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1.
A bacterial strain BAP5 with a relatively high degradation ability of benzo[a]pyrene (BaP) was isolated from marine sediments of Xiamen Western Sea, China and identified as Ochrobactrum sp. according to 16S rRNA gene sequence as well as Biolog microbial identification system. Strain BAP5 could grow in mineral salt medium with 50 mg/L of BaP and degrade about 20% BaP after 30 d of incubation. Ochrobactrum sp. BAP5 was able to utilize other polycyclic aromatic hydrocarbons (PAHs) (such as phenanthrene, pyrene and fluoranthene) as the sole carbon source and energy source, suggesting its potential application in PAHs bioremediation. The profile of total soluble protein from Ochrobactrum sp. BAP5 was also investigated. Some over- and special-expressed proteins of strain BAP5 when incubated with the presence of BaP were detected by two-dimensional polyacrylamide gel electrophoresis, and found to be related with PAHs metabolism, DNA translation, and energy production based on peptide fingerprint analysis through matrix-assisted laser desorption/ionization-time of flight mass spectrometry.  相似文献   

2.
A halotolerant bacterial strain VA1 isolated from marine environment was studied for its ability to utilize polycylic aromatic hydrocarbons (PAHs) under saline condition. Anthracene and pyrene were used as representatives for the utilization of PAH by the bacterial strain. Glucose and sodium citrate were used as additional carbon sources to enhance the PAH utilization. The strain VA1 was able to utilize anthracene (73%) and pyrene (66%) without any additional substrate. In the presence of additional carbon sources (glucose/sodium citrate) the utilization of PAH was faster. PAH was utilized faster by VA1 in the presence of glucose than sodium citrate. The stain utilized 87% and 83% of anthracene and pyrene with glucose as carbon source and with sodium citrate the strain utilized 81% and 76% respectively in 4 days. Urea as an alternative source of nitrogen also enhanced the utilization of PAHs (anthracene and pyrene) by the bacterial strain up to 88% and 84% in 4 days. Sodium nitrate as nitrogen source was not able to enhance the PAH utilization rate. Phenotypic and phlyogenetic analysis proved that the PAHs utilizing halotolerant strain VA1 belongs to Ochrobactrum sp.  相似文献   

3.
采用恒能量同步荧光法研究了龙岩市区不同功能区冬、春季大气飘尘中多环芳烃(PAHs)的污染状况和污染来源,并对不同功能区的PAHs进行了污染评价。结果表明,龙岩市区各功能区大气飘尘中PAHs总量在278.95~718.13ng/m3,且冬季高于春季。根据荧蒽与芘质量浓度比值,可判断冬春季市区内PAHs主要来源于汽车尾气和燃煤污染。采用苯并[a]芘(BaP)及苯并[a]芘等效致癌浓度(BaPE)来评价3个功能区大气飘尘中PAHs的污染状况,冬季3个功能区苯并[a]芘浓度均超过国家标准(BaP,10ng/m3),且PAHs基本上均严重超标。  相似文献   

4.
Polycyclic aromatic hydrocarbon in urban soil from Beijing, China   总被引:11,自引:2,他引:11  
Polycyclic aromatic hydrocarbons (EPA-PAHs) in the urban surface soils from Beijing were determined using gas chromatography and mass spectrometry (GC-MS). It is significantly complementary for understanding the PAHs pollution in soil of integrated Beijing city on the basis of the information known in the outskirts. The total concentration of 16 EPA-PAH was from 0.467 to 5.470 μg/g and was described by the contour map. Compound profiles presented that the 4-, 5- and 6-ring PAHs were major compositions. The correlation analysis showed that PAHs have the similar source in the most sampling sites and BaP might be considered as the indicator of PAHs. Characteristic ratios of anthracene (An)/(An+ phenanthrene (Phe)), fluoranthene (Flu)/(Flu/ pyrene (Pyr)) and benzo[a]pyrene (BaP)/laenzo[g,h,i]perylene (BghiP) indicated that the PAHs pollutants probably mainly originated from the coal combustion and it was not negligible from vehicular emission. The level of PAHs in our study area was compared with other studies.  相似文献   

