,29(8):2214-2218
从经过驯化的活性污泥中筛选出苯酚降解菌.制备成菌悬液,对比活性污泥体系和菌悬液体系的萃取膜生物反应器(EMB)对苯酚废水的处理效果,考察了料液苯酚浓度、反应器温度等因素对膜萃取速率及生物降解效果的影响.结果表明,通过以苯酚为唯一碳源,逐渐提高苯酚浓度的方法对活性污泥进行驯化.当进水苯酚浓度为700 mg·L-1时,苯酚去除率达99%以上;适当提高反应器温度和料液初始浓度有利于提高膜萃取速率;当初始料液苯酚浓度为2000 mg·L-1时,膜萃取速率高于生物降解速率,生物相中产生苯酚积累;菌悬液体系EMB的生物膜厚度明显小于活性污泥体系,且水力反冲洗可有效控制生物膜厚度.对苯酚生物降解产物的GC-MS分析结果表明,苯酚的生物降解较彻底,基本无苯酚中间产物的残留.  相似文献   

3.
余慧  张超杰  周琪 《环境科学》2007,28(1):204-208
利用驯化污泥研究了邻氟苯胺、对氟苯胺、2,4-二氟苯胺的好氧生物降解性能.结果表明,3种氟苯胺的好氧生物降解性能从高到低依次为,对氟苯胺、邻氟苯胺和2,4-二氟苯胺.降解动力学分析表明,在初始浓度在8~50 mg·L-1范围内,除2,4-二氟苯胺在实验浓度8.56 mg/L时为一级反应,其他为零级反应.且它们的降解规律都符合Monod方程.污染物化学结构特性与其生物降解性能相关性研究表明,热力学参数与氟苯胺好氧生物降解性能相关性最好,空间参数次之,而电性参数最差.并研究了共代谢条件下葡萄糖和苯胺对2,4-二氟苯胺的好氧降解的影响,葡萄糖的引入有促进作用,而苯胺只在一定浓度范围内有促进作用.因而,氟苯胺的生产废水与生活污水合并处理以及多种组分混合废水处理是可行的.  相似文献   

4.
To explore biodegradation of 2-naphthol and its metabolites accumulated in wastewater treatment, a series of bio-degradation experiments were conducted. Two main metabolites of 2-naphthol, 1,2-naphthalene-diol and 1,2-naphthoquinone, were identified by high-performance liquid chromatography with standards. Combining fungus Aspergillus niger with bacterium Bacillus subtilis in the treatment enhanced 2-naphthol degradation e ciency, lowered the accumulation of the two toxic metabolites. There were two main phases during the degradation process by the kinetic analysis: 2-naphthol was first partly degraded by the fungus, producing labile and easily accumulated metabolites, and then the metabolites were mainly degraded by the bacterium, attested by the degradation processes of 1,2-naphthalene-diol and 1,2-naphthoquinone as sole source of carbon and energy. Sodium succinate, as a co-metabolic substrate, was the most suitable compound for the continuous degradation. The optimum concentration of 2-naphthol was 50 mg/L. The overall 2-naphthol degradation rate was 92%, and the CODCr removal rate was 80% on day 10. These results indicated that high degradation rate of 2-naphthol should not be considered as the sole desirable criterion for the bioremediation of 2-naphtholcontaminated soils/wastewater.  相似文献   

5.
The phenol and m-cresol biodegradations were studied using the mutant strain CTM 2 obtained by the He-Ne laser irradiation on wild-type Candida tropicalis. The results showed that C. tropicalis exhibited the increased capacity of phenolic compounds degradation after laser irradiation. It could degrade 2600 mg/L phenol and 300 mg/L m-cresol by 5% inoculum concentration, respectively. In the dual-substrate biodegradation system, 0–500 mg/L phenol could accelerate m-cresol biodegradation, and 300 mg/L m-cresol could be completely utilized within 46 hr at the presence of 350 mg/L phenol. Besides, the maximum biodegradation of m-cresol could reach 350 mg/L with 80 mg/L phenol within 61 hr. Obviously, phenol, as a growth substrate, could promote CTM 2 to degrade m-cresol, and was always preferentially utilized as carbon source. Comparatively, low-concentration m-cresol could result in a great inhibition on phenol degradation. In addition, the kinetic behaviors of cell growth and substrate biodegradation were described by kinetic model proposed in our laboratory.  相似文献   

