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1.
土壤,地下水中有机污染物的就地处置   总被引:19,自引:2,他引:17  
有机化合物对土壤、地下水的污染已引起世界各国的普遍关注。地层介质中的有机物主要以自由态,挥发态、溶解态和固态4种形态存在。有机污染物的自然降解能力较差,如不进行人工清除,在自然环境中它们可能存留长达几埏年之久,对土壤、地下水资源构成长期的威胁。传统的开挖处理技术不仅费用昂贵,而且当贮赃物 地表被利用时则无法进行开挖处理(如有建筑物等)。近扯为,以地下冲洗法,土壤抽水法和地下水曝气法为代表的有机污染  相似文献   

2.
影响有机污染物在土壤中的迁移、转化行为的因素   总被引:2,自引:0,他引:2  
本文介绍了有机污染物在土壤中的吸附与解吸附、渗滤、挥发和降解等行为过程。探讨了吸附与解吸附机理、土壤有机质含量和类型、水分含量及温度等对此过程的影响。依据某些典型的化合物行为模型,论述了影响土壤中有机污染物渗滤的因素。有机污染物需要先从土壤深层迁移至地表,然后挥发至大气,在土壤中迁移的速率较慢,控制着整个挥发过程,可用Fick 第二定律来描述。有机污染物在土壤中的非生物降解主要包括氧化- 还原、光解和水解等反应。土壤中的O2 含量、土壤有机质成分和含量、辐射强度、光谱分布、土壤水分含量、温度和pH 值等都会影响非生物降解过程。其中有些因素通过影响微生物的生物活性,还影响有机污染物的生物降解  相似文献   

3.
生物清消技术是一种迅速发展的污染物处理的生物技术,用于处理分散在土壤、地下水、海洋和湖泊中的污染物。生物清消技术通过向环境供给营养物、共作基质和供氧,并依靠有机污染物自身的碳源促进天然微生物群体的生长繁殖,也可进一步向污染环境中补充在实验中筛选和增殖的微生物(强化技术)稳定和加速生物降解过程。本文介绍了生物清消的几种方法:生物促进法、生物耕作法、固相清消法、土壤堆制法、生物泥浆法,还介绍了强化技术应用的几个方面。  相似文献   

4.
包气带土壤对石油烃的截留作用研究   总被引:1,自引:0,他引:1  
包气带土壤对地表污染物的截留作用是地下水免受污染的一道天然屏障.土壤截留污染物的能力对地下水石油烃污染的治理起着关键作用,在对实际污染场地进行调查研究的基础上,采用土柱淋滤、吸附/解吸、石油挥发等室内模拟实验,研究包气带土壤对石油烃的截留作用及其影响因素.结果表明,细砂、中砂和粗砂3种土壤对石油烃的截留率分别为81.0...  相似文献   

5.
铁促电解是去除水中有机污染物的新型方法,采用箱式电化学反应器研究了该法去除填埋场高浊度老龄垃圾渗滤液COD的机理.实验结果表明:用浊度衡量老龄垃圾渗滤液非溶解态有机物的含量是合理的;垃圾渗滤液中非溶解态有机物对铁促电解去除COD的效率有显著影响.铁促电解对高浊度垃圾渗滤液COD的去除存在三种机理,即电化学氧化、电解气浮和絮凝沉淀.随着水质与实验参数的变化,三种机理对COD总去除率的贡献亦发生变化;对比了Fe^2+与Fe^3+促进COD去除的效果,提出了一种铁离子循环电解处理老龄垃圾渗滤液的新工艺.  相似文献   

6.
GC-MS法对垃圾渗滤液生物处理前后微量有机物的研究   总被引:16,自引:0,他引:16  
运用GC—MS联用技术对吴江市生活垃圾填埋场的渗滤液及生物处理曝气池出水中的微量有机物进行了检测,测得进水主要有机污染物53种,出水主要有机污染物55种。微量有机物总去除率与CODCr去除率相近。  相似文献   

7.
再生水经深度处理后资源化回用是缓解水资源紧缺问题的有效途径之一。由于微量有机污染物的持久性与累积性,所以其在再生水及地下水中也有检出,且在极低浓度下能对人体健康及生态环境产生不利影响。人工复合土层利用物理、化学吸附、生物降解等作用实现污染物的去除,具有投资少、运行成本低、操作简单等优点,去除能力与污染物的迁移转化规律密切相关。目前对复合土层系统的研究主要包括渗滤介质、系统复氧方式、微生物特性、堵塞问题、运行方式,但主要集中在对常规污染物的去除,对水体中微量有毒有害污染物的研究缺乏。提高复合土层系统对再生水中微量有机污染物去除的稳定性及持久性,在实际工程应用中具有重要意义。  相似文献   

