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Multi-temporal accumulation and risk assessment of available heavy metals in poultry litter fertilized soils from Rio de Janeiro upland region

机译:里约热内卢高地地区家禽垃圾施肥土壤中重金属的多时相积累和风险评估

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Poultry litter is widely used as fertilizer in soils and can be a relevant source of heavy metals for agricultural environments. In this study, poultry litter fertilization of long-term ( 1–30 years) was evaluated in tropical soils. Our main goal was to investigate the occurrence of temporal variation in the available fraction of heavy metals (Cu, Cr, Zn, Pb, Cd, and Mn) in soils, in addition to their environmental loads through new indexes for risk assessment. The highest mean concentrations in poultry litter were the following: 525 mg kg_(−1)for Mn, 146 mg kg_(−1)for Zn, and 94.4 mg kg_(−1)for Cu. For soils, concentrations were higher for the same heavy metals: Mn (906 mg kg_(−1)), Zn (111 mg kg_(−1)), and Cu (26.3 mg kg_(−1)). Significant accumulation ( p   0.05) in fertilized soils was observed for Cu, Cr, and Zn. The high estimates of poultry litter input based on geological background ( LI ~( GB )) for Cu, Cr, and Zn coincided with the accumulation observed in soils, confirming the effectiveness of the index. The risk of biogeochemical transfer based on fertilized soils ( LI ~( FS )) decreased for Cu, Cr, and Zn between 10 and 30 years of soil fertilization. For Mn, a very high LI ~( FS )was estimated in all long-term fertilized soils. The proposed indices, based on heavy metal concentration, can be used in risk assessments to guide future studies that analyze other environmental matrices possibly impacted by manure and poultry litter fertilization.
机译:家禽垃圾被广泛用作土壤肥料,并且可能是农业环境中重金属的重要来源。在这项研究中,对热带土壤中长期(<1至30年)的家禽凋落物施肥进行了评估。我们的主要目标是通过新的风险评估指标,研究土壤中重金属(铜,铬,锌,铅,镉和锰)的有效含量随时间的变化,以及环境负荷。家禽垫料中的最高平均浓度如下:锰525 mg·kg _(-1),锌146 mg·kg _(-1)和铜94.4 mg·kg _(-1)。对于土壤,相同重金属的浓度较高:Mn(906 mg·kg _(-1)),Zn(111 mg·kg _(-1))和Cu(26.3 mg·kg _(-1))。观察到施肥土壤中铜,铬和锌的大量积累(p <0.05)。基于地质背景(LI〜(GB))对Cu,Cr和Zn的家禽垫料投入的高估与在土壤中观察到的积累相吻合,证实了该指标的有效性。在土壤施肥的10年至30年之间,铜,铬和锌对基于肥料的土壤(LI〜(FS))的生物地球化学转移的风险降低。对于锰,估计在所有长期施肥的土壤中都有很高的LI〜(FS)。基于重金属浓度的拟议指标可用于风险评估,以指导未来的研究,分析可能受粪便和家禽垫料施肥影响的其他环境基质。

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