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1.
镉胁迫对不同杂交水稻品种Cd、Zn吸收与积累的影响   总被引:11,自引:3,他引:8  
史静  潘根兴  张乃明 《环境科学学报》2013,33(10):2904-2910
土壤-作物-食品是人类摄取Cd的重要途径.水稻是Cd积累能力最强的粮食作物,且水稻对Cd的吸收常伴随Zn缺乏,这对人类健康具有潜在的暴露风险.因此,本文选择2种杂交水稻(普通杂交稻材料"J196"和超级稻品种"中浙优1号")为供试水稻,以红壤性水稻土为供试土壤,采用添加Cd(2.5 mg·kg-1)和不添加Cd(0 mg·kg-1)处理进行盆栽试验,研究了水稻在成熟期对土壤中Cd的吸收分配及籽粒中Cd、Zn的积累特点.结果表明,添加Cd处理的水稻籽粒Cd积累量为未加Cd处理的6~10倍.在供试土壤Cd污染条件下,超级稻表现出对Cd具有较强的吸收能力,其籽粒中的Cd积累量也可高达1.83 mg·kg-1,就地消费人群的籽粒Cd暴露风险水平为人体安全临界摄入剂量水平的数倍,Zn存在相对缺乏的食物安全风险.中浙优1号具有较强的籽粒Cd分配能力和较弱的籽粒Zn转运能力,而加Cd处理下,其对Cd、Zn的根部、茎叶滞留能力更强,这也正是高籽粒含量品种籽粒Cd积累强而Cd/Zn比高的原因.因此,在高产水稻育种中必须考虑水稻对Cd、Zn吸收的品种差异与籽粒Cd暴露、Zn缺乏的风险.为降低镉暴露风险,推广高产杂交水稻时应考虑Cd的吸收特性,同时在土壤-品种间进行合理布局,并进行膳食结构优化以增加人体对Zn的摄入.  相似文献   

2.
矿山不同片区土壤中Zn、Pb、Cd、Cu和As的污染特征   总被引:31,自引:4,他引:27  
廖国礼  吴超 《环境科学》2005,26(3):157-161
根据某典型有色金属矿山生产过程的污染状况,将受污染的矿区土壤分为尾矿污染区、坑道废水污染区、污风降尘污染区和精矿运输污染区4种类型.选择该矿区受污染土壤样本28个,用等离子体原子发射光谱仪(ICP-AES)等方法分析了土壤重金属含量和形态特征.结果表明,该矿区土壤重金属Zn、Pb、Cd、Cu和As污染较为严重,土壤Zn、Pb、Cd、Cu和As平均含量分别达508.6mg·kg-1、384.8mg·kg-1、7.53mg·kg-1、356mg·kg-1 和44.6mg·kg-1.不同片区间存在明显差别,污染强度以尾矿污染区最高,内梅罗综合指数为173,其次是精矿运输污染区和坑道废水污染区,污风降尘污染区污染较轻;各片区土壤的重金属元素以残余态为主,有机结合态比例最小,不同元素之间、不同片区土壤之间各形态所占比例差别不大.  相似文献   

3.
三元土壤调理剂对田间水稻镉砷累积转运的影响   总被引:3,自引:5,他引:3  
通过镉砷复合污染稻田的土壤调理剂原位治理,研究了三元土壤调理剂QFJ(羟基磷灰石+沸石+改性秸秆炭)对稻田土壤基本理化性质和水稻各部位镉砷累积转运的影响.结果表明,在土壤Cd总量3.58 mg·kg-1,As总量124.79 mg·kg-1污染程度下,施用QFJ后,水稻根际土壤pH值、阳离子交换量及有机质含量有增大的趋势;土壤交换态Cd和As含量可分别从0.37 mg·kg-1、0.07 mg·kg-1下降到0.12 mg·kg-1、0.04 mg·kg-1.QFJ的施用,可有效降低水稻各部位中Cd和As含量,在9.00 t·hm-2施用量水平,可将糙米中Cd含量从0.46 mg·kg-1下降到0.18 mg·kg-1,无机As含量从0.25 mg·kg-1降低到0.16 mg·kg-1,同时低于国家食品污染物限量标准0.2 mg·kg-1的要求,实现水稻安全生产.施用QFJ减少了水稻根系对Cd和As的富集,降低了水稻植株将Cd从地下部转运到地上部的能力,降低了根系转运Cd的能力以及茎叶、谷壳转运As的能力.  相似文献   

