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1.
EDTA/纳米羟基磷灰石联合修复重金属污染土壤   总被引:2,自引:0,他引:2  
土壤淋洗可能导致残留重金属活化,采用淋洗/钝化联合修复重金属污染土壤可在一定程度上减少这一影响。研究了EDTA淋洗、纳米羟基磷灰石钝化及两者联合修复对土壤重金属洗脱率、TCLP浸出浓度、化学形态分布的影响,构建了涵盖土壤重金属残留量、生物有效性和生理毒性的环境风险评价方法,对淋洗、钝化及其联合修复进行了评价。结果发现,EDTA淋洗对Pb和Cu的洗脱效果较好,对Zn浸出浓度的削减率较高。当EDTA投加量为2 g·L~(-1)时,Zn的浸出浓度降低了70.40%。纳米羟基磷灰石对Pb和Zn具有较好的钝化效果,对Cu和Cd的钝化作用相对较弱。当纳米羟基磷灰石投加量为2%时,Pb浸出浓度削减率高达89.65%。淋洗/钝化联合修复大幅度降低了Pb和Cd的浸出浓度,降低了可还原态Cu残留量、可还原态和残渣态Cd残留量,以及弱酸提取态和可还原态Zn、Pb残留量。当EDTA和纳米羟基磷灰石投加量分别为1 g·L~(-1)和1%时,土壤重金属总环境风险削减率达到74.12%。EDTA对土壤中Cu和Cd的洗脱效果较好,后续钝化修复作用有限,Pb和Zn则可通过淋洗/钝化联合修复大幅度提高削减环境风险削减率。  相似文献   

2.
不同化学淋洗剂对复合重金属污染土壤的修复机理   总被引:3,自引:0,他引:3  
化学淋洗技术是一种常用的重金属污染土壤修复技术,化学淋洗剂的选择尤为重要。以乙二胺四乙酸二钠(EDTA),柠檬酸(CA)和三氯化铁(FeCl_3)为化学淋洗剂,采用振荡淋洗法研究淋洗时间与淋洗剂浓度对Cu、Zn、Pb和Cd去除效果的影响,分析重金属污染土壤淋洗前后重金属形态与基本理化性质的变化。结果表明:3种化学淋洗剂对重金属的快速反应阶段基本在60 min内,在240 min达到淋洗平衡,对Pb和Cd的淋洗主要是非均相扩散过程;EDTA、柠檬酸和FeCl_3对重金属的去除能力依次为PbCdCuZn,CdZnCuPb与Pb≈CdCuZn,EDTA的淋洗效率最高,Cd的解吸能力最强;EDTA和FeCl_3可有效去除弱酸可溶态与可还原态重金属,柠檬酸能有效去除弱酸可溶态重金属,修复后的土壤仍有环境风险;3种淋洗剂修复后的土壤中总有机碳与粒径分布无明显变化,FeCl_3会酸化土壤。综合考虑,EDTA、柠檬酸和FeCl_3均为淋洗效果好的环境友好型化学淋洗剂,该研究成果可用于现场淋洗去除土壤中重金属的小试。  相似文献   

3.
超声强化淋洗修复Pb、Cd、Cu复合污染土壤   总被引:1,自引:0,他引:1  
针对传统淋洗法修复土壤中重金属效率较低的问题,研究了超声强化淋洗技术以提高重金属去除率。以铅(Pb)、镉(Cd)、铜(Cu)为目标污染物,在0.05 mol·L~(-1)柠檬酸、0.05 mol·L~(-1)EDTA和0.05 mol·L~(-1)皂角苷作为淋洗剂条件下,使用传统振荡、超声强化以及超声波加振荡3种不同的作用方式,对Pb、Cd、Cu的去除率进行比较,并对3种不同淋洗方式后Pb、Cd、Cu的形态变化进行了探讨。结果表明,当使用柠檬酸和皂角苷作为淋洗剂进行振荡淋洗时,重金属洗脱效果不理想。超声对于强化柠檬酸洗脱效果并不明显,而对于强化皂角苷洗脱重金属效果明显,平均去除率提高了120.47%。当淋洗剂为EDTA时,土壤样品在传统振荡2 h作用下,对Pb、Cd、Cu的去除率依次为50.33%、76.65%和47.35%,而在超声波30 min条件下对Pb、Cd、Cu的去除率依次为82.19%、83.31%和53.89%,平均去除率高出28.60%,可显著提高重金属去除率,缩短淋洗时间。但超声波30 min加传统振荡2 h相较于单纯超声强化效果提升不明显。通过对比3种淋洗方式后土壤中的Pb、Cd、Cu形态发现,酸可提取态的重金属在超声强化作用后有明显降低,同时超声强化对于铁锰氧化物结合态、有机物结合态和残渣态也具有较好的去除能力。因此,超声强化在化学淋洗中的应用具有一定的可行性,是一种简单、极快速去除污染场地中重金属Pb、Cd、Cu的增效手段。  相似文献   

