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1.
微波催化氧化修复技术处理有机氯污染土壤   总被引:1,自引:0,他引:1  
采用微波催化氧化修复技术处理常州某农药厂有机氯农药污染场地和南通某化工厂有机氯污染场地土壤,考察不同参数条件下实验装置对污染土壤的处理效能。结果表明,在微波功率18kW、微波辐射时间20min、土壤处理量400kg/h、土壤含水率15%、活性炭添加量0.03kg/kg的最佳条件下,实验装置运行稳定,有机氯农药污染土壤中氯丹去除率可达70%左右;有机氯污染土壤中邻二氯苯、石油烃总量、1,2-二氯乙烷、苯酚去除率分别可达到99.98%、91.29%、98.52%、74.74%。研发的污染土壤微波催化氧化修复技术及实验装置对有机氯污染土壤的修复具有一定的普适性。  相似文献   

2.
微波修复石油污染土壤升温特性影响因素的实验研究   总被引:3,自引:1,他引:2  
实验研究了微波功率、土壤受污染程度和各种吸波介质对微波修复石油污染土壤升温特性的影响,所用的吸波介质有水、颗粒活性炭、铝、镍、三氧化二钴、三氧化二铬和氧化锡.实验中以氮气为保护气微波辐照各种石油污染土壤样品,测量样品的升温特性.实验结果表明:(1)随着微波加热功率的增加,石油污染土壤的升温速率和最高温度都增大,功率从4...  相似文献   

3.
采用均匀设计实验方法,研究了微波修复原油污染土壤时原油去除率与微波能耗、含水率和含炭率等因素的关系,并应用MATLAB编程拟合出经验公式。结果分析表明:微波能耗在0~288 kJ范围内,污染土壤的原油去除率随微波能耗线性增加;在含水率为6%、含炭率为4%、微波能耗从0增加到288 kJ时,原油去除率从0%增加至92.3%;含炭率在0%~4%范围内原油去除率与含炭率成线性关系,在微波能耗为288 kJ、含水率为6%、含炭率从0%增加到4%时,原油去除率从12.3%增加至92.3%;原油去除率与含水率成二次曲线关系且开口向下,微波修复原油污染土壤的最佳含水率为6.6%。研究结果对微波修复原油污染土壤技术的优化提供了有价值的参考。  相似文献   

4.
微波在环境污染治理工程中的应用   总被引:2,自引:0,他引:2  
微波加热技术在环境污染治理中正逐步得到应用。本文主要介绍了微波加热技术的基本原理和优缺点及近年来微波加热技术在污染土壤的修复、废物处理、活性炭再生和废气处理等领域的应用进行综述 ,并与传统的处理技术进行比较 ,分析该技术进一步推广应用的限制因素 ,同时对该技术今后在环境污染治理工程中应用的发展方向进行了预测  相似文献   

5.
目前土壤污染问题得到越来越多的关注,污染土壤修复技术的研究更加受到重视。通过单因素和响应曲面法优化实验,研究了含水率、处理量、辐照时间和微波功率对二甲苯去除效果的影响,并且对不同敏化剂的作用进行了实验研究。结果表明,微波功率、辐照时间和含水率对二甲苯的去除率均有显著影响。模型优化结果显示,微波修复二甲苯污染土壤的最佳工艺参数为:微波功率530W,辐照时间3.4min,含水率32%,去除率可达到79.75%,实验验证结果与预测值之间相对误差为1.89%。活性炭在反应过程中主要起吸附作用,粉煤灰的添加对二甲苯的去除有非常显著的作用,去除率最高可达到98.42%。  相似文献   

6.
重金属污染土壤的强化电动修复技术研究进展   总被引:1,自引:0,他引:1  
在土壤重金属污染日益严重的背景下,寻找一种简单高效的土壤修复技术刻不容缓。电动修复技术由于操作简单、处理污染物多样、修复快速、成本低廉等优点,成为重金属污染土壤修复领域的研究热点。简述了中国土壤重金属污染的现状,电动修复的原理及其影响因素,综述了近年来国内外有关强化电动修复重金属污染土壤的研究进展及国内外应用实例,分析了电动修复技术中存在的问题,最后指明了强化电动修复技术未来的研究方向。  相似文献   