4.
4种钝化剂对污染水稻土中Cu和Cd的固持机制   总被引:1,自引:1,他引:0  
丁园  敖师营  陈怡红  肖亮亮 《环境科学》2021,42(8):4037-4044
为揭示钝化剂阻控后Cu和Cd二次活化的风险程度,本文采用石灰石(LS)、麦饭石(MF)、生物炭(BC)和铁改性生物炭(Fe-BC)这4种钝化剂,研究其施用后土壤及土壤胶体中Cu和Cd形态变化和内源铁氧化物类型、形貌变化归趋.结果表明,钝化剂对土壤Cu和Cd的固持效果表现为LS>MF>Fe-BC>BC.LS和MF处理后土壤可交换及碳酸盐结合态Cu质量分数分别减少8.19%和2.33%,易还原铁锰结合态Cu质量分数分别增加8.00%和2.69%,二次活化的风险较高;BC和Fe-BC处理后,易还原铁锰结合态Cu质量分数分别减少2.21%和5.90%,有机结合态Cu质量分数分别增加4.75%和3.48%,钝化效果更稳定.LS、MF、BC和Fe-BC处理后,土壤可交换及碳酸盐结合态Cd质量分数分别减少7.64%、8.34%、2.37%和6.73%,残渣态Cd质量分数分别增加8.27%、9.18%、5.73%和9.60%,说明钝化处理后,Cd二次活化的风险较低.胶体中Cu和Cd的含量分别为489.92mg·kg-1和2.57mg·kg-1,远高于土壤中Cu和Cd的含量239.98mg·kg-1和1.93mg·kg-1,且4种钝化剂施用后,土壤胶体中非晶质氧化铁结合态Cu和Cd含量显著增加,说明这是重金属生物有效性降低的主要原因和路径.  相似文献   

5.
TCLP法评价矿区土壤重金属的生态环境风险   总被引:38,自引:9,他引:38  
对浙江上虞某铅锌矿区中污染土壤的重金属(Cu、Zn、Pb、Cd)含量进行分析测定,采用美国最新的法定重金属污染评价方法TCLP(Toxicitycharacteristicleachingprocedure)法对土壤重金属污染状况进行评价,以国际规定的TCLP法标准评价重金属生态环境风险.结果表明:土壤中Cu、Zn、Pb、Cd的有效含量分别在8.2~36mg·kg-1 、23~143mg·kg-1 、6.4~1.367mg·kg-1 和0.41~2.2mg·kg-1 之间,而与之相对应的国际标准分别为15mg·kg-1、25mg·kg-1、5mg·kg-1 和0.5mg·kg-1,因此这个矿区附近土壤不同程度地受到Cu、Zn、Pb、Cd的污染,其中以Zn、Pb污染最为严重,其次为Cd ,而Cu的污染程度最轻.此外,用TCLP试剂提取土壤中的重金属后表明,TCLP试剂2能更有效地提取土壤中的重金属,并且两者之间存在一定的正相关.TCLP提取液中的重金属浓度与全量之间存在一定的关系.  相似文献   

