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Quantifying the role of chemical weathering rates on soil developed along an altitudinal transect in the mountainous environments, Turkey

机译:量化化学风化率在土耳其山区环境中沿着山区环境开发的土壤中的作用

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Climate and elevations play an important role in controlling rate of weathering and soil formation. The role of chemical weathering rate on soil developed along an altitudinal transect in the mountainous environments in Turkey was investigated to determine the effects of climate on the geochemical characteristics of the soil. The main purposes of this study were: i) To characterize the geochemical characteristics of soils as a function of climate ii) To evaluate the soil formation and decomposition rates in Climosequence depending on the elevation by using geochemical data. For this purpose, four representative profiles were dug at different elevations. The transect of four soils formed in limestone elevations from 1139 to 1809 m. Our results showed that the rate of chemical weathering of CIA, CIW, PIA and MIA indicators decreased with the increase in elevation. In contrast, WIP value increased at higher altitudes and exhibited different weathering directions by deviating from the main trend in the A–CN–K diagram that composition of weathered soils was easily influenced by the quantity of precipitation, degree of gradient and height differences. Therefore, it was concluded that the main factors determining soil development was climate and elevations, and both determine the leaching regime and weathering rates.
机译:气候和海拔在耐候性和土壤形成的控制率方面发挥着重要作用。研究了在土耳其山区环境中沿着海拔横断面发展的土壤中的化学风化率在土耳其的土壤中的作用,以确定气候对土壤地球化学特征的影响。本研究的主要目的是:i)表征作为气候II的函数的土壤的地球化学特征,以评估通过使用地球化学数据的高程来评估高血量的土壤形成和分解率。为此目的,四个代表性曲线挖出不同的凸起。在1809米的石灰石升高中形成的四种土壤的横断面。我们的研究结果表明,CIA,CIW,PIA和MIA指标的化学风化率随着高程增加而下降。相比之下,湿度值在较高的高度上增加,通过偏离A-CN-K图中的主要趋势来表现出不同的风化方向,即风化土壤的组成容易受降水量,梯度程度和高度差异的影响。因此,得出结论,确定土壤发展的主要因素是气候和升高,两者都决定了浸出制度和耐候性。

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