7.
重金属污染废弃地修复植物种类的筛选与评价   总被引:3,自引:0,他引:3  
基于修复被重金属污染土壤的优良植物的特征,并结合前人的研究成果,对修复被Cd、Pb、Zn、Cu、Mn污染土壤的植物进行了罗列与分析,筛选出了一些可以应用于修复因重金属污染而废弃土地的、且生态恢复生长快、生物量大、抗逆性强、富集重金属多的植物。  相似文献   

8.
粘土矿物修复重金属污染土壤   总被引:27,自引:1,他引:27  
简要介绍了我国土壤重金属污染的现状与危害.通过粘土矿物在重金属污染土壤中净化功能的阐述,提出利用粘土矿物修复土壤重金属污染的观点.继而从天然和改性粘土矿物特性,叙述了粘土矿物修复土壤重金属污染的机制与应用进展及其影响因素.最后讨论了粘土矿物在修复土壤重金属污染过程中值得注意的几个问题,并展望了粘土矿物在该领域应用中的发展方向.  相似文献   

9.
重金属污染土壤原位钝化修复材料的最新研究进展   总被引:4,自引:0,他引:4  
土壤环境关系到人们的身体健康,重金属污染土壤的修复一直以来是全球环境领域关注的焦点和研究的热点。重金属原位钝化修复技术是一种有前景的解决方案。其中,钝化材料是关键。着重介绍了不同类型重金属污染土壤原位钝化修复材料的修复原理、修复效果及应用情况,简要分析了修复材料的成本和效益,为重金属污染土壤原位钝化修复研究提供相关信息。  相似文献   

10.
电动力学修复技术是把电极插入受污染的土壤并通入直流电 ,发生土壤孔隙水和带电离子的迁移。土壤中的污染物质在外加电扬作用下发生定向移动并在电极附近累积 ,抽出处理从而被除去。新兴的电动力学原位修复技术去除土壤重金属污染正越来越多地被各国研究人员接受。一系列实验规模的研究和技术已日渐成熟 ,其中Lasagna技术和Electro klean技术已在美国肯塔基州和路易斯安那州等地进行了原位修复  相似文献   

11.
为了探索石油污染土壤中含氮杂环化合物的降解情况,在考察石油污染土壤理化性质的基础上,选择喹啉作为目标污染物,采用选择性富集培养的方法,从45份石油污染土壤样品中,分离得到155株降解喹啉污染物的高效降解菌株,从中选择降解效率较高的2株喹啉降解菌命名为Q5和Q24,进行喹啉的降解性能研究,比较了单一优势菌株、人工复合菌群和土壤中的自然菌群对喹啉的降解情况。实验结果表明,石油污染土壤中自然菌群对喹啉的降解效果好于单一的优势菌株和人工复合菌群。  相似文献   

12.
土壤及土壤-植物系统中复合污染的研究进展   总被引:3,自引:0,他引:3  
土壤复合污染是土壤污染的主要存在形式 ,在分析中 ,主要从土壤重金属复合污染和土壤重金属 有机污染物复合污染方面进行了较为全面的综述 ,评价了土壤复合污染的多种表征方法 ,并且讨论了该研究当前仍存在的一些问题  相似文献   