6.
The phenol and m-cresol biodegradations were studied using the mutant strain CTM 2 obtained by the He-Ne laser irradiation on wild-type Candida tropicalis. The results showed that C. tropicalis exhibited the increased capacity of phenolic compounds degradation after laser irradiation. It could degrade 2600 mg/L phenol and 300 mg/L m-cresol by 5% inoculum concentration, respectively. In the dual-substrate biodegradation system, 0-500 mg/L phenol could accelerate m-cresol biodegradation, and 300 mg/L m-cresol could be completely utilized within 46 hr at the presence of 350 mg/L phenol. Besides, the maximum biodegradation of m-cresol could reach 350 mg/L with 80 mg/L phenol within 61 hr. Obviously, phenol, as a growth substrate, could promote CTM 2 to degrade m-cresol, and was always preferentially utilized as carbon source. Comparatively, low-concentration m-cresol could result in a great inhibition on phenol degradation. In addition, the kinetic behaviors of cell growth and substrate biodegradation were described by kinetic model proposed in our laboratory.  相似文献   

7.
毒死蜱降解细菌XZ-3的分离及降解特性研究   总被引:7,自引:0,他引:7  
钱博  朱鲁生  谢慧  王军  刘伟  徐琦峰  宋艳  徐荣娟 《环境科学》2007,28(12):2827-2832
从某农药厂排污口的污泥中采样,经驯化富集后筛选到1株能高效降解毒死蜱的细菌XZ-3,经过对其形态、生理生化特征及16S rDNA的分析,鉴定该菌株为节杆菌属(Arthrobactersp.).测定了不同碳源、pH、温度及毒死蜱浓度对细菌降解能力和生长量的影响,以培养液在波长400 nm下的光密度值表示细菌生长量,液体介质中毒死蜱的提取采用漩涡振荡提取法,提取溶剂为石油醚,毒死蜱的测定采用紫外分光光度法.结果表明,该菌株24 h内对100 mg·L-1毒死蜱的降解率高达86.8%;在外加碳源浓度为0.3%时降解率最大;细菌的生长量随着外加碳源浓度的升高而增加;pH在偏酸和偏碱性的条件下降解率较大,pH 9.0时达到最大,细菌的生长量在pH 8.0~10.0偏碱性的条件下较大;在毒死蜱浓度为100 mg·L-1时降解率最大,该菌具有较强的抗药性,当毒死蜱浓度达到1?000 mg·L-1时仍能生长,细菌的生长量在800 mg·L-1时达到最大,绝对去除量随毒死蜱浓度的提高而增加;细菌的生长和降解需要适宜的温度,30℃培养时,降解率和生长量最大.本研究提出了细菌XZ-3生长和降解毒死蜱的最佳培养条件,可为农药污染治理及生产污水处理提供理论依据.  相似文献   

8.
印染废水中的壬基酚聚氧乙烯醚(nonylphnol polyethylene ether, NPEO)在生化处理过程中会产生雌激素活性更强的壬基酚(NP)等中间产物,导致处理后印染废水内分泌干扰毒性升高.为探索以NPEO和NP为降解靶点进行菌群生物强化脱毒的可行性,分别以NPEO和NP驯化富集印染活性污泥,并将得到的降解菌群以单独和组合投加方式进行生物强化试验,考察强化控毒效果.结果表明:(1)NPEO降解菌群(NPEB)和NP降解菌群(NPB)中的优势菌均为Proteobacteria,二者对10 mg/L NPEO和NP的48 h去除率均高于98%.(2)单独或组合投加5 mg/L的NPEB和NPB至混合液悬浮固体浓度(MLSS)为500 mg/L的活性污泥体系,均能显著提升活性污泥对不同浓度(10和1 mg/L) NPEO的降解性能,大幅缩短NPEO降解过程中雌激素活性的变化周期,并使体系的雌激素活性维持在较低水平.(3)当降解体系中加入1 000 mg/L葡萄糖作为额外碳源时,NPB的强化性能被完全抑制,而NPEB在降解性能受抑的情况下仍能增强活性污泥的NPEO降解速率并缩短控...  相似文献   

