Vertical differentiation of pedogenic iron forms – a key of hydromorphic soil profile development

IF 1.4 Q2 GEOGRAPHY
M. Ringer, G. Jakab, P. Sipos, M. Szabó, Kata Horváth-Szabó, K. Perényi, Z. Szalai
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引用次数: 3

Abstract

This paper focuses on the vertical distribution and characterisation of pedogenic iron forms in a Gleysol- Histosol transect developed in a marshy area in the Danube-Tisza Interfluve, Hungary. Four soil profiles were investigated along a series of increasing waterlogging and spatial and temporal patterns of hydromorphic pedofeatures (characteristics of pedogenic iron forms) were recorded. Frequent and wide-range redox potential (Eh) changes caused the emergence of many types of redoximorphic iron features, including mottles, plaques and nodules. The forms of these features depended on the micro-environments determined by the vertical position in the soil profile and the presence of plant roots. The greatest iron enrichment occurred in the zone of most intensive and widest-range redox fluctuations. Increasing water saturation resulted the extension of gleyic pattern due to the existence of permanent reduction. Most of the features also showed annual variations during the varying periods of water saturation and aeration.
成土铁形态的垂直分化——水成土剖面发育的关键
本文重点研究了匈牙利多瑙河-蒂萨河间河沼泽区Gleysol-Histosol样带中成土铁形态的垂直分布和特征。沿一系列不断增加的内涝调查了四个土壤剖面,并记录了水成土特征(成土铁形态特征)的时空模式。频繁和宽范围的氧化还原电位(Eh)变化导致了许多类型的再氧化铁特征的出现,包括斑点、斑块和结节。这些特征的形式取决于土壤剖面中的垂直位置和植物根系的存在所决定的微观环境。最大的铁富集发生在氧化还原波动最强烈、范围最广的区域。含水饱和度的增加,由于永久还原的存在,导致潜育格局的扩展。在含水饱和度和通气量的不同时期,大多数特征也表现出年度变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Hungarian Geographical Bulletin
Hungarian Geographical Bulletin Social Sciences-Geography, Planning and Development
CiteScore
3.20
自引率
0.00%
发文量
24
审稿时长
24 weeks
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