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1.
小麦根系菲与磷吸收及转运的相互作用   总被引:1,自引:0,他引:1  
作物根系对多环芳烃(PAHs)与磷吸收及转运之间的相互作用研究对农产品的安全生产和PAHs污染环境植物修复的强化具有重要意义。为此,本文以菲为PAHs的代表,采用水培试验研究了不同磷、菲水平下小麦根系菲、磷吸收及其转运的效果,旨在揭示植物根系吸收PAHs与磷素的相互作用。结果表明,在0~1 200μmol·L~(-1)磷浓度范围内,小麦根系、茎叶菲含量在低磷浓度(10μmol·L~(-1))时最高,分别为36.87 mg·kg~(-1)和2.07 mg·kg~(-1);磷含量总体呈现随磷处理浓度的升高而增大的趋势;成对数据t-检验显示无论加菲与否,根系、茎叶磷含量无显著性差异(P0.05)。磷可促进菲从根部向地上部转运,而菲对磷转运没有显著性影响。在低磷浓度下(10μmol·L~(-1)),随着菲浓度的升高,小麦根系、茎叶菲含量呈现显著升高趋势(P0.05)。磷、菲共存处理介质pH升高幅度大于单一处理。  相似文献   

2.
刘其友  卢磊  赵东风  赵朝成 《生态环境》2010,19(11):2652-2656
以菲为研究对象,从克拉玛依稠油污染土壤中筛选到1株对菲具有较好降解效果的菌株JZ3-21。通过形态观察、生理生化指标及16S rDNA序列分析对该菌株进行了鉴定。该株菌的16S rDNA序列与Pseudomonas属的相似性达99%,结合分离菌株的形态、生理生化特征和16S rDNA基因序列的分析结果,初步鉴定该菌株为恶臭假单胞菌(Pseudomonas putida.)。对其降解条件进行了研究,结果表明:在40℃,pH 8.0,接种量为1.5%的条件下,菌株对初始质量浓度为100 mg.L-1的菲在64 h内的降解率高达94.2%。该菌对高质量浓度菲有较好的耐受性,其最高耐受质量浓度可达2 000 mg.L-1。  相似文献   

3.
In this work a two-stage process combining soil electrokinetic remediation and liquid electrochemical oxidation for the remediation of polluted soil with organic compounds has been developed and evaluated using phenanthrene-spiked kaolinite. Application of an unenhanced electrokinetic process resulted in negligible removal of phenanthrene from the kaolinite sample. Addition of co-solvents and electrolyte to the processing fluid used in the electrode chambers enhanced phenanthrene desorption from the kaolinite matrix and favoured electro-osmotic flow. Near-complete removal of phenanthrene was achieved using Na2SO4 and ethanol in the processing fluid. Phenanthrene was transported towards the cathode chamber where it was collected. The cathodic solution containing the pollutant was treated by electrochemical oxidation; complete degradation of phenanthrene occurred after 9 h using Na2SO4 as electrolyte.  相似文献   

4.
ABSTRACT

Phenanthrene is a toxic and mutagenic pollutant that can cause severe environmental and human health issues. The bioremediation of these polyaromatic hydrocarbons (PAHs) is possible with a biosurfactant by enhancing hydrophobicity. In this study, the production of a biosurfactant by Bacillus pumilus 1529 and its effects on the phenanthrene biodegradation pathway were examined. Biosurfactant production was determined using hemolytic activity, emulsification index, and surface tension. For phenanthrene metabolite detection, samples at 0, 7, 14, and 21 incubation days were analysed by gas chromatography-mass (GC-mass) spectrometry. The results showed that Bacillus pumilus 1529 can reduce surface tension to 22.83?±?1.1?mN?m?1. Furthermore, the GC-mass spectrometry analysis showed that 1-hydroxy-2-naphthoic acid, benzaldehyde, o-phthalic acid, and phenylacetic acid were notable phenanthrene metabolites produced during phenanthrene biodegradation. Biodegraded phenanthrene and its metabolites have a less toxic effect on the germination of safflower seeds than non-biodegraded phenanthrene. The IC50 of phenanthrene on seed germination after biodegradation was increased to approximately 113?mg?L?1. In general, biodegradation aided by biosurfactant producing bacteria contributed to turning the toxic phenanthrene into less harmful metabolites with lower phytotoxicity effects, indicating that its application in the bioremediation of PAHs is promising.  相似文献   

