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首页> 外文期刊>Agroforestry Systems >Biosolids, mycorrhizal fungi and eucalypts for phytostabilization of arsenical sulphidic mine tailings
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Biosolids, mycorrhizal fungi and eucalypts for phytostabilization of arsenical sulphidic mine tailings

机译:生物固体,菌根真菌和桉树用于砷化硫矿尾矿的植物稳定化

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摘要

The effect of the addition of biosolids combined with a native arbuscular mycorrhizal inoculum on growth of a eucalypt (Eucalyptus cladocalyx), and on trace element stabilization of arsenical sulphidic gold mine tailings was tested. A glasshouse trial was established using four substrates: tailings (T); tailings with a layer of topsoil (TS); tailings amended with 100 t ha(-1) biosolids (LB), and tailings amended with 500 t ha(-1) biosolids (HB). Half of the pots were inoculated with a mixture of Glomus sp. (WUM51-9227), Scutelospora aurigloba (WUM51-53) and Acaulospora laevis (WUM46) culture mix, and others were uninoculated controls. Two seeds per pot were sown. Leaf and stem weights, leaf area and plant height were measured for each plant. Nutrients and trace element concentrations in leaves and stems were determined. Addition of biosolids significantly increased mycorrhizal colonization (both ectomycorrhizal and arbuscular mycorrhizal) in roots. Biosolids clearly increased the very early establishment and growth of the eucalypts. In general, mycorrhizal inoculum increased plant biomass production and nutrient uptake. Trace element concentrations in trees of the biosolid-amended pots were in general high, however, mycorrhizal inoculation could reduce the uptake of toxic elements by plants.
机译:测试了添加生物固体与天然丛枝菌根接种物相结合对桉树(Eucalyptus cladocalyx)生长以及砷化硫金矿尾矿中微量元素稳定的影响。建立了一个温室试验,使用了四种底物:尾矿(T);带有表土层(TS)的尾矿;尾矿用100 t ha(-1)生物固体(LB)修正,尾矿用500 t ha(-1)生物固体(HB)修正。一半的花盆用Glomus sp。的混合物接种。 (WUM51-9227),Scutelospora aurigloba(WUM51-53)和Acaulospora laevis(WUM46)培养混合物,其他为未接种对照。每盆播种两粒种子。测量每种植物的叶和茎重量,叶面积和植物高度。测定叶和茎中的营养成分和微量元素浓度。添加生物固体显着增加了根中的菌根定植(外生菌根和丛枝菌根)。生物固体明显增加了桉树的早期建立和生长。通常,菌根接种物可增加植物生物量的产生和养分吸收。生物固体改良盆栽的树木中的微量元素浓度普遍较高,但是,菌根接种可以减少植物对有毒元素的吸收。

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