4.
淋洗是一种快速高效的土壤重金属修复技术,淋洗条件的选择对不同土地利用类型的重金属污染修复具有重要意义。以Ni、Cu、Cd复合污染土壤为研究对象,在不同淋洗条件(液固比和pH)下考察6种淋洗剂(去离子水、模拟酸雨、柠檬酸、草酸、乙二胺四乙酸二钠(Na2EDTA)和氨三乙酸(NTA))对Ni、Cu、Cd的淋洗效果、形态分布及生物可利用性影响。结果表明:(1)当液固比5∶1mL/g时,柠檬酸、Na2EDTA、NTA表现出良好的淋洗效果,对建设用地土壤Ni、Cu、Cd的去除率分别达到84.53%、92.30%、56.00%以上。(2)淋洗后土壤中可交换态、可还原态Ni、Cu、Cd浓度均明显降低。(3)总体上,淋洗使残余指数升高、迁移系数降低,重金属离子在液固比20∶1 mL/g时生物可利用性最低。(4)根据实际污染土壤效果,pH 5.2的柠檬酸或pH 7.5的Na2EDTA在液固比20∶1mL/g时可降低农业土壤的风险;建设用地土壤使用液固比5∶1mL/g、pH 7.5的Na2EDTA或pH 7.5的NTA对3种重金属的去除率达80.43%以上。  相似文献   

5.
环境友好型淋洗剂对重金属污染土壤的修复效果   总被引:9,自引:0,他引:9  
以广西某废弃铅锌冶炼企业重金属复合污染土壤为对象,采用土柱淋洗的方法,分别将自制的茶皂素、柠檬酸和EDTA 3种淋洗剂进行复合淋洗,并对复合淋洗的最佳配比、淋洗剂添加方式和淋洗时间进行研究,得到对环境友好且淋洗效果好的复合淋洗剂。最后,对淋洗前后土壤中Cu、Pb和Zn的赋存形态进行研究,探讨淋洗机理。研究结果表明,茶皂素和柠檬酸复合时对重金属Cu、Pb、Zn的去除率分别达到了77.00%、52.09%和58.66%,综合考虑淋洗效率以及经济环保等因素,选择将茶皂素和柠檬酸复合进行淋洗。复合淋洗实验结果表明,柠檬酸和茶皂素体积比为3∶1复合方式淋洗30 h,淋洗效果最佳,对重金属Cu、Pb和Zn的去除率分别达到82.77%、65.49%和78.12%。茶皂素和柠檬酸复合淋洗能有效的去除土壤中酸可提取态和有机结合态的重金属,氧化物结合态的Pb和Zn也有较大程度的降低,同时还发现,茶皂素和柠檬酸共同作用对残余态的Pb去除效果也较好,可达到50%以上。从茶籽饼中提取茶皂素与天然有机酸柠檬酸复合淋洗,用于修复污染面积小、污染浓度高且污染比较集中的重金属污染土壤,效果好且对环境友好。  相似文献   