5.
南京大气气溶胶中多环芳烃源识别及污染评价   总被引:15,自引:0,他引:15       下载免费PDF全文
采用GC、GC-MS等方法,研究了南京市不同功能区夏、冬季大气气溶胶中多环芳烃(PAHs)的污染状况和污染来源,并对不同功能区的PAHs进行了污染评价.结果表明,南京市各功能区气溶胶中PAHs总量在19.73~497.40ng/m3之间,且冬季高于夏季,细颗粒中含量高于粗颗粒.通过一些特征标志PAHs的比值,可判断夏季各功能区的PAHs污染主要来自于汽车尾气(主要是柴油型)的排放,冬季则为汽车尾气和燃煤污染.采用苯并(a)芘(BaP)及苯并(a)芘等效致癌浓度(BaPE)来评价5个功能区气溶胶中PAHs的污染状况,夏季除交通干道超过国家标准(BaP,10ng/m3),居民区细颗粒中略超过居民区标准(BaP,5ng/m3)外,空气质量良好.而冬季各功能区PAHs基本上均严重超标.  相似文献   

6.
室内空气中多环芳烃的污染特征、来源及影响因素分析   总被引:9,自引:1,他引:9  
采集并测定了杭州市8户家庭中具有代表性的多环芳烃,测得居民室内空气中12种PAHs平均浓度为1.91-29.08μg/m^3,BaP浓度为5-19ng/m^3,污染十分严重,受季节及通风条件等的影响,室内空气中PAHs浓度变化较大,居民室内空气中萘主要来源于卫生球的挥发,其余PAHs主要来自燃烧,而BaP主要来自室内吸烟。  相似文献   

7.
龙岩大气颗粒物中多环芳烃源识别及污染评价   总被引:2,自引:0,他引:2  
采用恒能量同步荧光法,研究了龙岩市区不同功能区冬、春季大气颗粒物中多环芳烃(PAHs)的污染状况和污染来源,并对不同功能区的PAHs含量进行了评价. 结果表明:龙岩市区各功能区大气颗粒物中ρ(PAHs)为278.95~ 718.25 ng/m3,且冬季高于春季. 根据PAHs中一些特征标志物的比值,可判断冬、春季市区内PAHs主要来源于汽车尾气和燃煤污染. 采用苯并[a]芘(BaP)及苯并[a]芘等效致癌浓度(BaPE)来评价3个功能区大气颗粒物中PAHs的污染状况显示,冬季3个功能区苯并[a]芘含量(ρ(BaP))均超过国家标准(10 ng/m3),且ρ(PAHs)均严重超标.   相似文献   

8.
3株细菌对土壤中芘和苯并芘的降解及其动力学   总被引:8,自引:0,他引:8  
苏丹  李培军  王鑫  许华夏 《环境科学》2007,28(4):913-917
研究了3株多环芳烃(PAHs)高效降解菌对土壤中芘和苯并芘(BaP)的降解动态,用Michaelis-Menton和Monod动力学模型对结果进行拟合.结果表明,3株细菌对芘和BaP的降解率有显著性差异.芽孢杆菌(Bacillus sp.SB02)42 d对芘和BaP的降解率均最高.当土壤中芘和BaP的初始浓度为50 mg/kg时,芽孢杆菌(Bacillus sp. SB02)、动胶杆菌(Zoogloea sp. SB09)、黄杆菌(Flavobacterium sp. SB10)42 d对芘的降解率分别为42.69%、32.88%、25.07%, 对BaP的降解率分别为33.04%、25.39%、22.02%.3株细菌对芘和BaP的降解速率也存在显著性差异.芽孢杆菌(Bacillus sp., SB02)最快,1周可降解20.88%芘和12.6%的BaP,动胶杆菌(Zoogloea sp.SB09)次之,黄杆菌(Flavobacterium sp.SB10)降解速率最慢.  相似文献   

9.
IntroductionPolycyclicaromatichydrocarbons (PAHs)arewidespreadenvironmentalpollutantsintheatmosphere.Theyaregeneratedinthecombustion .Themajorsourcesidentifiedincludefossilfuels,vehiculartraffic,industrialprocesses,smokinganddomesticheating (Peltonen ,1995) .T…  相似文献   

