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1.
乙二胺二琥珀酸和柠檬酸对黑土中外源重金属的活化效应   总被引:1,自引:0,他引:1  
通过解吸实验和小麦盆栽实验,研究了生物可降解有机配体乙二胺二琥珀酸(EDDS)、柠檬酸(CIT)对黑土中外源Cu、Cd、Zn和Pb的活化效应.不同浓度EDDS﹑CIT对黑土中外源重金属解吸实验表明,EDDS对黑土中外源Cu、Cd、Zn和Pb的解吸远高于CIT.重金属/EDDS摩尔比为1∶1时,4种重金属的解吸率在50.8%~69.2%.小麦盆栽实验表明,EDDS为5 mmol/kg时,对小麦幼苗茎叶和根系中重金属含量影响较大,明显导致小麦幼苗茎叶和根系中Cd、Cu、Pb和Zn的富集量增加.EDDS处理组Cd、Cu、Pb和Zn的茎叶富集系数远高于对照组和CIT处理组.随时间的增加,EDDS处理组和CIT处理组重金属的根系富集量均增加,但对照组和CIT处理组大部分重金属14 d茎叶富集量略低于7 d茎叶富集量.因此,EDDS对黑土中外源重金属有较强的解吸和活化能力,可以较大程度地强化小麦幼苗根系对黑土中外源Cd、Cu、Pb和Zn的吸收并诱导这些重金属由根系向茎叶迁移.  相似文献   

2.
生物炭对土壤吸附邻苯二甲酸二乙酯的影响   总被引:1,自引:0,他引:1  
周震峰  徐良 《环境工程学报》2017,11(9):5267-5274
选择花生壳为原材料,采用限氧升温法在450、700℃温度下分别热解2、4、6 h制备6种生物炭,在对其表面性质和元素组成进行分析的基础上,重点考察生物炭对土壤吸附邻苯二甲酸二乙酯(diethyl phthalate,DEP)的影响。结果表明:生物炭的比表面积和总孔体积随着热解温度的升高而增加,热解时间的延长也会提高比表面积和总孔体积,而4 h是较为适宜的热解时间;生物炭中元素组成主要受热解温度的影响,热解时间的作用很小,热解温度的升高使生物炭的芳香性增强,极性降低;添加生物炭能显著提高土壤对DEP的吸附能力;Langmuir模型和Freundlich模型均能较好地拟合添加生物炭土壤对DEP的吸附特征;在不同的平衡浓度条件下,生物炭对土壤吸附DEP的贡献率介于82.07%~99.49%之间,表明生物炭对土壤中DEP的吸附发挥着主导作用。相关分析发现,吸附参数ΔKoc与生物炭的比表面积和总孔体积具有显著相关性,提高比表面积和改善孔隙结构可以增强生物炭对DEP的吸附能力。  相似文献   

3.
土壤-植物系统中磷对重金属生物有效性的影响机制   总被引:30,自引:1,他引:30  
磷对植物吸收重金属元素的影响作用属于植物营养和重金属污染生态研究的前沿。污染土壤中施入磷是否能够降低重金属离子的生物有效性,除了与重金属离子本身特性有关外,还与含磷化合物的性质及土壤环境条件有关。在分析中,就土壤中磷与重金属离子间交互作用机制、土壤中影响磷降低重金属离子生物有效性的环境因子及磷与重金属交互作用的国内外研究进展作了简要综述,并对今后的研究提出了展望。  相似文献   

4.
土壤/沉积物中重金属的污染问题越来越引起重视,而重金属在环境中的生态风险与其生物可利用性和生物有效性密切相关。在总结国内外研究的基础上,明确了重金属生物有效性和生物可利用性的定义;概述了用于研究土壤/沉积物中重金属生物有效性的生物模型(小鼠、猪、兔子等);总结了用于研究土壤/沉积物中重金属生物可利用性的几种体外方法,包括模拟人类肠胃消化(PBET、SBRC、UBM等)和底栖生物消化;分析了土壤/沉积物中重金属生物有效性和生物可利用性的关键影响因素(土壤/沉积物理化性质和分析方法)。提出了未来土壤/沉积物中重金属生物有效性和生物可利用性的研究方向,以期为重金属生态风险的评价和控制提供参考。  相似文献   

5.
以硫酸亚铁为底物,对城市污泥、土壤和河流底泥进行生物沥滤实验,探讨了污泥、底泥和土壤在沥滤过程中重金属的去除效果和化学形态转化规律,了解当地土壤在酸化条件下重金属的释放过程,并对三者的研究结果进行比较分析。结果表明,污泥生物沥滤对重金属(Zn、Cu和Pb)的沥滤的沥滤效果较佳(去除率75.45%、63.12%和40.96%)。沥滤过程中,重金属Cu在生物沥滤中期(3~5 d)沥出效果较好,而Zn和Pb则在沥滤后期(5~9 d)。同一重金属在不同沥滤体系中的形态变化过程差异较大,沥滤后的污泥、土壤和底泥中的重金属大部分呈现稳定状态。  相似文献   

