首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 15 毫秒
1.
对镇江市古运河河岸7个表层沉积物中重金属As、Cu、Pb、Cd、Zn、Cr含量进行测定,并通过富集系数、地累积指数法、潜在生态风险评价以及主成分分析等对沉积物重金属的分布特征进行综合分析与评价.结果表明:(1)古运河河岸带沉积物Cr、Cu、Zn、As、Pb和Cd元素的含量平均值分别为45.07、41.70、254.06、19.67、45.88、0.75 mg·kg-1,p H平均值为7.98.对比《国家土壤环境质量标准》可知,沉积物中Cu、Zn、Pb、As属于超一级标准,而Cd属于超二级标准.(2)6种重金属的富集系数表现为:AsCdPbZnCuCr,且综合富集系数在空间上表现为:G2G5G1G4G3G7G6;(3)古运河河岸表层沉积物地累积指数表现为AsCdPbCuZnCr,6种重金属中As富集量最大,Cr的富集量最小.(4)单项潜在生态危害系数结果表明,Cr、Cu、Zn、Pb均为轻微生态危害程度,As和Cd处于中等生态危害程度.从RI值判断,古运河河岸沉积物总体处于轻微生态危害.(5)相关性和主成分分析结果表明,Pb、Cu、Cr、Cd是决定第一主成分的4个主要因子,且Cu与Pb、Cd以及Pb与Cd元素具有相同的污染源.As、Zn在第二主成分中具有较高的载荷值,且As与Zn之间的相关性较弱,表明这两种重金属并非来自同一污染源.  相似文献   

2.
矿冶区周边水稻对不同来源重金属污染的指示作用   总被引:4,自引:1,他引:4  
有色金属开采与冶炼可对周边环境造成严重的重金属污染,查明重金属污染来源对于矿冶周边重金属污染管理与控制具有重要意义.为探索利用矿冶周边水稻对As、Cd、Pb、Zn和Cu的富集与水稻体内元素的含量平衡特征指示重金属污染来源的可行性,选择了我国著名的水口山Pb-Zn矿山开采与冶炼周边区,根据重金属污染排放和迁移扩散特征,结合当地气象和地貌条件,确定了3个典型采样区,其中两个采样区分别邻近冶炼厂和尾砂库,另一处为位于两者之间的过渡区.采用蛇形采样法在稻田内采集33个成熟水稻及土壤样品,分析水稻不同部位(包括根、茎叶、籽粒)及土壤中As、Cd、Pb、Zn、Cu5种重金属和其他16种元素的含量.结果表明,3个采样区之间土壤中的As、Cd、Pb、Zn和Cu含量均存在显著性差异;各采样区水稻中除根际和籽粒中Cd含量外,各部位重金属含量也均有显著差异.靠近冶炼厂的水稻茎叶中As、Pb含量高于离冶炼厂较远的采样区水稻茎叶.尽管As、Pb在靠近尾砂库采样区土壤中含量最高,但在该区水稻茎叶中的含量却最低;在除As、Cd、Pb、Zn、Cu5种重金属以外的其他16种元素中,水稻根部仅有5种元素含量在各采样区之间存在差异,指示相同的土地利用类型及土壤母质条件;而在茎叶和籽粒中则分别有多达11和10种元素含量出现采样区差异,指示重金属污染来源影响水稻茎叶及籽粒中元素的含量平衡.多元统计分析结果显示,3个采样区水稻茎叶中元素含量平衡存在显著的分异,显示出明显的采样区属性.结合采样区域空间位置、污染物来源、水稻对重金属的富集与转运特征分析,3个采样区重金属主要污染特征可分别确定为水-气混合来源型、大气来源型和尾砂来源型.论文结果证明利用水稻茎叶指示矿冶周边重金属污染来源是可行的.  相似文献   