6.
生物炭及改性生物炭已被广泛应用于重金属污染农田土壤修复领域.为探寻经济有效的镉(Cd)污染酸性紫色土壤修复改良材料,将酒糟制成酒糟生物炭(DGBC),并用纳米二氧化钛(Nano-TiO2)对其改性,制得两种改性酒糟生物炭TiO2/DGBC和Fe-TiO2/DGBC,采用水稻盆栽试验研究不同生物炭和不同施用量(1%、3%、5%)处理对土壤理化性质、养分含量、Cd赋存形态与生物有效性、水稻生长与Cd富集的影响.结果表明:①施用DGBC显著提高了酸性紫色土pH、CEC和养分含量,且TiO2/DGBC和Fe-TiO2/DGBC效果更好.②DGBC和改性DGBC使土壤Cd形态由可溶态向难溶态转变,残渣态Cd相较对照增加了1.22%~18.46%.土壤Cd生物有效性显著降低,DGBC、TiO2/DGBC和Fe-TiO2/DGBC分别使有效态Cd降低11.81%~23.67%、7.64%~43.85%和19.75%~55.82%.③施用DGBC和改性DGBC提高了水稻产量,DGBC、TiO2/DGBC和Fe-TiO2/DGBC在3%添加量时水稻产量最高,分别为30.60、37.85和39.10 g·pot-1,是对照的1.13、1.40和1.44倍.水稻各部位Cd含量显著降低,施用3种生物炭时水稻籽粒ω(Cd)分别为0.24~0.30、0.16~0.26和0.14~0.24 mg·kg-1,TiO2/DGBC在5%、Fe-TiO2/DGBC在3%和5%添加量时,水稻籽粒ω(Cd)低于0.2 mg·kg-1,符合国家食品中污染物限量标准(GB 2762-2022).总体来看,Nano-TiO2改性DGBC通过自身的吸附作用和影响土壤Cd形态分布有效降低了土壤Cd生物有效性,从而降低了水稻对Cd的吸收,同时促进了水稻生长,提高水稻产量.是一种具有潜在应用前景的Cd污染土壤修复改良材料.研究结果可以为Cd污染酸性紫色土农田修复和农业安全生产提供科学依据.  相似文献   

7.
为探讨巯基化蒙脱石(TM)实现镉(Cd)污染农田安全生产的效果及其持久性,开展了连续两年共四季田间水稻试验,研究了在Cd高污染(2.46~3.81 mg ·kg-1)土壤中,仅第一季施用不等量TM后,不再补施对每季水稻各部位Cd含量和土壤有效态Cd含量的影响.结果发现,TM可显著降低水稻各位Cd含量和土壤中有效态Cd含量,且钝化效果持久性明显.按0.5%和1%施用TM后,第一季水稻各部位Cd含量比对照显著降低,糙米ω(Cd)相比对照的0.98 mg ·kg-1分别降至0.16 mg ·kg-1和0.08 mg ·kg-1,降幅各达84.0%和91.9%,含量低于国家标准GB 2762-2017中Cd的限量值0.2 mg ·kg-1.0.5%和1%处理下连续种植的后续三季水稻糙米基本都达标,Cd含量分别降低了50.2%~67.8%和56.0%~81.6%.0.5%和1%处理下,第一季土壤有效态Cd质量分数从对照的48.4%分别降至27.9%和18.4%,降低了20.5%和29.9%,后续三季分别降低了10.0%~17.1%和12.4%~20.8%,与对照差异显著.土壤中有效态Cd含量与水稻各部位Cd含量之间存在极显著的正相关关系,TM主要通过降低土壤中有效态Cd含量而减少水稻对土壤Cd的吸收累积,从而使水稻各部位Cd含量降低.综合两年效果试验来看,TM抑制水稻吸收土壤中Cd效果显著,且两年内效果持久性良好,可较好地应用于Cd高污染农田安全生产.  相似文献   