10.
李强  赵越  田雪  熊思  卢晓维  林爱军 《环境科学研究》2015,28(12):1917-1922
为降低PAHs对微生物的毒性,促进PAHs的降解,采用TPPB技术(two-phase patitioning bioreactor,两相分配生物反应器)对芘进行降解,研究了不同有机相(硅油、十二烷、十一醇、癸烷、十六烷、十八烷)、ρ(芘)、φ(有机相)和扰动速率对芘降解的影响. 结果表明:当φ(有机相)为10.0%、ρ(芘)为100~1 000 mg/L时,T0(纯水相)及T1(水-硅油)、T2(水-癸烷)、T3(水-十二烷)、T4(水-十一醇)、T5(水-十六烷)和T6(水-十八烷)体系中芘的降解率分别为92.5%~13.9%、69.3%~20.1%、79.6%~23.3%、81.9%~26.9%、86.7%~28.1%、87.7%~34.1%、89.6%~27.4%. ρ(芘)较低时,TPPB抑制了芘的降解;ρ(芘)较高时,TPPB则能促进芘的降解. 6种有机相中,十六烷对芘降解的促进效果最优. 最优φ(有机相)的确定和ρ(芘)有关,ρ(芘)为200 mg/L时,最优φ(十八烷)、φ(十六烷)、φ(十一醇)分别为5.0%、2.5%和5.0%;ρ(芘)为1 000 mg/L时,其均为20.0%. 液体扰动速率的提高能促进芘的降解,液体扰动速率为50~200 r/min时,T6和T5体系中的芘的降解率分别为50.1%~75.6%和54.1%~79.1%. 研究显示,TPPB技术是一种潜在治理高浓度PAHs污染的有效途径,TPPB的优化是多种影响因素综合作用的结果.   相似文献   

11.
Two indigenous microorganisms, Bacillus sp. SB02 and Mucor sp. SF06, capable of degrading polycyclic aromatic hydrocarbons (PAHs) were co-immobilized on vermiculite by physical adsorption and used to degrade benzo[a] pyrene (BaP). The characteristics of BaP degradation by both free and co-immobilized microorganism were then investigated and compared. The removal rate using the immobilized bacterial-fungal mixed consortium was higher than that of the freely mobile mixed consortium. 95.3% of BaP was degraded using the co-immobilized system within 42 d, which was remarkably higher than the removal rate of that by the free strains. The optimal amount of inoculated co-immobilized system for BaP degradation was 2%. The immobilized bacterial-fungal mixed consortium also showed better water stability than the free strains. Kinetics of BaP biodegradation by co-immobilized SF06 and SB02 were also studied. The results demonstrated that BaP degradation could be well described by a zero-order reaction rate equation when the initial BaP concentration was in the range of 10--200 mg/kg. The scanning electronic microscope (SEM) analysis showed that the co-immobilized microstructure was suitable for the growth of SF06 and SB02. The mass transmission process of co-immobilized system in soil is discussed. The results demonstrate the potential for employing the bacterial-fungal mixed consortium, co-immobilized on vermiculite, for in situ bioremediation of BaP.  相似文献   

12.
降解芘的分枝杆菌M11的分离鉴定和降解特性   总被引:5,自引:1,他引:4  
从多环芳烃污染的土壤中分离到1株能高效降解四环芳烃芘的放线菌M11,经形态观察、生理生化和16S rDNA鉴定,属于分枝杆菌属(Mycobacterium sp.).菌株M11能以菲、蒽、荧蒽和芘为唯一碳源生长,在含芘50、100和200 mg/L的无机盐液体培养基中培养16 d降解率分别达到76.9%、91.8%和79.23%.菌株M11对芘的降解具有较广泛的pH范围,在芘浓度100 mg/L,pH为5~9的液体条件下,均可生长.根据已报道的芘降解菌的双加氧酶同源序列设计引物,PCR扩增出编码双加氧酶大亚基和小亚基的基因片段,序列分析表明与已知降解芘的分枝杆菌的双加氧酶基因具有高度同源性.  相似文献   

13.
针对芘(Pyr)和苯并[a]芘(BaP),以京津冀地区2014年为例分别构建CMAQ和BETR模型系统开展数值模拟,对比评估两种模型对PAHs大气迁移转化的模拟效果,并利用XGBoost模型识别CMAQ中影响PAHs环境行为的关键大气物理化学过程和参数.结果表明,BETR和CMAQ模拟年均值与实测年均值比值基本在1/2~2之间,且CMAQ模拟值和实测值季节变化趋势相同,验证了两类模型结果的可靠性.同时,将CMAQ模型9 km网格模拟浓度平均至27 km网格并和BETR模拟浓度的对比结果显示,BETR模型Pyr和BaP模拟浓度平均分别约为CMAQ年均模拟浓度的1.59倍和1.38倍,两类模型在年均浓度水平和空间分布方面具有较好的可比性.基于XGBoost模型的SHAP变量重要性分析表明,边界层高是对Pyr和BaP迁移转化影响最大的气象因素,其重要性在所有因素中占比高达22%~35%,在部分城市和污染物中对浓度变化的贡献甚至超过排放量,且和两种PAHs浓度呈显著负相关;PAHs浓度水平其次受风速影响最大,且风速和PAHs浓度呈负相关关系;风向对不同城市污染物浓度的影响则各不相同.  相似文献   