3.
西南山地小径竹的种类多、分布广、生长快、生物量高,且对土壤重金属具有一定的耐受性,在土壤重金属修复方面具有潜在优势。目前对于西南山地竹区的小径竹在土壤重金属修复方面的研究和应用鲜有报道。以西南山地的林下优势层片缺苞箭竹(Fargesiadenudate)和拐棍竹(F.robusta)为研究对象,通过测定分析其茎、叶、笋及根际土壤的重金属Cu、Zn、Pb、Cd、Cr含量,比较不同小径竹地上各部位的富集系数,并与常见的超积累植物相比,探讨小径竹的重金属富集潜力。结果表明:(1)缺苞箭竹和拐棍竹叶的Cu、Zn、Pb、Cd、Cr含量和富集系数均显著大于茎和笋(P=0.001);(2)缺苞箭竹地上各部位对Cu的富集系数大于Zn、Pb、Cd、Cr,而拐棍竹对Cu的富集系数较小;(3)缺苞箭竹地上部的Cu富集系数(2.16)、Zn富集系数(1.27)显著大于拐棍竹(0.17、0.93,P=0.001),而Pb富集系数(0.09)、Cd富集系数(0.34)、Cr富集系数(0.82)显著小于拐棍竹(0.87、0.49、1.03,P=0.002、0.049、0.001);(4)与生长在未被污染土壤中的超积累植物相比,缺苞箭竹具有更大的Cu、Cr富集潜力,拐棍竹对Pb、Cr具有更大的富集潜力。西南山地小径竹在土壤污染修复方面具有较高的生态、经济和景观效益,有发展成为生态-经济型土壤重金属修复植物的潜力。  相似文献   

4.
矿区周围稻米重金属积累及健康风险分析   总被引:7,自引:1,他引:6  
选用杂交稻、常规稻和糯稻3个水稻品系共21个水稻品种在广东大宝山矿区周围重金属污染土壤中进行大田试验,研究Cu、Zn、Pb、As和Cd 5种重金属元素在不同水稻品种(品系)稻米中的积累状况,并进行健康风险评价分析。结果表明,供试水稻稻米中Cd和Pb超标率很高,分别为100%和71.43%;Cu和As超标现象不严重,超标率分别为4.76%和14.29%;Zn含量均不超标。供试水稻品系中常规稻和糯稻稻米对Cu、Zn、Pb、Cd的积累能力较高,杂交稻则较低;但杂交稻稻米对As的积累能力高于其他2个品系。稻米中Cu、Zn、Pb、As和Cd含量与稻谷生物量均呈负相关关系,其中Pb含量与稻谷生物量呈显著负相关。供试水稻稻米对5种重金属的富集能力由高到低排序为Cd>Zn>Cu>As>Pb。本研究表明供试土壤中Cd和Pb对人体健康存在比较严重的潜在威胁,Cu、Zn和As对人体健康的潜在危害较小,应重点关注大宝山矿区稻米Cd和Pb的重金属污染问题及其对人体健康的潜在危害。  相似文献   

5.
从淮南煤矿区塌陷塘采集鲫鱼样品,分析重金属元素(Cd、Cu、Zn和Pb)在鲫鱼体内的富集特征,结果发现,Cd、Cu、Zn和Pb在塌陷区鲫鱼(Carassius auratus Gibelio)肌肉中含量均低于《无公害食品水产品中有毒有害物质限量》(NY5073—2006)、食品中污染物限量(GB2762—2005)和FAO/WHO标准.重金属元素在鲫鱼体内的富集器官主要为内脏和鳃,Cd和Pb主要富集在内脏,Zn主要富集在鱼鳃,Cu的富集器官随着地域变化(对照为鳃,塌陷区为内脏).目标危险系数(THQ)分析发现Cu导致的健康风险较高,Cd最低,单一重金属THQ值和复合重金属的TTHQ值均小于1,说明研究区域内的鱼肉均不产生对人体危害的健康风险.  相似文献   

