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1.
【目的】以生物炭单施及其与沸石复配为钝化剂,研究其对铅镉复合污染碱性土壤理化性质及铅镉有效性的影响,以期用钝化技术为碱性土壤重金属污染原位修复提供理论和实践支持。【方法】以河南某金属冶炼厂附近铅(Pb)镉(Cd)污染的碱性菜地土壤(Pb 227.75 mg kg-1、Cd 3.38 mg kg-1)为研究对象,采用盆栽试验,研究生物炭单施及其与沸石复配(生物炭∶沸石=1∶1)不同施入量(0、1%、2.5%、5%)对土壤理化性质、土壤Pb、Cd有效态含量、青菜根和叶中Pb、Cd含量以及青菜富集转运Pb、Cd的影响。【结果】与对照相比,生物炭单施及其与沸石复配处理,使土壤pH提高了0.03~0.17个单位,与对照无显著差异,但显著提高了土壤有机质、碱解氮、有效磷和速效钾含量(P <0.05)。土壤有效态Pb、Cd含量随钝化剂施用量增加呈下降趋势,分别下降了10.69%~32.75%和7.63%~26.72%,相同施用量下复配处理效果优于单施处理。生物炭及其复配沸石促进了青菜生长,降低了青菜Pb的含量,根部和茎叶中Pb的含量比对照分别下降了2...  相似文献   

2.
为探讨钝化剂种类和粒径对重金属污染土壤的钝化效果,采用室内培养的方法,通过添加三个粒径(60~100、100~200、200目)下的四种不同钝化剂(自制无机型钝化剂、石灰+生物质炭、硅藻土、磷矿粉),研究钝化剂种类和粒径对重金属复合污染土壤中有效态Cd、Pb的影响。钝化60 d之后的结果表明,自制无机型钝化剂、生物质炭+熟石灰和磷矿粉均在200目粒径下对土壤有效态Cd的钝化效果最好,较对照分别减少了9.54%、13.93%和11.08%;其中,硅藻土在100~200目的粒径下效果最佳,有效态Cd含量与对照相比降低了22.35%。自制无机型钝化剂、石灰+生物质炭、硅藻土和磷矿粉对土壤有效态Pb的钝化效果都在200目的粒径下最好,有效态Pb含量与对照相比分别减少了17.81%、18.70%、11.54%和22.19%,其中磷矿粉的钝化效果最佳。研究表明,自制无机型钝化剂、石灰+生物质炭和磷矿粉都是粒径越小钝化土壤重金属Cd、Pb效果越好,可能是由于较小粒径更有利于Cd和Pb由活性态向非活性态转化,硅藻土对Cd、Pb的钝化效果在三个粒径处理间差异不显著。  相似文献   

3.
通过室内土壤培养试验研究硅藻土有机肥对Cd、Zn复合污染土壤重金属形态和有效性的影响。结果表明,添加硅藻土有机肥可提高Cd、Zn复合污染土壤的pH值,降低土壤有效态Cd、Zn的含量。硅藻土有机肥对Cd、Zn复合污染土壤Cd、Zn形态有明显的影响,表现为明显降低土壤交换态、松结有机态Cd、Zn含量,提高紧结有机态和残渣态Cd、Zn含量。相关分析表明,土壤交换态、松结有机态Cd、Zn的含量与土壤有效态Cd、Zn的含量均呈极显著相关,氧化锰结合态Cd与土壤有效态Cd含量显著相关。硅藻土有机肥用量(土壤重量的5%和10%)对土壤有效态Cd、Zn和不同形态Cd、Zn含量无显著差异。  相似文献   

4.
通过在重金属污染土壤中分别施加沸石、石灰石、硅藻土、羟基磷灰石、膨润土和海泡石6种固化剂,研究了这6种固化剂对土壤中Pb、Cd、Cu、Zn的固化效果,筛选出几种效果较好的固化剂。实验结果表明:沸石、石灰石和羟基磷灰石均能够有效地降低土壤中交换态Pb、Cd的含量,并且明显减少了土壤中Pb、Cd的毒性浸出量,其中沸石最多降低土壤中交换态Pb、Cd含量分别达到48.7%和56.2%,减少土壤中Pb、Cd的毒性浸出量达到37.1%和30.1%;沸石、石灰石均能够有效降低土壤中交换态Cu的含量,降低量分别高达68.1%和85.2%,膨润土能有效减少土壤中Cu的毒性浸出量,减少量最高达到66.51%;石灰石对土壤中Zn有着良好的固化效果。  相似文献   