8.
为研究富硅材料谷壳灰(HA)对稻田土壤Cd、As生物有效性及糙米中Cd、As累积的影响,以稻壳为原料制备中性HA(总硅量6.26×105 mg·kg-1),开展水稻盆栽试验.HA按质量比设置4个添加水平(0、0.5%、1%、2%),种植3种水稻(黄华占、湘晚籼13、隆优4945).研究结果表明:①在土壤Cd总量为2.30 mg·kg-1、As总量为90.45 mg·kg-1的复合污染土壤中,HA施用后,与对照相比,土壤Cd的TCLP提取态、CaCl2提取态及酸可提取态含量呈现不同程度的降低,分别降低了7.8%~18.7%、7.4%~18.7%、0.9%~16.7%;土壤As的交换态和TCLP提取态含量也有降低,分别降低了6.1%~47.1%、4.3%~26.7%.②HA施用可促进土壤中酸可提取态Cd向难溶态Cd的转变,水稻湘晚籼13、隆优4945根际土壤残渣态Cd含量分别增大9.8%~23.5%、5.9%~28.1%;土壤中As主要以残渣态存在,HA的施用对土壤专性吸附As含量有增大效应.③HA施用能够降低糙米中Cd和无机As含量,施用0.5%~2% HA能使水稻隆优4945和湘晚籼13糙米Cd含量降低到0.2 mg·kg-1以下,施用2% HA能使黄华占糙米无机As含量降低到0.2 mg·kg-1以下.施用HA能够有效降低土壤Cd、As生物有效性和糙米Cd、As含量,同时增大土壤有效Si含量,有利于提高土壤质量.  相似文献   

9.
唐棋  伍港繁  辜娇峰  周航  曾鹏  廖柏寒 《环境科学》2022,43(9):4810-4819
为研究低分子有机酸柠檬酸与农艺措施刈割强化象草修复镉(Cd)污染土壤的效应,开展象草盆栽种植试验.试验中柠檬酸设置单次1.25、2.5和5 mmol·kg-1施用水平;刈割设置0、1和2次.结果表明:①在柠檬酸施用量为1.25 mmol·kg-1且刈割1次时,象草地上部生物量增幅最大达39.11%,高剂量柠檬酸施用和多次刈割不利于生物量的增长;②柠檬酸施用和刈割均有增大象草茎和叶Cd含量的效应,刈割措施中最后一茬收获的象草茎Cd含量较大,且在mB(柠檬酸)5 mmol·kg-1施用下可将茎ω(Cd)增大到18.53 mg·kg-1,相比第一茬增大约6倍;③柠檬酸施用和刈割措施能够降低象草根际土壤pH和有机质,对土壤总Cd含量和Cd的TCLP含量也能分别最大幅度降低14.29%和10.17%;④在mB(柠檬酸)施用量为1.25 mmol·kg-1且刈割1次时,象草植物提取Cd的效果最佳,地上部位Cd提取量达到6.95 mg·株-1,占盆栽试供土壤Cd总量的9.38%.未来利用象草修复Cd污染土壤时,可考虑将1.25 mmol·kg-1柠檬酸施用和刈割1次相结合,以提高修复效率.  相似文献   

10.
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   

11.
Cd uptake in rice cultivars treated with organic acids and EDTA   总被引:3,自引:0,他引:3  
A pot experiment was conducted to examine the activity of antioxidant enzymes, the content of malondialdehyde (MDA), proline and protein, and Cd uptake in different rice cultivars exposed to Cd (0, 1 and 5 mg/kg) in the presence of organic acids and ethylenediamine tetraacetic acid (EDTA). The results showed the increase in activity of dismutase (SOD), contents of proline and protein but a decline in activities of peroxidase (POD) and catalase (CAT), and MDA content for cultivars Xiushui63 and IIyou527. The...  相似文献   