8.
地下水中潜在危害有机物识别与筛选方法   总被引:1,自引:0,他引:1  
针对地下水中频繁检出的各类有机物,运用理论方法定量计算污染物对地下水的危害系数,对有机物的污染调查、地下水污染防治具有一定的指导意义。为研究有机物对地下水的危害性,汇总了535项有机物,目前这些指标在国内外水质标准中均没给出标准值。从有机物的自身属性入手,假定所有物质处于相同的外界环境中,经过包气带吸附、降解、挥发等作用,分析其进入地下水的难易程度。利用美国环保局的软件EPI Suit4.10,获取了指标的有机碳吸附系数(K_(oc))、半衰期(DT_(50))和亨利常数(K_H),并结合毒性参数基于健康的评价基准值,构建了污染物潜在危害参数体系。运用3种方法计算有机物的危害系数H、污染指数G和衰减系数K,对比3种计算结果,筛选出100项潜在危害有机物。分析表明,所筛选出的100项指标毒性较大、难挥发,并且有机物的K_(oc)对污染指数(G)和衰减系数(K)的贡献比DT_(50)、K_H更大。  相似文献   

9.
水体有机污染物因其生物毒性对人体健康和生态环境造成了严重的危害。随着环保技术的发展,高浓度有机污染物已得到很好的去除。检测水平的不断提高使微量有机污染物日益受到广泛关注。为了深入地研究微污染有机物及其去除技术,对微污染有机物的种类、性质和危害进行了详细阐述,并综述了国内外生物法、膜处理技术、高级氧化技术、吸附技术对微污染有机物的去除效果,总结了各种技术的优缺点。  相似文献   

10.
以某大型头孢菌素制药企业为研究对象,通过测定生产废水中常规污染物、金属污染物和有机污染物等,以开展水污染物的特征成分谱解析。结果表明,参照《发酵类制药工业水污染物排放标准》(GB 21903—2008)、《地表水环境质量标准》(GB3838—2002),发现头孢菌素制药行业的水污染物特征成分谱为挥发酚、COD、石油类、总氮、氨氮、总磷、Zn、Mn、Cr、Se、甲基异丁基酮、乙酸乙酯、四氢呋喃、甲苯、丙酮、二苯基甲醇、4-甲基苯酚、3-甲基苯酚、乙醇、苯酚、α-苯基苯甲醇乙酸酯、乙酸甲酯、苯甲酮等;头孢菌素制药废水中大部分金属以溶解态形式存在,但总体来说悬浮态金属的去除率比溶解态金属高;在该行业的水污染物减排工艺选择时,要关注总磷,总氮,溶解态Zn、Mn、Cr、Se的减排,并要考虑甲基异丁基酮、乙酸乙酯、四氢呋喃等难生物降解有机物的可去除性。  相似文献   

11.
重质非水相液体(DNAPLs)是土壤及地下水中广泛存在的有机污染物,原位热处理技术是目前修复受DNAPLs污染土壤及地下水的最具潜力的技术之一。综述了国内外常用原位热处理技术的基本原理及其影响因素,介绍了相关现场应用实例,并展望了该技术未来的应用前景和发展趋势,以期为中国污染土壤及地下水的原位修复提供有益借鉴。  相似文献   

12.
利用电动技术强化有机污染土壤原位修复研究   总被引:3,自引:1,他引:3  
电动修复技术是近几年发展起来的一种新型土壤修复技术,由于其处理的高效性受到了越来越多的关注。本文介绍了利用电动技术强化土壤有机污染物原位修复的原理及其最新进展。电动强化有机物污染修复的基本原理是利用电动效应对有机物的迁移作用或者强化生物修复过程(注入营养物、电子受体和活性微生物等)达到去除污染物的目的。研究表明,该技术不破坏生态环境,安装操作简单成本低廉,具有广泛的应用前景,其中电动强化原位生物修复和能够适应于各种不同成分污染(如有机物重金属复合污染)的多技术联合是今后电动技术发展的重要方向。  相似文献   