5.
Phenanthrene is a persistent organic pollutant frequently found in aquatic environments. This paper aimed to assess the acute effects (96 h) of phenanthrene on Chinese mitten crab (Eriocheir sinensis), a key economic aquatic animal in China. An acute semi-static toxic test was carried out to expose E. sinensis to water-borne phenanthrene with different concentrations (1.00, 1.63, 2.65, 4.31 and 7.00 mg L-1) for 96 hours. Mortality and toxic reactions were used as effect criteria. Furthermore, the oxidative stress relative biomarkers (activities of CAT, SOD, GST and content of MDA in hepatopancreas and gills) were measured for E. sinensis exposed to four lower concentrations of phenanthrene (1.00, 1.63, 2.65 and 4.31 mg L-1). The median lethal concentration (LC50) for 24,48 and 96 hour phenanthrene exposure was 16.7, 2.96 and 2.14 mg L-1, respectively; and the safe concentration (SC) of phenanthrene on E. sinensis was 0.214 mg L-1. Phenanthrene significantly increased the activity of CAT in hepatopancreas and gills, and showed a significant dose-effect relationship in hepatopancreas. Bell-shape response patterns were found in the activities of GST and SOD in the hepatopancreas and gills, with significant increases of hepatopancreas GST at 1.00 and 1.63 mg L-1 (P < 0.05), and a significant decrease at 4.31mg L-1 (P < 0.05). Phenanthrene significantly increased the contents of gills MDA at 2.65mg L-1 and hepatopancreas MDA at all four concentrations of phenanthrene. Phenanthrene, especially of high concentration, is highly toxic on E. sinensis, causing lipid peroxidative damage and even acute mortality. Meanwhile, E. sinensis can adapt to lower concentrations of phenanthrene by increasing the activities of SOD, CAT and GST. Because the CAT and GST activities of the gill and hepatopancreas are very sensitive to the presence of high-concentration phenanthrene, they can be used as highly sensitive biomarkers for phenanthrene polluted water.  相似文献   

6.
菲在土壤中的微生物降解研究   总被引:1,自引:0,他引:1  
研究了不同条件土壤中多环芳烃菲的降解动态。结果表明:温度和底物浓度对土壤中菲的降解有较大影响,未灭菌土壤中菲的降解半衰期为5.1d;从污染土壤中分离到一株高效降解菲的菌株,经16S rDNA鉴定为产碱杆菌属(Alcaligenes bacterium LBM.),同源性高达99%;随着优势菌接种量增加,基础培养基中菲降解速率逐渐加快;Fe3+、Co2+和Cu2+对优势菌降解菲能力均有不同程度影响,其中以Fe3+影响最明显。  相似文献   

7.
Background Due to high safety measures in production, transport and storage of fuel oil it rarely occurs, that fuel oil will be released in the environment. One exception of this experience was the fuel oil releases of private fuel oil tanks during the “century flood” 2002 in Germany. By order of IWO (Institut für wirtschaftliche Oelheizung e.?V.), the authors investigated the environmental behaviour of fuel oil after flood incidents. Aim Due to the fast spreading of the fuel oil on water surfaces and the contamination of huge areas one expects large environmental harm. For appraisal the behaviour of fuel oil in water and soil must be studied in detail as well as the effect on high and low developed animals and plants, on water organisms and on the flora and fauna of soil. From the valuation of the environmental harm official measures and measures of precaution and safety by manufacturer and user of private fuel oil installations can be derived. Main features For considering the various aspects the authors studied the extensive analyses of the special measuring programme of Saxony-Anhalt, used interviews of concerned persons (private persons and officials), aerial photos, extensive study of literature including eco-toxicological investigations, experiences of more than 70-years applications of fuel oil in plant protection and practical experiences at large field redevelopment of oil damages following averages and accidents. The authors valuated on the base of results of analyses and on own calculations. Results The release of fuel oil in the air is no particular problem because about 40?% of the oil fast evaporate and will be decomposed to carbon dioxide and water. In addition to the evaporation a characteristic behaviour is fast spreading of the fuel oil on the water surface to very thin layers. For a typical coloured oil layer e.?g. one cubic meter of oil is spread on a water surface of about 3?km2, this corresponds to 3?ml/m2 surface and contaminates the soil after drying up with about 3?µg/kg soil some orders less than the natural content of hydrocarbons in soil. Because of the absorption capacity of soil and the microbial decomposition by everywhere existing hydrocarbons decomposing micro-organisms the oil infiltrates only a few centimetre and will be decomposed in a few months, so that ground water detriments not arise practically. By measurements a few months after fuel oil release in the flood 2002 oil components in the soil could not be detected. Discussion Acute injuries of micro-flora and -fauna in soil and water by fuel oil cannot be excluded from the first. Thus the limiting values of injuries for some water organisms are below 1?mg/l. According to the special measuring programme at the flood 2002 in Saxony-Anhalt however the measured values were mostly wide below of this limit. In detail the spreading and evaporation of fuel oil on water surfaces, the propagation and decomposition of fuel oil in soil will be described. A quantitative valuation of fuel oil distribution in a real flood incident will be given. Conclusions Particular measures of redevelopment of soil for fuel oil release after flood incidents are not necessary normally. Even at the redevelopment after transport damages or at devastated sites with essential higher oil contaminations of soil in comparison to fuel oil release after flood incidents high decomposition rates are obtained by normal soil improving measures supporting the natural micro-organisms in reducing the hydrocarbon concentration for 70–90?% after a few months. Perspectives With the described results a realistic valuation of the environmental harm of fuel oil release after flood incidents could be given. From this qualified measures can be derived for official decisions and precautionary and reliable activities at fuel oil installations of flood endangered areas.  相似文献   