6.
3种环保型淋洗剂对重金属污染土壤的淋洗效果   总被引:2,自引:0,他引:2  
采用振荡淋洗法研究衣康酸(IA)、丙烯酸-2-丙烯酰胺-2-甲基丙磺酸共聚物(AA/AMPS)和衣康酸-丙烯酸共聚物(IA-AA)在不同因素影响下对污染土壤Cd、Pb和Zn的淋洗效率。结果表明:3种淋洗剂对土壤Cd、Pb和Zn的去除率随其浓度增加而快速上升,随pH增加呈迅速下降和先升高后降低2种趋势,随淋洗时间总体呈上升趋势;3种淋洗剂在浓度为0.15 mol·L-1且pH为3时,对Cd和Zn去除率最高(39.34%~65.65%);在相同浓度和pH为5条件下对Pb的去除率最高(22.05%~50.62%)。其中IA-AA对Cd、Pb和Zn的去除率分别可达65.65%、50.62%和44.92%。它们去除的主要重金属组分为酸溶态、可还原态和部分可氧化态,且经IA和IA-AA淋洗的土壤养分损失相对较小。因此,IA-AA是修复Cd、Pb和Zn复合污染土壤有工程应用前景的淋洗剂。  相似文献   

7.
重金属-多氯联苯复合污染土壤同步洗脱   总被引:1,自引:0,他引:1  
电子垃圾拆解区土壤具有重金属与有机物复合污染的特性,尤其以Cu、Pb、Cd和多氯联苯(PCBs)的复合污染较为突出。为了同步脱除土壤中重金属与PCBs,选用增溶物质:Tween 80、TX-100、SDBS、β-环糊精与螯合剂柠檬酸依次组合进行复合污染土壤淋洗实验,应用批量平衡震荡法研究它们对重金属(Cu、Pb、Cd)与PCBs(Aroclor 1254)的洗脱效果。通过比较洗脱效果、环境友好性等方面,得出非离子表面活性剂Tween 80与天然螯合剂柠檬酸2种淋洗剂复合最佳;进一步研究两者的淋洗先后顺序、浓度配比、洗脱时间及淋洗剂p H对污染土壤洗脱效果的影响,结果表明,在Tween 80和柠檬酸均为10 g/L、p H=6、淋洗时间12 h时淋洗效果达到最佳,对Cu、Pb、Cd及PCBs的洗脱率分别达到98.77%、55.92%、66.82%和58.01%。因此,利用Tween80和柠檬酸组合可同时有效去除土壤重金属和PCBs,是复合污染土壤淋洗修复的有效淋洗剂。  相似文献   

8.
重金属污染土壤的草酸和EDTA混合淋洗研究   总被引:13,自引:0,他引:13  
黄川  李柳  黄珊  宋雪 《环境工程学报》2014,8(8):3480-3486
采用不同浓度的草酸(oxalic acid,OX)和乙二胺四乙酸(EDTA)混合的淋洗方法研究重金属污染土壤的最佳混合淋洗方式,探讨了液固比、淋洗时间及pH对淋洗效果的影响,并分析了0.2 mol/L OX+0.2 mol/L EDTA处理前后土壤中重金属形态的变化。结果表明,采用0.2 mol/L OX+0.2 mol/L EDTA混合的淋洗法可同时去除多种重金属,且对Cu、Zn、Ni和Cr的去除率明显高于单用OX和EDTA,去除率分别为Cu 41.29%、Zn 84.73%、Ni 54.2%和Cr 66.01%。0.2mol/L OX+0.2 mol/L EDTA在液固比为5∶1、淋洗时间为4 h、pH为6时可分别达到最佳淋洗效果,且分别为Cu 62.59%、Zn 93.48%、Ni 55.95%和Cr 71.57%;Cu 50.47%、Zn 86.67%、Ni 61.53%和Cr 72.68%;Cu 44.40%、Zn 81.82%、Ni68.76%和Cr 74.93%。形态分析结果表明,0.2 mol/L OX+0.2 mol/L EDTA能较好地改变土壤中重金属形态的分布。  相似文献   

9.
以多种重金属污染的土壤为材料,研究了酶对重金属的去除效果。在单因素实验基础上,采用响应面法对重金属去除的反应条件进行优化,结果表明,α-淀粉酶质量浓度0.2%、p H 3.5、反应时间12 h为最佳淋洗修复条件,Cd、Cr、Cu、Ni、Zn去除率分别为82.36%、75.02%、38.38%、34.69%和57.54%,去除率的大小顺序为CdCrZnCuNi。酶作为土壤的组成部分,利用酶修复重金属污染的土壤,可以降低环境风险,具有较好应用前景。  相似文献   

