风化玄武岩地形序列脱氢酶活性变化及不同成土发育

A. Erkoçak, O. Dengiz
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引用次数: 1

摘要

本研究旨在探讨半湿润气候条件下,在相同母质、不同坡度、不同土地覆被和土地利用条件下不同土壤发育过程中脱氢酶活性的变化。该研究是在Engiz地区Dagkoy地区不同地形位置的玄武岩母质形成的土壤上进行的,该地区位于Samsun-Bafra高速公路以南。为了揭示研究区土壤的生物学特性,本研究评估了脱氢酶活性,并从土壤生物学特性的角度探讨了脱氢酶活性。根据成因层序,描述了南北样带上风化玄武岩母质上形成的6条土壤剖面,并将其划分为Lithic Ustorthent、Vertic haplustep、Typic haplustep和Typic Haplustert。各剖面土壤脱氢酶变化范围为0.073 ~ 1.170 μg TPF。此外,研究了南北向样带不同剖面、土地利用方式和海拔高度对土壤脱氢酶活性的影响,发现不同剖面和海拔高度对土壤脱氢酶活性的影响在% 1水平上具有重要意义。在% 5水平上,不同土地利用方式对土壤脱氢酶活性的影响也很重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
VARIATION OF DEHIDROGENASE ENZYME AKTIVITY AND DIFFERENT PEDOGENETIC DEVELOPMENT ON WEATHERED BASALTIC TOPOSEQUENCES
The aim of this study is to examine the changes in dehydrogenase enzyme activity in different pedological development soils formed on the same parent material, but with different slopes, land cover and land use under semihumid climatic conditions. It was carried out on the soil formed on the basaltic parent material in different topographical positions within the Dagkoy area of Engiz district, which is located at the south of the Samsun-Bafra Highway. In this study, dehydrogenase enzyme activity was assessed in order to reveal the biological properties of the soil of the study area and it was investigated the dehydrogenase enzyme activity in terms of soil biological property. For this aim, six soil profiles formed on weathered basaltic parent material and located on toposequence of north-south transect were described according to genetic horizon and classified as Lithic Ustorthent, Vertic Haplustept, Typic Haplustept and Typic Haplustert. It was determined that the dehydrogenase changed between 0.073-1.170 μg TPF in soils taken from each profile. In addition, when the statistical relationship between dehydrogenase enzyme activity and different profiles, land use, and elevation along the north-south transect was investigated different profiles and different elevation were found to be important at % 1 level of effect on dehydrogenase enzyme activity in the soil. Also the effect of different land use patterns were found to be important at % 5 level on the activity of dehydrogenase enzyme in the soil.
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