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1.
小麦富镉(Cd)问题受到广泛关注,铁氧化物具备降镉潜力.通过盆栽小麦幼苗实验,分析了三氧化二铁(Fe2O3)、氢氧化铁[Fe(OH)3]及拜耳法赤泥(B-RM)3种铁氧化物的降镉能力.结果显示3种铁氧化物中,Fe(OH)3可显著降低小麦幼苗茎叶Cd含量,与对照相比降幅为16.3%~27.7%,投加量为0.5%时降Cd效果最优.Fe(OH)3能够显著降低小麦幼苗根部向茎叶的Cd转运,投加量为10%时富集系数及转运系数最低.小麦幼苗根际土壤Fe/Cd、Cu/Cd及Zn/Cd是影响小麦幼苗茎叶Cd积累的关键因子,当Fe/Cd>25000、Cu/Cd > 50或Zn/Cd > 100时,根际土壤元素比与茎叶镉含量呈显著负相关.该比值的确定对于大田应用中钝化剂材料投加量的确定具有指导意义.  相似文献   

2.
选用潮土和褐土2种理化性质不同的土壤,采用室外盆栽实验,以小麦(Triticum aestivum)为供试植物,研究了佳乐麝香(HHCB)和镉(Cd)复合污染对小麦植株生物量及污染物在小麦植株各部分累积量的影响.结果表明,在2种土壤中小麦植株地上和地下部分的干重变化顺序均为,单一HHCB污染土壤>HHCB-Cd复合污染土壤>单一Cd污染土壤.潮土中HHCB在小麦植株各部分的累积量高于褐土,且潮土中Cd对HHCB在小麦植株各部分累积量的影响与褐土中不同.潮土中的单一HHCB在小麦植株根、茎、叶中的累积量顺序为:根>茎>叶;Cd能够显著促进HHCB在小麦根部的累积,而对HHCB在小麦茎和叶中的累积则起抑制作用,抑制率最高可达44.07%.褐土中单一HHCB在小麦植株根、茎和叶中的累积顺序为:根>叶>茎;Cd对HHCB在小麦根部累积的影响不显著,但是中高浓度Cd却可显著促进HHCB在小麦茎和叶中的累积,促进率最高可达35.95%.潮土中Cd在小麦植株各部分的累积量低于褐土,但2种土壤中HHCB均能够明显促进Cd在小麦植株根、茎、叶中的累积.潮土中Cd在根、茎、叶中的累积量增加率分别为30.84%、61.82% 和61.82%,褐土中Cd在根、茎、叶中的累积量增加率分别为 41.53%、184.16% 和206.18%,可见褐土中HHCB对Cd在小麦植株中累积的促进作用强于潮土.  相似文献   

3.
由于生物质原料来源广泛,缺乏生物炭内源污染物及其用量限制标准,极有可能将含有高内源污染物的生物炭用于环境修复,产生潜在的环境风险.采用清洁区、中度和重度污染区的巨菌草为原料制备生物炭,考察其内源铜(Cu)和镉(Cd)全量及其酸溶态含量和持久性自由基(PFRs)分布,并研究生物炭浸出液对小麦根伸长抑制率和抗氧化酶活性的影响.结果表明,重度污染区九牛生物炭Cu和中度污染区水泉生物炭中Cd含量分别是清洁区红壤生物炭Cu和Cd的3.73倍和4.43倍,九牛生物炭中酸溶态Cu含量分别是水泉和红壤生物炭的3.32倍和2.84倍,水泉和九牛生物炭中酸溶态Cd含量分别是红壤生物炭的7.95倍和5.11倍.3种生物炭中均含有相邻氧原子以碳为中心的PFRs,表现为:红壤>九牛>水泉.3种生物炭浸出液对小麦根伸长均表现为抑制作用,但均不同程度地提高了小麦幼苗超氧化物歧化酶(SOD)、过氧化物酶(POD)和过氧化氢酶(CAT)活性,其中九牛生物炭浸出液对小麦根伸长抑制率最高,达到27.7%.本研究表明,生物炭中内源重金属及PFRs等污染物的共同作用对小麦幼苗产生了显著的生物毒性,后期的研究需关注生物炭内源污染物的潜在环境风险,避免产生二次污染等环境问题.  相似文献   

