...
首页> 外文期刊>Applied Soil Ecology >Soil chemical and biochemical properties under Populus alba growing: three years study in trace element contaminated soils.
【24h】

Soil chemical and biochemical properties under Populus alba growing: three years study in trace element contaminated soils.

机译:白杨生长下的土壤化学和生化特性:在被微量元素污染的土壤中进行的三年研究。

获取原文
获取原文并翻译 | 示例

摘要

Certain plant species have the ability to grow in trace element-polluted soils without showing any negative symptoms. These species could be considered for phytoremediation techniques and their presence might influence the abundance, activity and composition of soil microbial communities. In this work we investigated the root-induced changes in chemical (pH, soluble trace element concentrations, total organic C, water-soluble C, and nitrogen concentrations) and biochemical (microbial biomass C, beta -glucosidase activity and protease activity) properties caused by Populus alba on two contaminated soils (one with neutral pH (AZ) and other with acid pH (DO)) for a period of over 36 months. The results were compared to those obtained with a non-contaminated soil. The experiment was carried out in containers. At the end of the experiment, samples of the soil directly adhered to the root and that located more than 5 cm from the root were also studied. The results showed that, in neutral soils, poplar did not influence soil pH; the greatest effect on pH due to plant growth was found in acid soil. Poplar presence increased C sources, through root exudates, in all soils. In AZ soil, poplar maintained chemical and biochemical properties, whereas an important decrease in soil quality was observed in the same bare soils. The effect of poplar development on soil quality was even more appreciable in acid contaminated soil (DO), in which the tree also produced a strong increment of soil pH, a decrease in trace element concentrations and an improvement of chemical and biochemical properties. We concluded that P. alba is a suitable plant for the phytoremediation of trace element contaminated soils. Moreover, root exudates of this species may be responsible for the improvement of soil quality in trace element contaminated soils.
机译:某些植物物种能够在被微量元素污染的土壤中生长,而不会表现出任何负面症状。这些物种可以考虑用于植物修复技术,它们的存在可能会影响土壤微生物群落的丰度,活性和组成。在这项工作中,我们调查了由根引起的化学性质(pH,可溶性微量元素浓度,总有机碳,水溶性碳和氮浓度)和生化性质(微生物生物量碳,β-葡萄糖苷酶活性和蛋白酶活性)的变化。由杨白杨在两种受污染的土壤(一种具有中性pH(AZ),另一种具有酸性pH(DO))上进行了超过36个月的时间。将结果与未污染土壤的结果进行比较。实验是在容器中进行的。在实验结束时,还研究了直接附着在根部且距根部5 cm以上的土壤样品。结果表明,在中性土壤中,白杨不影响土壤pH。在酸性土壤中发现了由于植物生长而对pH值的最大影响。在所有土壤中,白杨的存在通过根系分泌物增加了碳源。在AZ土壤中,白杨保持了化学和生化特性,而在相同的裸露土壤中观察到土壤质量显着下降。在酸污染土壤(DO)中,杨树发育对土壤质量的影响更加明显,其中树还产生了土壤pH的强烈增加,微量元素浓度的下降以及化学和生化特性的改善。我们得出的结论是,P。alba是一种植物修复微量元素污染土壤的合适植物。此外,该物种的根系分泌物可能是被微量元素污染土壤中土壤质量改善的原因。

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