9.
基于污染场地,筛选了一株可降解氯苯(CB)的微生物,经鉴定该菌株属于粘质沙雷氏菌属(Serratia marcescans),命名为Serratia marcescans TF-1.同化降解结果表明,该菌株能够在有氧的条件下以CB为唯一碳源和能源,菌体平均增长速率为0.0063~0.022gcell/(molCB·h),最大比生长速率(μmax)为0.015~0.42h-1,CB降解速率(VCB)为1.35~4.47mol/(gcell·h),菌株对CB最高耐受浓度高于200mg/L.共代谢降解结果显示,TF-1可以琥珀酸钠和柠檬酸钠为底物共代谢降解CB;氯苯浓度(cCB)<80mg/L时,μmax(柠檬酸钠)(0.21~0.87h-1)>μmax(琥珀酸钠)(0.20~0.81h-1),VCB(柠檬酸钠)(0.15~0.47mol/(gcell·h))<VCB(琥珀酸钠)(0.17~0.48mol/(gcell·h));cCB>80mg/L时,μmax(柠檬酸钠)(0.086~0.21h-1)<μmax(琥珀酸钠)(0.17~0.25h-1),VCB(柠檬酸钠)(0.61~1.11mol/(gcell·h))>VCB(琥珀酸钠)(0.56~0.95mol/(gcell·h)),表明共代谢降解过程中,CB浓度,底物种类是调控污染降解的重要因素.最后考察了温度、pH值和接种量对TF-1降解CB的影响,结果发现,该菌株适宜生长的温度范围为20~35℃,最适温度为30℃;适宜生长pH值为5~9,最适pH值为7;最适接种量为5%.与现有菌株比较发现TF-1的温度和pH值适用范围更广,降解能力更强,污染物耐受浓度更高,既能同化又能共代谢降解CB,在贫营养和富营养污染场地中应用潜力更大.本研究可为原位CB污染场地修复提供有效的生物资源.  相似文献   

10.
Biodegradation of methyl parathion by Acinetobacter radioresistens USTB-04   总被引:2,自引:0,他引:2  
Biodegradation of methyl parathion (MP),a widely used organophosphorus pesticide,was investigated using a newly isolated bacterium strain Acinetobacter radioresistens USTB-04.MP at an initial concentration of 1200 mg/L could be totally biodegraded by A.radioresistens USTB-04 as the sole carbon source less than 4 d in the presence of phosphate and urea as phosphorus and nitrogen sources,respectively.Biodegradation of MP was also achieved using cell-free extract of A.radioresistens USTB-04.MP at an initial concentration of 130 mg/L was completely biodegraded in 2 h in the presence of cell-free extract with a protein concentration of 148.0 mg/L,which was increased with the increase of pH from 5.0 to 8.0.Contrary to published reports,no intermediate or final degradation metabolites of MP could be observed.Thus we suggest that the cleavage of C--C bond on the benzene ring other than P-O bond may be the biodegradation pathway of MP by A.radioresistens USTB-04.  相似文献   

11.
活性炭固定耐冷菌对硝基苯的降解特性   总被引:4,自引:1,他引:4       下载免费PDF全文
研究了用颗粒活性炭固定耐冷菌(Pseudomonas putida)对硝基苯降解的强化作用.结果表明,细菌被活性炭固定后,对硝基苯的降解能力提高.降解浓度为200mg/L的硝基苯所用时间由固定前的34h左右缩短为29.5h.浓度为400mg/L的硝基苯,对细菌有强烈抑制作用,细菌无法生长,但固定化细菌可直接降解浓度为400mg/L的硝基苯,且降解浓度为600mg/L的硝基苯只需46h.固定化细菌可连续4次降解浓度为400mg/L以下的硝基苯,但随着次数增多,降解速率减慢.用SEM扫描200mg/L硝基苯降解末期的生物活性炭的结果表明,Pseudomonas putida菌是降解过程中唯一的细菌.  相似文献   

12.
土壤微生物对苯的降解研究   总被引:10,自引:2,他引:8  
使用大庆油田石油污染土壤中分离出优势菌种(革兰氏阴性G-、黄杆菌属Flavobacterium),在实验室可控条件下,研究了该菌种对苯的降解规律和特点.研究发现:微生物对苯浓度耐受范围8.8~17.6 mg·L-1,大于17.6mg·L-1时,对该菌株产生明显的抑制作用.降解体系在pH为6.5~7.0之间达到对苯的较高降解水平,最佳降解率出现在苯初始浓度7.04~13.2mg·L-1之间;苯在微生物细胞内外的浓度变化趋势呈现一致.-lgP(P为有机溶剂苯在细胞膜和水相中的分配系数的比值)的变化能够较好的表征苯在微生物细胞内外的降解趋势和毒性变化;当体系中苯的初始浓度大于8.8mg·L-1时,苯的降解率与P值变化趋于一致.  相似文献   