4.
以密云水库上游某铁矿区为研究对象,采用荧光定量PCR和变性梯度凝胶电泳(DGGE)分析了矿区内不同采样点的土壤中氨氧化微生物的数量和群落结构的变化,结果表明,土样中氨氧化细菌(AOB)和氨氧化古菌(AOA)的数量变化范围分别为3.01×107~1.08×109copies/g干土和8.65×107~2.69×109copies/g干土.重金属含量与氨氧化微生物数量的相关性分析以及氨氧化微生物群落结构的冗余分析结果表明,该矿区内重金属污染改变了土壤中的氨氧化微生物的数量和结构.Cu污染对AOA的数量起到了显著抑制作用(r= -0.653*, P<0.05),但是对AOB则没有明显作用;Zn污染对尾矿库区域土壤的AOA/AOB比值影响显著(r= -0.606*, P<0.05);Cd污染改变了AOB的种群分布,降低了AOB的多样性水平.土壤中Cr长期干扰并没有改变氨氧化微生物的数量和结构,但是明显得抑制了氨氧化速率,表明重金属污染在一定程度上也影响了土壤生态系统的氮循环.  相似文献   

5.
锌(Zn)和镉(Cd)的交互作用是近年来小麦Cd污染防治的重要研究方向.以华北地区典型小麦田为研究对象,通过田间试验,探究Zn肥对土壤-小麦系统Cd污染的控制效果和施用风险.结果表明,低用量Zn处理下,济源和开封两地小麦籽粒Cd含量均呈下降趋势,与对照相比下降幅度分别为33.4%和25.3%.高用量Zn处理下,两地小麦籽粒Cd含量不降反升,与低用量Zn处理下小麦籽粒Cd含量相比增幅为22.4%和34.2%.施Zn后两地土壤Zn总量和有效态含量均有显著升高,且造成了土壤Cd的部分活化.典型相关分析(CCA)显示,当土壤ω(Zn)小于200 mg ·kg-1时,土壤Zn是土壤-小麦系统Cd富集的主要影响因子,而当土壤ω(Zn)大于200 mg ·kg-1时,土壤Cd的活化是影响小麦籽粒Cd富集的主要原因.回归分析显示土壤Cd/Zn降至0.0089时(低用量Zn),Zn和Cd表现出拮抗效应,土壤Cd/Zn降至0.0078时(高用量Zn),Zn和Cd表现出协同效应.针对区域Cd污染特征,调整Zn肥用量可以提高污染防治效率并避免加剧Cd污染危害.  相似文献   

6.
小尺度农田土壤中重金属的统计分析与空间分布研究   总被引:8,自引:2,他引:6  
对北京市东南郊大兴区某生态农场的4个地块进行了采样分析,测定了表层土壤中Cu、Zn、Cr、Pb和Cd的含量.统计结果表明,3块大田的土壤性质之间没有显著差异,而大田与菜地间的差异较大.大田的重金属含量低于国家一级土壤质量标准,而菜地个别采样点的Cu高于一级标准,Cd高于二级标准.进一步通过相关性分析和主成分分析,研究区域土壤中的重金属可以由3个主成分反映,Cu、Zn和Cd为第一主成分,Pb和Cr为第二和第三主成分.对3个主成分因子进行空间分析,用高斯模型来拟和主成分因子的半方差函数效果最佳.第一主成分有较好的空间相关性,而第二和第三主成分的空间相关性较弱.在GIS平台上,应用克里格插值法作图分析了主成分因子的空间分布特性.第一主成分在菜地的值高于大田,第二和第三主成分从东向西逐渐降低.这一分布结果表明,土壤中Cd、Cu和Zn积累来源于蔬菜生产中的农业投入,Pb和Cr受外界影响较小.  相似文献   

