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331.
Moon HS Kahng HY Kim JY Kukor JJ Nam K 《Environmental pollution (Barking, Essex : 1987)》2006,140(3):536-545
Biodegradation potentials of polycyclic aromatic hydrocarbons (PAHs) were determined with soil samples collected from various depths of a PAH-contaminated site and of a site nearby where PAHs were not found. Putative dioxygenase genes were amplified by a primer set specific for initial dioxygenases and identified by web-based database homology search. They were further categorized into several groups of which four dioxygenases were selected as probes for DNA hybridization. The hybridization signals according to the presence of putative dioxygenases were positively related to the extent of PAH contamination. However, the signal intensities varied depending on the probes hybridized and moreover were not consistent with PAH biodegradation activities determined by CO2 evolution. Despite widely accepted advantages of molecular biodegradation assessment, our data clearly present the variations of assessment results depending on the genetic information used and suggest that the methodology may tend to underestimate the real biodegradation capacity of a site probably due to the limited dioxygenase database available at the moment. Therefore, the molecular assessment of biodegradation potential should involve a very careful primer and probe design and an extensive microbiological examination of a site of interest to accurately delineate the biodegradation potential of the site. 相似文献
332.
Background, Aims and Scope Polycyclic Aromatic Hydrocarbons (PAHs) are known for their adverse and cumulative effects at low concentration. In particular,
the PAHs accumulate in sewage sludge during wastewater treatment, and may thereafter contaminate agricultural soils by spreading
sludge on land. Therefore, sludge treatment processes constitute the unique opportunity of PAH removal before their release
in the environment. In this study, the ability of aerobic microorganisms to degrade light and heavy PAHs was investigated
in continuous bioreactors treating trace-level PAH-contaminated sludge.
Methods Several aerobic reactors were operated under continuous and perfectly mixed conditions to simulate actual aerobic sludge
digesters. Three sterile control reactors were performed at 35°C, 45°C or 55°C to assess PAH abiotic losses under mesophilic
and thermophilic conditions. Three biological reactors were also operated at 35°C, 45°C or 55°C. Furthermore, 250 mM methanol
were added in an additional mesophilic reactor (35°C). All reactors were fed with long-term PAH-contaminated sewage sludge,
and PAH removal was assessed by inlet/outlet mass balance. In this study, PAH compounds ranged from 2 to 5-unsubstituted aromatic
rings, i.e. respectively from Fluorene to Indeno(123cd)pyrene.
Results and Discussion Significant abiotic losses were observed for the lightest PAHs (fluorene, phenanthrene and anthracene), while biodegradation
occurred for all PAHs. More than 80% of the lightest PAHs were removed. Biodegradation rates inversely correlated with the
increasing molecular weight, and seemed limited by the low bioavailability of the heaviest PAHs (only 50% of removal). The
enhancement of PAH bioavailability by increasing the process temperature or adding methanol was tested. A temperature increase
from 35°C to 45°C and then to 55°C significantly enhanced the biodegradation of the heaviest PAHs from 50% to 80%. However,
high abiotic losses were observed for all PAHs at 55°C, which was attributed to volatilization. Optimal conditions were found
at 45°C considering the low abiotic losses and the high PAH biodegradation rates. Similar performances were achieved by addition
of methanol in the sludge. It was concluded that increasing temperatures or addition of methanol favored PAH diffusion from
solids to an aqueous compartment, and enhanced their bioavailability to PAH-degrading microorganisms.
Conclusion In this study, the use of long-term acclimated aerobic ecosystems showed the high potential of aerobic microorganisms to
degrade a wide range of PAHs at trace levels. However, PAH biodegradation was likely controlled by their low bioavailability.
Two aerobic processes have been finally proposed to achieve efficient decontamination of sewage sludge, at 45°C or in the
presence of methanol. The PAH concentrations in reactor outlet were lower than the French requirements, and allow the treated
sludge to be spread on agricultural land.
Recommendations and Outlook The two proposed aerobic processes used physical or chemical diffusing agents. The global ecological impact of using the
latter agents for treating trace level contamination must be considered. Since methanol was completely removed during the
process, no additional harm is expected after treatment. However, an increase of temperature to 45°C could drastically increase
the energy demand in full-scale plants, and therefore the ecological impact of the process. Moreover, since bioavailability
controls PAH biodegradation, efficiency of the processes could also be influenced by the hydraulic parameters, such as mixing
and aeration rates. Further experimentations in a pilot scale are therefore recommended, as well as a final assessment of
the global environmental benefit of using such aerobic processes in the bioremediation of trace level compounds.
- Abbreviations (PAHs): Ant – anthracene; B(a)A – benzo(a)anthracene ; B(b)F – benzo(b)fluoranthene; B(k)F – benzo(k)fluoranthene;
B(ghi)P – benzo(g,h,i)perylene; B(a)P – benzo(a)pyrene; Chrys – chrysene; DB – dibenzo(a,h)anthracene; Fluor – fluoranthene;
Fluo - fluorene; Ind – indeno(1,2,3-c,d)pyrene; Phe - phenanthrene; Pyr – pyrene
- * The basis of this peer-reviewed paper is a presentation at the 9th FECS Conference on 'Chemistry and Environment', 29 August
to 1 September 2004, Bordeaux, France. 相似文献
333.
