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871.
零价铁PRB修复2,4-DNT污染地下水模拟研究   总被引:2,自引:0,他引:2       下载免费PDF全文
研究了零价铁(Fe0)作为PRB墙体介质材料去除地下水环境中2,4-二硝基甲苯(2,4-DNT)可行性.通过室内试验研究地下水环境中Fe0去除水相2,4-DNT效果以及降解动力学参数,并结合一假设地下水受2,4-DNT污染的场地,采用Visual Modflow模拟Fe0墙体材料PRB(Fe0-PRB)修复地下水中2,4-DNT降解效果并评价其可行性.结果表明:在模拟过程中,PRB能有效控制并减少污染羽面积,降低污染浓度;污染4a后,污染地下水的2,4-DNT总质量约1.46×104kg,可推知PRB修复达标耗用Fe0材料为8.76×104kg;渗透系数增大导致地下水速率增大,2,4-DNT与墙体Fe0材料接触时间不充分,污染物污染下游地下水,同时也加速PRB上游污染羽面积减少.因此,结合数值模拟是有效的评价PRB介质材料修复地下水污染效果及确定PRB参数的重要手段之一.  相似文献   
872.
环境中植酸的分布、形态及界面反应行为   总被引:2,自引:0,他引:2  
肌-肌醇六磷酸(myo-inositol-1,2,3,4,5,6-hexakisphosphate,IHP,myo-IP6)简称植酸(Phytic acid或phytate),是大多数土壤中最为丰富的有机磷,它在环境中的界面反应影响着磷素的迁移、循环、转化、生物有效性以及环境效应.本文简要总结了环境中植酸的分布与形态,并综述了其界面反应,包括铁铝氧化物、粘土矿物、碳酸钙等对植酸的吸附解吸,多价阳离子与植酸的络合反应以及沉淀作用.土壤矿物对植酸的吸附影响其转化和生物有效性,矿物对植酸磷的吸附量一般远高于正磷酸盐.其中,弱晶质铁铝(氢)氧化物对植酸的吸附能力一般较晶形铁铝(氢)氧化物大很多.同时,分析了矿物类型、介质pH、温度、共存离子等环境条件对植酸界面反应的影响,植酸吸附对矿物表面电荷性质、颗粒大小和分散稳定性等的作用,以及植酸在金属污染土壤修复中的应用前景.最后讨论了环境中植酸的主要研究热点和方向.  相似文献   
873.
利用生物表面活性鼠李糖脂(RL)洗脱土壤,再通过紫外光预照射与生物降解协同去除洗脱液中的PCBs的组合方法对多氯联苯(PCBs)污染土壤进行修复,旨在研究RL在修复PCBs污染土壤中的作用及其机理。结果表明,RL对PCBs的洗脱具有显著的促进作用,PCBs的总洗脱率与RL的质量浓度呈正相关。当洗脱液中加入2 000 mg.L-1的RL,在3次批洗脱后,人工污染土样和陈化土样的PCBs总洗脱率分别达到了90.1%和47.1%。PCBs降解菌P.LB400在以RL或联苯为碳源的驯化培养基中均能够快速生长。当土壤洗脱液中的PCBs被P.LB400的生长细胞菌液降解时,RL对PCBs的生物降解具有显著的促进作用;而在P.LB400的休眠细胞降解体系中,RL对PCBs的生物降解有一定的抑制作用。紫外光预照射对土壤洗脱液中PCBs的生物降解有一定的促进作用。紫外光预照射和生物降解的耦合有利于提高PCBs的降解速率。  相似文献   
874.
生物堆模拟法修复苯并[a]芘和二苯并[a,h]蒽污染土壤   总被引:1,自引:0,他引:1  
采用生物堆模拟方法,研究苯并[a]芘(BaP)和二苯并[a,h]蒽(DBA)污染土壤的生物修复条件.结果表明,在生物堆中投加绿肥或秸秆可明显促进BaP和DBA的降解;通气速率分别为0.05和0.10m3·h-1时BaP和DBA的降解率无明显差异;添加EM菌对BaP和DBA的降解有抑制作用.在投加20g·kg-1绿肥、通气速率为0.10m3·h-1时,BaP和DBA的去除效果最佳,处理160d时降解率分别达64.8%和74.9%.  相似文献   
875.
采用电动力修复技术处理Pb、Cd复合污染土壤,考察了柠檬酸和乙二胺四乙酸二钠(EDTA)作为电解液对棕壤(ZR)和红壤(HR)两种我国典型壤质中Pb、Cd去除效果的影响。实验结果表明:在电压梯度为2 V/cm,修复时间为4 d的条件下,ZR的最佳电解液为EDTA,Pb、Cd平均去除率为13.2%和17.8%,HR的最佳电解液为柠檬酸,Pb、Cd的平均去除率为20.0%和33.8%;延长修复时间至10 d能显著提高HR中Pb、Cd的去除率,电解液为柠檬酸时Cd平均去除率达91.1%,电解液为EDTA时Pb平均去除率达63.2%,修复后土壤中Cd和Pb含量均低于建筑用地土壤污染风险筛选值。综合考虑能耗及修复效果,EDTA是高效且经济的修复电解液。  相似文献   
876.