5.
废旧汽车拆解区土壤重金属分布及Pb、Zn生物有效性分析   总被引:1,自引:0,他引:1  
为了解废旧汽车拆解区土壤重金属污染问题,采集某废旧汽车拆解厂汽车拆解区垂向0~1000 cm深度的土壤样品,对重金属Cu、Zn、Pb、Cr、Ni、Cd、Hg和As元素含量进行检测和污染评价,并对土壤中重金属Pb和Zn的不同形态进行分析研究。研究发现:废旧汽车拆解区表层土壤存在一定程度的Cu、Zn、Pb、Cr、Ni、As污染,其中,Pb、Zn、Cu含量严重超标,呈现Cu、Ni、Pb、Cr、Zn、As多种元素复合污染的特性。同时,拆解区土壤中重金属含量随土壤深度显著下降,但是,Pb和As的污染超标深度可达150 cm。拆解区土壤中可离子交换态的Pb含量最低,土壤pH值对各种形态重金属Pb的控制作用不显著,随着土壤垂向深度的增加,可氧化态和弱酸提取态Pb的比例迅速降低,残渣态Pb的质量分数逐渐提高,Pb的生物有效性下降。土壤pH对可Zn的生物有效性具有显著相关性,弱酸性土壤中以生物有效性高的形态Zn存在,中性土壤中以可还原态和可氧化态Zn为主。  相似文献   

6.
九华铜矿重金属环境污染状况研究   总被引:1,自引:0,他引:1  
选择江苏九华铜矿区,对其周边土壤和作物的重金属污染状况进行了研究.结果发现,约有一半的采样点土壤全Cu含量超过我国土壤环境质量三级标准(400 mg/kg),其DTPA提取态Cu含量的平均值为117 mg/kg.通过对矿区土壤重金属间的相关分析表明,土壤Cu与Zn、Pb、Cd、Co之间呈极显著的正相关关系(p<0.01),而与Cr、Ni无显著相关,说明了该铜矿区土壤还伴有外源Zn、Pb、Cd、Co的污染.土壤复合污染指数(PI)>1.0的土壤样品占57.3%.矿区周围作物可食部位Cu、Zn、Pb、Cd和Cr的含量均较高.  相似文献   

7.
重金属在矿区土壤——蔬菜系统的吸收与迁移特性研究   总被引:1,自引:0,他引:1  
《土壤通报》2019,(5):1233-1238
重金属污染土壤的农产品安全倍受大家的关注。研究选择某铅锌矿区周边的蔬菜地,采集叶菜类蔬菜及土壤样品,研究Cd、Pb、Cu、Zn在土壤中的赋存形态及其在土壤-蔬菜系统中的迁移特性。结果表明,污染土壤中Cd、Pb、Zn超标,分别为国家标准限值的1.44~6.44倍、2.97~3.88倍和1.30~2.30倍。BCR连续提取结果显示,Cd、Pb以可还原态为主,Cu、Zn以可还原态和残渣态为主,可还原态Cd、Pb、Cu、Zn分别占总量的70.6%、79.0%、34.4%和38.1%;残渣态Cu、Zn分别占总量的34.6%和30.2%。酸可提取态Zn、Cd分别达13.2%和6.3%。供试蔬菜茎叶中Pb含量超标,为国家标准限值的1.50~5.83倍。蔬菜茎叶中Cd、Pb含量与其土壤中可还原态含量显著正相关,Cd含量与土壤酸可提取态Cd含量显著正相关。蔬菜Cd的富集系数(BCF)相对较高(0.61~3.34),其中水芹和香芹Cd、Pb、Zn的BCF值显著高于其他蔬菜。蔬菜中Zn的迁移系数(TF)较高(0.54~2.07)。叶用芥菜中Cd、Pb、Zn的TF值较高,分别为1.02、2.25、1.62。因此,在污染土壤蔬菜风险评价中需要考虑不同蔬菜品种对重金属吸的吸收迁移特性的差异。  相似文献   

