首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Watershed responses to Amazon soya bean cropland expansion and intensification
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Watershed responses to Amazon soya bean cropland expansion and intensification

机译:流域对亚马逊大豆农田扩张和集约化的反应

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摘要

The expansion and intensification of soya bean agriculture in southeastern Amazonia can alter watershed hydrology and biogeochemistry by changing the land cover, water balance and nutrient inputs. Several new insights on the responses of watershed hydrology and biogeochemistry to deforestation in Mato Grosso have emerged from recent intensive field campaigns in this region. Because of reduced evapotranspiration, total water export increases threefold to fourfold in soya beanwatersheds compared with forest. However, the deep and highly permeable soils on the broad plateaus on which much of the soya bean cultivation has expanded buffer small soya bean watersheds against increased stormflows. Concentrations of nitrate and phosphate do not differ between forest or soya bean watersheds because fixation of phosphorus fertilizer by iron and aluminium oxides and anion exchange of nitrate in deep soils restrict nutrient movement. Despite resistance to biogeochemical change, streams in soya bean watersheds have higher temperatures caused by impoundments and reduction of bordering riparian forest. In larger rivers, increasedwater flow, current velocities and sediment flux following deforestation can reshape stream morphology, suggesting that cumulative impacts of deforestation in small watersheds will occur at larger scales.
机译:亚马逊河东南部的大豆农业扩张和集约化可以通过改变土地覆盖,水平衡和养分输入来改变流域水文和生物地球化学。马托格罗索州流域水文学和生物地球化学对森林砍伐的反应的一些新见解来自该地区最近的密集野外活动。由于蒸散量的减少,大豆流域的总出水量比森林增加了三倍到四倍。但是,宽阔高原上的深层土壤和高渗透性土壤使许多大豆种植扩大了缓冲小大豆流域的面积,以抵御暴风雨的增加。森林或大豆流域之间硝酸盐和磷酸盐的浓度没有差异,因为在深层土壤中铁和铝氧化物对磷肥的固定作用以及硝酸盐的阴离子交换会限制营养物的移动。尽管对生物地球化学变化有抵抗力,但由于蓄水和沿岸森林的减少,大豆流域的溪流温度较高。在较大的河流中,森林砍伐后增加的水流量,流速和泥沙通量可以改变河流形态,这表明小流域的森林砍伐累积影响将在更大范围内发生。

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