8.
多环芳烃在全土及其碱提残余物上的吸附行为   总被引:4,自引:0,他引:4  
以菲和芘为代表性化合物,采用8种有机质含量不同的天然全土样品及其碱提残余物进行吸附实验,并利用不同吸附模型进行数据拟合,藉以探讨有机质含量对土壤吸附行为的影响.结果表明,Freundlich吸附模型的非线性指数n都小于1,显示全土和碱提残余物在多环芳烃的吸附过程中表现出非线性特征.菲和芘的吸附行为随土壤有机质含量不同而变化,碱提残余物的吸附能力强于全土,两者吸附行为的差异主要归因于土壤有机质含量和性状的区别.  相似文献   

9.
混合表面活性剂对菲和芘的增溶作用   总被引:10,自引:0,他引:10  
余海粟  朱利中 《环境化学》2004,23(5):485-489
比较了非离子表面活性剂 (Tween2 0 ,Tween40 ,Tween60 ,Tween80 ,Brij35和Brij5 8)与SDBS混合表面活性剂对菲和芘的增溶作用 .结果表明 ,在临界胶束浓度 (CMC)以上 ,表面活性剂对菲和芘有显著的增溶作用 ,菲的增溶顺序为 :Tween40 >Tween60 >Tween2 0 >Tween80 >Brij5 8>Brij35 ;芘的增溶顺序为 :Tween60 >Tween80 >Tween40 >Brij5 8>Tween2 0 >Brij35 .阴 非离子混合表面活性剂溶液的CMC值降低 ,胶束 水中溶质的分配系数Kmc增大 ,由此对菲和芘产生协同增溶作用 ,其顺序均为 :SDBS Tween60 >SDBS Tween80 >SDBS Tween40 >SDBS Brij5 8>SDBS Tween2 0 >SDBS Brij35 ,协同增溶程度在 1 1 7%— 65 8%之间 .  相似文献   

10.
北京地区表层土壤中多环芳烃的分布特征及污染源分析   总被引:6,自引:0,他引:6  
根据北京地区不同环境功能区62个样品的分析结果,讨论了研究区表层土壤中多环芳烃的分布特征及污染源类型。结果表明:(1)研究区表层土壤中检测到的多环芳烃主要包括萘、苊、菲、惹烯、三芴、荧蒽、芘、、苯并蒽、苯并[b]荧蒽、苯并[k]荧蒽、苯并[e]芘、苯并[a]芘、苝、二苯并[a,h]蒽、茚并[1,2,3–cd]芘、苯并[g,h,i]苝及其同系物;(2)不同环境功能区表层土壤中多环芳烃的组成及质量分数均存在一定的差别,16种优先控制的多环芳烃质量分数为175.1~10 344 ng.g-1,其中城市中心区表层土壤中多环芳烃的质量分数最高,交通干线附近、工矿企业附近表层土壤中PAHs的质量分数较高,林地、果园和农田表层土壤中PAHs的质量分数较低;(3)表层土壤中PAHs既有来源于石油源,也有来源于化石燃料燃烧产物的,但不同功能区二者贡献存在差别,其中农业用地(林地、果园、农田)中PAHs主要来源于石油源(或部分来源于土壤母岩中的有机质),城区、交通干线附近及工矿企业附近表层土壤中PAHs污染源以化石燃料燃烧产物输入为主。  相似文献   