8.
不同钝化剂对猪粪堆肥中重金属形态转化的影响   总被引:13,自引:2,他引:11  
采用三级四步连续提取法(BCR)研究了磷矿粉、硅藻土和膨润土3种重金属钝化剂对猪粪堆肥过程中重金属As、Pb、Cd含量和形态的影响.结果表明:(1)堆肥处理后,重金属总量会表现出“相对浓缩效应”,使其浓度升高.(2)堆肥处理能促进重金属As、Pb、Cd的形态向活性降低的方向转化,从而降低其生物有效性.(3)不同钝化剂对不同重金属钝化效果不同,膨润土和磷矿粉对交换态铅的钝化效果较好;膨润土对交换态砷的钝化效果较好;硅藻土对交换态镉的钝化效果较好.因此,磷矿粉、硅藻土和膨润土处理有利于降低猪粪堆肥施用中的重金属污染风险.  相似文献   

9.
《土壤通报》2015,(3):721-727
对海口市四大蔬菜基地土壤-蔬菜系统重金属积累及污染状况进行了评价。结果表明,四个蔬菜基地中,新坡基地土壤中Cd、Cr、Zn、As、Ni最高,桂林洋土壤中Cu的含量在各基地中最高,坡博土壤中的Pb和Hg含量最高。叶菜中Pb、Cd、Cr、Ni等元素含量明显高于果菜,说明叶菜较果菜更易吸收和富集重金属。土壤中的Cd全部超过国家土壤环境质量二级标准(GB15612-1995),其中新坡基地土壤Cd污染指数最大。新坡土壤中的Ni超标率为66.7%。各基地土壤中Hg、As、Cr、Ni、Cu、Zn和Pb的含量均未超标,符合蔬菜种植用地要求。单项污染指数的评价结果表明,青菜、油菜、小白菜、大白菜、生菜、芹菜、西红柿均受到Pb轻度污染。综合污染指数结果表明,芹菜重金属轻微超标;青菜、油菜、小白菜、大白菜、生菜、西红柿的重金属污染处于警戒级水平;芥菜、薯叶菜、空心菜、辣椒、苦瓜的重金属属于安全水平。整体来看,叶菜类蔬菜中重金属的污染指数大于果菜类。仅Cr含量在蔬菜与土壤中呈显著负相关关系,说明蔬菜中重金属含量的高低受到除土壤之外的众多因素的影响。  相似文献   

10.
采用大田实验研究复合污染土壤中添加组配改良剂FQ12(沸石∶羟基磷灰石=1∶2)对受污染土壤和蔬菜中Pb、Cd、Cu、Zn 4种重金属的影响。结果表明,在添加FQ12后,土壤中重金属交换态含量大幅降低。辣椒可食部位中Pb、Cd、Cu、Zn含量也显著降低,FQ12添加量8.0g/kg时降低效果最好,Pb、Cd、Cu分别降低91.1%,58.3%,95.3%;Zn则是在4.0g/kg时,最大降幅达到89.4%,其他部位也有不同程度降低。在添加FQ12后,在一定程度上可以降低空心菜可食部位中Pb、Cd、Cu、Zn含量。在添加量为8.0g/kg时,4种重金属总量均达到最大降幅,最为明显的是Pb和Cu分别降低55.9%和50.7%,根部各重金属含量变化不大。由此可知,FQ12的施用对2种蔬菜吸收土壤重金属起到有效的抑制作用。  相似文献   

11.
崔旭  吴龙华  王文艳 《土壤》2019,51(3):530-535
利用盆栽试验研究了稳定剂(石灰、海泡石联合施用)对湖南、广东两省区不同性质土壤上生长的小青菜(Brassica chinensis L.)生物量、重金属吸收以及土壤pH和重金属提取态含量的影响,探讨了影响镉(Cd)稳定修复效果的土壤性质参数。结果表明:施加稳定剂对增加酸性土壤上小青菜生物量效果显著,土壤pH、有机质(OM)、全量Cd和黏粒是影响小青菜生物量变化的主要因素;土壤pH、阳离子交换量(CEC)、OM、黏粒是影响小青菜Cd含量变化的主要因素;土壤pH、CEC、全量Cd和黏粒是影响土壤提取态Cd含量变化的主要因素。  相似文献   

