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Use of organo-zeolitic fertilizer to sustain plant growth and stabilize metallurgical and mine-waste sites

机译:使用有机沸石肥料维持植物生长并稳定冶金和矿山废料场

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Land south of Lille, contaminated by heavy metals from local metal refining, has become the subject of intensive research. Topsoil from this area is used in the current work to investigate the growth behaviour of Spring wheat (Triticum aestivum L., cv. Paragon) when amended with organo-zeolitic fertilizer. Research has shown that soil substrates amended with ammoniated zeolitic tuff promote large populations of nitrifying bacteria which, as the result of ensuing enzyme reactions, produce available nitrogen together with H~+ ions. It appears that the proton activity promotes cation mobilization allowing plant uptake to reach levels which, to a large extent, satisfy the nutritional requirements of the plant; only in the case of Zn if the level far exceeded. Very large differences in plant morphology occur when plants are grown in the amended substrates and the resulting development of large dense root systems, which have the ability to bind soil particles, are particularly important in their ability to reduce surface erosion and pollution from run-off.
机译:里尔以南的土地被当地金属精炼中的重金属污染,已成为深入研究的主题。当前工作中使用该地区的表土调查有机小麦改良肥料对春小麦(Triticum aestivum L.,cv。Paragon)的生长行为。研究表明,用氨化沸石凝灰岩改良的土壤基质可促进大量硝化细菌的繁殖,这些硝化细菌是随后发生酶反应的结果,可与H〜+离子一起产生有效氮。似乎质子活性促进阳离子动员,使植物吸收达到在很大程度上满足植物营养需求的水平;只有在锌含量高的情况下才可以。当植物在经改良的基质中生长时,植物形态会发生很大的差异,并且由此产生的大型致密根系(具有结合土壤颗粒的能力)在减少表面侵蚀和径流污染方面尤其重要。

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