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1.
接种微生物对土壤中Cd、Pb、Zn生物有效性的影响   总被引:4,自引:0,他引:4  
针对提高植物修复土壤重金属污染的效果,以印度芥菜作为重金属富集植物,通过盆栽试验研究了巨大芽胞杆菌和胶质芽胞杆菌的混合微生物制剂(A处理)和黑曲霉发酵液(B处理)对植物修复Cd、Pb、Zn污染土壤的作用效果。结果表明:巨大芽胞杆菌和胶质芽胞杆菌的混合微生物制剂,不仅可以促进富集植物的生长,使其印度芥菜的生物量提高24.73%,并且可促进土壤Cd、Pb、Zn的活化,使土壤Cd、Pb、Zn有效态含量分别提高15.02%、7.65%和2.23%,增强富集植物对土壤的Cd、Pb、Zn富集吸收,使印度芥菜对土壤Cd、Pb、Zn的提取量分别提高52%、121%和23%,显著提高其植物修复效果。从对植物生理生化指标的影响来看,A处理对植株的伤害程度要低于B处理,它是一种有助于植物修复Cd、Pb、Zn污染土壤的微生物制剂,在植物修复领域有较高的利用价值。然而,黑曲霉混合发酵液不适于促进植物修复应用。  相似文献   

2.
通过温室土培和砂培盆栽对比试验,研究了外源Cd、Pb、Zn复合污染对印度芥菜富集重金属的效果。结果表明,印度芥菜Cd、Pb和Zn的富集量分别与土培和砂培Cd、Pb、Zn的添加量呈极显著正相关。砂培印度芥菜Cd、Pb和Zn的富集量分别远大于土培,前者印度芥菜地上部Cd、Pb、Zn的最高富集量分别达311.3,248.0,2760mg/kg,分别为土培的10.4,12.9,4.67倍;砂培条件下印度芥菜地上部Cd、Pb、Zn的提取量均大于土培,分别为土培的1.29~8.96倍、1.02~8.58倍和1.68~5.62倍;印度芥菜Cd、Pb、Zn的富集系数砂培较土培明显增大,其中富集系数的变化为CdZnPb,对Pb的富集系数除个别处理外均小于1,说明印度芥菜对Cd、Zn具有很强的富集能力,对Pb的富集能力较弱。研究表明,土培条件下Cd、Pb、Zn的生物有效性较低,直接制约着印度芥菜对土壤重金属污染的修复效果。  相似文献   

3.
印度芥菜对土壤Cd,Pb的吸收富集效应及修复潜力研究   总被引:1,自引:0,他引:1  
通过盆栽试验对比研究了印度芥菜(Brassica juncea)和油菜对复合污染土壤Cd,Pb的吸收富集效应及修复效率.初步探讨印度芥菜品种Wild Garden Pungent Mix净化重金属污染土壤的应用潜力.结果表明:Cd,Pb复合污染条件下,与油菜相比,印度芥菜对重金属Cd,Pb的抗耐性较强,地上部生物量较大,是同处理油菜的1.1~2.0倍.印度芥菜和油菜对重金属Cd,Pb的吸收富集表现出较为一致的特点,并且对土壤中重金属的吸收能力顺序均为Cd>Pb,对土壤中Cd的吸收达到了100 mg/kg以上.表现出了超富集植物的特性.但相比之下,印度芥菜对土壤中Cd,Pb的吸收富集能力强于油菜.同时通过多元回归分析表明,两种植物对Cd,Pb的吸收不存在复合效应.本研究中,印度芥菜对Cd的净化率为0.35%~9.22%,是同处理下油菜的2.1~3.5倍;印度芥菜对Pb的净化率只有0.015%~0.356%,虽然是同处理下油菜的1.4~5.5倍,但远小于对Cd的净化率.研究表明,该品种印度芥菜具备应用于修复Cd污染土壤的潜力.  相似文献   