12.
Cadmium (Cd) entering the human body via the food chain is of increasing concern. This study investigates the effects of soil type and genotype on variations in the Cd concentrations of different organs of nine rice plants grown on two types of soils with two Cd levels. Cd concentrations in nine rice cultivars varied significantly with genotype and soil type (P < 0.01). The Cd concentration was higher in red paddy soil (RP) than in yellow clayey paddy soil (YP). The average Cd concentrations of different organs in three rice types were indica > hybrid > japonica for the Cd treatments and controls. The polished grain concentration in YP and RP soils had a range of 0.055-0.23 mg/kg and 0.13-0.36 mg/kg in the Cd treatment, respectively. Two rice cultivars in YP soil and five rice cultivars in RP soil exceeded the concentration limits in the Chinese Food Hygiene Standard (0.2 mg/kg). The Cd concentrations in roots, stems, and leaves were all significantly and positively correlated to that in polished grain in a single test. The Cd concentrations in polished grain were positively and significantly (P < 0.01) correlated with the calculated transfer factors of stem to grain and leaf to grain Cd transfer. The results indicated that the variations of Cd concentration in grain were related to Cd uptake and the remobilization of Cd from stem and leaf to grain. Also, the cultivars with a strong tendency for Cd-accumulation should be avoided in paddy soil with low soil pH and low organic matter content to reduce the risks to human health from high Cd levels in rice.  相似文献   

13.
水稻品种及典型土壤改良措施对稻米吸收镉的影响   总被引:9,自引:11,他引:9  
王美娥  彭驰  陈卫平 《环境科学》2015,36(11):4283-4290
水稻镉污染是我国当前重要的农产品安全问题,湖南攸县"镉大米"事件造成了严重的社会影响.针对南方酸性土壤镉污染特征,进行了"镉大米"治理技术研究.结果表明,当地主栽水稻品种株两优06的稻米Cd含量在大同桥和网岭镇的平均值分别为0.167 mg·kg-1和0.127 mg·kg-1,为其它品种的20%左右;石灰和矿物肥处理能够使稻米Cd含量降低到对照的20%~30%,覆膜处理使稻米Cd含量与对照相比降低约50%,而覆膜+生物炭+硅肥叶面肥处理能够降低80%左右,硅肥叶面肥单独施用及叶面肥和追肥配合施用能够显著降低稻米中的Cd含量90%以上;BCR法分析土壤Cd形态结果发现,供试大田土壤中Cd的弱酸可提取态比例较高,绝大多数样品达到55%以上,而施用石灰能够显著降低土壤中的弱酸可提取态和可还原态比例,增加残渣态比例,变化幅度达到20%左右;土壤Cd含量与p H值是影响稻米对Cd吸收的重要因素.  相似文献   

14.
Enhanced Cd uptake and Zn depletion in rice grains and high potential for food Cd exposure by the high-yielding hybrid cultivars of China had been addressed. A field experiment was conducted in 2006 to determine the di erence in grain Cd and Zn between cultivars. Total 110 cultivars including super rice and common hybrid rice cultivars were grown on a single paddy soil (Entic Haplaquept) with a neutral reaction and low total Cd content. Grain Cd and Zn concentrations were determined with graphite atomic adsorption spectrophotometer (GFAAS) and flame atomic adsorption spectrophotometer (AAS) respectively.Wide variation of Cd content in grain was found in a range of 0.004–0.057 mg/kg, while the Zn content in a range of 10.25–30.06 mg/kg among the cultivars. Higher Cd but lower Zn concentration in grains of super rice cultivars was observed compared to the common hybrid ones. A highly significant positive linear correlation of grain Cd/Zn with grain Cd was found for super rice and common hybrid cultivars, meanwhile much higher slope for these hybrid cultivars than the reported non-hybrid cultivars was also observed. Using the limit value of the Chinese chemical guidelines for foods (MOHC and SSC, 2005), calculated potential risk of food Cd exposure with “Zn hungry” through diet intake was prominent with all the studied 110 hybrid rice cultivars, possessing high potential health problems for rice production in South China using the super rice cultivars. Breeding of genotypes of rice cultivars with low grain Cd and low Cd/Zn ratio is needed for rice production in acidic red soils where Cd bioavailability is prevalently high.  相似文献   