13.
苯并(a)芘及其代谢产物的连续降解研究   总被引:2,自引:1,他引:1  
臧淑艳  李培军  周启星  王新  林桂凤  王娟 《环境科学》2006,27(12):2531-2535
在以驯化过的芽孢杆菌(BA-07)降解BaP的过程中,鉴定出2个BaP的未开环代谢产物顺式-4,5-二氢-4,5-二醇-BaP(cis-BP4,5-dihydrodiol)和顺式-7,8-二氢-7,8-二醇-BaP(cis-BP7,8-dihydrodiol).由于该产物对微生物有一定毒性,所以难于进一步降解.为提高BaP降解的同时,降低cis-BP4,5-dihydrodiol和cis-BP7,8-dihydrodiol的累积,对2种降解方法(即单纯用BA07降解和运用高锰酸钾与BA-07耦合的方法降解)进行了比较,并且优化了连续降解的参数.结果表明,①对BaP及其代谢产物的连续降解,化学氧化与微生物耦合(高锰酸钾与BA-07)的降解效果明显好于单纯利用微生物(细菌BA-07)的降解;②在同一时间取样,cis-BP4,5-dihydrodiol的残留率均高于cis-BP7,8-dihydrodiol;③当BaP的浓度为40μg/mL,培养基的最佳pH为7.0,以琥珀酸钠为共代谢底物,可以显著提高BaP降解率,降低cis-BP 4,5-dihydrodiol和cis-BP7,8-dihydrodiol的累积.同时提出了化学氧化与微生物协同的方法可以有效促进环境中持久有机污染物的连续降解.  相似文献   

14.
假单胞菌N7的萘降解特性及其降解途径研究   总被引:1,自引:1,他引:0  
应用HPLC和UV分析技术,以萘为代表性多环芳烃污染物,研究了假单胞菌N7对水中萘的降解特性.结果表明,营养盐、微量元素的添加可使萘的降解率提高23.65%;溶解氧高于4.3 mg/L时萘降解率达95.66%并趋于稳定;随萘浓度增加降解率逐渐下降;在中性和弱碱性环境下,降解效果较好,萘降解率均在82.88%以上.在30℃、转速为165 r/min的摇床中处理pH7.5、萘浓度为100 mg/L的水样72 h,其最大降解率为95.66%.通过检测菌株N7处理含不同底物水样时其吸光度、pH和底物的变化情况,证实菌株N7亦能降解甲苯、二甲苯、苯酚、2,4-二硝基苯酚、苯甲酸、1-萘酚和水杨酸,并以其为唯一的碳源和能源生长繁殖,表明该菌株能适应环境中芳烃类物质种类的变化,具有很好的降解多样性.经UV-Vis和GC-MS分析各降解阶段的中间产物,初步确定了该菌对萘的降解途径:一条是邻苯二甲酸途径;另一条是水杨酸途径,萘先被氧化为1,2-二羟基萘,再开环生成水杨酸、邻苯二酚和2-羟基粘康酸半醛,最终进入三羧酸循环(TCA).  相似文献   

15.
锰过氧化物酶(MnP)对农药毒死蜱降解的初步研究   总被引:1,自引:0,他引:1  
以广泛使用的有机磷杀虫剂毒死蜱为研究对象,利用白腐菌P.sordida YK-624菌株所产锰过氧化物酶(MnP)对其进行生物降解的初步研究。首先比较确定了MnP降解毒死蜱所需要的降解体系,即对于毒死蜱的降解,需要在有机酸(丙二酸)存在的缓冲体系中进行,此体系不需要表面活性剂Tween 80,但必须含有Mn2+和葡萄糖氧化酶氧化葡萄糖产生的H2O2。随后对主要影响因素的试验结果表明,MnP降解毒死蜱较好的条件是在pH 4.5的丙二酸缓冲体系中含7.5 mmol/L MnSO4、2.5 mmol/L葡萄糖以及40 U葡萄糖氧化酶,温度30℃。此时,400 U/L的MnP可将30 mg/L的毒死蜱经3 d时间降解77.51%。同时,利用GC-MS对毒死蜱酶降解后的产物进行了初步分析,得到1种可能的酶解产物O,O,O’,O’-四乙基二硫代焦磷酸酯,不同于水解和细菌降解途径,值得进行进一步研究。  相似文献   

