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1.
耐受性植物油葵和棉花对镉的富集特征研究   总被引:1,自引:0,他引:1  
耐受性植物可以作为重金属污染土壤修复的理想植物,探明其富集规律更是阐明其土壤修复机理和修复技术关键。采用潮褐土盆栽法,外源添加镉为1,5,15,30mg/kg,研究油葵和棉花对镉的耐受性和富集特征、吸镉量及其籽实镉含量的安全性。结果表明:(1)随外源添加镉量增加,油葵和棉花的耐受指数呈下降趋势。(2)Cd≤5mg/kg,对于油葵的干重产生促进作用,Cd≥15mg/kg,对油葵的干重产生抑制作用,外源添加镉对棉花的干重产生抑制作用。(3)油葵地上部最大吸镉量为每株601.95μg,棉花地上部最大吸镉量为每株74.83μg。(4)油葵和棉花的转运系数随外源添加镉呈现先升高后降低的趋势;在镉低浓度时,2种植物的富集系数大于1。(5)为保证油葵和棉花籽实符合食品国家安全标准,种植油葵的土壤中重金属镉的含量应低于1.11mg/kg,种植棉花的土壤中重金属镉的含量应低于3.48mg/kg。研究结果为重金属污染土壤的植物修复技术及阐明其耐受性植物修复机理提供了重要科学依据。  相似文献   

2.
污泥与施污土壤重金属生物活性及生态风险评价   总被引:3,自引:0,他引:3  
将城市污泥以不同质量比施于土壤中构成污泥混合土壤,研究各污泥配比土壤中重金属的生物活性,并采用三种重金属评价方法(地累积指数法、潜在生态风险指数法、综合毒性指数模型)和黑麦草对重金属的吸收富集效果来对施污土壤中重金属具有的生态风险性进行评价。结果表明:污泥的添加使土壤中生物活性态Cd、Cu和Zn含量显著增加,对三种重金属具有活化作用,但对Pb却起到钝化作用。生态风险评价结果表明:污泥的添加使土壤中Pb呈现无污染和低生态风险;Cu和Zn呈现中度污染和低生态风险;Cd达到强度污染和重度生态风险,重金属潜在生态风险(RI)总体处于强度生态风险水平。当污泥添加比例大于6:10(污泥S3处理)时,施污土壤中重金属的综合毒性指数高于土壤对照。黑麦草对Cd、Pb、Cu和Zn的富集浓度与施污土壤中对应重金属的生物活性态含量存在显著正幂指数关系,同时黑麦草对施污土壤中Cd、Cu和Pb的富集能力大小与地累积指数法和潜在生态风险指数法对三种重金属具有的生态风险性的评价结果具有一致性。  相似文献   

3.
以温州苍南县沿浦湾滩涂土壤中的重金属含量为指标,采用环境污染指数、地累积指数和潜在生态危害指数综合评价重金属的含量水平及对生态环境的潜在影响。结果表明:沿浦湾滩涂土壤中重金属含量较低,均符合土壤环境质量二级标准。除了元素砷和汞,铜、铅、铬、锌、镉5种重金属的含量均为高潮带和中潮带高于低潮带。潜在生态危害系数和地累积指数的顺序均为砷(As)铜(Cu)铅(Pb)铬(Cr)锌(Zn)汞(Hg)镉(Cd);不同重金属的地累积指数的污染等级顺序为砷(As)铜(Cu)铅(Pb)=铬(Cr)=锌(Zn)=汞(Hg)=镉(Cd),砷(As)是主要生态风险因子;总的潜在生态风险指数为中潮带低潮带高潮带。综合三种评价方法,除砷在地累积指数评价中等级为无污染到中级污染,其余重金属现状评价结果均为轻微或低污染。  相似文献   

