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101.
Influence of Indian mustard (Brassicajuncea) on rhizosphere soil solution chemistry in long-term contaminated soils: A rhizobox study 总被引:1,自引:0,他引:1
This study investigated the influence of Indian mustard (Brassica juncea) root exudation on soil solution properties (pH, dissolved
organic carbon (DOC), metal solubility) in the rhizosphere using a rhizobox. Measurement was conducted following the cultivation
of Indian mustard in the rhizobox filled four di erent types of heavy metal contaminated soils (two alkaline soils and two acidic
soils). The growth of Indian mustard resulted in a significant increase (by 0.6 pH units) in rhizosphere soil solution pH of acidic
soils and only a slight increase (< 0.1 pH units) in alkaline soils. Furthermore, the DOC concentration increased by 17–156 mg/L
in the rhizosphere regardless of soil type and the extent of contamination, demonstrating the exudation of DOC from root. Ion
chromatographic determination showed a marked increase in the total dissolved organic acids (OAs) in rhizosphere. While root exudates
were observed in all soils, the amount of DOC and OAs in soil solution varied considerably amongst di erent soils, resulting in
significant changes to soil solution metals in the rhizosphere. For example, the soil solution Cd, Cu, Pb, and Zn concentrations increased
in the rhizosphere of alkaline soils compared to bulk soil following plant cultivation. In contrast, the soluble concentrations of Cd, Pb,
and Zn in acidic soils decreased in rhizosphere soil when compared to bulk soils. Besides the influence of pH and DOC on metal
solubility, the increase of heavy metal concentration having high stability constant such as Cu and Pb resulted in a release of Cd and
Zn from solid phase to liquid phase. 相似文献
102.
Co-transport of dissolved organic matter and heavy metals in soils induced
by excessive phosphorus applications 总被引:2,自引:0,他引:2
To evaluate the e ects of long-term applications of phosphorus fertilizers on mobility of dissolved organic matter (DOM) and heavy
metals in agricultural soils, a sandy soil and a loamy soil were spiked with ammonium phosphate at application rates of 0, 25, 50,
100, 250, and 500 mg P per kilogram of soil. A series of 15-cm long soil columns were constructed by packing incubated soils of
varying concentrations of P. The soil columns were consecutively leached by simulated rainfalls for six cycles. The contents of water
extractable organic carbon in both sandy and loamy soils increased significantly with increasing rates of P applications. Relatively
high rates of P applications could induce a marked increase in DOM concentrations in the leachates, the e ects were larger with the
sandy soil rather than with the loamy soil. Applications of P changed the partitioning of trace metals in the soil solids and the soil
solutions. The increased P application rates also seemed to elevate the leaching of Cu, Cd, and Zn from soils. The concentrations of
Cu, Cd, and Zn in the leachates were positively correlated with DOM, probably due to the formation of metal-DOM complexes. In
contrast, Pb concentrations in the leachates were negatively correlated with DOM, and decreased with increasing rates of P applications.
The boosted leaching of DOM induced by high rates of P applications was probably due to the added phosphate ions competing for
adsorption sites in the soil solids with the indigenous DOM. 相似文献
103.
Heavy metal (Pb,Zn) uptake and chemical changes in rhizosphere soils of four wetland plants with different radial oxygen loss 总被引:4,自引:0,他引:4
Lead and Zn uptake and chemical changes in rhizosphere soils of four emergent-rooted wetland plants; Aneilema bracteatum,
Cyperus alternifolius, Ludwigia hyssopifolia and Veronica serpyllifolia were investigated by two experiments: (1) rhizobag filled with
“clean” or metal-contaminated soil for analysis of Pb and Zn in plants and rhizosphere soils; and (2) applied deoxygenated solution for
analyzing their rates of radial oxygen loss (ROL). The results showed that the wetland plants with di erent ROL rates had significant
e ects on the mobility and chemical forms of Pb and Zn in rhizosphere under flooded conditions. These e ects were varied with
di erent metal elements and metal concentrations in the soils. Lead mobility in rhizosphere of the four plants both in the “clean”
and contaminated soils was decreased, while Zn mobility was increased in the rhizosphere of the “clean” soil, but decreased in the
contaminated soil. Among the four plants, V. serpyllifolia, with the highest ROL, formed the highest degree of Fe plaque on the root
surface, immobilized more Zn in Fe plaque, and has the highest e ects on the changes of Zn form (EXC-Zn) in rhizosphere under both
“clean” and contaminated soil conditions. These results suggested that ROL of wetland plants could play an important role in Fe plaque
formation and mobility and chemical changes of metals in rhizosphere soil under flood conditions. 相似文献
104.