7.
通过对北京市凉凤灌区小麦籽粒及其相对应土壤样品的调查发现,小麦籽粒中的Ni、Pb、Zn超标率分别为38.1%、28.6%、4.8%;Hg、Cd虽然未发现超标现象,但也有部分样品接近国家食品卫生标准(GB2762-1994和GB 15201-1994);与1976年的调查结果相比,在过去的30年中,小麦籽粒中Hg、Pb、Cu含量呈显著增加的趋势.研究结果表明,北京凉凤灌区的小麦存在Hg、Pb、Zn等污染的潜在风险.无论是测定的土壤重金属全量,还是测定的土壤重金属的可提取态含量,都与小麦籽粒的重金属含量无显著的相关性.因此,在评价土壤重金属污染是否对农作物(小麦籽粒)影响时,采用目前通用的土壤可提取态重金属并不一定会优于土壤重金属全量.  相似文献   

8.
为了探究磷(P)对小麦幼苗镉(Cd)和砷(As)吸收转运生理机制的影响,通过水培试验,以百农207为供试材料,研究了Cd和As胁迫条件下,外源供P和缺P处理对小麦幼苗生长、根系形态、光合参数、抗氧化系统、离子含量和根茎转移系数的影响.结果表明,与缺P处理相比,外源P供应显著增加As胁迫下小麦幼苗叶绿素的含量,促进根系的生长发育,提高了生物量,而对Cd胁迫下小麦幼苗的生长影响不显著.外源P供应时显著增加了Cd胁迫条件下根系的P和Cd含量,降低了地上部的P和Cd含量;同时显著提高了As胁迫条件下地上部的P和As含量以及As向地上部的转移系数.因此,供P与否对小麦幼苗Cd和As毒害的影响表现出明显的差异性;As胁迫时,外源供P提高了As向地上部的转运能力以及根系的CAT活性,降低了As对小麦的毒害,从而促进了小麦幼苗生物量的累积;而在Cd胁迫条件下,P与Cd之间表现出一定的协同效应,外源供P在一定程度上加重了Cd对小麦的毒害效应.  相似文献   

9.
河南某污灌区土壤-作物-人发系统重金属迁移与积累   总被引:13,自引:3,他引:10  
开展污灌区土壤-作物-人发系统(SCHS)重金属迁移与积累研究,对于维护农田生态系统和人体健康具有重要意义.以河南某污灌区为例,采集土壤和小麦籽粒样品各27份、人发样品355份,用原子吸收法测定Cu、Zn、Pb、Cd含量,用二乙基二硫代氨基甲酸银分光光度法测定As含量,开展重金属在SCHS中的迁移与积累探讨.结果表明,污灌区土壤和小麦籽粒发生了不同程度的重金属污染.土壤Cu、Zn、Pb、Cd和As平均含量分别为40.63、203.47、22.10、1.84、26.87 mg·kg-1,小麦籽粒中上述重金属平均含量分别为10.10、25.83、0.87、0.56、0.35 mg·kg-1,都高于对照区.污灌区人发中上述重金属平均含量分别为14.11、143.13、13.24、0.19、1.97 mg·kg-1,高于对照区,人发多数重金属含量随年龄增长呈增加趋势,男性高于女性.污灌区人发对小麦籽粒重金属的富集系数(BAF人发/小麦)远大于小麦籽粒对土壤重金属的富集系数(BAF小麦/土壤),人发对大多数重金属的放大作用显著.在SCHS中,大多数重金属沿土壤→小麦籽粒→人发的迁移与积累曲线呈不规则"V"形,长期污灌样点的土壤和小麦籽粒重金属污染程度、人发重金属含量都高于"清污"混灌的样点.  相似文献   

