首页> 外文期刊>International Journal of Phytoremediation >PHYTOEXTRACTION OF HEAVY METALS FROM CONTAMINATED SOIL BY CO-CROPPING WITH CHELATOR APPLICATION AND ASSESSMENT OF ASSOCIATED LEACHING RISK
【24h】

PHYTOEXTRACTION OF HEAVY METALS FROM CONTAMINATED SOIL BY CO-CROPPING WITH CHELATOR APPLICATION AND ASSESSMENT OF ASSOCIATED LEACHING RISK

机译:含氯肥料与秸秆共混从土壤中提取重金属及相关浸出风险评估

获取原文
获取原文并翻译 | 示例
       

摘要

Phytoextraction using hyperaccumulating plants is generally time-consuming and requires the cessation of agriculture. We coupled chelators and a co-cropping system to enhance phytoextraction rates, while allowing for agricultural production. An experiment on 1 m(3) lysimeter beds was conducted with a co-cropping system consisting of the hyperaccumulator Sedum alfredii and low-accumulating corn (Zea Mays, cv. Huidan-4), with addition of a mixture of chelators (MC), to assess the efficiency of chelator enhanced co-crop phytoextraction and the leaching risk caused by the chelator. The results showed that the addition of MC promoted the growth of S. alfredii in the first crop (spring-summer season) and significantly increased the metal phytoextraction. The DTPA-extractable and total metal concentrations in the topsoil were also reduced more significantly with the addition of MC compared with the control treatments. However, mono-cropped S. alfredii without MC was more suitable for maximizing S. alfredii growth and therefore phytoextraction of Zn and Cd during the autumn-winter seasons. No adverse impact to groundwater due to MC application was observed during the experiments with three crops and three MC applications. But elevated total Cd and Pb concentrations among subsoils compared to the initial subsoil concentrations were found for the co-crop + MC treatment after the third crop.
机译:使用过度富集的植物进行植物提取通常很耗时,并且需要停止农业。我们结合了螯合剂和共作系统,以提高植物提取率,同时实现农业生产。在由混合肥高的景天和低累积玉米(Zea Mays,cv。Huidan-4)组成的共裁剪系统中,对1 m(3)渗漏床进行了实验,并添加了螯合剂(MC) ,以评估螯合剂增强共作植物提取的效率以及由螯合剂引起的浸出风险。结果表明,MC的添加促进了第一季作物(春夏季)S。alfredii的生长,并显着增加了金属植物的提取。与对照相比,添加MC还显着降低了表层土壤中DTPA可提取的总金属浓度。然而,不带MC的单作苜蓿链球菌更适合最大程度地增加苜蓿链球菌的生长,因此在秋冬季节可以最大程度地提取锌和镉。在使用三种农作物和三种MC的实验中,未观察到由于施用MC而对地下水造成的不利影响。但是,在第三茬后,共作+ MC处理的土壤中Cd和Pb的总浓度与初始土壤相比有所提高。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号