6.
三峡库区广泛分布的黑色岩系富含镉(Cd)、铬(Cr)、镍(Ni)、锌(Zn)等重金属元素,导致土壤重金属元素含量显著高于我国土壤背景值,成为典型的地质高背景区。本文选择三峡库区地质高背景区油菜种植地为研究对象,分析了土壤-油菜系统中砷(As)、Cd、Zn、铜(Cu)、铅(Pb)、Cr、Ni、汞(Hg)等重金属元素含量分布特征、富集迁移规律以及影响因素。研究结果表明,研究区油菜种植地土壤中Cd、Cr、Cu、Hg、Ni等重金属含量显著高于我国土壤背景值,单因子污染指数评价显示土壤As、Zn、Hg、Pb等重金属均属于无污染等级,Cu、Ni污染程度受到pH影响,Cd为重度污染和极高生态风险。不同重金属元素在油菜各部位含量差异明显,Pb、Cd、As等生物非必需元素更倾向进入茎、果荚,营养元素Cu和Zn则在油菜籽中含量较高,而Cr易在果荚中富集。研究区土壤中重金属元素含量、土壤p H、重金属元素间的拮抗作用以及油菜解毒机制可能是影响重金属元素在土壤-油菜各部位富集迁移的重要因素。  相似文献   

7.
贵阳市郊菜园土-辣椒体系中重金属的迁移特征   总被引:10,自引:0,他引:10  
选择贵阳市郊二戈寨、马铃乡和永乐乡的辣椒地,研究重金属在菜园土-辣椒体系中的迁移过程.结果表明,二戈寨、马铃乡和永乐乡3处采样地点菜园土中存在不同程度的重金属污染,综合污染指数分别为1.17、1.23和2.18,主要污染元素为Zn、Cu、Cd.但辣椒果实中仅有Cd超标.在土壤-辣椒体系各界面间,重金属元素迁移能力大小顺序发生了变化:在土壤-根部间为CdCu>Zn>Pb,在根部-茎叶间为Zn>Cd>Pb>Cu,在茎叶-果实间为Cu(>>)Zn>Cd>Pb.对于Cu、Pb和Zn元素来说,辣椒根-土界面是重金属进入辣椒果实的主要障碍,其生物富集系数BCF值(蔬菜根中重金属含量/土壤中重金属含量)分别在0.21~0.44、0.04~0.24和0.033~0.08之间,而Cd的BCF值却达1.06~4.23,表现为富集作用.Cd的迁移系数TF1值(蔬菜茎叶中重金属含量/根部重金属含量)表明,其在根部-茎叶间的迁移几乎不受阻碍,但在果实-茎叶界面再次受阻,其TF2值(蔬菜果实中重金属含量/茎叶中重金属含量)在0.42~0.51之间.  相似文献   

8.
重金属在土壤-水稻体系中的分布、变化及迁移规律分析   总被引:31,自引:3,他引:31  
关共凑  徐颂  黄金国 《生态环境》2006,15(2):315-318
以佛山市南海区小塘镇和高明区杨梅镇的标准农田为研究对象,分析重金属在土壤和水稻植株不同部位的分布及其随时间变化、迁移规律。结果表明:重金属被水稻吸收以后,多数仍滞留在土壤里,只有少量向地上部分迁移。重金属在水稻植株不同部位的质量分数分布由大到小的次序为:根→茎→籽→叶。水稻地上部分中4种重金属元素分布由大到小的次序是:Zn→Cu→Pb→Cd。水稻分蘖期重金属在根、茎和叶的积累量达到最大,随着时间的延续,在根部积累的重金属就越来越少,茎和叶积累的重金属在拔节期降至最小,随后又慢慢上升。4种重金属在水稻植株中的迁移能力由大到小依次为:Cd→Zn→Cu→Pb,但也有个别情况是Cu的迁移能力大于Zn。  相似文献   