4.
高羊茅和黑麦草对污染土壤Cd,Pb,Zn的富集特征   总被引:7,自引:0,他引:7  
以潮褐土为供试土壤,通过模拟试验研究了高羊茅(Festuca arundinacea)和黑麦草(Lolium multif lorum)对复合污染土壤Cd,Pb,Zn的富集特点。结果表明,在土壤Cd,Pb,Zn复合污染处理条件下,高羊茅Cd,Pb,Zn的平均富集量,地上部分别为5.76,19.77,418.18 mg/kg,地下部分别为129.82,256.66,354.66 mg/kg;黑麦草Cd,Pb,Zn的平均富集量,地上部分别为5.57,26.13,467.18 mg/kg,地下部分别为114.53,155.98,513 48 mg/kg。通过方差分析,这两种草坪草的重金属富集量没有显著差异,并且富集规律呈现较为一致的特点。地上部的富集量和土壤重金属含量的离子冲量呈显著的线性相关。这两种草坪草对其重金属的富集能力顺序为:Zn>Cd>Pb,其中对Zn的吸收呈现富集植物的特性规律,当土壤Zn含量>400 mg/kg时,其转运系数>1,地上部对Zn的富集能力很强,可作为Zn污染土壤的修复植物。通过偏相关和多元回归分析表明,这两种草坪草在土壤Cd,Pb,Zn复合污染条件下均未产生复合效应。  相似文献   

5.
为了了解长期灌溉猪场废水对农田土壤Pb、Cd和As(简称重金属)的影响,采集了河北省京安猪场周边农田的清洁区和灌溉8年猪场废水的污灌区耕层(0~20 cm)共52个土壤样品,并测定了样品中重金属的全量和有效态含量,应用GIS结合地统计学方法对重金属进行了空间结构和分布特征分析,探讨规模化猪场周边农田土壤重金属积累的影响因子及其贡献.结果表明,重金属全量和有效态含量的变异函数均很好地符合球状模型,其中全铅、有效铅、全砷、全镉和有效砷受随机性因素和结构性因素共同影响,有效镉主要受结构性因素影响.根据背景调查、重金属与pH值和土壤养分的相关性分析以及重金属变异函数分析,土壤中Cd和As污染来源为猪场废水和化肥,Pb的污染来源为化肥.富集因子分析表明,污灌猪场废水对土壤Cd和As富集效应很小,施用化肥对Pb富集有较大贡献.灌溉猪场废水会降低土壤pH值而增加重金属有效态含量,因此,需注意施用猪场废水带来重金属污染风险.  相似文献   

6.
土壤性质对烟草中镉富集的影响及预测模型研究   总被引:4,自引:0,他引:4  
王卫  梁振飞  李菊梅  石屹  刘继芳  马义兵 《土壤》2014,46(1):178-183
利用15个不同性质的土壤进行盆栽试验,研究了土壤性质对烟草中镉(Cd)富集的影响及预测模型。结果表明,影响烟草中Cd的主要土壤因素依次为土壤Cd浓度、pH、有机质含量。酸性土壤中烟草对土壤Cd具有较强的富集作用。外源Cd比土壤中原生Cd更容易被烟草吸收。土壤基本性质与烟草Cd浓度的数量关系为:Log[烟草Cd]=3.04+1.212Log[土壤Cd]-0.270pH-0.264Log[OC],利用此方程能够很好地预测烟草中Cd浓度。通过降低土壤中Cd的浓度或有效性,提高土壤pH等措施可有效降低烟叶中Cd的浓度。  相似文献   

7.
为揭示镉(Cd)富集植物龙葵的Cd吸收、积累与光合生理特性间的相关性,采用室内盆栽试验,在不同Cd添加水平下(0,2,5,10,20mg/kg,分别记为Cd0、Cd2、Cd5、Cd10、Cd20),研究了龙葵对重金属Cd的吸收、积累特性及生理响应。结果表明:龙葵对Cd有极强的耐性,在Cd浓度为20.0mg/kg的污染土壤中仍能正常生长;Cd≤10.0mg/kg的污染土壤中龙葵对Cd的富集、转运系数均大于1;但Cd20处理龙葵对Cd的富集和转运能力显著下降。Cd在龙葵中的分布为地上部地下部,并且各处理(Cd0、Cd2、Cd5、Cd10、Cd20)龙葵地上部Cd的积累量也显著高达地下部Cd积累量的10~15倍。同时,随土壤Cd浓度增加不仅引起龙葵对重金属Cd的吸收、转运的变化,也会引起龙葵光合生理指标的相应变化,当土壤Cd含量增加到10mg/kg时,龙葵地上部旗叶光合速率(Pn)、蒸腾速率(Tr)和气孔导度(Gs)最强,显著高于Cd0、Cd2、Cd5处理(p0.05)23.71%~79.80%,当土壤Cd含量持续增加,龙葵的光合强度呈显著下降的趋势。龙葵吸收Cd主要受植物外部因素土壤Cd浓度(SCCD)的影响,与Pn、Tr和Gs等内部因素并无显著相关性。因此,试图通过对龙葵的光合生理调控实现提高龙葵对Cd的吸收、积累并不能达到理想的效果,对揭示龙葵富集Cd的机理及调控机制还需进一步的研究。  相似文献   