13.
Bioremediation of diesel-contaminated soil with composting   总被引:22,自引:0,他引:22  
The major objective of this research was to find the appropriate mix ratio of organic amendments for enhancing diesel oil degradation during contaminated soil composting. Sewage sludge or compost was added as an amendment for supplementing organic matter for composting of contaminated soil. The ratios of contaminated soil to organic amendments were 1:0.1, 1:0.3, 1:0.5, and 1:1 as wet weight basis. Target contaminant of this research was diesel oil, which was spiked at 10,000 mg/kg sample on a dry weight basis. The degradation of diesel oil was significantly enhanced by the addition of these organic amendments relative to straight soil. Degradation rates of total petroleum hydrocarbons (TPH) and n-alkanes were the greatest at the ratio of 1:0.5 of contaminated soil to organic amendments on wet weight basis. Preferential degradation of n-alkanes over TPH was observed regardless of the kind and the amount of organic amendments. The first order degradation constant of n-alkanes was about twice TPH degradation constant. Normal alkanes could be divided in two groups (C10-C15 versus C16-C20) based on the first order kinetic constant. Volatilization loss of TPH was only about 2% of initial TPH. Normal alkanes lost by volatilization were mainly by the compounds of C10 to C16. High correlations (r=0.80-0.86) were found among TPH degradation rate, amount of CO2 evolved, and dehydrogenase activity.  相似文献   

14.
石油污染土壤的植物与微生物修复技术   总被引:20,自引:3,他引:20  
石油污染土壤的生物修复技术具有成本低、简便高效、对环境影响小等优点,正逐步成为石油污染治理研究的热点领域,具有广阔的发展前景.介绍了我国的石油污染概况及生物修复技术在石油污染治理中的应用,重点对石油污染土壤的微生物修复、植物修复、植物一微生物联合修复技术的研究进展及各自的优点、局限性进行了综述,并提出了石油污染土壤生物修复技术研究的重点领域.  相似文献   

15.
Transport of molybdenum in a biosolid-amended alkaline soil   总被引:3,自引:0,他引:3  
The transport of molybdenum (Mo) in a biosolid-amended, alkaline, agricultural soil was examined in the research reported herein. Batch-equilibrium and miscible-displacement experiments were conducted to examine the transport of Mo in soil with and without 10% by weight biosolid amendment. The results of geochemical modeling, conducted using PHREEQC, indicated that no mineral dissolution or precipitation reactions were expected for the system under the prevailing conditions. Sorption equilibrium coefficients (Kd) obtained from moment analysis of the Mo breakthrough curves were similar to those calculated from the results of the batch-equilibrium experiments. Mo sorption was greater for the biosolid-amended soil (Kd of 1.3 versus 0.35). Sorption of Mo was shown to be linear, rate limited, and reversible for both unamended and amended soil. The results suggest that Mo associated with biosolid-amended soils is relatively bioavailable and mobile.  相似文献   

16.
Zhou C  Zhou Q  Wang S 《Ambio》2003,32(1):6-12
Research on the terrestrial carbon cycle is an important component in the study of global change. Soil organic carbon, as the main part of the terrestrial carbon reservoir, plays an important role in the Earth's carbon cycle. To accurately estimate soil organic carbon storage, its composition and dynamic change must be determined. This presents a challenge to research on the soil carbon cycle, especially in China where the nationwide soil organic carbon reservoir largely remains unknown. This paper reports a research project that attempts to estimate the nationwide soil organic carbon reservoir. Data from 2473 soil profiles from the second national soil survey were collected and GIS technology was employed to quantify the national soil carbon reservoir. The analytical results show that the total amount of soil organic carbon is about 92.4 Pg (Pg = 10(15) g) and that the average carbon density is about 10.53 kg C m(-2). The spatial distribution of soil organic carbon was also analyzed and mapped. This study presents basic data and an analysis method for carbon-cycle studies and also provides scientific support for policy-making efforts to control CO2 emissions in China.  相似文献   