9.
复合污染下Cu、Cr、Ni和Cd在水稻植株中的富集特征   总被引:5,自引:0,他引:5  
林华  张学洪  梁延鹏  刘杰  黄海涛 《生态环境》2014,(12):1991-1995
掌握水稻对污染土壤中重金属的吸收和富集特征,为科学认识水稻中重金属的残留问题、健康风险提供理论依据。采用田间试验,研究了4个不同处理量Cu、Cr、Ni、Cd复合污染下水稻的富集特征及其随生育期的变化规律。结果表明,重金属在水稻植株各部位中吸收富集系数的大小依次为:Cd〉Cu〉Ni〉Cr,根部重金属吸收富集系数是地上各部位的吸收富集系数的2~100倍。各重金属在水稻植株不同部位的积累分布明显不同,成熟期水稻植株中Cu在水稻不同部位的质量分数为根〉茎≥叶〉米粒〉谷壳,Ni的分布规律为根〉叶〉茎〉米粒〉谷壳,Cr的分布规律为根〉叶〉谷壳≥茎〉米粒,Cd的分布规律为根〉茎〉叶〉米粒〉谷壳;且随着重金属处理量的增加,水稻植株不同部位的重金属质量分数也呈上升趋势。成熟期米粒中Cu、Ni、Cr和Cd的质量分数范围分别为:4.50~6.19、1.86~4.63、0.72~0.76和0.08~0.39 mg·kg-1,与无公害食品标准(GB15199-94、GBT2762-2005)相比,米粒中Cu和Cr的质量分数均未超标,而Ni和Cd(Cd高剂量处理时)的质量分数均超标,存在食用安全风险。重金属在水稻植株不同部位的质量分数随生育期均呈现先升后降的趋势,灌浆中期达到最大,而到成熟期又明显降低。不同重金属在水稻植株中的富集能力和分布规律均呈现明显差异,不同生育期水稻植株中重金属的质量分数明显不同但其质量分数变化呈明显规律性。  相似文献   

10.
对深圳湾15个表层沉积物中重金属Zn、Cu、Pb、As、Cd以及总有机碳(TOC)的含量进行测定,探讨了重金属污染特征,重金属之间及与TOC的相关关系,并利用潜在生态风险评价法进行潜在生态风险评估.结果表明,Zn、Cu、Pb、As和Cd平均值分别为307、79、75、23 mg·kg-1和2.26 mg·kg-1.Zn、Cu、Pb和As属于超Ⅰ类沉积物,Cd属于超Ⅱ类沉积物.Zn、Cu、Pb和Cd呈现相似的分布特征,即从东北向西南湾口逐渐减少.Zn、Cu、Pb、Cd、TOC彼此之间呈显著正相关.而As来源和分布与其余重金属明显不同,与其它重金属和TOC没有相关性.单因子污染系数显示Zn和Cd处于较高污染水平,Cu、Pb和As处于中等污染水平,污染程度依次为Cd>Zn>Pb>Cu>As.综合污染指数显示深圳湾总体达到较高污染水平.深圳湾重金属潜在生态风险总体处于中等水平,潜在风险程度依次为Cd>As>Pb>Cu>Zn,其中Cd的潜在风险最大.  相似文献   

11.
The distribution of Cd, Cu, Pb and Zn in above-ground parts of corn, small grains and pulse crops was investigated. Sampled parts included grain or seed, leaves, stems, silk and husks of corn-ears, rachilla and chaff of small grains and pods of bean plants. The distribution of these elements was variable and reflected, primarily, their relative mobility between plant parts including transfer into the grain. Generally, Zn and Cu were preferentially transferred into the seed or grain, while Cd and Pb were selectively excluded from these organs. For example, the distribution pattern in ears of corn was: for Cd, husks > silk > grain; for Zn, silk > grain > husks. The selective transfer of Zn and Cu into seed or grain, in contrast to the restricted movement of Cd and Pb into these organs, may be the result of selective absorption of Zn and Cu over Cd and Pb by vascular transfer cells within the plant's reproductive tissues. The effect of soil type on Cd, Cu, Pb and Zn levels in cereal grain or pulse seed was small compared to the differences found in the concentrations of these elements between different plant organs. Thus, grain and seed crops serve as natural barriers to the movement of the potentially toxic heavy metals, Cd and Pb, into the animal/human food chain, minimising their transfer from soils while conserving Zn and Cu levels in edible portions of these crops.Soil Scientist, USDA, Soil Conservation Service, Retired.  相似文献   

