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首页> 外文期刊>CASTANEA >Complex effect of Robinia pseudoacacia L. and Ailanthus altissima (Mill.) Swingle growing on asbestos deposits: Allelopathy and biogeochemistry
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Complex effect of Robinia pseudoacacia L. and Ailanthus altissima (Mill.) Swingle growing on asbestos deposits: Allelopathy and biogeochemistry

机译:Robinia pseudoacacia L.和Ailanthus Altissima(磨坊)的复杂效果在石棉矿床上生长:化发和生物地球化学

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摘要

Asbestos is widely mined and used around the globe posing a great risk to environment and human health. The main objective of this study was to determine allelopathic potential of Robinia pseudoacacia L. and Ailanthus altissima (Mill.) Swingle growing on the asbestos deposits at abandoned mine "Stragari" in central Serbia. The pH, content of carbon, nitrogen, calcium carbonate, available phosphorous and potassium, content of Fe, Ni, Cu, Zn, Pb, Mn, and phenolics were analyzed in the control asbestos (zones without vegetation cover) and plant rhizospheric asbestos. Allelopathic activity of plant species was assessed by "rhizosphere soil method", and Trifolium pratense L. and Medicago sativa L. were used as the indicator species. A. altissima showed higher allelopathic potential compared to R. pseudoacacia for T. pratense and M. sativa due to greater content of phenolics. Alleopathic activity of phenolics in rhizospheric asbestos was highly correlated with pH, content of carbon and nitrogen, available phosphate and potassium, and content of Ni, Cu, Zn, Pb and Mn. A. altissima increased phenolics content in rhizospheric asbestos inhibiting the plant growth. This woody plant in spite of high allelopathic potential is suitable for revegetation of distrurbed ecosystems because it initiates pedogenesis and affects the asbestos chemistry.
机译:石棉被广泛开采并在全球范围内使用,对环境和人类健康产生了很大的风险。本研究的主要目的是确定罗宾西亚副遗传群和Ailanthus Altissima(Mill)的化感潜力在塞尔维亚中部被遗弃的矿山“斯特拉加里”的石棉矿床上生长。在对照石棉(没有植被覆盖区)和植物根转石脉石棉中,分析了对照的石棉(没有植被覆盖区)和植物根流层石棉中的pH值,碳,碳酸钙,碳酸钙,可用磷和钾,含量的Fe,Ni,Cu,Cu,Zn,Pb,Mn和酚类。通过“根际土壤法”评估植物物种的化感染活性,并用Trifolium L.和Medicago Sativa L.用作指示物种。 A. Altissima由于酚醛含量的含量较高而与T.pseudoacia相比表现出更高的化感潜力。脱流性石棉中酚类酚菌的肌病活性与pH值,碳和氮的含量高度相关,可用磷酸盐和钾,以及Ni,Cu,Zn,Pb和Mn的含量。 A. Altissima在抑制植物生长中增加了流离症层石棉中的酚类含量。这种木质植物尽管化厚潜力高,适用于破产生态系统的再培养,因为它引发了基础,并影响石棉化学。

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