10.
对农作物污染风险进行预测具有重大意义.基于贝叶斯定理及数据分布特征,建立了贝叶斯风险预测模型,并使用区域大田调查土壤-小麦重金属含量数据,预测小麦籽粒Cd和Pb超标风险并验证该模型的准确度.结果表明,该模型预测小麦籽粒Cd超标风险时相对偏差较小,以小麦籽粒Cd含量为变量的预测相对偏差仅为(2.66±1.87)%,以土壤DTPA-Cd含量和土壤Cd全量为变量时预测相对偏差则分别为(5.11±3.77)%和(5.88±3.87)%, 3个变量均能使预测结果与真实超标概率的平均相对偏差小于10%.预测小麦籽粒Pb超标风险时,仅小麦籽粒Pb含量的预测相对偏差小于10%.数据来源、数据分布特征和变量的选择是影响贝叶斯风险预测模型预测相对偏差的重要因素.该模型基于大田数据的先验分布,能够有效反映大田生产条件下小麦籽粒重金属与土壤因子间的相互关系,预测较准确,具有应用潜力.  相似文献   

11.
IntroductionCadmiumisprincipallydispersedinnaturalandagriculturalenvironmentsthroughvariousagricultural,miningandindustrialactivitiesaswellasresultingfromtheexhaustgasesofautomobiles(Das,1 997) .Thistracemetalisthepollutantandpotentialtoxinthathasunknownf…  相似文献   

12.
碱性土壤锌镉比对小麦籽粒镉积累的影响   总被引:1,自引:0,他引:1  
我国北方地区小麦镉(Cd)污染形势严峻.土壤锌(Zn)与Cd存在显著的交互作用,但两者关系尚不明确.本研究通过区域调查及大田实验,探究了北方碱性小麦土壤锌镉比(Zn/Cd)与小麦籽粒Cd含量的相关关系.结果表明,土壤Zn/Cd与小麦籽粒Cd含量显著负相关.施加硫酸锌(增Zn)及深翻耕措施(降Zn)均能显著提高土壤Zn/Cd,并降低小麦籽粒Cd含量.其中,增施100 mg·kg-1的Zn2+,可将土壤Zn/Cd增加61.2%,并使小麦籽粒Cd含量降低9.28%;将土壤0~30 cm及30~60 cm土层互换的深翻耕措施,可将土壤Zn/Cd增加45.8%,并使小麦籽粒Cd含量降低13.5%.综合区域调查及大田实验数据,发现当土壤Zn/Cd小于50时,小麦籽粒Cd含量全部超标且有98.4%的样品超标1倍以上;而当土壤Zn/Cd大于100时,小麦籽粒Cd含量超标风险显著降低至11.9%.该阈值的确定对于小麦Cd污染防治具有指导意义.  相似文献   

13.
Different aggregates vary in their ability to retain or adsorb metals in soil. Five soil profiles were sampled from different soil horizons and grouped, and the concentrations of Al, Mg, Ca, Fe, Mn, Cd, Cu and Pb were determined in six sizes of aggregates (> 2, 2-1, 1-0.6, 0.6-0.25, 0.25-0.053, < 0.053 mm). Significantly high (p < 0.05) structural stability indexes (SSI) and aggregate stability indexes (ASI) were recorded in the topsoil horizon, which may be attributed to the high soil organic matter (SOM) content in aggregates from topsoil. In addition, ASI and SSI were positively correlated (r = 0.569, p < 0.05) with each other, which indicated that the stability of soil aggregates could contribute to the structural stability of bulk soil. Moreover, accumulation factors (AF), principal component analysis (PCA) and Pearson's correlation coefficients were used for metal element assessment. The results indicated that SOM was not a key factor affecting the accumulation of Ca, Mg, Al, Fe, Mn, Pb, Cd and Cu in soil aggregates. In general, AF values for metal elements in microaggregates (< 0.25 mm) were high, which showed that metals preferred to accumulate in fine soil aggregates. The PCA and Pearson's correlation coefficients indicated that soil parent materials primarily controlled the distribution of Al, Ca, Fe, Mg and Mn, while materials derived from technogenic sources have important impacts on the distribution of Cd, Cu and Pb in soil aggregates along the soil profile.  相似文献   