17.
Potentially hazardous trace elements such as Cd, Cu, Cr, Ni and Zn are expected to accumulate in biosolids–amended soil and remain in the soil for a long period of time. In this research, uptake of metals by food plants including cabbage, carrot, lettuce and tomato grown on soils 10 years after biosolids application was studied. All the five metals were significantly accumulated in the biosolids-amended soils. The accumulation of metal in soil did not result in significant increase in concentrations of Cu, Cr and Ni in the edible plant tissues. However, the Cd and Zn concentrations of the edible tissues of plants harvested from the biosolids receiving soils were significantly enhanced in comparison with those of the unaffected soils. The plant uptake under Greenfield sandy loam soil was generally higher than those under the Domino clayey loam soil. The metal concentration of edible plant tissue exhibited increasing trends with respect to the concentrations of the ambulated metals. The extents of the increases were plant species dependent. The indigenous soil metals were absorbed by the plants in much higher rates than those of the biosolids–receiving soils. It appeared that the plant uptake of the indigenous soil-borne metal and the added biosolids-borne metals are independent of one another and mathematically are additive.  相似文献   

18.
Previous research showed a regional Cu enrichment of 6 mg kg−1 in the top soil of the Ypres war zone (Belgium), caused by corrosion of WWI shell fragments. Further research was required since in addition to Cu, also As, Pb, and Zn were used during the manufacturing of ammunition. Therefore, an additional data collection was conducted in which the initial Cu data set was tripled to 731 data points and extended to eight heavy metals (As, Cd, Cr, Cu, Hg, Ni, Pb, and Zn) which permitted (1) to evaluate the environmental impact of the heavy metals at a regional scale and (2) to assess their regional spatial occurrence by performing an optimized geostatistical modeling. The results showed no pollution at a regional scale, but sometimes locally concentrations exceeded the soil sanitation threshold, especially for Cu, Pb, and Zn. The spatial patterns of Ni and Cr were related to variations in soil texture whereas the occurrences of Cu and Pb were clearly linked to WWI activities. This difference in spatial behavior was confirmed by an analysis of coregionalization.  相似文献   

19.
Pot experiments were conducted to examine the effects of various fertilizers, as well as soil dilution treatments on the dynamics of soil-borne DDTs [sum of dichlorodiphenyltrichloroethane (DDT), chlorodiphenyldichloroethylene (DDE) and di- chlorodiphenyldichloroethane (DDD)] and hexachlorocyclohexanes (HCHs, sum of α-HCH, β-HCH, γ-HCH and δ-HCH) and their subsequent impacts on the uptake of DDTs and HCHs by a test plant. The results show that the soil residual DDTs and HCHs concentrations in the iron-rich fertilizer-treated soil were significantly lower than those in other fertilizer-treated soils. There was a close relationship between the soil residual DDTs and the plant tissue DDTs. This suggests that the uptake rate of DDTs by the plant was dependent on the concentration of soil-borne DDTs. A less close relationship between soil residual HCHs and plant tissue HCHs was also observed. Dilution of pesticide-contaminated soil with the non-contaminated soil not only physically reduced the concentration of pesticides in the soil but also enhanced the loss of soil-borne pesticides, possibly through the improvement of soil conditions for microbial degradation. Soil dilution had a better effect on promoting the loss of soil-borne HCHs, relative to soil-borne-DDTs. The research findings obtained from this study have implications for management of heavily contaminated soils with DDTs and HCHs. Remediation of DDTs and HCHs-contaminated soils in a cost-effective way can be achieved by incorporating treatment techniques into conventional agricultural practices. Applications of iron-rich fertilizer and soil dilution treatments could cost-effectively reduce soil-borne DDTs and HCHs, and subsequently the uptake of these organochlorine pesticides by vegetables.  相似文献   

20.
土壤中咪唑啉酮类除草剂的分析及归趋研究   总被引:1,自引:0,他引:1  
咪唑啉酮类除草剂具有较长的残留活性,研究其在土壤中的环境行为具有重要的意义.介绍了咪唑啉酮类除草剂的特性,评述了咪唑啉酮类除草剂在土壤中的前处理方法和分析方法以及该类除草剂在土壤中的吸附、降解和迁移特性,并针对目前的状况和存在的问题提出了今后的研究方向.  相似文献   

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