16.
There were six high diesel oil degrading bacteria strains isolated from the oil contaminated soil that collected from Linzi City. The strain YI was able to produce biosurfactant rhanmolipid when cultivated on diesel oil as carbon source. The critical micelle concentrations (CMC) of rhanmolipid in water and in the soil were measured respectively according to the correlation between the surface tension of the medium and the added rhamnolipid concentration. The results showed that the CMC of rhanmolipid in water was 65 mg/L, and was 185 mg/L in soil. The tests on diesel oil biodegradation were conducted with the addition of different concentrations of rhamnolipid in water and in soil respectively. When 0.01% rhanmolipid was added to water, the diesel oil degradation was enhanced. On the contrary, when the same concentration of rhanmolipid was added to the soil, the degradation of diesel oil was inhibited. The results suggested that the rhamnolipid could enhance the diesel oil biodegradation, indicating that the concentration of rhamnolipid was higher than the corresponding CMC in the medium. Kinetics parameters for the diesel oil biodegradation parameters such as biodegradation constant (λ), coefficient of correlation (r) and half life (t1/2) in both tests were numerically analyzed in this paper, indicating that the moderate concentration of rhamnolipid in the medium could not only enhance the extent of diesel oil biodegradation but also shorten the time for oil remediation.  相似文献   

17.
This research investigated the effects of ciprofloxacin(CIP)(0.5, 5, and 20 mg/L) on SBR systems under different carbon source conditions. Microbial community abundance and structure were determined by quantitative PCR and high-throughput sequencing, respectively.The biodegradation production of CIP and possible degradation mechanism were also studied. Results showed that CIP had adverse effects on the nutrient removal from wastewater.Compared with sodium acetate, glucose could be more effective...  相似文献   

18.
好氧颗粒污泥能有效降解氯苯胺类化合物,然而,其同步高效降解的性能和基质间作用模式尚不清楚。文章考察好氧颗粒污泥体系降解和矿化氯苯胺类化合物的性能,并深入探讨同步降解过程中,各基质间的促进或抑制效应。实验结果表明,该体系降解单一氯苯胺类化合物遵循合Luong动力学模型,邻氯苯胺(2-CA)、间氯苯胺(3-CA)、对氯苯胺(4-CA)最大降解浓度(Sm)分别为:678.1 mg/L,837.7 mg//L和819.8 mg/L;好氧颗粒污泥体系能够完全降解和矿化总浓度低于750 mg/L的氯苯胺混合物,各化合物间降解速率符合3-CA>4-CA>2-CA。当氯苯胺类化合物共存时,相互间存在竞争性抑制作用,其中,2-CA对3-CA和4-CA的抑制作用明显小于后两者混合的相互抑制作用;对于2-CA的生物降解,3-CA的抑制作用小于4-CA。  相似文献   

19.
为了提高石油污染土壤的生物降解效率,以甲基丙烯酸丁酯制备的树脂为载体吸附石油降解菌进行生物降解,利用GC-MS“指纹图谱”对TPH(total petroleum hydrocarbon,总石油烃)的降解程度及生物演化特性进行分析.结果表明:树脂吸附菌剂后TPH的半衰期为24.23 d,比单纯菌剂降解缩短7.28 d;其中正构烷烃的降解性能表明,高碳数高达92.03%,中、低碳数皆超过75%,高于TPH的56.67%,较好地解释了TPH降解率比单纯菌剂提高的内在原因;在演化特征方面,正构烷烃的生物演化参数——w(∑C21)/w(∑C22+)(C21-、C22+分别指C14~C21和C22~C39)、姥植比〔w(pr)/w(ph)〕和OEP(奇/偶碳数质量比)分别为0.643 3、0.486 5和1.111 9,均高于单纯菌剂演化程度.研究显示,树脂吸附菌剂后对较难降解的偶数碳正构烷烃和类异戊二烯烃类物质的氧化还原能力增强,从生物演化的角度有力地佐证了降解的优势所在.   相似文献   

20.
好氧反硝化菌Bacillus sp. H2脱氮特性研究   总被引:1,自引:1,他引:0  
文章从碳源、碳氮比、pH、温度及投菌浓度5个方面对好氧反硝化芽孢杆菌Bacillus sp.H2进行脱氮特性的研究.研究结果表明,以葡萄糖、乳糖作为碳源时,菌株Bacillus sp.H2的好氧反硝化效率要显著高于以乙醇、酒石酸钾钠、丁二酸钠、醋酸钠作为碳源时的效率,且葡萄糖略高于乳糖;当C/N≥6(质量比)时可进行完...  相似文献   

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