14.
Earthworms have the ability to accumulate of heavy metals,however,there was few studies that addressed the metals in earthworm at subcellular levels in fields.The distributions of metals(Cd,Cu,Zn,and Pb) in subcellular fractions(cytosol,debris,and granules) of earthworm Metaphire californica were investigated.The relationship between soil metals and earthworms were analyzed to explain its high plasticity to inhabit in situ contaminated soil of Hunan Province,south China.The concentration of Cd in subcellular compartments showed the same pattern as Cu in the order of cytosol debris granules.The distribution of Zn and Pb in earthworms indicated a similar propensity for different subcellular fractions that ranked as granules debris cytosol for Zn,and granules cytosol debris for Pb.The internal metal concentrations in earthworms increased with the soil metals(p 0.05).Significant positive correlations were found between soil Cd and Cd concentrations in cytosol and debris(p 0.01).Moreover,the soil Pb concentration significantly influenced the Pb concentrations in cytosol and debris(p 0.01),similar to that of Cd.The soil Cu concentrations was only associated with the Cu in granules(p 0.05).Soil Zn concentrations correlated with the Zn concentrations in each subcellular fraction(p 0.05).Our results provide insights into the variations of metals partitioning in earthworms at subcellular levels and the relationships of soil metals,which could be one of the detoxification strategies to adapt the long-term contaminated environment.  相似文献   

15.
研究了水培环境中不同浓度纳米二氧化钛(TiO2-NPs)(0,25,50,100,200 mg/L)缓解Cd对小麦幼苗造成的生理毒害的作用。结果显示:在水培环境下TiO2-NPs的施用,缓解了Cd对小麦带来的氧化胁迫,减轻了Cd对小麦的毒害作用,显著提高了小麦生物量、根长及株高,改善了小麦光合作用。中浓度(50,100 mg/L)TiO2-NPs的使用显著提高了小麦幼苗净光合速率。对于所有浓度TiO2-NPs的施用,小麦幼苗POD酶活均显著低于Cd处理组;SOD酶活在较低浓度(<200 mg/L)时显著低于Cd处理组。TiO2-NPs通过减轻Cd氧化胁迫作用,有效缓解了Cd对小麦幼苗的毒害,提高了小麦幼苗的光合作用。  相似文献   

16.
Aging effect on the mobility and bioavailability of copper in soil   总被引:1,自引:0,他引:1  
Aging effect on the mobility and bioavailability of copper (Cu) was investigated using a spiked soil with different incubation periods from 3 to 56 d. Wheat was planted and earthworm was cultured separately in the incubated soils. The mobility of Cu in soil was evaluated by a chemical fractionation scheme and the toxicity and bioavailability were assessed by measuring the biomass and Cu concentration in tissues. Results showed that aging had a significant effect on Cu fraction distribution, of which Cu tended to incorporate from the exchangeable into more stable fractions such as the reducible and oxidisable fractions. However, aging had little effect on Cu bioavailability to wheat and earthworms. Comparing the soil being incubated for 3 d and 56 d, Cu concentration in wheat roots decreased from 14.5 to 12.8 mg/kg, and no significant changes in Cu concentration were observed in both wheat shoots and earthworms. The Cu concentration was around 2.0 and 50 mg/kg for wheat shoots and earthworms, respectively, irrespective of soil incubation time. The CaCl2-extractable Cu had a linear relationship with Cu concentration in wheat roots (R2 = 0.65, P < 0.05), but no linear relationship can be found for wheat shoots and earthworms. Biological control may be more crucial for Cu accumulation in organism than the changes in soil Cu fraction caused by aging.  相似文献   

17.
IntroductionCadmium(Cd)isanon essentialtracemetalthathasadverseeffectsonplants,animalsandhumans.EnvironmentalcontaminationwithCdduetoanthropogenicactivities,suchasmining,industry,agricultureandwastedisposalhasbeenincreasingsincethebeginningofthe 2 0thcentury (Alloway,1995) .ResearchoncontrollingCdpollutionassociatedwithassessingandmanagingacuteinjurytohumanhealththroughoccupationalexposureanddisposalofCdfromindustrialpointsourcestolocalpopulationsthroughseveralpathwayshasmadeconsiderableadva…  相似文献   