12.
Heavy metals, a highly polluting group of constituents known to exert adverse effects, tend to accumulate in living organisms. The objective of this study was to determine the accumulation and translocation of heavy metals in soil and in paddy crop irrigated with lake water compared to soil and paddy crop irrigated with bore-well water. The quantities of heavy metals (Cd, Cr, Cu, Pb, Zn, As, Mn, and Hg) were determined in different parts of rice plants (Oryza sativa). Results revealed that the mean levels of soil Cd, Cr, Pb, Zn, As, Mn, and Hg in experimental soil and in different parts of rice plant (root, straw, and grain) were higher than the control except for Cu. The content of eight toxic metals was significantly higher in root than in aerial parts of the rice (straw and grains). Rice roots were enriched in Cd, As, Hg, and Pb from the soil, while Cr, Cu, Zn, and Mn were hardly taken by the roots. Bioaccumulation factor for Hg was significantly higher than other heavy metals. Metal transfer factors from soil to rice plants were significant for Cd, Cr, Cu, Pb, Zn, As, Mn, and Hg. The concentrations of metals in lake water were found to be within the permissible limit of Indian standard prescribed by Central Pollution Control Board (2000), except for Hg and As, which were higher than the limit of Indian standard. However, the concentrations of heavy metals in soil and rice grains were still below the maximal levels, as stipulated by Indian Prevention of Food Adulteration Act (PFA, 1954) and World Health Organization (WHO, 1993) guidelines.  相似文献   

13.
重金属Cu,Pb,Zn,Cr,Cd在水稻植株中的富集和分布   总被引:103,自引:0,他引:103  
研究了外源可溶性重金属进入水稻土环境后,在水稻植株中的迁移、在水稻植株不同部位的分布及其分布随时间的变化。在水稻生长季节,重金属在水稻植株中迁移能力的大小依次为:Cd,Cr>Zn,Cu>Pb。重金属在水稻植株不同部位的积累分布是:根部>根基茎>主茎>穗>籽实>叶部。水稻分蘖期重金属在根部、茎干部和叶片的积累量达到最大,随着时间的延长,在根部积累的重金属愈来愈少;在茎干部积累的重金属在拔节期降至最小,随后含量又稍微上升;叶片上的重金属含量在拔节期迅速下降,随后趋于稳定。  相似文献   

14.
水分管理对重金属在水稻根区及在水稻中积累的影响   总被引:7,自引:0,他引:7  
选取了酸性矿山废水污灌区重金属污染水稻土,通过盆栽试验,研究了不同水分管理条件(60%最大田间持水量,80%最大田间持水量,最大田间持水量,前期淹水+抽穗扬花期烤田,全生育期淹水)下水稻根际土壤及其不同器官(稻根、茎叶和籽粒)中As、Cd、Cu和Zn的含量变化。结果表明:土壤水分含量对水稻根际土壤中As、Cu和Zn的含量影响不大。但显著影响水稻不同器官对这3种元素的吸收积累。随着土壤水分含量的增加,水稻根、茎叶和籽粒中As的含量都显著增加;Cu的含量则逐渐减少;水稻茎叶中Zn含量也逐渐减少,但水稻根和籽粒中Zn含量则变化不明显。抽穗扬花期拷田能显著降低As在水稻中的积累,显著增加水稻茎叶中Zn的积累;但不影响水稻各器官中Cu,以及水稻根和籽粒中Zn的含量。此外,虽然这3种重金属在土壤中含量均超标,但在水稻籽粒中含量只有Zn全部超标,而Cu则都不超标,因此,农作物的超标情况并不直接与土壤的重金属超标相联系。  相似文献   