6.
建立了加速溶剂萃取-高效液相色谱-二极管阵列检测(ASE-HPLC-PAD)快速测定土壤中苯并[a]芘(BaP)和二苯并[a.h]葸(DBA)的方法.通过提取剂、提取方法的优化,检测波长(BaP、DBA的λmax分别为294.6、295.8 nm)的选择,减少了干扰物的影响,提高了检测灵敏度.土壤中添加BaP、DBA的质量浓度均为0.02~0.50 mg/kg时,其平均回收率均为77.26%~109.56%,相对标准偏差为0.60%~2.74%;土壤中BaP、DBA的最小检测质量浓度分别为2.15、1.10μg/kg.将ASE-HPLC-PAD方法应用于污染场地土壤中BaP与DBA的测定及其降解特性研究表明,BaP与DBA的降解半衰期分别达210、693 d.  相似文献   

7.
电动-氧化修复可同时去除污染土壤中的重金属和有机物,但需要控制合适的条件,因此研究了电动-氧化修复的条件对土壤中多环芳烃(PAHs)和重金属去除的影响。结果表明,阴极安装阳离子交换膜可避免氧化剂与阴极直接接触,提高氧化剂在土壤中的输送效率,PAHs总平均去除率达82.8%,同时可维持土壤pH在中性范围,土壤电导率(EC)变化较小,但对重金属的去除率也较小;控制阴极液pH为酸性,PAHs总平均去除率可达96.2%,对重金属也有一定的去除作用,然而会改变土壤pH和EC。相对来说,阴极安装阳离子交换膜是一种比较可行的电动-氧化修复处理条件,PAHs去除率高,对土壤性质的影响小,但对重金属去除率不高。维持土壤基本性质的基础上,如何同时高效去除PAHs和重金属的条件还需进一步研究。  相似文献   

8.
研究了pH和温度对2,2’,4,4’-四溴联苯醚(BDE-47)在土壤中的吸附和解吸行为的影响。结果表明,pH和温度都可以影响BDE-47在受试土壤中的吸附和解吸行为。pH升高或降低均会使土壤对BDE-47的吸附能力提高,且在碱性环境中提高的程度更大;酸性或碱性条件下BDE-47在土壤中的解吸滞后性显著增强。温度降低后,土壤对BDE-47的吸附能力提高,5℃时的单点分配系数(Kd,表征土壤对BDE-47的吸附能力)是25℃时的1.03~1.67倍;温度由25℃降低到5℃后,BDE-47在土壤中的解吸滞后性增强。  相似文献   

9.
Environmental safety data are presented for [S,S]-Ethylene Diamine Disuccinate ([S,S]EDDS), a new, biodegradable, strong transition metal chelator. An environmental risk assessment for its use in detergent applications, which takes into account the chelating properties of [S,S]-EDDS, is proposed.

A property of [S,S]-EDDS that distinguishes it from other strong transition metal chelators is its, “ready” and transparent (no recalcitrant metabolites) biodegradation profile. Because its sorption to activated sludge solids is low ( Kp of 40 1/kg), removal of [S,S]EDDS during sewage treatment, which is greater than 96% as determined by the Continuous Activated Sludge test , is mainly ascribed to biodegradation. At projected use volumes in detergent applications [S,S] - EDDS predicted steady-state concentration in rivers leaving the mixing zone will be below 5 pg/I due to rapid biodegradation. [S,S]-EDDS exhibits low toxicity to fish and Daphnia ( both EC50s> 1000 mg/l). By contrast, due to limitation of the algal test for chelators apparent toxicity was observed (EC50 = 0.290 mg/l, NOEC - No observable Effect Concentration = 0.125 mg/l). Schowanek et al. [1] demonstrated that this is not toxicity sensu stricto but a chelation effect of trace metals in the test medium and of resulting essential nutrients limitation. This requires specific attention when the results of algal toxicity are to be extrapolated to a field situation to perform realistic risk assessment. Metal speciation calculations, using MINEQL+, show that at the predicted environmental concentrations of [S,S] - EDDS (1–5 μg/l), such a chelation effect would be insignificant. These calculations allow to estimate the NOEC for chelation effects in the field to be in the range of 0.250-0.500 mg/l, depending on the background water chemistry. These values are well above the laboratory NOEC.