8.
茶皂素作用下苎麻对镉污染土壤的修复效应   总被引:1,自引:0,他引:1  
植物修复法是矿区废弃地最经济实惠、最行之有效的生态 修复方法,为寻找重金属超积累植物,选取苎麻(Boehmeria nivea)作为试验材料,通过盆栽试验,研究了在不同浓度茶皂素溶液处理下,苎麻对土壤中重金属镉(Cd)的富集能力和转移能力的差异,结果表明:苎麻对重金属Cd的吸收属于根部囤积型;茶皂素溶液浓度为2.5 mmol/L时, 苎麻各部位对重金属Cd的富集系数均达到最大值;茶皂素溶液浓度为0.1~2.5 mmol/L时,有利于重金属Cd在苎麻植株内的转移,转移系数随浓度增加呈上升趋势,在茶皂素溶液浓度为2.5 mmol/L 时转移系数达到最大值.  相似文献   

9.
采用盆栽试验方法,以外源添加镉模拟土壤镉污染,研究了湖南两种母质发育土壤的稻米镉(Cd)积累差异。结果表明,在0.3~3.0 mg kg~(-1)的土壤Cd范围内,Cd对水稻产量无显著影响。水稻茎叶和糙米Cd含量随着土壤Cd浓度的升高而增加,麻砂泥添加Cd至0.9 mg kg~(-1)时,糙米Cd含量为0.20 mg kg~(-1),达到超标临界值,红黄泥添加Cd至3.0 mg kg~(-1)时,糙米Cd含量(0.19 mg kg~(-1))接近超标临界值。2种母质发育土壤上水稻茎叶对Cd的转运效率与土壤Cd浓度呈负相关,当添加土壤Cd至3.0 mg kg~(-1)时,麻砂泥和红黄泥上水稻茎叶对Cd的转运效率分别降低25.0%(P0.05)和27.2%(P0.05)。土壤Cd浓度影响水稻糙米对Cd的富集能力,随着土壤Cd浓度的升高,水稻糙米对Cd的富集能力下降。回归分析表明,麻砂泥和红黄泥上引起稻米Cd超标的土壤Cd含量临界值分别为1.37 mg kg~(-1)和3.56 mg kg~(-1),说明麻砂泥上的稻米Cd超标风险高于红黄泥,而这种差异主要归咎于2种母质发育土壤的p H、CEC、粒径分布及矿物组成差异。  相似文献   

10.
蒋逸骏  胡雪峰  舒颖  蒋颖  滕青 《土壤学报》2017,54(2):410-420
为研究采矿炼矿活动对农田和稻谷重金属累积的影响,评估其对人体健康的潜在风险,对湖南北部某镇一硫铁矿附近典型污染稻田土壤—水稻系统8种重金属(锰(Mn)、铜(Cu)、锌(Zn)、钴(Co)、镍(Ni)、铬(Cr)、镉(Cd)和铅(Pb))含量进行监测。结果表明:该冶炼厂附近稻田土壤Cd污染最严重,单因素污染指数达12.85,为重度污染;Cu、Zn、Co和Ni为轻度污染。土壤重金属综合污染指数达重度污染。重金属生物富集因子的研究表明:Cd和Mn极易从土壤中被水稻根系吸收,尤其Cd被水稻根系吸收的能力远超其他重金属元素;而Cu、Pb、Co、Cr、Zn和Ni相对不易被水稻根系吸收。重金属在植株组织的分配也表现出差异:Pb、Co、Cu、Cd和Cr被水稻根吸收后,主要蓄积于根部,在根部的浓度百分比分别为82.5%、70.6%、64.8%、59.4%和57.5%;Mn、Zn和Ni被根系吸收后,会迅速向地上部组织迁移。研究区稻田出产的糙米Cd污染严重,Cd的超标率达100%,"镉米"的产出率达53.3%。糙米Cu和Ni的超标率也分别达到了40%和86.7%。若居民食用研究区稻米,每人每日摄入Cd量高于FAO/WHO推荐的标准限值5.9倍,表明研究区稻米存在很大安全风险。  相似文献   