Efficiency of white lupin in the removal of mercury from contaminated soils: Soil and hydroponic experiments 总被引:1,自引:0,他引:1
Pilar Zornoz Roc′?o Mill′an M. Jos′e Sierr Almudena Seco Elvira Esteban 《环境科学学报(英文版)》2010,22(3):421-427
This study examined the ability of the white lupin to remove mercury (Hg) from a hydroponic system (Hg concentrations 0, 1.25, 2.5, 5 and 10 μmol/L) and from soil in pots and lysimeters (total Hg concentration (19.2 ± 1.9) mg/kg availability 0.07%, and (28.9 ± 0.4) mg/kg availability 0.09%, respectively), and investigated the accumulation and distribution of Hg in different parts of the plant. White lupin roots efficiently took up Hg, but its translocation to the harvestable parts of the plant was low. The Hg concentration in the seeds posed no risk to human health according to the recommendations of the World Health Organization, but the shoots should not be used as fodder for livestock, at least when unmixed with other fodder crops. The accumulation of Hg in the hydroponically-grown plants was linear over the concentration range tested. The amount of Hg retained in the roots, relative to the shoots, was almost constant irrespective of Hg dose (90%). In the soil experiments, Hg accumulation increased with exposure time and was the greater in the lysimeter than in the pot experiments. Although Hg removal was the greater in the hydroponic system, revealing the potential of the white lupin to extract Hg, bioaccumulation was the greatest in the lysimeter-grown plants; the latter system more likely reflects the true behaviour of white lupin in the field when Hg availability is a factor that limits Hg removal. The present results suggest that the white lupin could be used in long-term soil reclamation strategies that include the goal of profitable land use in Hg-polluted areas. 相似文献
105.
Low-cost, easy-maintenance and high-e ciency decentralized wastewater treatment technologies are urgently needed in rural areas
of China. Processes with high potential for phosphorus removal are of great interest. However, commonly used treatment methods often
do not meet the strict criteria for removing phosphorus from rural wastewater. In order to search an economic and simple technology
for phosphorus removal from the common bio-technologies e uent, seven soil types collected from di erent rural areas in China were
investigated for their ability to remove phosphorus. X-ray di raction (XRD) was used to analyse the mineral structure, and inductively
coupled plasma optical emission spectrometer (ICP-OES) was used to analyse the geochemical composition of the soil samples. Three
primary minerals – quartz, albite and montmorillonite – were clearly detected. The samples were divided into two soil types, acidic
soils and alkaline soils, based on their pH values. The geochemical composition study indicated that a higher percentage of Ca and Mg
occurred in alkaline soils (pH > 8) than in acidic soils (pH < 6.5). Adsorption isotherms from batch experiments fitted the Langmuir
and Freundlich models well, the maximum P adsorption capacities ranged from 0.256 to 1.598 mg P/g, indicating a high phosphorus
removal potential for all of these soils. The P fractions extracted revealed that the sum of NaOH-extracted inorganic P (NaOH-Pi) was
the major P component in the acidic soils, and CaCO3-bound phosphorus (Ca-P) in the alkaline soils. Dynamic adsorption simulation
showed that these soils have the ability to remove phosphorus from wastewater. 相似文献
106.
