首页> 外文期刊>The Science of the Total Environment >The effects of biochar and dredged sediments on soil structure and fertility promote the growth, photosynthetic and rhizosphere microbial diversity of Phragmites communis (Cav.) Trin. ex Steud
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The effects of biochar and dredged sediments on soil structure and fertility promote the growth, photosynthetic and rhizosphere microbial diversity of Phragmites communis (Cav.) Trin. ex Steud

机译:生物炭和疏dr的沉积物对土壤结构和肥力的影响促进了芦苇(Crag。communis(Cav。)Trin)的生长,光合和根际微生物多样性。

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The improvement of urban river revetment soil is conducive to promote the growth of pioneer plants which can accelerate the restoration of ecosystems. How to effectively amend soil structure and composition to provide a suitable soil rhizosphere for rapid plant expansion is essential to be solved in the study. Biochar and lake dredged sediments were used to amend an urban river bank soil, where compaction and lack of mineral nutrition hindered the growth of Phragmites. The study found that the addition of 50% mass of dredged sediments combined with 5% mass of straw biochar increased the plant height maximum growth rate, tiller number per unit area, and root biomass by 32.93%, 29.62%, and 41.39%, respectively. The reason for these positive effects on plant growth mainly involved the improvement of rhizosphere soil properties. Addition of biochar increased porosity and available phosphorus content while dredged sediments increased soil organic carbon, thereby increasing the underground unit total phosphorus content of Phragmites by 18.18%. An increase of the Alpha diversity index of rhizosphere microorganisms (8.18%) and the decrease in infection rate of arbuscular mycorrhizal fungi (23.61%) also proved that the rapid expansion of Phragmites was improved owing to changes of the soil physicochemical properties. The combination of biochar and dredged sediments realized synergistic improvement of soil physical structure and increase of nutrient content, which helped promote the growth and expansion of the underground part of Phragmites. This cost-effective method can be feasible used for improvement of urban river revetment ecosystem. (C) 2019 Elsevier B.V. All rights reserved.
机译:城市河流护坡土壤的改良有利于促进先锋植物的生长,从而可以加快生态系统的恢复。如何有效地改良土壤结构和组成,为植物快速生长提供合适的土壤根际,是本研究亟待解决的问题。生物炭和湖泊疏ged的沉积物被用来修正城市河岸土壤,那里的压实和缺乏矿质营养阻碍了芦苇的生长。研究发现,添加50%的疏sediment沉积物和5%的秸秆生物炭质量可使植物高度最大生长率,单位面积的分till数和根生物量分别增加32.93%,29.62%和41.39%。 。这些对植物生长产生积极影响的原因主要涉及根际土壤性质的改善。添加生物炭增加了孔隙度和有效磷含量,而疏dr的沉积物增加了土壤有机碳,从而使芦苇的地下单位总磷含量增加了18.18%。根际微生物的阿尔法多样性指数的增加(8.18%)和丛枝菌根真菌的感染率的降低(23.61%)也证明由于土壤理化性质的改变,芦苇的快速繁殖得到了改善。生物炭和疏sediment沉积物的结合实现了土壤物理结构的协同改善和养分含量的增加,这有助于促进芦苇地下部分的生长和扩展。这种具有成本效益的方法可用于改善城市河流护岸生态系统。 (C)2019 Elsevier B.V.保留所有权利。

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