11.
Aluminum (Al) toxicity represents one of the main yield-limiting factors for crops in acid soils. Silicon (Si) is known to increase tolerance in higher plants. This study was conducted to determine whether treatment with Si could improve nutrient uptake by peanut under Al stress. Peanut (Arachis hypogaea L. cv Zhonghua 4) was raised with or without Si (1.5 mM) in the growth chamber under 0 and toxic Al (0.3 mM) levels. Aluminum stress significantly decreased the root- and total-dry weight by 52.4% and 32.0%, respectively. The content of nitrogen (N), phosphorus (P), potassium (K), calcium (Ca), and magnesium (Mg) was significantly decreased, but that of Al increased markedly in shoots and roots after Al exposure at seedling, flower-needle, and pod-setting stage. Silicon alleviates Al toxicity in peanut plants in relation to Al distribution and allocation of tissue P, K, Ca, and Mg by favoring the partitioning of dry mass to roots.  相似文献   

12.
Inductively coupled plasma-mass spectroscopic (ICP-MS) analysis of leaves from 22 cabbage crops in the Sa P? and B?c Hà districts of Láo Cai Province, North-Western Vi?t Nam, revealed unexpectedly high concentrations of chromium (Cr) and nickel (Ni). The concentrations were strongly linearly related (r2 = 0.94), indicating sample contamination during grinding through a stainless-steel hammer mill. We tested this hypothesis in two ways. First, brown rice ground through the same mill was contaminated not only by Cr and Ni, but also cobalt (Co), iron (Fe) and molybdenum (Mo). Second, scanning electron microscopy/energy dispersive analysis of x-rays (SEM/EDS) of the ground samples revealed small fragments with co-located Fe, Cr and Ni, consistent with stainless steel wear fragments. Other grinders may perform differently and we suggest that quality assurance protocols for trace metal analysis of plants should include testing for grinder wear metals. Lastly, brown rice appears to be convenient for investigating contamination of plant tissues during grinding.  相似文献   

13.
Information is scant on the effect of humic acid (HA) on physiological, antioxidant and photosynthesis attributes of gerbera plants undergoing nutrient deficiency in culture solution. Gerbera plants cv. Malibu were grown in a factorial experiment based on a completely randomized design with 3 replications, using 3 different nutrient solutions [complete nutrient solution (NSc), 25% NSc (NS1), and 50% NSc (NS2)] treated with 2 levels of humic acid [0 (HA0) and 500 mg/l (HA1)].The interaction effect of HA and NS showed that HA improved the flower number in NSc, the transpiration in NS1+HA1, photosynthesis rate in NSc+HA1, stomatal conductance (gs) in NS2, mesophyll conductance of leaves in all NS levels and photosynthetic water use efficiency in NSc+HA1. The interaction effect of nutrient solution and HA on antioxidant activity was inconclusive, malondialdehyde content was the highest in NS2 and the lowest in NS1+HA1. The peroxidase activity increased in complete nutrient solution with and without HA and there were no differences among other treatments. Superoxide dismutase activity increased in NS1 and complete nutrient solution with HA and reached the highest in NSc. Humic acid was more effective in nutrient uptake, i.e., nitrogen, phosphorus, potassium, calcium, zinc, and iron (N, P, K, Ca, Zn, and Fe) in complete nutrient solution compared to NS1 and NS2. Conclusively, humic acid can compensate the nutrient deficiency stress of the culture solution in regards to protein synthesis, photosynthesis attributes regardless of the nutrient uptake of gerbera.  相似文献   