13.
Two industrial sites were investigated based on years of available hydrogeologic information and monitoring data for soil and groundwater. Collected data were forensically evaluated using age-dating and fingerprinting methods. The previous business uses of the project sites were as a gas station, laundry/dry-cleaning service, and car wash with petroleum underground storage tanks (USTs). As a result, these sites were exposed to a number of toxic contaminants at relatively high concentrations. Source control was necessary for successful remediation and the ultimate removal of the remaining compounds from these industrial sites. Although contaminated soil around the source was excavated during the remedial action and the high concentrations of contaminants were reduced, typical groundwater contaminants such as petroleum hydrocarbons as gasoline (TPH-G), benzene, toluene, ethylbenzene, xylenes (BTEX), and oxygenates including methyl tert-butyl ether (MTBE), diisopropyl ether (DIPE), ethyl tert-butyl ether (ETBE), tert-amyl methyl ether (TAME), and tert-butyl alcohol (TBA) were persistently found at the studied sites around the source points. The plume and concentration of contaminants had changed their shapes and strength for all monitoring periods. Thus, additional source control seems to be a requirement for the complete removal of source contamination, which must be ascertained with groundwater and soil monitoring on a regular time base. For the study sites, monitored natural attenuation was relatively feasible for the long-term plan; however, it did not offer a perfect remediation solution for an ultimate goal because of residual toxic compounds that might have affected the surrounding residential areas at higher concentrations than their health limits. Therefore, as a remediation strategy, the combination of clean-up technology and natural attenuation with monitoring activities are more highly recommended than either clean-up or natural attenuation used separately.  相似文献   

14.
污染土壤及地下水修复的PRB技术及展望   总被引:5,自引:0,他引:5  
PRB技术是一类就地修复污染土壤及地下水的新型技术 ,主要由注入井、浸提井和监测井3部分所组成。污染地区的水文地质学研究 ,是实施该技术的关键 ;化学活性物质的筛选、注入的部位、浓度、速率以及是否均匀分布 ,是该技术是否有效的关键要素。胶态零价铁PRB技术 ,被证明是一项修复由卤代烃、卤代芳烃和有机氯农药以及一些有毒金属 (如铬、硒、铀、砷和锝等 )引起的土壤及地下水污染的有效技术。尽管这些技术存在一定的弊病 ,但与传统的处理方法相比 ,其技术上的优势是十分明显的。可以预料 ,这一技术在我国有良好的应用前景  相似文献   

15.
In situ chemical oxidation is a commonly applied soil and groundwater remediation technology, but can have significant effects on soil properties, which in turn might affect fate and transport of organic contaminants. In this study, it was found that oxidation treatment resulted mainly in breakdown of soil organic matter (SOM) components. Sorption of naphthalene and phenanthrene to the original soils and the KMnO4-treated soils was linear, indicating that hydrophobic partitioning to SOM was the predominant mechanism for sorption. Desorption from the original and treated soils was highly resistant, and was well modeled with a biphasic desorption model. Desorption of residual naphthalene after treating naphthalene-contaminated soils with different doses of KMnO4 also followed the biphasic desorption model very well. It appears that neither changes of soil properties caused by chemical oxidation nor direct chemical oxidation of contaminated soils had a noticeable effect on the nature of PAH-SOM interactions.  相似文献   

16.

Background, aim, and scope

The use of plants and associated microorganisms to remove, contain, inactivate, or degrade harmful environmental contaminants (generally termed phytoremediation) and to revitalize contaminated sites is gaining more and more attention. In this review, prerequisites for a successful remediation will be discussed. The performance of phytoremediation as an environmental remediation technology indeed depends on several factors including the extent of soil contamination, the availability and accessibility of contaminants for rhizosphere microorganisms and uptake into roots (bioavailability), and the ability of the plant and its associated microorganisms to intercept, absorb, accumulate, and/or degrade the contaminants. The main aim is to provide an overview of existing field experience in Europe concerning the use of plants and their associated microorganisms whether or not combined with amendments for the revitalization or remediation of contaminated soils and undeep groundwater. Contaminations with trace elements (except radionuclides) and organics will be considered. Because remediation with transgenic organisms is largely untested in the field, this topic is not covered in this review. Brief attention will be paid to the economical aspects, use, and processing of the biomass.

Conclusions and perspectives

It is clear that in spite of a growing public and commercial interest and the success of several pilot studies and field scale applications more fundamental research still is needed to better exploit the metabolic diversity of the plants themselves, but also to better understand the complex interactions between contaminants, soil, plant roots, and microorganisms (bacteria and mycorrhiza) in the rhizosphere. Further, more data are still needed to quantify the underlying economics, as a support for public acceptance and last but not least to convince policy makers and stakeholders (who are not very familiar with such techniques).  相似文献   

17.
随着中国社会经济水平的加速发展,近年来各类突发性场地污染事故频发,如何有效地在第一时间对污染物进行应急控制及场地修复显得尤为重要.以突发性场地污染为研究对象,探讨了土壤及地下水中污染物的应急控制及场地修复技术的研究状况,给出了各项应急控制技术在突发性场地污染事故中适用的目标污染物及土壤类型,以便在实际运用中根据场地的污染类型和土壤性质快速做出响应.最后还指出,应急控制技术作为一种暂时性处理手段,可在场地污染事故发生后对污染物扩散进行快速控制,但不可作为一种长期处置措施.  相似文献   