4.
5.
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   

6.
蚯蚓对印度芥菜修复Zn、Pb污染土壤的影响   总被引:4,自引:0,他引:4  
以褐土为供试土壤,分别加入不同浓度梯度Zn2+(0,100,200,400 mg kg-1)或Pb2+(0,200,400,800 mg kg-1)模拟土壤污染,设置添加蚯蚓与不添加蚯蚓处理,通过盆栽实验,研究蚯蚓对印度芥菜生长量和重金属吸收量的影响,旨在探讨蚯蚓在植物-土壤系统中影响重金属迁移转化的作用机理,为蚯蚓在植物修复技术的实践与完善提供理论参考。结果表明:(1)在Zn、Pb污染土壤中,蚯蚓生长率分别降低3%~24%、6%~29%;(2)蚯蚓活动可以降低土壤的pH,显著增加土壤中Zn的有效态含量;(3)蚯蚓活动显著增加了印度芥菜地上部生物量(22.6%~88.6%鲜重,31.3%~122%干重)和印度芥菜地上部Zn的浓度及Zn和Pb的吸收量。印度芥菜地上部重金属浓度和吸收量与土壤中DTPA提取态含量呈极显著正相关(P <0.01),与土壤pH呈负相关。(4)蚯蚓对重金属的活化和对植物生长的促进是解决植物修复瓶颈问题的有效手段。  相似文献   

7.
重金属Cd和Pb对土壤生物活性影响的初步研究   总被引:12,自引:0,他引:12  
  相似文献   

8.
Cd,Pb复合污染对印度芥菜抗氧化酶活性的影响   总被引:3,自引:0,他引:3  
运用二因素(Cd、Pb)五水平回归正交设计,采用盆栽试验法,对比研究了Cd、Pb复合污染胁迫对印度芥菜和油菜MDA含量,以及SOD、POD和CAT活性的影响。结果表明:在Cd、Pb复合污染胁迫下,印度芥菜和油菜MDA含量显著上升,升幅分别为13.89%~118.47%,24.22%~231.22%。油菜MDA含量上升幅度显著高于同处理印度芥菜,重金属毒害症状明显。Cd、Pb复合污染对印度芥菜和油菜体内3种抗氧化酶活性的影响效应明显不同。随着Cd、Pb复合浓度的增加,Cd、Pb协同使印度芥菜SOD活性总体上呈显著上升趋势,SOD活性最大值与对照相比上升了20.12%,而POD和CAT活性则呈先显著上升后下降的变化趋势,但POD和CAT活性最小值与对照差异不显著,且Cd、Pb之间未产生复合效应;对于油菜来说,随着Cd、Pb复合浓度的增加,SOD和POD活性总体呈显著下降趋势,最小值与对照相比分别降低了21.58%,19.06%。Cd、Pb对SOD和POD活性产生了复合效应,但主要表现为Cd的极显著抑制作用。CAT活性则呈先上升后下降的变化趋势,CAT活性最大值与对照相比上升了26.24%,最小值与对照相比降低了10.96%。因此,综合分析可知,与普通植物相比,印度芥菜能够通过调节体内的抗氧化酶活性,主要是SOD活性来提高对镉铅复合污染的生态适应性,因而表现出较高的耐受性。  相似文献   

9.
土法炼锌区大气沉降Pb、Zn、Cd及其对土壤质量的影响   总被引:6,自引:0,他引:6  
Dust emissions from smelters, as a major contributor to heavy metal contamination in soils, could severely influence soil quality. Downwind surface soils within 1.5 km of a zinc smelter, which was active for 10 years but ceased in 2000, in Magu Town, Guizhou Province, China were selected to examine Pb, Zn, and Cd concentrations and their fractionation along a distance gradient from a zinc smelter, and to study the possible effects of Pb, Zn, and Cd accumulation on soil microorganisms by comparing with a reference soil located at a downwind distance of 10 km from the zinc smelter. Soils within 1.5 km of the zinc smelter accumulated high levels of heavy metals Zn (508 mg kg-1), Pb (95.6 mg kg-1), and Cd (5.98 mg kg-1) with low ratios of Zn/Cd (59.1--115) and Pb/Cd (12.4--23.4). Composite pollution indices (CPIs) of surface soils (2.52--15.2) were 3 to 13 times higher than the reference soils. In metal accumulated soils, exchangeable plus carbonate-bound fractions accounted for more than 10% of the total Zn, Pb, and Cd. The saturation degree of metals (SDM) in soils within 1.5 km of the smelter (averaging 1.25) was six times higher than that of the reference soils (0.209). A smaller soil microbial biomass was found more frequently in metal accumulated soils (85.1--438 μg C g-1) than in reference soils (497 μg C g-1), and a negative correlation (P < 0.01) of soil microbial biomass carbon to organic carbon ratio (Cmic/Corg) with SDM was observed. Microbial consumption of carbon sources was more rapid in contaminated soils than in reference soils, and a shift in the substrate utilization pattern was apparent and was negatively correlated with SDM (R = -0.773, P < 0.01). Consequently, dust deposited Pb, Zn, and Cd in soils from zinc smelting were readily mobilized, and weredetrimental to soil quality mainly in respect of microbial biomass.  相似文献   

