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961.
962.
植物修复是一种利用植物修复环境污染物的方法 ,由于其费用低廉等特点正受到越来越多的关注。多环芳烃由于其毒性、致癌性和致畸性成为环境中一类重要的污染物。概述了植物修复的机制 ,并回顾近年来国内外关于植物修复多环芳烃方面的研究进展。 相似文献
963.
油污土壤中微生物数量变化与原油降解速率关系的实验研究 总被引:1,自引:0,他引:1
微生物法治理油污土壤具有成本低、效果好的特点 ,其原理是微生物利用油烃作为碳源合成自身物质 ,进行生长繁殖 ,从而使油烃的含量得到减少。而与此同时 ,微生物的数量也会发生相应的变化。目前油污土壤微生物的研究主要局限于对污染土壤中分离提纯的单一菌种的降解效能的研究。本文对土著油污土壤微生物在适宜条件下的数量和种类变化进行了实验分析 ,并对油烃的化学组成作了初步探讨。分离出 4株对石油具有耐受性和降解能力的微生物。结果表明 ,在 4株微生物数量都增加的时候 ,石油烃的降解速度最快。 相似文献
964.
Maged M. Hamed 《Environmental Modeling and Assessment》2005,9(4):253-264
The Gulf War in 1991 created an environmental catastrophe, one of the major consequences of which was setting several oil wells on fire in the Arabian Gulf area. The total oil spilled as a result of the damaged wells was about 3.5 × 106 m3. Out of these, 3.3 × 106 m3 of oil was recovered and exported. The rest was left behind as it was not economical to collect. The oil left behind was subject to severe weathering over the past ten years. Soil and subsurface contamination pose a serious risk to the quality of the already scarce fresh groundwater resources in the area which was subject to oil spill in the study region. This paper presents the computer modeling activities carried out towards simulating the transport of the hydrocarbon contamination of the fresh groundwater resources at a study area in the Arabian Gulf region, and predicting the contamination levels at the fresh groundwater lenses in the area in the future, should current contamination levels persist in the soil and groundwater. The modeling activities relied on both semi-analytical and numerical flow and transport models. 相似文献
965.
Kim KH Baek SO Choi YJ Sunwoo Y Jeon EC Hong JH 《Environmental monitoring and assessment》2006,118(1-3):407-422
In this study, concentrations of major aromatic VOCs were determined from landfill gas (LFG) at a total of five municipal
landfill sites in Korea including Nan Ji (NJ), Woon Jung (WJ), Sam Poong (SP), Hoei Chun (HC), and No Hyung (NH). The concentration
levels of those VOC were found to be significantly different, mainly as a function of such a parameter as landfill aging.
The VOC concentrations measured from the unclosed landfill sites (e.g., WJ) were characterized by exceedingly high values
above a few tens of ppm. However, the results of the abandoned site (e.g., SP) were about three orders of magnitude lower
than the others so as to merely exceed the typical ambient concentration levels. It was most striking to find a systematic
dominance of toluene over other aromatic VOC under most circumstances. The LFG flux values of all aromatic VOC and the four
specific major ones (termed as BTEX: benzene, toluene, ethylbenzene, and xylene) were also computed for each vent pipe from
all study sites using their concentrations and the concurrently determined environmental parameters. The results, if calculated
in terms of the average BTEX quantity emitted per vent pipe, showed that the magnitude of their emissions can vary substantially,
with the values ranging from 0.05 (SP) to 49.2 kg yr−1 (WJ in wintertime). The LFG flux values of aromatic VOC, when compared to the contribution of non-methane hydrocarbons (NMHC),
were able to explain a constant, but minor, proportion of the LFG carbon budget. 相似文献
966.
采用全玻璃针筒取样/保存、双通道双毛细管柱测定非甲烷总烃分析方法,以甲烷标准气体样品、标准气体样品(TO-14、TO-15),以及3种实际环境空气样品为例,考察了全玻璃针筒注射器取样保存影响检测结果的若干因素。结果表明,样品的保存时间取决于以下因素:(1)样品性质,不同类型样品的保存时间差异大,化学反应活性强的样品,其总烃含量呈现先升高后降低趋势,甲烷则相对稳定;(2)样品浓度水平,相同条件下相同类型样品,浓度高的保存时间短于低浓度样品,如与环境空气浓度相仿的样品保存时间可超过60 h;(3)保存环境的避光程度,对于同一种VOCs标准气体样品,避光、半避光、非避光保存样品回收率迥异,趋势差别极大,对于部分样品即便是避光保存仍发现回收率变化极大;(4)全玻璃材质注射器的气密性,需对照技术规范要求,进行气密性的检查。 相似文献
967.