上海宝山区农用土壤重金属分布与来源分析 总被引:38,自引:9,他引:29
以上海宝山区为典型区域,在获取216个农用表层土壤样品重金属实测数据的基础上,运用多元统计和地统计相结合的方法,对上海宝山区农用土壤重金属的含量水平、分布特征和来源进行系统分析.结果表明,上海市宝山区农用土壤重金属Cd、Hg、As、Cr、Pb、Cu、Zn的平均含量值分别为0.195、0.148、7.44、82.5、29.1、33.2、124.5 mg.kg-1,均没有超过国家土壤环境质量二级标准,但Cd、Zn、Cr、Pb、Cu、Hg元素平均含量值超过上海市土壤背景值,其中Cd、Hg、Zn最为显著,分别是对应背景值的1.50、1.48、1.45倍,呈现出明显的累积趋势.相关分析和因子分析结果显示,各元素的来源可分为三类,Zn、Cd、Hg和Pb为一类,Cr和Cu为一类,As单独为一类;前两类元素含量远高于对应元素背景值,来源主要受各种人为活动影响,As元素含量与背景值相当,各样品含量的变异程度最低,来源主要与成土母质有关.空间结构分析表明,As元素以土壤母质、地形等结构性变异为主,其它元素主要受人为活动等随机因子影响;通过对临界值概率等值线的分布分析发现,Cd、Zn、Cr、Cu、Hg来源以点源为主,来源较为集中,Pb来源相对较为分散. 相似文献
107.
以‘早熟5号’大白菜(Beassica pekinensis L.)为试材,采用土施和叶面喷施三聚氰胺方式,观察并测定相关指标.结果表明,三聚氰胺在土壤中可发生缓慢降解,90 d后不同浓度处理(40、160和800 mg.kg-1)的土壤中三聚氰胺均有残留,分别残留21.1%、15.8%和43.6%.三聚氰胺处理浓度越高,大白菜吸收的量越大.土施试验,根中最高和最低含量分别为105.7和8.0 mg.kg-1,茎叶中为139.9和7.1 mg.kg-1,根吸收三聚氰胺后,可将其转运到地上部的茎叶中;叶面喷施试验,根中最高和最低含量分别为4.3和0.9 mg.kg-1,茎叶中为8.5和3.2 mg.kg-1.土施40 mg.kg-1三聚氰胺可增产9.8%,土施800mg.kg-1三聚氰胺减产15.9%,土施可增加叶绿素和可溶性糖含量,降低维生素C含量,叶面喷施三聚氰胺对大白菜的生长影响较小.三聚氰胺在土壤中的残留时间长,大白菜可通过根和茎叶吸收三聚氰胺,三聚氰胺可影响大白菜的生长状况. 相似文献
109.
上期《环境经济》的封面文章——《低碳农业的春天》,我们看到了低碳农业在我国的现状和发展前景。一般来说,以减缓温室气体排放为目标,以减少碳排放、增加碳汇和适应气候变化技术为手段,通过加强基础设施建设、产业结构调整、提高土壤有机质、做好病虫害防治、发展农村可再生能源等农业生产和农民生活方式转变, 相似文献
110.
文章提出了一种新的快速、现场分析沉积物和土壤中有机质含量以及组成特征的方法。该方法的提出建立在臭氧与沉积物和土壤中有机质发生氧化反应过程中会产生化学发光现象基础上。研究发现,不同沉积物和土壤样品由于组成结构不同,所产生的化学发光动力学曲线具有明显特异性差异。利用这种差异,通过原理试验样机所获取的样品化学发光动力学曲线,文章针对沉积物和土壤中有机质进行了初步的定量、定性含量研究,并结合现有检测方法,验证了臭氧氧化发光分析方法分析沉积物和土壤中有机质的可行性。根据实验中得到的不同沉积物和土壤样品化学发光动力学曲线具有很大信息差异的现象,进一步提出了建立沉积物和土壤中有机质特征编码"有机质指纹"的概念。 相似文献