11.
The influence of rainfall, air temperature and soil moisture on the vertical mobility in the soil of fuel oil hydrocarbons (HC) was investigated in a field experiment. A controlled spreading of fuel oil (nC10‐nC25) was performed at a rate of 5 L HCm‐2 on an agricultural soil in summer and in winter. Concentration, chemical composition of HC and soil moisture were regularly determined at different soil depths between 0 and 140 cm, 1 h, 3, 8and 15 days (d) after the spreading of oil. Sorption of hydrocarbons onto the organo‐mineral matrix of the soil was studied in laboratory experiments. The results showed that in summer, with an air temperature of 24°C and without water leaching in the soil profile, 65% of the initial HC remained trapped in the 0–140 cm soil layer, about 20% of the HC volatilized and around 15% migrated deeper. A vertical selective migration of the lightest (nC10‐nC15) HC (naphthas) was shown lSd after the spreading of fuel oil. Naphthas progressively reached the 120–140 cm soil layers whereas the heavy fractions of oil (nC17‐nC25) migrated and concentrated in the 0–60 cm soil layers. In winter, when soil was regularly watered by rainfalls and at low air temperatures, only 47% of the initial HC remained in the 0–140 cm profile after 15 d. A fast vertical infiltration of naphthas occurred within the first 3 d. After 15 d, all HC were detected in the same relative amounts as in the initial oil in the whole profile. Volatilization was negligible in winter and an increase in the migration of total oil at depth in the soil profile was shown. As inferred from the laboratory experiments, the high soil moisture led to the decrease in HC sorption on the organo‐mineral matter of the soil.  相似文献   

12.
采用室内半静态双箱动力学模型实验,研究了菲和镉单一及复合污染条件下在毛蚶(Anadara subcrenata)体内的生物富集,通过对富集与释放过程中毛蚶体内菲和Cd的富集量进行非线性曲线拟合,获得了菲和Cd单一及复合污染条件下在毛蚶体内的吸收速率常数k1、释放速率常数k2、生物富集因子BCF、生物半衰期B1/2和平衡状态下最大富集量CA max等动力学参数。实验结果表明,菲和Cd在实验前期富集速率较高,8 d以后富集速率减缓,释放阶段与富集阶段相似。毛蚶对菲的BCF值为37.80,远大于Cd的BCF值13.12,且生物半衰期时间更长,菲更容易在生物体内富集。菲和Cd联合暴露条件下,在毛蚶体内的CA max和BCF值均大于单一作用,说明二者同时暴露时,毛蚶对菲和镉的吸收富集均有所增强。实验模型拟合度较好,输出值和实测值之间无显著性差异,拟合方程和拟合参数可信。  相似文献   

13.
Zoeae of the mud crabRhithropanopeus harrisii (Gould) were exposed continuously throughout larval development to factorial combinations of salinity, temperature and specific aromatic hydrocarbon concentrations. Salinities and temperatures were 5, 15, or 25 and 20°, 25°, or 30°C, respectively. Either phenanthrene or naphthalene was tested separately at respective concentrations of 0, 100, 150 or 200 ppb and 0, 125, 250 or 500 ppb. Phenanthrene was much more toxic than naphthalene. Naphthalene was not acutely toxic at any physical factor combination-naphthalene concentration tested. Both compounds caused the highest mortality at low salinities. The time course of mortality due to phenanthrene exposure showed that ecdysis between the first and second zoeal stage was the most sensitive period for the larvae exposed to aqueous hydrocarbons. Phenanthrene-exposed larvae had a decreased development rate, but the naphthalene-exposed larvae developed faster than the controls.  相似文献   

14.
Polycyclic aromatic hydrocarbons (PAHs) often occur in oil-contaminated soil, coke wastewater and domestic sludge; however, associated PAH degraders in these environments are not clear. Here we evaluated phenanthrene degradation potential in the mixed samples of above environments, and obtained a methanogenic community with different microbial profile compared to those from sediments. Phenanthrene was efficiently degraded (1.26 mg/L/d) and nonstoichiometric amount of methane was produced simultaneously. 16S rRNA gene sequencing demonstrated that bacterial populations were mainly associated with Comamonadaceae Nocardiaceae and Thermodesulfobiaceae, and that methanogenic archaea groups were dominated by Methanobacterium and Methanothermobacter. Substances such as hexane, hexadecane, benzene and glucose showed the most positive effects on phenanthrene degradation. Substrate utilization tests indicated that this culture could not utilize other PAHs. These analyses could offer us some suggestions on the putative phenanthrene-degrading microbes in such environments, and might help us develop strategies for the removal of PAHs from contaminated soil and sludge.
  相似文献   