石油化工园区周边土壤中多环芳烃的分布研究 总被引:3,自引:1,他引:2
采集锦州市石油六厂工业区、交通运输区及农业区土壤,采用高效液相色谱/质谱联用仪分析测定土样中16种PAHs的总含量(∑PAHs):工业区均值为386.19μg/kg、交通运输区均值为328.54μg/kg、农业区均值为192.64μg/kg;致癌性PAHs的总含量(∑PAHscare):工业区均值为147.97μg/kg、交通运输区均值为131.52μg/kg、农业区均值为73.83μg/kg;不同功能区PAHs成分组成规律基本一致,PAHs以3环和4环为主,土壤中PAHs成分比例规律为4环>3环>2环>5环>6环;无论是土壤中∑PAHs还是∑PAHscare含量规律,都为工业区>交通运输区>农业区。工业区石油类污染较为严重,交通运输区及农业区土壤中PAHs污染主要来源于化石燃料的燃烧及农业用品的施用。 相似文献
968.
Inhibition of gap junctional intercellular communication (GJIC) is affiliated with tumor promotion process and it has been employed as an in vitro biomarker for evaluation of tumor promoting effects of chemicals. In the present study we investigated combined effects of anthropogenic environmental contaminants 2,2′,4,4′,5,5′-hexachlorobiphenyl (PCB 153) and fluoranthene, cyanotoxins microcystin-LR and cylindrospermopsin, and extracts of laboratory cultures of cyanobacteria Aphanizomenon gracile and Cylindrospermopsis raciborskii, on GJIC in the rat liver epithelial cell line WB-F344. Binary mixtures of PCB 153 with fluoranthene and the mixtures of the two cyanobacterial strains elicited simple additive effects on GJIC after 30 min exposure, whereas microcystin-LR and cylindrospermopsin neither inhibited GJIC nor altered effects of PCB 153 or fluoranthene. However, synergistic effects were observed in the cells exposed to binary mixtures of anthropogenic contaminants (PCB 153 or fluoranthene) and cyanobacterial extracts. The synergistic effects were especially pronounced after prolonged (6-24 h) co-exposure to fluoranthene and A. gracile extract, when mixture caused nearly complete GJIC inhibition, while none of the individual components caused any downregulation of GJIC at the same concentration and exposure time. The effects of cyanobacterial extracts were independent of microcystin-LR or cylindrospermopsin, which were not detected in cyanobacterial biomass. It provides further evidence on the presence of unknown tumor promoting metabolites in cyanobacteria. Clear potentiation of the GJIC inhibition observed in the mixtures of two anthropogenic contaminants and cyanobacteria highlight the importance of combined toxic effects of chemicals in complex environmental mixtures. 相似文献
969.
Polycyclic aromatic hydrocarbons (PAHs) are carcinogenic substances which are resistant to environmental degradation due to their highly hydrophobic nature. Soils contaminated with PAHs pose potential risks to human and ecological health, therefore concern over their adverse effects have resulted in extensive studies on their removal from contaminated soils. The main purpose of this study was to compare experimental results of PAHs removal, from a natural certified soil polluted with PAHs, by biological methods (using bioaugmentation and biostimulation in a solid-state culture) with those from supercritical fluid extraction (SFE), using supercritical ethane as solvent. The comparison of results between the two methods showed that maximal removal of naphthalene, acenaphthene, fluorene, and chrysene was performed using bioremediation; however, for the rest of the PAHs considered (fluoranthene, pyrene, and benz(a)anthracene) SFE resulted more efficient. Although bioremediation achieved higher removal ratios for certain hydrocarbons and takes advantage of the increased rate of natural biological processes, it takes longer time (i.e. 36 d vs. half an hour) than SFE and it is best for 2-3 PAHs rings. 相似文献
970.
《International Journal of Green Energy》2013,10(3):301-312
Abstract Sustainable ecosystems can be designed to eliminate environmental toxins and reduce pathogen loads through the direct and indirect consequences of plant and microbial activities. We present an approach to the bioremediation of disturbed environments, focusing on petroleum hydrocarbon (PHC) contaminants. Treatment consists of incorporating a plant-based amendment to enhance ecosystem productivity and physiochemical degradation followed by the establishment of plants to serve as oxidizers and foundations for microbial communities. Promising amendments for widespread use are entire plants of the water fern Azolla and seed meal of Brassica napus (rapeseed). An inexpensive byproduct from the manufacture of biodiesel and lubricants, rapeseed meal is high in nitrogen (6% wt/wt), stimulates >100-fold increases in populations of resident Streptomyces species, and suppresses fungal infection of roots subsequently cultivated in the amended soil. Synergistic enzymatic and chemical activities of plant and microbial metabolism in root zones transform and degrade soil contaminants. Emphasis is given to mechanisms that enable PHC functionalization via reactive molecular species. 相似文献