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Composted sewage sludge and steel mill slag as potential amendments for urban soils involved in afforestation programs

机译:堆肥污水污泥和钢厂渣作为造林计划中涉及城市土壤的潜在修正

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This study aimed to assess the impacts of composted sewage sludge and steel mill slag on urban soil fertility and tree growth. The research was conducted in an urban area (Botucatu, State of Sao Paulo, Brazil) characterised by extremely unfertile urban soils and with high production of these wastes. Plant growth, soil physico-chemical properties, and chemical composition of leafs were analysed during a 12-month field experiment. Principal factor analysis (PFA) and canonical correspondence analysis (CCA) were applied in the evaluation of the investigated soil-plant system. The results showed that soil fertility was increased by the combination of applied waste materials, which provided good conditions for full plant development and maintenance. PFA showed that the variability of the investigated model was mainly due to the role of soil organic matter as source/sink of soil heavy metals. CCA showed that the investigated soil-plant system was characterised by time-dependent evolution, with an equilibrium reached during the final stages, suggesting that the obtained results may be realistic from a long-term perspective. This study provides evidence that composted sewage sludge and steel mill slag are acceptable alternatives for improving urban soil quality and tree growth. The reuse of these wastes could provide a low-cost alternative for their complex and expensive management and disposal with, additionally, the possibility of turning currently bulky refuse material into a commodity. (C) 2017 Elsevier GmbH. All rights reserved.
机译:本研究旨在评估堆肥污泥和钢厂渣对城市土壤肥力和树增长的影响。该研究在一个城市地区(Botucatu,巴西圣保罗州)的特点是极其倾斜的城市土壤,并高生产这些废物。在12个月的场实验期间分析了植物生长,土壤物理化学性质和叶片的化学成分。主要因子分析(PFA)和规范对应分析(CCA)应用于研究的土壤植物系统的评估。结果表明,采用施加废料的组合增加了土壤肥力,为全植物开发和维护提供了良好的条件。 PFA表明,调查模型的可变性主要是由于土壤有机物质作为土壤重金属的源/水槽的作用。 CCA表明,调查的土壤 - 植物系统的特点是时间依赖的演化,在最后阶段期间达到平衡,表明所获得的结果可能是从长远的角度来逼真的。本研究提供了证据,即堆肥污水污泥和钢厂渣是改善城市土壤质量和树木增长的可接受的替代品。这些废物的重用可以为他们的复杂和昂贵的管理和处理提供低成本的替代品,并且另外,将目前庞大的垃圾材料转化为商品的可能性。 (c)2017 Elsevier GmbH。版权所有。

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