Sediment Mercury, Geomorphology and Land Use in the Middle Araguaia River Floodplain (Savanna Biome, Brazil)

IF 2.9 Q2 SOIL SCIENCE Soil Systems Pub Date : 2023-10-27 DOI:10.3390/soilsystems7040097
Lilian Moraes, José Vicente Elias Bernardi, João Pedro Rodrigues de Souza, Joelma Ferreira Portela, Ludgero Cardoso Galli Vieira, Carlos José Sousa Passos, Jurandir Rodrigues de Souza, Wanderley Rodrigues Bastos, Lucas Cabrera Monteiro, Ygor Oliveira Sarmento Rodrigues, José Garrofe Dorea
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引用次数: 1

Abstract

In order to assess the influencing factors of the presence of mercury in a river within the Savanna biome (Cerrado), we surveyed total mercury (THg) in bottom sediment from 50 lakes along 750 km of the Middle Araguaia floodplain. The sampling sites included non-urban and urban surroundings over three distinct geomorphologies. We measured water physicochemical parameters at each site and tested statistically if land use nested within the geological formation influenced the THg concentration in bottom sediments and related water parameters. Multivariate results indicate that the interaction between geological groups and land use is statistically significant (p < 0.05). Nested ANOVA and Tukey HSD tests confirmed that the geological formation with its nested land use influences the THg, pH, DO, conductivity, and TDS (p < 0.05). THg was significantly lower in Quaternary terrains (p < 0.05) and differed significantly between non-urban and urban areas in Neoproterozoic terrains (p = 0.02). The spatial projections of the THg eigenvector on the main axes with the scoring factors of the Neoproterozoic/Paleoproterozoic terrains, and urban/non-urban, confirmed the spatial correlations. These results indicate that the association of land use and geology could be the main driver of THg in the bottom sediments of lakes from the Middle Araguaia floodplain.
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中阿拉瓜亚河漫滩(巴西稀树草原生物群系)沉积物汞、地貌和土地利用
为了评估热带稀树草原生物群系(Cerrado)内河流中汞存在的影响因素,我们调查了中阿拉瓜亚漫滩750公里50个湖泊底部沉积物中的总汞(THg)。采样地点包括三种不同地貌的非城市和城市环境。我们测量了每个站点的水物理化学参数,并统计测试了地质地层中嵌套的土地利用是否影响底部沉积物中的THg浓度和相关的水参数。多变量结果表明,地质类群与土地利用之间的相互作用具有统计学意义(p <0.05)。巢式方差分析和Tukey HSD检验证实,地质构造及其巢式土地利用影响THg、pH、DO、电导率和TDS (p <0.05)。第四纪地形THg显著较低(p <新元古代地形非城市地区与城市地区差异显著(p = 0.02)。THg特征向量在主轴上与新元古代/古元古代地形、城市/非城市地形评分因子的空间投影证实了这种空间相关性。这些结果表明,土地利用与地质的关联可能是阿拉瓜中河滩湖底沉积物中THg的主要驱动因素。
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来源期刊
Soil Systems
Soil Systems Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
5.30
自引率
5.70%
发文量
80
审稿时长
11 weeks
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