15.
多种盐分离子作用下苋菜对重金属的吸收累积特征   总被引:1,自引:0,他引:1  
模拟不同淋洗脱盐阶段滩涂土壤孔隙水中盐分和重金属含量,通过苋菜水培试验,研究多种盐分离子(SO42-、Cl-、NO3-、CO32-、Na+、Ca2+、K+和Mg2+等)的共同作用下,苋菜对Zn、Cu、Ni、Cr、Pb和Cd 6种重金属的吸收、累积和转运的变化。结果表明,与对照相比,在不同盐分离子浓度影响下,苋菜茎叶中Cd的累积增幅为69.2%~146.2%,而茎叶中其他重金属的含量无显著变化,苋菜根系中Cd、Pb、Cr、Ni和Cu含量的最大增幅分别为187.8%、197.7%、305.7%、228.1%和58.2%,但根系中Zn含量未受到显著影响。在相对较高的盐分离子浓度(〉1 312.4 mg.L-1)范围内,不同盐分离子浓度处理间苋菜茎叶和根系中6种重金属含量差异均不显著。盐分处理显著降低了苋菜对Pb、Cr、Ni和Cu的转移系数,但未显著影响苋菜对Cd和Zn的转移系数。  相似文献   

16.
大冶龙角山矿区几种植物的重金属吸收特征   总被引:4,自引:0,他引:4  
通过调查采样和化学测试,对大冶龙角山矿区小麦、油菜、莴苣、白菜苔、豌豆等几种主要农作物中的重金属Cu、Pb、Cd及类金属As的质量分数进行分析。结果表明,供试农作物中,莴苣的重金属(包括As)质量分数显著高于其它作物的,其中以Cd质量分数最高,而豌豆的重金属质量分数最低,其它作物重金属质量分数由高到低的顺序为油菜、腌菜、白菜苔、小麦;小麦中的重金属质量分数依次是w(Cd) > w(As) > w(Pb) > w(Cu) > w(Cr),油菜中为w(Cd) > w(As) > w(Pb) > w(Cr) > w(Cu),莴苣中为w(Cd) > w(Cu) > w(Pb) > w(As)> w(Cr);随河流向下,作物中重金属含量变化规律与相应土壤中重金属累积量基本一致,如油菜含铜量在上游为0.61 g/g,在下游为0.37 g/g。  相似文献   

17.
Phytoextraction is an emerging cost-effective solution for remediation of contaminated soils which involves the removal of toxins, especially heavy metals and metalloids, by the roots of the plants with subsequent transport to aerial plant organs. The aim of the present investigation is to study the effects of EDTA and citric acid on accumulation potential of marigold (Tagetes erecta) to Zn, Cu, Pb, and Cd and also to evaluate the impacts of these chelators (EDTA and citric acid) in combination with all the four heavy metals on the growth of marigold. The plants were grown in pots and treated with Zn (7.3 mg l(-1)), Cu (7.5 mg I(-1)), Pb (3.7 mg l(-1)) and Cd (0.2 mg l(-1)) alone and in combination with different doses of EDTA i.e., 10, 20 and 30 mg l(-1). All the three doses of EDTA i.e., 10, 20 and 30 mg l(-1) significantly increased the accumulation of Zn, Cu, Pb and Cd by roots, stems and leaves as compared to control treatments. The 30 mg l(-1) concentration of citric acid showed reduced accumulation of these metals by root, stem and leaves as compared to lower doses i.e., 10 and 20 mg l(-1). Among the four heavy metals, Zn accumulated in the great amount (526.34 mg kg(-1) DW) followed by Cu (443.14 mg kg(-1) DW), Pb (393.16 mg kg(-1) DW) and Cd (333.62 mg kg(-1) DW) in leaves with 30 mg l(-1) EDTA treatment. The highest concentration of EDTA and citric acid (30 mg l(-1)) caused significant reduction in growth of marigold in terms of plant height, fresh weight of plant, total chlorophyll, carbohydrate content and protein content. Thus EDTA and citric acid efficiently increased the phytoextractability of marigold which can be used to remediate the soil contaminated with these metals.  相似文献   

18.
Wang  Yangyang  Li  Fangfang  Song  Jian  Xiao  Ruiyang  Luo  Lin  Yang  Zhihui  Chai  Liyuan 《Environmental geochemistry and health》2018,40(5):2143-2153