18.
At many contaminated field sites in Europe, monitored natural attenuation is a feasible site remediation option. Natural attenuation includes several processes but only the microbial degradation leads to real contaminant removal and very few methods are accepted by the authorities providing real evidence of microbial contaminant degradation activity. One of those methods is the recently developed in situ microcosm approach (BACTRAP®). These in situ microcosms consist of perforated stainless steel cages or PTFE tubes filled with an activated carbon matrix that is amended with 13C-labelled contaminants; the microcosms are then exposed within groundwater monitoring wells. Based on this approach, natural attenuation was accepted by authorities as a site remediation option for the BTEX-polluted site Zeitz in Germany. Currently, the in situ microcosms are restricted to the use inside groundwater monitoring wells at the level of the aquifer. The (classical) system therefore is only applicable on field sites with a network of monitoring wells, and only microbial activity inside the monitoring wells at the level of the aquifer can be assessed. In order to overcome these limitations, a new Direct-Push BACTRAP probe was developed on the basis of the Geoprobe® equipment. With respect to the mechanical boundary conditions of the DP technique, these new probes were constructed in a rugged and segmented manner and are adaptable to various sampling concepts. With this new probe, the approach can be extended to field sites without existing monitoring wells, and microbial activity was demonstrated to be measureable even under very dry conditions inside the vadose zone above the aquifer. In a field test, classical and Direct-Push BACTRAPs were applied in the BTEX-contaminated aquifer at the ModelPROBE reference site Zeitz (Germany). Both types of BACTRAPs were incubated in the centre and at the fringe of the BTEX plume. Analysis of phospholipid fatty acid (PLFA) patterns showed that the bacterial communities on DP-BACTRAPs were more similar to the soil than those found on classical BACTRAPs. During microbial degradation of the 13C-labelled substrate on the carrier material of the microcosms, the label was only slightly incorporated into bacterial biomass, as determined by PLFA analysis. This provides clear indication for decreased in situ natural attenuation potential in comparison to earlier sampling campaigns, which is presumably caused by a large-scale source remediation measure in the meantime. In conclusion, Direct-Push-based BACTRAPs offer a promising way to monitor natural attenuation or remediation success at field sites which are currently inaccessible by the technique due to the lack of monitoring wells or due to a main contamination present within the vadose zone.  相似文献   

19.
Combined chemical and biological treatment of oil contaminated soil   总被引:3,自引:0,他引:3  
Goi A  Kulik N  Trapido M 《Chemosphere》2006,63(10):1754-1763
Combined chemical (Fenton-like and ozonation) and biological treatment for the remediation of shale oil and transformer oil contaminated soil has been under study. Chemical treatment of shale oil and transformer oil adsorbed in peat resulted in lower contaminants' removal and required higher addition of chemicals than chemical treatment of contaminants in sand matrix. The acidic pH (3.0) conditions favoured Fenton-like oxidation of oil in soil. Nevertheless, it was concluded that remediation of contaminated soil using in situ Fenton-like treatment will be more feasible at natural soil pH. Both investigated chemical processes (Fenton-like and ozonation) allowed improving the subsequent biodegradability of oil. Moderate doses of chemical oxidants (hydrogen peroxide, ozone) should be applied in combination of chemical treatment (both, Fenton-like or ozonation) and biotreatment. For remediation of transformer oil and shale oil contaminated soil Fenton-like pre-treatment followed by biodegradation was found to be the most efficient.  相似文献   

20.
One of the main limitations for a wider application of surfactants in soil remediation is the lack of knowledge about environmental fate and toxicity of surfactant itself especially for in situ application. Sorption behaviour, biodegradability, toxicity of parent compound and its metabolites are important processes that affect environmental fate of surfactants in site remediation applications. Tween 80 (poly(oxyethylene)(20)-sorbitane monooleate) and Aerosol MA+80 (dihexyl sodium sulfosuccinate) are surfactants that have been tested in laboratory and field scale remediation of soil and groundwater. In this work, the sorption and biodegradability of these surfactants were assessed to provide conditions and limitations for their use. The soil used in this experimentation was analysed for organic carbon content, soil bacteria, and size fraction and resulted to be a good model because is characterised by mean values for almost all considered parameters. Tween 80 showed high degree of biodegradability but a high affinity for soil matrix. Results suggest that Tween 80 could find its best application in ex situ solid phase remediation like ex situ bioremediation; its high affinity to soil could limit in situ applications. Biodegradation tests for Aerosol MA+80 show low degree of biodegradability and mineralisation. Biodegradation experiments, coupled with analysis of toxicity, could support the hypothesis that degradation of Aerosol MA+80 is not complete and leads to an accumulation of intermediates with at least the same toxicity of the parental compound. Therefore, aquifer remediation application with Aerosol MA+80 has to be conducted with necessary precautions to avoid product loss and excess surfactant should be flushed from the soil.  相似文献   

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