12.
通过盆栽试验研究了铅锌尾矿污染土壤中施用有机肥、石灰、蛭石和白云石等4种改良剂对光叶紫花苕生长发育、叶绿素及重金属Cu、Cd、Pb、Zn积累特性的影响,并分析了施用改良剂后土壤pH和有效态重金属含量的变化。结果表明,与对照相比,不同改良剂及其不同施用水平均能不同程度地提高土壤pH,显著降低土壤各重金属有效态含量,并显著抑制了Cd、Pb向光叶紫花苕地上部转移,降低了重金属在光叶紫花苕植株地上部的积累,改善了光叶紫花苕的生长和发育,光叶紫花苕株高、地上部鲜重和地下部鲜重、叶绿素含量均有不同程度增加,其中株高和地上部鲜重增加达到显著水平。4种改良剂的不同处理水平对光叶紫花苕地下部重金属含量影响均达显著水平。  相似文献   

13.
Field experiments were conducted to assess the influence of plant growth and amendment addition on phytostabilisation of copper (Cu), lead (Pb), manganese (Mn) and zinc (Zn) along highway soil in southwest British Columbia, Canada. The plant species tested were Lolium perenne L (perennial rye grass), Festuca rubra L. (creeping red fescue) and Poa pratensis L. (Kentucky blue grass) and the amendments, lime and phosphate. The treatment efficiencies were assessed during different seasons as a completely randomized factorial experiment in split plot design. The research tasks involved: (1) quantifying the seasonal extent of metal accumulation in soil and assessing the seasonal impact on metal speciation for different soil amendments and plant species; (2) determining seasonal accumulation differences between sampling periods in plant parts; and (3) assessing the influence of root–soil interactions on metal dynamics. The amendments decreased the exchangeable fraction and plant uptake of all four metals. The lowest mobile fractions (exchangeable and carbonate bound) were found in soils growing Festuca for Cu, Lolium for Mn and a Lolium/Poa/Festuca combination for Pb and Zn. Metal accumulation and metal dynamics in the rhizosphere soil are compared with those of the bulk soil. The final outcome was the development of a remediation strategy for all four metals involving suitable plants and amendments and incorporating seasonal and rhizosphere influences.  相似文献   

14.
3种有机酸对伴矿景天修复效率及土壤微生物数量的影响   总被引:2,自引:0,他引:2  
伴矿景天(Sedumplumbizincicola)是一种Cd和Zn的超积累植物,常用于Cd污染土壤的植物修复。有机酸能够提高土壤重金属的有效性,促进植物对重金属的积累,对重金属污染土壤的植物修复效率具有强化作用,并对土壤微生物数量有重要影响。以河潮土和红黄泥为供试土壤,探讨了乙二胺四乙酸(EDTA)、柠檬酸、草酸对伴矿景天修复效率和土壤微生物数量的影响。结果表明,有机酸能显著提高土壤有效态Cd含量,柠檬酸处理的效果最好,河潮土和红黄泥中有效态Cd含量较单种伴矿景天分别增加72.73%,12.99%(P<0.05);伴矿景天地上部Cd含量在河潮土和红黄泥中以EDTA处理最高,在河潮土和红黄泥中分别比单种伴矿景天增加99.24%和33.32%;与单种伴矿景天相比,添加有机酸处理河潮土和红黄泥中伴矿景天修复效率显著提高。添加有机酸比单种伴矿景天显著增加土壤中微生物数量,其中柠檬酸处理河潮土中细菌和真菌数量分别增加34.38%和68.42%(P<0.05),草酸处理红黄泥中放线菌数量增加150.00%。研究结果可为重金属污染土壤的植物强化修复提供理论支撑。  相似文献   