Red mud (RM) was used to remediate heavy metal-contaminated soils. Experiments with two different dosages of RM added to soils were carried out in this study. It was found that soil pH increased 0.3 and 0.5 unit with the dosage of 3 and 5% (wt%), respectively. At the dosage of 5%, the highest stabilization efficiencies for Cd, Pb, Cu and Zn reached 67.95, 64.21, 43.73 and 63.73%, respectively. The addition of RM obviously transferred Cd from the exchangeable fraction to the residual fraction. Meanwhile, in comparison with the control (no RM added), it reduced 24.38, 49.20, 19.42 and 8.89% of Cd, Pb, Cu and Zn in wheat grains at the RM addition dosage of 5%, respectively. At the same time, the yield of wheat grains increased 17.81 and 24.66% at the RM addition dosage of 3 and 5%, respectively. Finally, the addition of RM did not change the soil bacterial community. These results indicate that RM has a great potential in stabilizing heavy metals in calcareous agricultural soils.

  相似文献   

19.
叶面施硅对水稻籽实重金属积累的抑制效应   总被引:22,自引:0,他引:22  
采用盆栽方法,以硅酸钠和正硅酸乙酯为硅源分别配制纳米硅制剂,以水稻(Oryza sativa L.)品种"优优128"为供试植物,在Cd(5mg·kg-1、10mg·kg-1、50mg·kg-1三个水平)、Pb(200mg·kg-1)、Cu(250mg·kg-1)、Zn(300mg·kg-1)复合污染土壤进行种植,在水稻生长期内(苗期、分蘖期、抽穗期)进行叶面喷施纳米硅,研究纳米硅对水稻籽实生长状况及吸收重金属元素的影响,并对两种不同硅源的纳米硅的使用效果进行了比较。结果表明,随Cd污染质量分数增加,水稻百粒质量及单株穗质量均显著降低(P<0.01);Cd、Pb、Zn在籽实中质量分数均增高,而Cu在籽实中质量分数降低。金属元素在籽实中的吸收系数顺序为Cd>Zn>Cu>Pb,表明Cd极易向籽实中迁移。随土壤Cd质量分数增加,水稻籽实中各金属元素的积累量都有所降低。重金属复合污染条件下,叶面施用两种硅制剂均可以缓解水稻的毒害效应,且和施无机硅相比,施有机硅对水稻重金属毒害的缓解效果更显著。表现为叶面施用硅后,水稻百粒质量及单株穗质量均显著提高(P<0.05);且籽实中Cd、Pb、Cu、Zn的吸收量在喷施硅制剂后均显著降低(P<0.05);籽实中重金属元素的吸收系数和积累量均表现出降低的趋势。尤其是随着Cd处理质量分数的增高,施硅对重金属在籽实中积累的抑制效应越显著。这表明叶面施硅在重金属污染的水稻田污染防治中具有应用价值。文章所用的纳米硅制剂,制备简单,对于大面积推广硅肥极为有利。  相似文献   

20.
Concentrations of heavy metals (Pb, Zn, Cd, Cu) were determined in soils and vegetables (chrysanthemum, spinach and four cultivars of Chinese cabbage from the area adjacent to a Pb/Zn mine in Shaoxing, Zhejiang province, China, and compared with the Chinese National Standards for Soil Environmental Quality. The accumulation of heavy metals in cabbage cv. Siyuegreen was investigated at different distances from the center of the mine. The vegetable plantation soils were polluted with Pb, Cd, Cu and Zn, especially by Pb and Cd. The levels of Pb and Cd were 20 and 30 times higher than the permitted standards, indicating that this Pb/Zn mining area is unsuitable for agricultural use. Chinese cabbage, chrysanthemum and spinach had different enrichment coefficients. The enrichment coefficient of Cd from soil to roots of chrysanthemum was >80% and from roots to leaves of cabbage cv. Shanghaigreen was >120%. These vegetables were polluted by heavy metals and could not be regarded as safe for human consumption. Environmental accumulation of heavy metals in the vegetable plantation soils was proportional to heavy metal accumulation in vegetables and both were inversely proportional to the distance from the lead/zinc mine.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号