10.
蒋先军  骆永明  赵其国 《土壤》2001,33(4):202-204
本通过温室盆栽试验研究了10-200mg/kg共20个浓度梯度的Cd处理下,EDTA加入土壤后对Cd的形态及其生物毒性的影响,在获前一周加入EDTA,收获后测定植物根和地上部的生物量,以及H2O、NH4NO3和EDTA3种提取剂提取的Cd浓度。结果表明,EDTA加入土壤一周后,土壤水溶态Cd增加了400倍以上,交换态Cd增加了40倍以上,印度芥菜根和地上部的生长都受到抑制。可能的原因是EDTA增加了土壤中镉的移动性,提高了Cd对植物的毒性。  相似文献   

11.
菜地土壤铅、镉有效态与生物有效性研究   总被引:7,自引:1,他引:6  
通过野外采样、室内测试分析,探讨重庆市北碚区菜地土壤铅、镉的有效态含量及生物有效性。结果表明:研究区菜地土壤铅、镉有效态平均含量为3.114,0.051mg/kg,生物有效性系数分别为7.7%,25.1%;小白菜可食部分铅、镉平均含量分别为0.123,0.021mg/kg,富集系数分别为0.4%,9.8%;从富集系数和生物有效性系数看,研究区菜地土壤镉的潜在生态风险要大于铅的。研究区菜地土壤理化性质中pH对有效态镉有显著影响;砂粒、粘粒和有机质对有效态铅含量有显著影响;铅、镉有效态与全量变化一致,全量是有效态含量的主要影响因素;土壤类型对铅、镉有效态含量有影响;在人类活动中交通对有效态铅含量有影响,肥料的施用对有效态镉含量有影响。菜地土壤中铅、镉有效态含量与小白菜可食部分铅、镉的含量相关性优于全量的,用土壤中铅、镉的有效态表征铅、镉的生态风险更准确。  相似文献   

12.
根据2007年和2009年对广东、广西沿海部分海域近江牡蛎(Crassostrea rivularis)、太平洋牡蛎(Crassostrea gigas)、翡翠贻贝(Perna viridis)、菲律宾蛤仔(Ruditapes Philippinarum)和文蛤(Meretrix meretrix)的监测资料,分析了贝类产品中镉(Cd)、铜(Cu)、铅(Pb)、锌(Zn)的含量特征及其季节差异,并采用点估计方法对贝类产品中的Cd、Cu、Zn、Pb进行了风险分析。结果表明,贝类品种的差异决定了其体内Cd、Cu、Pb、Zn含量的差异,近江牡蛎样品中Cd、Cu、Zn的含量远远高于另外4种贝类,文蛤样品中Cd、Cu、Pb的含量明显低于其他4种贝类。贝类产品中Cd、Cu、Pb、Zn的含量存在一定的季节差异,这可能与海水的温度、盐度、溶解氧等因子的季节变化有关。与《无公害食品水产品中有毒有害物质限量》标准的限量值相比,贝类产品中Cd、Cu、Pb的合格率分别为65%、67.7%和100%。与其他海域贝类产品的调查结果相比,此次贝类样品Cd、Cu、Pb、Zn的含量处于正常的波动范围内;与世界卫生组织/联合国粮农组织的食品添加剂联合专家委员会推荐的暂定每周耐受摄入量相比,太平洋牡蛎、翡翠贻贝、菲律宾蛤仔和文蛤的Pb、Cd的膳食暴露量处于安全范围内,而近江牡蛎的Cd膳食暴露量可能存在风险。  相似文献   

13.
ABSTRACT

The ability to tolerate and accumulate arsenic (As) and cadmium (Cd) was compared between Brassica juncea (Indian mustard) and Crambe abyssinica (Hochst.) (Crambe or Abyssinian mustard). Plants were grown hydroponically and treated with 70 μM sodium arsenate or 50 μ M cadmium chloride for two weeks. When nutrients were omitted during the As treatment, leaves of C. abyssinica accumulated an average of 140 mg As kg?1, compared with 34 mg kg?1 for B. juncea. When quarter-strength Hoagland's nutrient solution was provided during As treatment, leaves of C. abyssinica accumulated an average of 270 mg As kg?1, compared with 13 mg kg?1 for B. juncea. Cadmium accumulation on a dry-weight basis was approximately two times greater in shoots of B. juncea. Shoot biomass production in the presence or absence of metals was greatest for C. abyssinica. Because of its larger biomass and more efficient accumulation of As, C. abyssinica should be considered for use in phytoremediation research.  相似文献   