15.
杂交水稻对Cd的吸收与籽粒积累:土壤和品种的交互影响   总被引:22,自引:2,他引:20  
龚伟群  李恋卿  潘根兴 《环境科学》2006,27(8):1647-1653
土壤-作物-食物是人类摄取Cd的主要途径,而水稻是籽粒Cd积累最强的粮食作物.选择2种杂交水稻(普通杂交稻“汕优63”和超级稻“Ⅱ优明86”)与乌栅土和红沙泥田2种水稻土为材料,采用添加Cd(2.5 mg/kg)和不添加Cd处理进行盆栽试验,研究了水稻在成熟期对土壤中Cd的吸收及籽粒积累特点.结果表明,杂交水稻对Cd的吸收及籽粒积累依土壤、品种及两者的交互作用而变化.杂交稻对土壤中原有Cd的吸收与积累,基因型影响高于土壤类型的影响,但对外源Cd的吸收与籽粒积累,土壤类型的影响强于品种基因型,而土壤与品种间的正交互作用(Cd吸收强的超级稻种植于土壤Cd化学有效性高的红沙泥田)可使水稻籽粒Cd积累成倍提高.说明在未污染条件下,杂交稻对Cd的吸收与籽粒积累主要受品种的吸收能力控制,而在污染条件下,土壤化学性质对Cd有效性的影响成为土壤-水稻系统Cd迁移的主要控制因素.本实验显示,在酸性土壤或污染条件下,超级稻对Cd的吸收与籽粒积累十分强烈,就地消费人群的籽粒Cd暴露风险水平达到数倍于临界摄入剂量水平.加Cd处理下,汕优63中Cd滞留于根部,而Ⅱ优明86有较强的将Cd向上运输的能力,Ⅱ优明86籽粒Cd积累的不利效应远远超过其产量的增加效应.因此,在高产水稻育种中必须考虑水稻对Cd吸收的基因型差异与籽粒Cd的暴露风险,推广高产杂交水稻根据其Cd的吸收特性考虑土壤-品种的合理布局.  相似文献   

16.
采用田间试验法,研究了江苏省57个水稻品种籽粒对太湖地区乌栅土中Cd、Cu、Se的吸收积累.结果表明水稻籽粒的Cd、Cu、Se含量的变化范围分别为0.099±0.039、4.86±2.595、0.035±0.007mg/kg,指示不同水稻品种对同一土壤中Cd、Cu、Se的吸收及其在籽粒中的积累存在有显著的差异.不同品种籽粒对Cu和Cd的吸收积累有同步的趋势,而高Se品种显示出抑制重金属Cu和Cd积累的倾向.不同品种籽粒中重金属含量的差异可能影响到人类重金属食物摄取的健康风险,57个品种中92%的样品的Cd含量超出USEPA推荐的人类摄取的籽粒临界含量.因此,在土壤重金属污染地区,必须密切注意高Cd、Cu吸收积累品种的大规模栽培.而筛选高Se低Cu、Cd的水稻品种进行品质育种是可能的.  相似文献   

17.
Two pot experiments were conducted under greenhouse conditions to investigate the characteristics of Cd uptake and accumulation by two Cd accumulator oilseed rape varieties and one Indian mustard grown on a loamy soil that had been artificially contaminated by different amounts of CdSO4 (0, 20, 40, 60, 80, 100 mg/kg soil). The relationship between shoot Cd uptake of the two oilseed rape cultivars and the soil Cd concentrations could be simulated via quadratic equations. The curve showed that maximum shoot Cd uptake of Indian mustard was 314.7μg/pot at soil Cd concentration of 87.8 mg/kg, while maximum uptake of the variety Xikou Huazi was 543.3 μg/pot at soil Cd concentration of 69.1 mg/kg and that of the variety Zhongyou Za-lhao was 576.7 μg/pot at soil Cd concentration of 84.0 mg/kg, suggesting that shoot Cd uptake ability of the two Cd accumulator oilseed rapes was significantly higher than that of the Indian mustard. Xikou Huazi had higher phytoremediation potential for Cd contaminated soil. Shoot Cd accumulation ability of the two Cd accumulator oilseed rapes was correspond and Cdwas easier translocated to the shoot than hyperaccumulator Indian mustard as comparation plant. Shoot Cd distribution pattern showed consistent and significant reduction from older leaves to younger ones of two oilseed rapes and Indian mustard. Cd uptake by oilseed rapes in growth prophase was higher than that of growth anaphase.  相似文献   