15.
The use of three inorganic materials as potential immobilizers of metals in soils has been studied by monitoring metal availability by EDTA extraction, the Simple Bioaccessibility Extraction Test (SBET) and extraction with a mixture of organic acids (OA). The SBET test was the most suitable for risk assessment in soils of recreational areas. The materials were a 4A-type zeolite, tri-calcium phosphate and ‘slovakite’, a synthetic sorbent developed for remediation of metal-polluted soils. Adsorption/desorption experiments of metals by the isolated materials showed that all materials caused a strong retention of metals from solutions, with negligible release by dilution. When added to soils of three parks, zeolite and, to a much lesser extent, slovakite caused some increase in soil pH. Despite this increase of pH, zeolite is often the least effective amendment for decreasing metal availability estimated by any method, and even sometimes seems to cause some increase, as well as an increase of soil electrical conductivity. In contrast, slovakite causes a decrease of available metals as estimated by EDTA and SBET, but by SBET the effect seems to be steadily reduced after the first samplings, so that after 300 days the metals extracted by this method are very similar to the data for the blanks. Despite the differences in pseudo-total metal contents, few differences are noticeable among parks. In general, these amendments are scarcely efficient in the case of neutral urban soils like those studied here. Other techniques are needed for controlling and, eventually, decreasing metal pollution hazard in soils of recreational areas.  相似文献   

16.
Owing to their potential advantages such as waste reduction, recycling, and economic attributes, fast-growing bioenergy crops have the capacity to effectively phytoremediate heavy metal-contaminated soils. However, little is known about the role of microbial and chemical amendments in phytoremediation using bioenergy crops. Here, we studied the contributions of inoculation with the arbuscular mycorrhizal fungus (AMF) Acaulospora mellea ZZ and three soil amendments, i.e., hydroxyapatite (HAP), manure, and biochar, at doses of 0.1% and 1% (weight:weight) to heavy metal phytoremediation using sweet sorghum grown on an abandoned agricultural soil, with environmentally realistic contamination (2.6 mg kg-1 Cd, 1 796 mg kg-1 Pb, and 1 603 mg kg-1 Zn), in a plant growth chamber. Mycorrhizal colonization, plant biomass and metal accumulation, metal availability, and soil pH were determined in harvested seedlings 12 weeks after sowing. The results showed that root colonization by indigenous AMF decreased by 28%-46% with HAP, but increased after manure and biochar applications as compared to the no amendment control (CK). The AMF inoculation increased root colonization rates by 16%-128% and in particular, alleviated the inhibition of HAP. The remediation effects were highly dependent on the amendment type and dose. Among the three soil amendments, HAP was the most effective in promoting plant growth and phytostabilization of Cd, Pb, and Zn and phytoextraction of Cd, particularly at a dose of 1%. Compared to CK, 1% HAP decreased DTPA-extractable Cd, Pb, and Zn concentrations in soil by 31%-43%, 30%-38%, and 22%-23%, respectively. Manure and biochar also exerted positive effects on heavy metal immobilization, as indicated by lower DTPA extractability, but only the 1% manure treatment showed plant growth-promoting effect. The AMF inoculation did not affect plant growth, but increased soil pH and induced synergistic interactions with amendments on the immobilization of Cd and Pb. In conclusion, soil amendments, particularly HAP, produced positive impacts and synergistic interactions with AMF on the phytostabilization of heavy metals using sweet sorghum. Accordingly, sweet sorghum combined with soil amendments and AMF may be an effective strategy for heavy metal phytoremediation.  相似文献   

17.
利用粘粒矿物修复重金属污染农业土壤研究进展   总被引:16,自引:2,他引:14  
Heavy metal contamination of agricultural soils poses risks and hazards to humans.The remediation of heavy metal-polluted soils has become a hot topic in environmental science and engineering.In this review,the application of clay minerals for the remediation of heavy metal-polluted agricultural soils is summarized,in terms of their remediation effects and mechanisms,influencing factors,and future focus.Typical clay minerals,natural sepiolite,palygorskite,and bentonite,have been widely utilized for the in-situ immobilization of heavy metals in soils,especially Cd-polluted paddy soils and wastewater-irrigated farmland soils.Clay minerals are able to increase soil pH,decrease the chemical-extractable fractions and bioavailability of heavy metals in soils,and reduce the heavy metal contents in edible parts of plants.The immobilization effects have been confirmed in field-scale demonstrations and pot trials.Clay minerals can improve the environmental quality of soils and alleviate the hazards of heavy metals to plants.As main factors affecting the immobilization effects,the pH and water condition of soils have drawn academic attention.The remediation mechanisms mainly include liming,precipitation,and sorption effects.However,the molecular mechanisms of microscopic immobilization are unclear.Future studies should focus on the long-term stability and improvement of clay minerals in order to obtain a better remediation effect.  相似文献   