14.
研究了6株真菌对土壤中芘和苯并芘(BaP)的降解动态,用Michaelis-Menton和Monod动力学模型对结果进行拟合.结果表明,6株真菌对芘和BaP的降解速率有显著性差异,降解率相差不大.产黄青霉(Penicillium chrysogenum,SF04),在42d内对BaP的降解能力最强,可达71.31%,对芘的降解能力相对最弱.镰刀菌(Fusariumsp.,SF11),黑曲霉(Aspergillusniger,SF05),木霉(Trichodermasp.,SF02)和毛霉(Mucorsp.,SF06)42d对芘的降解率分别为86.22%,86.18%,85.41%,85.04%,对BaP的降解率分别为71.11%,69.44%,69.05%,69.72%.木霉(Trichodermasp.,SF02)和毛霉(Mucorsp.,SF06)对芘和BaP的降解速率均很快.  相似文献   

15.
观察两种致癌性多环芳烃化合物二甲基苯蒽(DMBA)和苯并(a)芘(BaP)对小鼠肝脏脂质过氧化产物和金属硫蛋白含量的影响。选用雄性C57BL/OLA129小鼠,观察DMBA和BaP各50mg/kg一次腹腔注射染毒后24、48、72和144h后的动物肝脏重量、金属硫蛋白(MT)含量和脂质过氧化程度的变化。MT测定采用镉-血红蛋白亲和分析法;脂质过氧化指标为硫代巴比妥酸测定丙二醛法。结果表明,DMBA和BaP均能引起小鼠肝脏重量增加、MT含量增加和MDA含量增加。随着DMBA和BaP染毒后的时间延长小鼠肝脏的重量不断增加,呈现时间效应关系。小鼠肝脏MT的含量在染毒后24和48h后明显增加1倍。肝脏MDA的含量增加在染毒后24h后达到高峰。本研究观察到DMBA和Bap可以MT增加。MT的增加与MDA的增加呈现一定平行的关。提示MT诱导可能与多环芳烃化合物所致的氧化损伤有关。  相似文献   

16.
2007年12月~2008年1月于我国云南省曲靖燃煤区开展人群多环芳烃(PAHs)的暴露评价研究.采用气相色谱/质谱联用(GC/MS)测定了环境样品中16种PAHs的浓度,对暴露的途径及各种PAHs的来源比例进行了分析,以苯并(a)芘(BaP)致癌当量计算了人群日暴露总量.结果表明,人群日饮食暴露量为0.20μg/d,且与WHO报道的水平相当.日空气暴露量为5.26μg/d,占PAHs日暴露总量的96%,表明空气是当地PAHs暴露的主要来源.用BaP当量剂量评价致癌风险时,BaP从数量比3.08%上升至毒性当量比49.6%,低环PAHs毒性当量所占比例明显下降.当地人群BaP平均日暴露量为5.46μg/d,超过了标准限值3μg/d.PAHs暴露给当地环境和人群健康带来了长期危害.  相似文献   

17.
耐冷腐殖酸吸附态PAHs降解菌筛选及其降解特性   总被引:3,自引:0,他引:3  
苏丹  巩春娟  王鑫  侯伟 《环境科学学报》2017,37(10):3943-3950
为了寻找自然环境中高效PAHs降解菌,并应用于北方寒冷地区PAHs污染土壤修复,从沈抚灌渠冻融土壤中筛选出一株以腐殖酸(HA)吸附态PAHs为碳源和能源且生长良好的耐冷菌株,结合其生理生化特征和16S rDNA序列比对,鉴定此菌株为假单胞菌(Pseudomonas sp.SDR4),并研究了其对冻融土壤中HA吸附态PAHs的降解性能.结果表明:Pseudomonas sp.SDR4对冻融土壤中Phe、Pyr和Ba P均具有一定的降解能力,42 d降解率分别为73.88%、64.88%和49.39%.加入HA能够提高其对Phe、Pyr和Ba P的降解率,42 d降解率分别提高15.9%、13.8%和8.6%;在降解初期加入HA可显著提高Phe、Pyr和Ba P的降解速率,第1周,降解速率分别提高37.8%、28.4%和39.1%,但在后期促进效果减弱.若要在寒冷地区选择Pseudomonas sp.SDR4作为固定化菌株,可添加HA提高其修复效果.本研究为北方寒冷地区PAHs污染土壤修复提供了新的固定化菌种.  相似文献   