14.
A greenhouse experiment was designed to determine the cadmium (Cd) and lead (Pb) distribution and accumulation in parsley plants grown on soil amended with Cd and Pb. The soil was amended with 0, 5, 10 20, 40, 60, 80, and 100 mg Cd kg?1 in the form of cadmium nitrate [Cd(NO3)2] and 0, 5, 10, 50 and 100 mg Pb kg?1 in the form of lead nitrate [Pb(NO3)2]. The main soil properties; concentrations of the diethylenetriaminepentaacetic acid (DTPA)–extractable metals lead (Pb), Cd, copper (Cu), iron (Fe), zinc (Zn), and manganese (Mn) in soil; plant growth; and total contents of metals in shoots and roots were measured. The DTPA-extractable Cd was increased significantly by the addition of Cd. Despite the fact that Pb was not applied, its availability was significantly greater in treatments 40–100 mg Cd kg?1 compared with the control. Fresh biomass was increased significantly in treatments of 5 and 10 mg Cd kg?1 as compared to the control. Further addition of Cd reduced fresh weight but not significantly, although Cd concentration in shoots reached 26.5 mg kg?1. Although Pb was not applied with Cd, its concentration in parsley increased significantly in treatments with 60, 80, and 100 mg Cd g?1 compared with the others. Available soil Pb was increased significantly with Pb levels; nevertheless, the increase was small compared to the additions of Pb to soil. There were no significant differences in shoot and root fresh weights between treatments, although metal contents reached 20.0 mg Pb kg?1 and 16.4 mg Pb kg?1 respectively. Lead accumulation was enhanced by Pb treatments, but the positive effect on its uptake was not relative to the increase of Pb rates. Cadmium was not applied, and yet considerable uptake of Cd by control plants was evident. The interactive effects of Pb and Cd on their availability in soil and plants and their relation to other metals are also discussed.  相似文献   

15.
采用室内培养方法研究了中国典型红壤和黑土中外源铅(Pb)、镉(Cd)在单一和复合污染下的稳定化过程,探讨了土壤有机质含量对Pb、Cd稳定化过程的影响。结果表明,加入500mg·kg-1Pb、1.0mg·kg-1Cd或1.0mg·kg-1Cd+500mg·kg-1Pb条件下,各种土壤有效态Pb、Cd含量在培养前期迅速下降,随后变化减缓,培养30d后基本达到平衡。利用二级动力学方程对Pb、Cd稳定化过程进行拟合,在红壤和黑土上,有机质含量高的土样有效态Cd的平衡浓度比有机质含量低的土样中降低12.7%~37.3%;有效态Pb的平衡浓度比有机质含量低的土样中降低78.3%~96.2%,相关分析表明,土壤有机质含量的增加显著抑制了外源Pb、Cd的有效性(P〈0.05)。在铅镉复合污染中,Pb的存在提高了土壤中Cd的有效性,而Cd对Pb的影响较小。与黑土相比,红壤上外源Pb、Cd稳定化速率较小,达到平衡所需的时间较长,且有效态Pb、Cd的平衡浓度较高。因此,在农业生产实践中,通过提高红壤和黑土上有机质的含量能够显著降低外源重金属Pb、Cd的有效性,减少环境污染风险。  相似文献   

