BIOSPHERIC ASPECTS OF SWAMPY SOIL FORMATION

Lidiya Inisheva
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Abstract

The article shows that each period of the evolutionary process of the biosphere formation on Earth corresponds to one form of soil formation, namely: underwater (“hydrozemic”), swampy (“atmozemic”), and terrestrial (“lithozemic”). The ancient swamp soil formation is considered, in addition to biomass deposition, to take part in the formation of the oxygen-containing composition of the planet’s gaseous envelope and the release of organisms from the aquatic environment to land. It has been determined that the process of paludification and swamp soils in the past and at present did and do perform the same biospheric functions and should include the entire genetic profile up to the basal rock in the concept of “peat soil”. On the example of the central part of Western Siberia, the process of paludification in the Holocene period is considered. This process is defined as a single, irreversible, progressive process of conjugated changes in their biotic and abiotic components. This ensures autonomy in the development and preservation of mires as a special type of the biogeocenotic cover of Earth. It is shown that the differences in the mire complexes of different botanico-geographical zones and subzones reveal the chronological boundaries of the transformation of swamp biogeocenoses of eutrophic types into mesotrophic and oligotrophic ones. It has been determined that the process of paludification in the taiga zone of the West Siberian Plain is of aggressive nature and the expected warming is a temporary warm period in the interval of cyclical climate.
沼泽土壤形成的生物圈方面
文章指出,地球生物圈形成演化过程的每一个时期都对应着一种土壤形成形式,即:水下(“湿化”)、沼泽(“大气”)和陆地(“岩石化”)。古沼泽土壤的形成被认为除了生物质沉积外,还参与了地球气态包络层含氧成分的形成和生物从水生环境向陆地的释放。已经确定,过去和现在的淤泥化和沼泽土壤的过程,过去和现在都具有同样的生物圈功能,在“泥炭土”的概念中,应包括一直到基岩的整个遗传剖面。以西西伯利亚中部为例,讨论了全新世时期的石化过程。这个过程被定义为一个单一的,不可逆的,在其生物和非生物成分共轭变化的渐进过程。这确保了作为地球上一种特殊类型的生物地质覆盖层的沼泽在开发和保护方面的自主权。结果表明,不同植物地理带和亚带沼泽复合体的差异揭示了富营养型沼泽生物地球群落向中营养型和少营养型转变的时间边界。确定了西西伯利亚平原针叶林带的白化过程具有侵袭性,预期变暖是周期性气候间隔中的暂时变暖期。
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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