首页> 外文会议>2010 International Conference on Digital Manufacturing and Automation >Relationships Between Changes of Three Organic Acids (Oxalic Acid, Citric Acid and Tartaric Acid) and Phytoextration by Sunflower (Helianthus annuus L.) in Sand Cultures Contaminated with Cadmium and Lead
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Relationships Between Changes of Three Organic Acids (Oxalic Acid, Citric Acid and Tartaric Acid) and Phytoextration by Sunflower (Helianthus annuus L.) in Sand Cultures Contaminated with Cadmium and Lead

机译:镉和铅污染的砂培养物中三种有机酸(草酸,柠檬酸和酒石酸)的变化与向日葵(向日葵)植物提取的关系

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Sand culture was used to investigated the Cd and Pb phytoextraction by sunflower, and changes of organic acids including oxalic acids, citric acids and tartaric acids. The results showed that bioconcentration factors (BCF) of Cd or Pb increased with time and decreased with concentrations, the highest Cd-BCF and Pb-BCF appeared in Cd5 (21) and Pb50 (7.95), respectively. The contents of oxalic acids in Cd 40 were the highest (152.20 mg·L-1) at the 90th day. Citric acids in Cd10 and Pb400 treatments were higher than other Cd and Pb treatments, which was 578.12 mg·L-1, 413.87 mg·L-1, respectively at the end of the test. Tartaric acids in single Cd or Pb treatments showed increasing trend with time obviously, the highest (474.15 mg·L-1) appeared in Cd5 treatments at the end of this experiment. The presence of heavy metals may influence organic acids secretion from roots. And organic acids could promote bioavailability of heavy metals or impact the mechanism of metals uptake, which might result the distinction of Cd or Pb phytoextraction by sunflower. This study may supply useful information for phytoremediation of soil contaminated with cadmium and lead in situ.
机译:用沙土培养法研究向日葵对镉和铅的植物提取作用,以及草酸,柠檬酸和酒石酸等有机酸的变化。结果表明,Cd或Pb的生物富集因子(BCF)随时间增加而随浓度降低,Cd5(21)和Pb50(7.95)分别出现最高的Cd-BCF和Pb-BCF。在第90天,Cd 40中草酸的含量最高(152.20 mg·L-1)。 Cd10和Pb400处理中的柠檬酸高于其他Cd和Pb处理,试验结束时分别为578.12 mg·L-1、413.87 mg·L-1。 Cd或Pb单次处理中酒石酸明显随时间增加趋势,实验结束时Cd5处理最高(474.15 mg·L-1)。重金属的存在可能会影响根部分泌有机酸。有机酸可以促进重金属的生物利用度或影响金属的吸收机制,这可能导致向日葵对Cd或Pb的植物提取作用有所区别。该研究为原位污染镉和铅的土壤的植物修复提供了有用的信息。

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