16.
ABSTRACT

The source of nitrogen (N) used in soil fertility practices affects plant growth, nutrient absorption, and the availability of nutrients. Consequently, the potential of plants to extract zinc (Zn) from soils may be increased by controlling the ratio of NH4 + to NO3 ? to maximize growth and Zn accumulation. The objectives of this research were to determine the effects of Zn supply and different molar ratios of NH4 + to NO3 ? on growth and Zn accumulation in Indian mustard (Brassica juncea Czern.). In a factorial experiment with solution culture, Indian mustard (accession 182921) was supplied with two concentrations of Zn (0.05 and 4.0 mg L?1) in combination with six N treatments with different molar percentage ratios of NH4 + to NO3 ? (0:100, 10:90, 20:80, 30:70, 40:60, and 50:50) for three weeks. Zinc supplied at 0.05 mg Zn L?1 represented a common concentration of Zn in solution culture, whereas 4.0 mg Zn L?1 was excessive for plant nutrition. If the supply of Zn in solution was excessive, plants developed symptoms of foliar chlorosis, which became severe if plants were supplied with 80% of N as NO3 ?. Supplying high proportions of NO3 ? in the nutrient medium stimulated Zn accumulation, whereas increasing proportions of NH4 + (up to 50% of the total N) enhanced shoot growth. The pH of nutrient solutions generally decreased with increasing proportion of NH4 + in solutions and with increased Zn supply. The Zn phytoextraction potential of Indian mustard was maximized, at about 15 mg Zn plant?1, if plants received 10% of the total N as NH4 + and 90% as NO3 ?.  相似文献   

17.
随着工业和农业生产的发展,重金属、有毒有机物及其复合污染土壤日益增多,其修复问题在世界范围内是一项具有挑战性的任务。以砂质壤土为试验对象,模拟石油-铅-镉复合污染,共设置4个处理:(1)对照处理,复合污染土壤(CK);(2)不施肥处理,复合污染土壤+黑麦草(NF);(3)施氮肥处理,复合污染土壤+黑麦草+氮肥(F1);(4)施氮肥和磷肥处理,复合污染土壤+黑麦草+氮肥+磷肥(F2),研究种植黑麦草与施肥处理对石油-铅-镉复合污染土壤微生物活性的影响,以期为污染土壤修复及环境影响评价提供初步的理论基础。结果表明:黑麦草与施肥对复合污染土壤基础呼吸、微生物量碳均有促进作用,处理NF、F1和F2的土壤基础呼吸强度比对照处理CK最高分别增加约20.94%,24.41%,42.69%,其中施加氮、磷肥(F2)对土壤基础呼吸影响最显著;第10天时,处理NF、F1和F2土壤微生物量碳含量与对照相比分别增加约26.92%,127.43%,181.89%,施肥处理土壤微生物量碳含量显著高于不施肥处理;不同种类的酶活性对黑麦草与施肥的响应不尽相同,其中种植黑麦草与施肥均会抑制石油-铅-镉复合污染土壤中FDA水解酶活性,施加氮肥在一定时间内能较好地维持石油-铅-镉复合污染土壤内的脱氢酶活性,施肥能有效地提高并维持复合污染土壤中脲酶活性,而过氧化氢酶活性受黑麦草与施肥影响不显著。研究表明种植黑麦草配施氮、磷肥对土壤微生物基础呼吸、土壤微生物量碳及相关土壤酶活性均有增强作用,进而有利于促进土壤污染物的去除及土壤质量的改善。  相似文献   

18.
ABSTRACT

Indian mustard (Brassica juncea Czern) is a promising species for the phytoextraction of zinc (Zn), but the effectiveness of this plant can be limited by iron (Fe) deficiency under Zn-contaminated conditions. Our objectives were to determine the effects of root-applied Fe and Zn on plant growth, accumulation of Zn in plant tissues, and development of nutrient deficiencies for B. juncea. In the experiment, B. juncea was supplied 6 levels of iron ethylenediamine dihydroxyphenylacetic acid (Fe-EDDHA; 0.625 to 10.0 mg L?1) and two levels of Zn (2.0 and 4.0 mg L?1) for 3 weeks in a solution-culture experiment. Nutrient solution pH decreased with decreasing supply of Fe and increasing supply of Zn in solution, indicating that B. juncea may be an Fe-efficient plant. If plants were supplied 2.0 mg Zn L?1, plant growth was stimulated by increases in Fe supply, but plant growth was not influenced by Fe treatments if plants were supplied 4.0 mg Zn L?1. Zinc concentration in roots and shoots was suppressed by increasing levels of Fe in solution. Leaf concentrations of Cu, Mn, and P were suppressed also as Fe supply in solutions increased. Iron additions to the nutrient solution were not effective at increasing the Zn-accumulation potential of B. juncea unless plants were supplied the higher level of Zn in solution culture. Even under these conditions, Fe additions were effective only if supplied at low levels in solution culture (1.25 mg Fe L?1). Results suggest that Fe fertility has limited potential for enhancing Zn phytoextraction by B. juncea, even if plants suffer a suppression in growth from Fe deficiency.  相似文献   

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