10.
利用超声强化茶皂素修复土壤重金属,研究了淋洗剂浓度、淋洗方式及淋洗时间对土壤中重金属Cu、Zn、Pb和Cd的修复效果及修复前后土壤重金属的形态变化。结果表明:茶皂素对土壤Cu、Zn、Pb和Cd的解吸率随着茶皂素浓度升高而增大,最大解吸率分别为48.60%、35.10%、28.10%和45.60%。单独采用超声导致低解吸率,而超声辅助振荡能增加重金属的解吸率(26.3%~61.6%)并缩短达到平衡状态的时间。双常数方程和Elovich方程均能较好描述3种淋洗方式下重金属的解吸动力学过程,重金属的解吸过程是非均相扩散。超声辅助作用下可以活化土壤中的重金属,并通过振荡减少重金属的酸提取态和可还原态,从而减少重金属可迁移性和生物可利用性。  相似文献   

11.
污染土壤淋洗技术是修复污染土壤的一种新方法 ,是对污染土壤生物修复的一种补充 ,使污染土壤修复的系统化成为可能。淋洗法主要使用淋洗剂清洗土壤 ,使土壤中污染物随淋洗剂流出 ,然后对淋洗剂及土壤进行后续处理 ,从而达到修复污染土壤的目的。因为淋洗剂的种类和淋洗方式的不同 ,土壤淋洗法可分为许多种类。土壤淋洗法主要受土壤条件、污染物类型、淋洗剂的种类和运行方式等因素影响。综合考虑多方面因素 ,就有潜力设计出经济高效的土壤淋洗系统。土壤淋洗法有很多优点 ,尽管也存在一些问题 ,但其技术上的优势也是其他方法难以取代的 ,所以有良好的应用前景。  相似文献   

12.

Laboratorial scale experiments were performed to evaluate the efficacy of a washing process using the combination of methyl-β-cyclodextrin (MCD) and tea saponin (TS) for simultaneous desorption of hydrophobic organic contaminants (HOCs) and heavy metals from an electronic waste (e-waste) site. Ultrasonically aided mixing of the field contaminated soil with a combination of MCD and TS solutions simultaneously mobilizes most of polybrominated diphenyl ethers (PBDEs), polychlorinated biphenyls (PCBs), polycyclic aromatic hydrocarbons (PAHs), and the analyte metal (Pb, Cu, and Ni) burdens. It is found that 15 g/L MCD and 10 g/L TS is an efficient reagent combination reconciling extraction performance and reagent costs. Under these conditions, the removal efficiencies of HOCs and heavy metals are 93.5 and 91.2 %, respectively, after 2 cycles of 60-min ultrasound-assisted washing cycles. By contrast, 86.3 % of HOCs and 88.4 % of metals are removed from the soil in the absence of ultrasound after 3 cycles of 120-min washing. The ultrasound-assisted soil washing could generate high removal efficiency and decrease the operating time significantly. Finally, the feasibility of regenerating and reusing the spent washing solution in extracting pollutants from the soil is also demonstrated. By application of this integrated technology, it is possible to recycle the washing solution for a purpose to reduce the consumption of surfactant solutions. Collectively, it has provided an effective and economic treatment of e-waste-polluted soil.

  相似文献   

13.
A deterministic model for long-term behaviour of contaminants in the rootzone is developed that includes sorption, leaching, and plant uptake. The model is applied to cadmium accumulation in a sandy soil and uptake of cadmium by barley. Sensitivity analysis showed that the sensitivity of the leaching rate to changes in soil chemical and soil physical parameters decreases as a function of time, and becomes zero when steady state is reached. In contrast, accumulation of cadmium in soil and the plant uptake rate of barley are increasingly sensitive to soil chemical and soil physical parameters as time preceeds. To analyse cadmium behaviour in a field that is heterogeneous with respect to soil physical properties, the interstitial flow velocity was assumed to be a random, lognormally distributed variate. Using Monte Carlo simulation, the average plant uptake rate appeared to be much higher in the stochastic analysis than in the deterministic approach. Steady state is reached after a very long period of time. For a lognormally distributed proton activity, causing heterogeneity with respect to the sorption capacity of the soil, the model predicted similar deviations from the deterministic approach. It is concluded that reference values for groundwater and crop quality are exceeded earlier in a heterogeneous field than in a homogenous soil profile. Moreover, when average values suggest an acceptable situation, variability of the leaching rate and the plant uptake rate can still cause exceedance of reference values in part of the field. Therefore, it is reasoned that environmental quality standards should take soil heterogeneity into account.  相似文献   