14.
采用田间小区试验研究“推荐配比”(N:P2O5:K2O比率为190:90:100 kg hm-2)、“高氮量配比”(N:P2O5:K2O比率为210:90:100 kg hm-2)、“低氮量配比”(N:P2O5:K2O比率为170:90:100 kg hm-2)以及“常规配比”(N:P2O5:K2O比率为216:112.5:202.5 kg hm-2)4种氮、磷、钾配比施肥对饲用稻威优198蔗糖合成酶(SUS)、腺苷二磷酸焦磷酸化酶(AGPase)、硝酸还原酶(NR)、谷氨酰胺合成酶(GS)以及产量和糙米蛋白质的影响。结果表明:“推荐配比”能提高不同生育时期水稻功能叶(旗叶)和粒籽中碳、氮代谢关键酶的活性,这些关键酶活性的变化显著影响水稻产量和糙米全氮以及蛋白氮的含量。统计(P0.05)结果证实“推荐配比”能提高水稻产量达到8200 kg hm-2,与“常规配比”相比产量提高了24.81%;“推荐配比”糙米全氮和蛋白氮含量分别达到22.70 g kg-1和21.98 g kg-1,与“常规配比”相比差异显著,并且其全氮和蛋白氮含量分别提高17.01%,18.38%。  相似文献   

15.
小反刍兽疫N蛋白单克隆抗体的制备及竞争ELISA方法的建立   总被引:3,自引:0,他引:3  
小反刍兽疫(PPR)是由小反刍兽疫病毒(PPRV)引起的一种危害严重的急性接触性传染病。为了检测血清中存在的抗PPRV的抗体,本研究利用纯化后的真核表达的PPRVN蛋白重组蛋白(rBacmid-PPRN)作为免疫原免疫BALB/c小鼠(Mus musculus),并使用原核表达的PPRVN蛋白重组蛋白(rpET-PPRN)作为间接ELISA检测抗原,共筛选得到8株抗PPRVN蛋白的单克隆抗体(mAb)。其中1D5单抗腹水效价达1∶106,分泌单抗亚类为IgG2b。以1D5作为竞争抗体、纯化后的rpET-PPRN蛋白作为包被抗原,建立了检测小反刍兽疫血清抗体的单抗竞争性ELISA(c-ELISA)方法。所建立的c-ELISA方法能够特异性的区分牛瘟阳性血清和小反刍兽疫阳性血清,并具有较高的灵敏度和特异性。应用建立c-ELISA检测方法检测共129份山羊(Capra hircus)血清样品,与标准c-ELISA试剂盒的符合率为96.9%。本研究成功地建立了可特异性检测动物血清中抗PPRV抗体的竞争性ELISA方法,对小反刍兽疫的诊断、疫苗免疫水平的监控及控制其流行具有重要意义。  相似文献   

16.
四种常规方法提取伊利石有效钾的机制比较   总被引:1,自引:0,他引:1  
采用化学分析、X射线衍射、中红外光声光谱以及原子力显微镜的方法,比较了0.2 mol L~(-1)四苯硼钠法、1 mol L~(-1)沸硝酸法、2 mol L~(-1)冷硝酸法和2 mol L~(-1)热盐酸法浸提伊利石中有效钾的机制。结果表明,四苯硼钠法浸提时,伊利石中钾素释放量达到全钾量的59.5%,且基本均通过层间交换反应予以释放,结构离子铁、铝和硅释放量极低;采用三种酸溶液浸提时,其钾素释放量仅占全钾量的1.53%~2.46%,通过层间交换反应释放的钾量占释放量的比例为88.4%~94.0%。四苯硼钠浸提时伊利石层间距扩大,产生次生过渡矿物,并形成富硅表层,但在伊利石表面无溶蚀特征;三种酸溶液浸提时伊利石结构无改变,但其结晶度降低,且表面有明显的溶蚀特征。因此,土壤矿物层间钾是作物可利用有效钾的主要来源,三种酸溶液浸提方法一方面低估了有效钾容量,另一方面提取了一部分不能为植物所利用的结构态钾,不适宜于用来评价伊利石及土壤有效钾库容量。  相似文献   