Summary. Trail-following behavior of Lasius japonicus was colony-specific in the field, while trail pheromone activity was not. We found that the footprint substance caused colony-specific trail-following behavior only when working in conjunction with the trail pheromone. The footprint substance alone did not lead the workers to follow trails. The substance consisted mainly of hydrocarbons with composition almost identical to that of cuticular hydrocarbons, except for the absence of n-alkanes. Nestmate workers shared footprint hydrocarbon profiles as well as cuticular hydrocarbons, but the profiles differed among colonies. We therefore consider that the footprint hydrocarbon profiles serve as the trail discrimination signal in L. japonicus. 相似文献
334.
运用Agilent(安捷伦)1200系列高效液相色谱和多环芳烃专用柱ZORBAX Eclipse PAH(4.6×250mm、5μm,P.N.959990-918,S.N.USPAB01066),对16种多环芳烃化合物混合溶液进行分析,根据具体实验条件优化EPA8310中色谱分离条件并得到了更节省时间、分离效率更好的流动相梯度变化程序。 相似文献
335.
通过研究红枫湖、普定水库和平寨水库三个喀斯特水库的碳、硅循环,探讨了水库碳-硅循环的耦合关系。藻类光合作用导致表层水体溶解硅(DSi)及溶解无机碳(DIC)的亏损;当DSi供应不足时,硅藻生长繁殖大量消耗DSi,导致DSi相对DIC快速亏损。沉降颗粒物中内源有机碳含量越高,生物硅(BSi)及有机碳(OC)含量越高,但OC/BSi受控于硅藻对沉积物有机碳贡献率,且与之呈反比。生物硅与有机碳含量之比K值(K=BSi/OC)可作为硅藻贡献率的潜在替代指标,并与之呈正相关;生物硅与内源有机碳(OC_(auto))含量之比K_(auto)值(K_(auto)=BSi/OC_(auto))可作为水体富营养化程度的潜在替代指标,并与富营养化程度呈负相关。 相似文献
336.
In situ bioremediation of a hydrocarbon polluted site with cyclodextrin as a coadjuvant to increase bioavailability 总被引:1,自引:0,他引:1
Bioavailability is one main factor that influences the extent of biodegradation of hydrocarbons. They are very poorly soluble in water and easily adsorbed to clay or humus fractions, so they pass very slowly to the aqueous phase where they are metabolised by microorganisms. Cyclodextrins are natural compounds that form soluble inclusion complexes with hydrophobic molecules and increase degradation rate of hydrocarbons in vitro. In the perspective of an in situ application, we previously checked that -cyclodextrin does not increase eluviation of hydrocarbons through the soil and consequently does not increase the risk of groundwater pollution. The results of an in situ application of -cyclodextrin for bioremediation of a hydrocarbon polluted site are presented. We stated that the combination of bioaugmentation and enhanced bioavailability due to -cyclodextrin was effective for a full degradation. 相似文献
337.
Habitat function of agricultural soils as affected by heavy metals and polycyclic aromatic hydrocarbons contamination 总被引:20,自引:0,他引:20
Ecotoxic activity of soils polluted with polycyclic aromatic hydrocarbon (PAH) and heavy metals (HM) was evaluated in pot and laboratory experiments. Plants and soil microorganisms were chosen as test organisms and six different soil materials were used in the study. The applied levels of HM and PAH were aimed to reflect environmental conditions in the "worst case" situation. Zn(2+), Pb(2+) and Cd(2+) were introduced to the soils as an aqueous solution of the mixture of salts at the concentrations corresponding to 1000, 500 and 3 mg kg(-1), respectively. Mixture of four PAH compounds (flourene, anthracene, pyrene and chrysene) as a CH(2)Cl(2) solution was applied at levels of 10-100 mg summation operator 4PAH kg(-1). Population and activity of soil microflora was evaluated as measured of total bacteria counts, intensity of respiration and enzyme activity (dehydrogenases and phosphatases). Effect on plants was evaluated on the base of the growth (plant at an early stage of their development) and yield (mature plant) measurements. The results indicate that combined effect of PAH and heavy metals on soil microorganisms activity and on some plants at an early stage of their development can be stronger than in soils amended with HM or PAH separately. Reaction of tested organisms was related to soil properties, PAH concentration, time and plant species. Mature plants (maize) were insensitive to the applied levels of both group of contaminants. 相似文献
338.
大气TSP采样滤膜上PAHs分布的均匀性研究 总被引:3,自引:0,他引:3
标准参考物质是分析法研究的基础,也是质量保证较为可信的手段。本文通过对大气TSP采样滤膜上PAHs分布的均匀性研究,发现PAHs在滤膜上是均匀分布的,由此,我们提出了滤膜四等分法和八等分法,以获得可用于分析方法研究的实验用参考物质。 相似文献
339.
340.
催化燃烧法处理聚对苯二甲酸乙二醇酯生产废气 总被引:3,自引:1,他引:3
采用催化燃烧法处理聚对苯二甲酸乙二醇酯生产过程排放的含乙醛、2-甲基-1,3-二氧戊烷、乙二醇的废气,用进口Pt Pd/Al2O3-CeO2球状催化剂作废气催化燃烧的催化剂。在催化燃烧反应器床层空速为20000h^-1、催化剂用量为935mL、反应器入口温度为250℃、进口废气总烃质量浓度为2555~5099mg/m^3的条件下,处理后废气的总烃质量浓度为1~38mg/m^3,远低于120mg/m^3的国家排放标准,且总烃去除率达到98.6%~100%,乙醛质量浓度小于99mg/m^3,低于125mg/m^3的国家排放标准。 相似文献