14.
Fracturing, either pneumatic or hydraulic, is a method to improve the performance of soil vapor extraction (SVE) in relatively low permeability soils (< 10(-5) cm/s). A two-dimensional model is presented to simulate trichloroethylene (TCE) soil vapor extraction modified by fracturing. Flow and transport is modeled using mobile macropore and micropore networks, which also have been identified in the literature as dual porosity, dual permeability, or heterogeneous flow models. In this model, fluids can flow in both the macropore and micropore networks. This represents a more general model compared to immobile micropore, mobile macropore models presented thus far in the literature for vapor flow and transport in two dimensions. The model considers pressure- and concentration-driven exchange between the macropore and micropore networks, concentration-driven exchange between the gas and sorbed phases within each network, and equilibrium exchange between the gas and water and a sorbed phase within each network. The parameters employed in an example simulation are based on field measurements made at a fractured site. Considered in the simulations were the influence of the volume percentage of fractures, the length of fractures, the relative location of the water table, and the influence of pulsed pumping. For these simulations, internetwork concentration-driven exchange most significantly affected mass removal. The volume percentage of fractures more significantly influence flow and mass removal than the length of fractures. The depth of the water table below the contamination plume only significantly influenced flow and mass removal when the water table was within 60 cm of the bottom of the contaminated soil in the vadose zone for the parameters considered in this study. Pulsed pumping was not found to increase the amount of mass removed in this study.  相似文献   

15.
Nitrogen (N) remaining as inorganic ('mineral') soil N at crop harvest (N(minH)) contributes to nitrate leaching. N(minH) data from 20 (grass) and 78 (maize) experiments were examined to identify main determinants of N(minH). N-rate (A) explained 51% (grass) and 34% (maize) of the variance in N(minH). Best models included in addition crop N-offtake (U), offtake in unfertilised plots (U(0)), and N(minH) in unfertilised plots (N(minH,0)) and then explained up to 75% of variance. At low N-rates where apparent N recovery rho keeps to its initial value rho(ini), N(minH) keeps to its base level N(minH,0). At N-rates that exceed the value A(crit) where rho drops below rho(ini), N(minH) rises above N(minH,0) by an amount proportional to (rho(ini)-rho)A. About 80% of (rho(ini)-rho)A was found as N(minH,) in grass as well as in maize. The fraction (1-rho(ini))A does not appear to contribute to N(minH) at low N-rates (A< or =A(crit)) or at high N-rates (A>A(crit)).  相似文献   

16.
The effect of sludge processing (digested dewatered, pelletized, alkaline-stabilized, composted, and incinerated), soil type and initial soil pH on trace metal mobility was examined using undisturbed soil columns. Soils tested were Hudson silt loam (Glossaquic Hapludalf) and Arkport fine sandy loam (Lamellic Hapludalf), at initial pH levels of 5 and 7. Sludges were applied during four accelerated cropping cycles (215 tons/ha cumulative application for dewatered sludge; equivalent rates for other sludges), followed by four post-application cycles. Also examined (with no sludge applications) were Hudson soil columns from a field site that received a heavy loading of sludge in 1978. Romaine (Lactuca sativa) and oats (Avena sativa) were planted in alternate cycles, with oats later replaced by red clover (Trifolium pratense). Soil columns were watered with synthetic acid rainwater, and percolates were analyzed for trace metals (ICP spectroscopy), electrical conductivity and pH. Percolate metal concentrations varied with sludge and soil treatments. Composted sludge and ash had the lowest overall metal mobilities. Dewatered and pelletized sludge had notable leaching of Ni, Cd and Zn in Arkport soils, especially at low pH. Alkaline-stabilized sludge had the widest range of percolate metals (relatively insensitive to soils) including Cu, Ni, B and Mo. Old site column percolate concentrations showed good agreement with previous field data. Little leaching of P was observed in all cases. Cumulative percolate metal losses for all treatments were low relative to total applied metals. Leachate and soil pH were substantially depressed in dewatered and pelletized sludge soil columns and increased for alkaline-stabilized and ash treatments.  相似文献   