17.
伪狂犬病毒(Pseudorabies virus,PRV)传统诊断方法具有程序繁琐、周期长、成本高、特异性差等缺点,本实验建立了敏感、特异的PRV的环介导等温扩增(loop-mediated isothermal amplification,LAMP)检测方法,并在此基础上应用金属离子指示剂羟基萘酚蓝(hydroxy naphthol blue,HNB)进行反应结果判定.实验选取保守性较高的gB基因(glycoprotein B,糖蛋白gB)筛选引物,确定反应体系后,可在45 min内完成检测.LAMP方法特异性与PCR方法一致,敏感性是PCR方法的100倍,最低能够检测10个拷贝的目的基因.在HNB的应用试验中,发现LAMP反应体系中,HNB浓度为150 μmol/L时,阴阳性的颜色对比明显且反应的敏感性最高,可用于LAMP扩增产物的判断.临床样本的检测结果表明,PCR方法和LAMP方法的检出率一致.因此,本研究中所建立的LAMP方法是一种高度特异敏感的,可替代PCR方法的检测技术.  相似文献   

18.
ABSTRACT

High bicarbonate (HCO3 ?) of irrigation water can be detrimental to plant growth in sustainable horticultural production systems. The ability of arbuscular mycorrhizal fungi (AMF), ZAC-19, (composed of Glomus albidum, Glomus claroideum, and Glomus diaphanum) to enhance tolerance to HCO3 ? was tested on Rosa multiflora cv. Burr. Arbuscular mycorrhizal colonized and non-inoculated (non-AMF) plants were treated with 0, 2.5, 5, and 10 mM HCO3 ?. Increasing HCO3 ? concentration and associated high pH and electrical conductivity (EC)—reduced plant growth, nutrient uptake, and acid phosphatase activity, while increasing alkaline phosphatase activity (ALP). Inoculation with AMF enhanced plant tolerance to HCO3 ?, as indicated by greater growth (leaf, stem, and total plant dry weight, leaf area and leaf area ratio), leaf elemental concentration [nitrogen (N), phosphorus (P), potassium (K), calcium (Ca), iron (Fe), zinc (Zn), aluminum (Al), boron (B)], leaf chlorophyll concentration, higher mycorrhizal inoculation effect, lower root Fe reductase activity, and generally lower soluble ALP activity. While AMF colonization was reduced by increasing HCO3 ? concentration, colonization still occurred at high HCO3 ? concentration. At 2.5 mM HCO3 ?, AMF plant growth was comparable to plants at 0 mM HCO3 ?, further indicating the beneficial effect of AMF for alleviation of HCO3 ? plant stress.  相似文献   

19.
产L-苯丙氨酸解氨酶菌种筛选   总被引:1,自引:0,他引:1  
从土壤中筛选出1株具有L-苯丙氨酸解氨酶(L-Pheny la lan ine amm on la-lyase,PAL)较高酶活力的产生菌株——酵母菌SA 1。L-酪氨酸(L-T yr)为该菌株产PAL的最佳诱导物;利用反式肉桂酸转化L-苯丙氨酸(L-Phe)的最佳酶促反应条件为:2.0%反式肉桂酸,碳酸氢铵∶氨水(W∶V)=4∶4,pH 10.6,34°C,反应8 h,在转化体系中添加甘油对酶活力有较好的保护作用。  相似文献   

20.
ABSTRACT

Delayed sowing and imprecise application of irrigation water to cotton has been the major hurdle in sustaining cotton yield in north-western India. Therefore, studies were initiated to ascertain the impact of heavy or normal level of presowing irrigation (PSI), scheduling time of first postsowing irrigation (POSI) under two sowing dates (SDs) on cotton arranged in a split block design replicated thrice. PSIh (100 mm) recorded 23.2% higher seed cotton yield over PSIn (70 mm) owing to better yield attributes and higher stand. First POSI at 4 weeks after sowing (WAS) resulted the highest yield (3072 kg ha?1), while one at 6 WAS (POSI6) recorded least due to poor population and reduced yield attributes. Water productivity under POSI6 was lesser by 29.1%, 25.2%, and 16.2% as compared to POSI3, POSI4, and POSI5, respectively. April sown crop out yielded the May sown cotton crop by 939 kg ha?1 due to better yield attributes. Nitrogen factor productivity (NFP) among SD remained higher by 23.3% for April as compared to May sowing. PSIh exhibited better NFP over PSIn. POSI6 recorded least NFP by 24.4%, 28.5%, and 16.3% as compared to POSI3, POSI4, and POSI5, respectively and was indicative of relatively poor utilization of N under delayed schedules. Therefore, planting in April after heavy PSI and scheduling first POSI at 4 WAS is best strategy for sustaining cotton yield and maximizing farmer profitability.  相似文献   

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