In the present study different doses (0.05, 2.0 and 5.0?mg per 30?ml nutrient medium) of nano-powder (Azadirachta indica leaves) were applied in Cd contaminated (6?ppm) hydroponic system to regulate the metal uptake in Triticum aestivum (wheat) seedlings. Other physiological attributes including oxidative biomarkers, antioxidants and photosynthetic responses were also assessed. The level of Cd was maximally reduced at the dose of 2.0?mg nano powder per 30?ml nutrient medium by 45 and 49% in the shoot and root, respectively. With the maximum reduction in the Cd uptake at this dose, the generation of oxidative stress markers such as H2O2 (12%), MDA (26%) and SOR (20%) content showed maximum reduction in treated seedlings. At different doses of nano-powder, the activities of antioxidative enzymes were also showed significant variation. Further, the photosynthetic O2 evolution rate was improved with the treatment of nano-powder and the best response was noted at 2.0?mg per 30?ml nutrient medium with the maximum value of fresh shoot biomass (38%). The overall results suggest that, this technique could be easily applied for reducing the metal content and increasing the quality of agricultural crops.  相似文献   
877.
Sorption characteristics of the Benzimidazole fungicide Carbendazim were assessed in seven different soils using batch equilibrium method and analysed by UV-Vis spectrophotometer. The values of adsorption co-efficient Kd ranged from 14.3 to 39.8?µg/mL depending upon unique physiochemical properties of soils. Negative values for Gibbs free energy (ΔG) proposed an exothermic and low interaction between Carbendazim and soil samples leading to physiosorption. Statistical analysis showed a negative correlation of soil pH and Kd (R2= ?0.80) and a positive correlation with organic matter (R2?=?0.77). Activated carbon prepared from Arachis hypogaea (peanut shells) by acid activation for Carbendazim removal from soils was characterised by FTIR spectrometry, indicating the change in functional groups. The highest percentage removal observed was 70% in 5?ppm initial Carbendazim concentration while 65% in 7.5?ppm concentration. This method can be implied in agricultural soils as an efficient and cheap technique for removing the hazardous pesticides from the environment.  相似文献   
878.
In an effort to address public concerns of the long-term stability and ecological risk reduction of Cu and Cd in a farmland located at the Guixi, Jiangxi Province, China, containing ~ 800?mg?kg?1 Cu and 0.8?mg?kg?1 Cd soil, were treated in situ by attapulgite, apatite, montmorillonite and lime at the rate: 10, 10, 10 and 4?g?kg?1 soil, respectively. Field experiment consisted of 2?×?3-m plots arranged in a randomised complete block design with each treatment. Soil and plant samples were collected in sixth years post-treatments and analysed for Cu and Cd bioaccessibility, chemical fraction and Cu, Cd concentration in plant tissue. The results indicated that the apatite and lime treatments significantly reduced bioaccessible and exchangeable fractions Cu and Cd in the soil at sixth years post the treatments. Cu and Cd concentration in plant tissue was positively related to the bioaccessibility of Cu and Cd. The treatment used 10?g apatite kg?1 soil appeared to be most effective for overall risk reduction. The Cu and Cd stabilisation and risk reduction by the apatite treatments were accomplished by the induced transformation of labile Cu and Cu species to relatively insoluble forms. This study illustrated that in situ Cu and Cd stabilisation by apatite would be long-term and ecologically safe, which could safeguard human health and ecosystem from Cu and Cd contamination in mining areas.  相似文献   
879.
There is a rapidly emerging and potentially huge market for the remediation of contaminated groundwater in China. The Chinese government published a Water Action Plan in April 2015, a Soil Action Plan in May 2016, and a draft Soil Pollution Prevention and Control Law in June 2017. All of these new policies and regulations put pressures on local governments and contaminated site owners, obliging them to conduct site investigation and to cleanup contaminated groundwater. The Chinese population in northern regions heavily depend on groundwater, with nearly 70% of water supply coming from aquifer sources in the Beijing-Tianjin-Hebei region. However, poor groundwater quality due to natural geochemical background and anthropogeic pollution is a serious concern, with poor or very poor quality water observed in nearly 80% of groundwater monitoring wells in 17 northern provinces. Shallow groundwater in many areas has been contaminated by toxic pollutants such as heavy metals and chlorinated organic compounds. There is an urgent need to better understand the situation and to conduct groundwater remediation at contaminated sites. The Chinese government is investing heavily in the research and development for groundwater remediation, which is expected to greatly add to the quality and quantity of groundwater remediation projects in the near future.  相似文献   
880.
自2016年《土壤污染防治行动计划》实施以来,随着污染土壤修复工作的推进,因场地污染类型、污染程度以及土地规划类型等因素的不同,如何筛选出科学、合理、高效、低耗的修复技术显得尤为重要。在此背景下场地修复决策系统应运而生,即通过输入修复过程所有要素并结合专家判断,修复决策系统运算得出最佳修复模式,为管理者提供决策依据。本文在分析国内外修复决策系统的发展现状、特点以及优势和劣势基础上,以焦化污染场地为例拟开发基于WebGIS的污染场地修复辅助决策系统,以找出适合我国污染场地修复决策的模式,为从事相关工作的研究者和决策者提供参考。  相似文献   
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