17.
山区公路建设弃渣场常由石渣堆砌而成,其结构松散、孔隙率大、渗透性强,自然生态恢复极为困难.而客土培育技术常用于生态条件恶劣的区域生态治理.以湖北省宜昌某高速公路弃渣场为依托,应用客土灌木化施工工艺,以植被覆盖度和高度作为观测指标,开展了弃渣场生态恢复试验,主要研究灌木生长特点及其对土壤侵蚀的影响,提出适宜宜昌地区弃渣场生态治理的植被类型,对区域内弃渣场生态恢复工程有一定指导意义.  相似文献   

18.
Abstract

Effects of soil pH on weak acid and weak base herbicide adsorption by soil are often determined by modifying soil pH in the laboratory. Modification of soil pH with acidic or basic amendments such as HCl or NaOH can cause changes in the soil‐solution system that may affect pesticide adsorption. The partition coefficients (Kd) for atrazine and dicamba by Waukegan, Piano, and Walla Walla silt loam soils stabilized in the field at different pH levels were compared to the Kd obtained when the soil pH was adjusted with acidic or basic amendments before herbicide addition. NaOH addition to raise soil pH generally increased the soluble soil organic carbon (SSOC) concentration in solution compared to field soils at the same pH and to soil treated with Ca(OH)2. NaOH decreased the soil solution ionic strength slightly. Acidifying soils increased the soil solution ionic strength, when compared to field soils at the same pH and had no effect on SSOC concentration. Dicamba adsorption to soil was minimal (Kd < 0.22) and not influenced by soil pH in the range of 4.1 to 6.0; adsorption by laboratory amended soils in some cases underestimated adsorption compared to nonamended soils. Atrazine adsorption increased with decreased pH in all soils, and was overestimated slightly by several laboratory treatments to reduce pH compared to adsorption by field soils. Treatments to raise the pH did not affect atrazine adsorption. Overall, herbicide adsorption differences due to pH modification were small (<30%), and were not affected by soil solution ionic strength, saturating cation, or SSOC concentration in solution.  相似文献   

19.
A study was conducted to determine the possible role of soil aggregates in the sequestration of phenanthrene and thus in the declined biodegradation of the hydrocarbon. Phenanthrene aged in Lima loam (2-mm aggregates) showed declined biodegradation with time of aging to the test bacterium P5-2 capable of using sorbed phenanthrene. In contrast, the compound aged in a soil reconstructed with 68% clay-silt and 32% sand that had been separated from the Lima loam was readily mineralized. The percentages of each fraction used were the same as those of the original soil. Biodegradation of aged phenanthrene was not affected significantly by varying the ratios of each fraction in reconstructed mixtures. In experiments with Lima loam, its clay-silt fraction, and its sand fraction, mineralization extent was much lower in soil aggregates compared with the other samples while all had similar organic carbon content of ca. 1.51%. This suggests that aggregation may be another important determinant in the reduced biodegradation of aged phenanthrene.  相似文献   

20.
Microbial inhibitors such as mercuric chloride are frequently used to sterilize soil or soil-water slurries in experimental studies on the fate of xenobiotics in the environment. This study examined the influence of mercuric chloride additions to soil-water slurries on the sorptive behaviour of a phenoxy herbicide (2,4-D) in soil. The results demonstrated that mercuric chloride strongly decreased the capacity of the soil to retain herbicides, and that the interference of mercuric chloride with herbicide sorption increased with increasing soil organic carbon contents. Because of the competitive sorption between mercuric chloride and the phenoxy herbicide, we conclude that mercuric chloride may not be a good soil sterilization procedure for use in xenobiotic fate studies.  相似文献   

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