An environmental risk assessment was performed using the EUSES (1.0) program. EUSES is currently the EU recommended tool for conducting risk assessments (TGD 1995). It was applied to estimate the river water and soil concentrations from production, formulation and private use life stages. The estimated PEC/PNEC ratio in all relevant environmental compartments is smaller than 1, indicating “no immediate concern” at the anticipated usage level.  相似文献   


10.
An urban soil chronosequence in downtown Detroit, MI was studied to determine the effects of time on pedogenesis and heavy metal sequestration. The soils developed in fill derived from mixed sandy and clayey diamicton parent materials on a level late Pleistocene lakebed plain under grass vegetation in a humid-temperate (mesic) climate. The chronosequence is comprised of soils in vacant lots (12 and 44 years old) and parks (96 and 120 years old), all located within 100 m of a roadway. An A-horizon 16 cm thick with 2% organic matter has developed after only 12 years of pedogenesis. The 12 year-old soil shows accelerated weathering of iron (e.g. nails) and cement artifacts attributed to corrosion by excess soluble salts of uncertain origin. Carbonate and Fe-oxide are immobilizing agents for heavy metals, hence it is recommended that drywall, plaster, cement and iron artifacts be left in soils at brownfield sites for their ameliorating effects.  相似文献   

11.
Consumption of food crops contaminated with heavy metals is a major food chain route for human exposure. We studied the health risks of heavy metals in contaminated food crops irrigated with wastewater. Results indicate that there is a substantial buildup of heavy metals in wastewater-irrigated soils, collected from Beijing, China. Heavy metal concentrations in plants grown in wastewater-irrigated soils were significantly higher (P相似文献   

12.

The microbial degradation of 14C-pyrene and 14C-benzo[a]pyrene by a bacterial mixed culture was studied within a mixture of the PAHs phenanthrene, anthracene, pyrene, fluoranthene, and benzo[a]pyrene as sole carbon source in the different culture systems: (i) liquid medium, (ii) soil slurry (surface and grinding influence), and (iii) soil. The fate of these two labeled compounds was followed in these systems with an emphasis on mineralization to carbon dioxide, extractability, and adsorption to humic materials and formation of unextractable residual. Mineralization showed the most obvious differences: soil slurries achieved the best results both concerning the extent of mineralization and the time required. The highest extent of pyrene mineralization (54% within 21 days) was observed in soil slurries; in liquid media, pyrene mineralization was slower, but reached approximately the same extent (54% in 150 days); in soils, mineralization reached only 36% of added pyrene after 160 days. Benzo[a]pyrene was mineralized in a mixture of PAHs in soil slurries to an extent of 34% within 70 days, whereas mineralization in liquid medium and soil occurred in the range of 5% (70 days). Mineralization of benzo[a]pyrene in sand slurries was lower compared to soil slurries (19% in sand slurries vs. 32% in soil slurries within 50 days).  相似文献   

13.
Pardo T  Clemente R  Bernal MP 《Chemosphere》2011,84(5):642-650
The use of organic wastes as amendments in heavy metal-polluted soils is an ecological integrated option for their recycling. The potential use of alperujo (solid olive-mill waste) compost and pig slurry in phytoremediation strategies has been studied, evaluating their short-term effects on soil health. An aerobic incubation experiment was carried out using an acid mine spoil based soil and a low OM soil from the mining area of La Unión (Murcia, Spain). Arsenic and heavy metal solubility in amended and non-amended soils, and microbial parameters were evaluated and related to a phytotoxicity test. The organic amendments provoked an enlargement of the microbial community (compost increased biomass-C from non detected values to 35 μg g−1 in the mine spoil soil, and doubled control values in the low OM soil) and an intensification of its activity (including a twofold increase in nitrification), and significantly enhanced seed germination (increased cress germination by 25% in the mine spoil soil). Organic amendments increased Zn and Pb EDTA-extractable concentrations, and raised As solubility due to the influence of factors such as pH changes, phosphate concentration, and the nature of the organic matter of the amendments. Compost, thanks to the greater persistence of its organic matter in soil, could be recommended for its use in (phyto)stabilisation strategies. However, pig slurry boosted inorganic N content and did not significantly enhance As extractability in soil, so its use could be specifically recommended in As polluted soils.  相似文献   

14.
Open-focused microwave-assisted extraction and ICP-OES determination of As, Cd, Cr, Cu, Fe, Mn, Ni, Pb and Zn from surface sediments of the estuary of Bilbao (Basque Country, North of Spain) was carried out. All the samples were collected at three different tributaries of the estuary (Asua, Galindo and Nerbioi-Ibaizabal) every two months during 1999. The digestion procedure was proposed from the conclusions of a fractionated factorial design, and the precision and accuracy of the method was verified using a certified reference sediment (RTC008-050). The results of the analysis were statistically treated by means of principal component analysis and correlation analysis. The principal component analysis of sediment data (32 samples × 9 metals) indicated different patterns of contamination regarding the tributary and sampling station. The two main patterns observed were a steady increment of the metal concentration along all the campaigns in the samples collected in the Galindo River and a seasonal variation in the Nerbioi-Ibaizabal River, with higher metallic content during summertime and lower content during wintertime.  相似文献   

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