18.
几种芳香化合物对苯并芘在泥浆反应器中降解的影响   总被引:6,自引:0,他引:6  
苯并芘在土壤中难于被生物降解,其降解方式通常以共代谢方式进行.本研究考查了几种多环芳烃及2种单环芳香化合物对苯并芘降解的影响.先把几种芳香化合物投入到供试无污染土壤中进行3d的预培养,然后向土壤中加入苯并芘并使土壤在三角瓶内形成泥浆系统,放在摇床上培养.42d的实验表明,用菲对土壤进行预处Ζ理消除了苯并芘的降解滞后期,并提高了苯并芘的降解率.蒽、芘未能改变苯并芘的降解模式,而苯并蒽则相对抑制了苯并芘的降解.水杨酸和邻苯二甲酸同样消除了苯并芘降解的滞后阶段,且促进了苯并芘的降解,但质量差别未对苯并芘的降解产生影响.  相似文献   

19.
三种农作物秸秆燃烧颗粒态多环芳烃排放特征   总被引:3,自引:0,他引:3  
收集3种农作物秸秆玉米,水稻和小麦露天燃烧排放的颗粒物样品,并利用气相色谱-质谱(GC-MS)对样品中的34种多环芳烃(PAHs)进行分析,研究颗粒态PAHs的排放因子及可用于源解析的诊断参数.结果表明,3种秸秆燃烧总PAHs的排放因子为644.18~1798.13μg/kg;其中4环PAHs在秸秆燃烧样品中含量最高,约占38.8%~58.8%,6环PAHs所占比例相对较小,约占5.72%~15.17%.PAHs中部分单体具有相对较强致癌性,对环境和人体健康的影响不可忽视.首次检测分子量为300的高分子多环芳烃二苯并[a,e]荧蒽.在玉米、水稻和小麦秸秆燃烧排放颗粒物中的排放因子分别为6.70,2.77和2.92μg/kg.此外,研究发现BaP/BghiP, Phe/Phe+Ant和Flu/(Flu + Pyr)比值可以作为较好的区分秸秆燃烧与其他来源的诊断参数.  相似文献   

20.
本研究于2018年10月4日至2019年1月30日在洛阳市高新和林校2个采样点位同步连续采集秋冬季PM2.5样品,使用气相色谱-质谱联用仪(GC-MS)对PM2.5中优先控制的16种多环芳烃(polycyclic aromatic hydrocarbons,PAHs)进行了分析测定.对优良天和污染天PM2.5中16种PAHs的质量浓度和组成分布特征进行了研究,利用特征比值法和主成分分析法对其主要来源进行了定性解析,并使用苯并[a]芘(BaP)毒性当量法和增量终生致癌风险模型评估了对人体的健康风险.结果表明在采样期内,高新和林校两个采样点的PM2.5中16种PAHs质量浓度变化范围分别为24.33~90.26 ng·m-3和23.81~76.99 ng·m-3.随着PM2.5污染程度的加重,PAHs浓度明显升高(污染天为优良天的1.3倍),不同环数PAHs贡献顺序均为:4环(43%~48%) > 5~6环(32%~35%) > 2~3环(20%~22%).大气中PAHs主要来自于燃烧源,包括燃煤、生物质燃烧以及机动车排放等,其中燃煤对PAHs污染贡献最大(优良天:49.28%~56.38%,污染天:49.44%~60.60%).BaP毒性当量浓度表明,污染天存在更高的人体健康风险;增量终生致癌风险结果表明,污染天致癌风险高于优良天,成人呼吸暴露风险高于儿童,在研究区域内不同污染水平下健康风险属于可接受水平(<1×10-6).  相似文献   

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