18.
Does copper reduce cadmium uptake by different rice genotypes?   总被引:4,自引:0,他引:4  
A hydroponics experiment was conducted to investigate the effect of copper (Cu) on cadmium (Cd), calcium (Ca), iron (Fe), and zinc (Zn) uptake by several rice genotypes. The experiment was carried out as a 2×2×4 factorial with four rice genotypes and two levels of Cu and Cd in nutrient solution. Plants were grown in a growth chamber with controlled environment. The results showed a significant difference between the biomass of different rice genotypes (P 〈 0.001). The Cd and Cu concentration in the solution had no significant effect on the biomass. The addition of Cu significantly decreased Cd uptake by shoots and roots of rice (P 〈 0.001). The Cd concentration did not significantly influence Ca uptake by plants, whereas the Cu concentration did (P = 0.034). There was a significant influence of Cd on Fe uptake by shoots and roots (P 〈 0.001, P = 0.003, respectively). Zn uptake decreased significantly as the addition of Cd and Cu increased in shoots. We concluded that Cu had significant influence on Cd uptake. The possible mechanisms were discussed.  相似文献   

19.
刘文英  吴刚  胡红青 《环境科学》2024,45(3):1803-1811
为探究螯合剂对植物吸收重金属的影响,以蓖麻(Ricinus communis L.)为供试植物,通过土培和盆栽试验,研究不同含量乙二胺二琥珀酸(EDDS)对土壤中铜镉形态和植物吸收、转运的影响.结果表明,EDDS显著增加了土壤有效态铜和镉含量,培养15 d时,增幅分别为43.01%~103.55%和51.78%~69.43%,同时促进了可还原态铜向弱酸提取态转化,增加了土壤铜的移动性.EDDS促进了蓖麻对铜的吸收、转运与富集.EDDS 2.5和EDDS 5.0处理时,地上部铜含量是对照的4.88倍和16.65倍(P< 0.05),根部是对照的2.89倍和3.60倍(P<0.05),铜转运系数显著提高了72.73%和381.82%.EDDS 5.0处理时,蓖麻地上部和根部的铜提取量分别是对照处理的14.08倍和2.16倍,总铜提取量是对照处理的4.70倍(P< 0.05).此外,EDDS显著增加了蓖麻镉含量,EDDS 2.5处理时,地上部和根部分别增加了15.15%和57.42%,蓖麻总镉提取量显著提高了13.44%.综上可知,EDDS能增加土壤铜镉的有效性,促进蓖麻对铜镉的吸收,提高蓖麻的修复效率,其中5.0 mmol·kg-1 EDDS更有利于蓖麻对铜的提取,而2.5 mmol·kg-1 EDDS处理对镉的提取有较高的增加效果.  相似文献   

20.
天津污灌区菜地土壤团聚体中有机碳和重金属含量特征   总被引:3,自引:0,他引:3  
以天津某污灌菜地土壤为研究对象,分析干筛法所得不同粒径土壤团聚体颗粒中有机碳及重金属含量特征.结果表明,土壤团聚体粗大颗粒(2 mm)含量最大,约为70%.0.25~0.5 mm粒级团聚体中Cu、Zn、Cd和Pb含量最高,Cr含量在5~8 mm粒径团聚体中最高,As在不同颗粒中含量差异较小,不同重金属元素含量随土层深度增加而减小.污灌土壤中重金属富集因子表现为Cd Pb Zn Cu Cr As,在0.25~0.5 mm粒级团聚体颗粒中Cu、Zn、Cd和Pb分布因子最高,而5~8 mm粒径团聚体中重金属负载因子最大.土壤有机碳含量整体上随团聚体粒径增加表现为先增加后降低,不同粒径团聚体中Cu、Cd、Pb和As含量与有机碳含量呈显著正相关(p0.05).  相似文献   

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