15.
In order to examine the potential of biosurfactants in soil remediation, and to investigate the effects of several operating conditions, such as flow rate, biosurfactant concentration and surfactant type, biosurfactant-enhanced soil flushing was conducted. In the biosurfactant-enhanced soil flushing process, the removal efficiency increased as the flow rate decreased. Rhamnolipid showed no effect on the removal efficiency of phenanthrene and diesel from sand in the concentration range 0.3-0.5%. However, rhamnolipid showed higher efficiencies for the removal of phenanthrene and diesel from sand than Tween 80. Based on total recovery, following an equivalent pore volume flush, it was more difficult to remove diesel than phenanthrene. In order to obtain the specific removal efficiency, more pore volumes of surfactant solution may be required in field applications. Under optimum conditions, the biosurfactant removed as much as 70% of the phenanthrene and 60% of the diesel in the sand. These results indicate that the use of biosurfactants in the flushing process is favorable, not only with respect to the environment, but also on removal efficiencies.  相似文献   

16.
生物泥浆反应器中微生物数量变化与PAHs降解   总被引:4,自引:0,他引:4  
分别以浓度、温度、接种量、通气量和表面活性剂为降解调控因子,采用平板记数法进行了生物泥浆反应器中微生物数量变化与PAHs降解的关系研究。结果表明:土壤中细菌数量与PHE、PY投加浓度呈显著正相关。PHE、PY初始浓度越高,细菌数量越大。此外,反应器的温度对微生物生长速度和数量有重要影响。反应器温度为30℃时对细菌迅速繁殖有利,反应器温度为20℃时对真菌生长繁殖有利。接种量为5%即可明显提高PHE和  相似文献   

17.
菲高效降解菌的降解特性及其受蒙脱石的影响研究   总被引:1,自引:0,他引:1  
通过选择性富集培养与纯化,从广州油制气厂附近的污染土壤中分离获得一株能以菲为唯一碳源和能源,快速生长的优势菌株(编号为YZ-1)。16S rDNA序列分析结果表明,YZ-1菌株为琼氏不动杆菌(Acinetobacter junii)。当无机盐培养液中菲初始质量浓度为100mg·L-1时,45h内该菌株对菲的降解率可达到99.5%。YZ-1菌株的最佳生长条件为pH7.4,温度30℃,摇床转速160r·min-1。加入蒙脱石矿物之后,在降解的初期(前16h)表现为促进菲的生物降解作用,但随着时间的延长,菲的降解速率逐渐低于不加蒙脱石体系,并随蒙脱石含量或菲质量浓度的增加,此抑制延缓现象愈加明显。矿物对高浓度的菲具有吸附分散作用,而对低浓度的菲具有吸附保护作用。  相似文献   

18.
多环芳烃降解菌ZL5分离鉴定及其降解质粒   总被引:13,自引:3,他引:13  
通过选择性富集培养,从辽河油田石油污染土壤中分离到一株多环芳烃(PAHs)降解菌ZL5.它能以菲和芘为唯一碳源生长,但是不能利用萘.16S rDNA核苷酸序列分析结果表明,ZL5属于变形细菌α亚类中的鞘氨醇单胞菌属.该菌株含有一个大小约为60kb的质粒.丝裂霉素C消除实验表明,随着质粒的丢失,菌株利用菲和芘的能力也丧失.用电转化和氯化铷转化法分别将菌株ZL5的质粒导人大肠杆菌JM109和DH5α中,随着质粒的获得,这些转化子获得了降解菲和芘的能力.本研究结果表明,鞘氨醇单胞菌ZL5降解PAHs的功能和质粒有关。  相似文献   

19.
钟金魁  赵保卫  朱琨  马锋锋  冉婧媛 《环境化学》2011,30(10):1737-1742
采用振荡实验方法,比较研究了2种非离子表面活性剂(Triton X-100和Tween80)和2种阴离子表面活性剂(SDS和SDBS)对菲的最佳增溶振荡时间及其对菲的增溶能力,同时也比较分析了表面活性剂对菲的质量增溶比(WSR)与其亲水亲油平衡值(HLB)的关系.结果表明,Triton X-100、Tween 80、S...  相似文献   

20.
表面活性剂及水溶性有机物对菲生态毒性的影响   总被引:3,自引:0,他引:3  
采用室内培养试验及化学试验研究了表面活性剂及水溶性有机物(DOM)对土壤中菲对小麦的生态毒性的影响.结果表明,绿肥和猪粪堆肥DOM具有具有类似表面活性剂的表面活性性质,且猪粪堆肥的表面活性较大;在本试验条件下,DOM对菲对小麦的生态毒性有减轻作用,而表面活性剂对菲生态毒性有增加的趋势;当DOM和表面活性剂共存时,菲的生态毒性则比DOM单独作用时的结果强,而弱于表面活性剂单独作用的结果.  相似文献   

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