18.
Different soil amendments, including 1% zeolite, 1% bentonite,5% Penghu soil (PHS), 5% Penghu soil + 1% manganese oxide (PHS + MO), 1% MO, and 1.5% silicate slag (SS), were used to immobilize Cd and Pb in two contaminated soils evaluated by single and sequential extractions and by uptake of Chinese cabbage (Brassica Chinensis L.). Results indicated that the PHS and MO significantly (p < 0.05) reduced the 0.1 M HCl extractable Cd and Pb in the two contaminated soils. Allamendment treatments did not change the organic and residual amounts of Cd and Pb in soils A and B, but the PHS andPHS + MOtreatments significantly reduced the exchangeable amounts of Cdand Pb in the two soils as measured by sequential extraction. Thecombination of PHS and MO amendments was associated with ahigh pH value and negative soil surface charge showed the best immobilizing efficiency of Cd and Pb in this study. All soil amendments investigated did not increase the dry matter weight of the plant, and most of them decreased the uptake of Cd and Pb, especially for the PHS and MO. The PHS and MO treatments reduced the extractability of Cd and Pb in two soils and theiruptake by the plant, but only the Pb content in Chinese cabbagefrom the amended soils was less than the background levels of heavy metals in leaf vegetables of Taiwan.  相似文献   

19.
原位化学钝化技术是修复重金属污染土壤的重要途径之一,通过施入一些钝化剂以降低土壤中重金属有效态含量,从而减少其迁移及对植物的毒害。选取羟基磷灰石(HA)、磷矿粉(PRX和PRH)、沸石、赤泥、新鲜植物残体、玉米秸秆粉末以及相应的处理共21种钝化剂,在同一培养条件和添加浓度下,比较其对人工Cd污染土壤中可交换态Cd含量的影响,并分析了其在不同培养时间对钝化效果的时间效应,试验的结果对于筛选Cd污染土壤钝化剂有着重要的意义。结果表明,纳米化赤泥、羟基磷灰石和纳米化酸洗赤泥可显著降低土壤中可交换态Cd含量,钝化比例高达35%-55%;赤泥、酸洗赤泥、沸石达15%-25%;富含巯基植物蒜苗、油菜、大葱植物残体也可达20%-25%。磷矿粉、大葱粉末、玉米秸秆和巯基化玉米秸秆的钝化效果相对较差;HA、铵型沸石、纳米赤泥、酸洗纳米赤泥、干油菜粉末、酸洗赤泥对可交换态Cd的钝化效果的时间效应不明显;赤泥、大葱残体、特别是玉米秸秆和巯基玉米秸秆随时间增长钝化效果增加显著,在8周和16周时段钝化效果较好。  相似文献   

20.
ABSTRACT

The application of soil amendments to immobilize heavy metals is a promising technology to meet the requirements for environmentally sound and cost-effective remediation. The present work was carried out to evaluate the effect of phosphogypsum (PG) used alone and in combination with compost (CP) at a mix ratio of 1:1 wet weight ratio (PG+CP) at 10 and 20 g dry weight kg?1 dry soil, on heavy metal immobilization in contaminated soil, and on canola growth (Brassica napus). The results were then compared with untreated soil (control). The results revealed that the Pb, Cd, and Zn uptake of canola plants was reduced by the application of PG alone and when it was mixed with CP. At an application rate of 10 g dry weight kg?1 dry soil of (PG+CP), the dry weight of canola plants increased by 66.8%, which was increased in comparison on its weight in the untreated soil (control). The addition of PG alone resulted in more pronounced immobilization of heavy metals as compared to PG mixed with CP. Plant growth was improved with CP addition but heavy metals immobilization was greatest in PG alone treatments. Results suggest that PG may be useful for the immobilization of heavy metals in contaminated soils.  相似文献   

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