18.
选取湖南省浏阳市某Cd污染稻田进行田间试验,研究组配改良剂石灰石+海泡石(LS)、基施硅肥及叶面喷施硅肥对Cd污染稻田修复效果,结果表明:(1)基施硅肥90kg/hm2和叶面喷施硅肥(0.2,0.4g/L)对土壤pH值无明显影响,添加LS(2250,4500kg/hm2)的各处理均显著提高土壤pH值(P < 0.05).(2)基施硅肥90kg/hm2分别降低土壤交换态、毒性特征浸出(TCLP)提取态Cd含量20.0%和18.5%,叶面喷施硅肥对土壤Cd两种提取态含量无明显影响,添加LS的各处理(2250,4500kg/hm2)分别使土壤交换态、TCLP提取态Cd含量降低25.8%~49.9%、26.4%~44.5%.(3)3种单一技术措施均能明显降低水稻各部位Cd含量,但降低糙米中Cd含量的效果低于3种技术措施的组合处理;“组配改良剂LS+基施硅肥+叶面喷施硅肥”各处理(JL1F1、JL1F2、JL2F1、JL2F2)使水稻糙米中Cd含量降低25.6%~70.5%.(4)“组配改良剂LS+基施硅肥+叶面喷施硅肥”的组合技术处理能显著降低土壤中Cd的有效性,显著降低水稻各部位中Cd含量,其中JL2F2处理效果最佳,能使对照糙米Cd含量从0.66mg/kg降低到0.19mg/kg,实现中重度Cd污染稻田的水稻安全生产.  相似文献   

19.
A root-bag experiment was conducted to study the effects of insoluble Zn, Cd and ethylenediaminetetraacetic acid (EDTA) on the plant growth, activities of antioxidant enzymes, proline, glutathione (GSH), water-soluble proteins and malondialdehyde (MDA) of Vetiveria zizanioides, and its uptake capacity of Zn and Cd.The results showed that plant growth of V.zizanioides was inhibited by Zn and Cd.The shoot dry weight (SDW) and root dry weight (RDW) decrease by 0.3%, 8.0%, 9.4% and 10.4%, 15.1%, 24.2% compared to the control without EDTA addition, respectively.After adding EDTA, shoot and root dry weight decreased over 10% and 15% compared to results in the absence of EDTA, respectively.The toxicity from insoluble Zn and Cd in soil on SDW and RDW of V.zizanioides was in order: Zn+Cd > Cd > Zn.The activities of superoxide dismutase (SOD), peroxidase (POD) and catalase (CAT), and contents of MDA and proline significantly increased, while the contents of GSH and water-soluble proteins markedly decreased with increasing Zn and Cd toxicity.With EDTA, shoot and root Zn concentrations increased in the Zn treatment by 7.3% and 37.4% compared to the plants grown in absence of EDTA.Shoot and root Cd concentrations in the combined Zn and Cd treatment with EDTA increased by 18.6% and 391.9% compared to the treatment without EDTA.However, Zn and Cd concentrations in shoot and roots decreased in the Cd treatment compared to the plants grown in absence of EDTA, with exception of root Cd concentration in the presence of EDTA).  相似文献   

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