凋落物质量作为森林功能分类的信息指标

E. Basova, N. Lukina, A. Kuznecova, A. Gornov, N. Shevchenko, E. V. Tikhonova, A. Geraskina, T. Braslavskaya, D. N. Teben’kova, D. L. Lugovaya
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引用次数: 0

摘要

相关性和目标。在全球气候变化的背景下,森林的气候调节功能值得特别关注。目前还没有根据森林碳储存功能的有效性对其进行功能分类。本文旨在探讨一种基于凋落物质量评价的分类方法。对象和方法。为了测试基于树木凋落物质量识别森林功能类型(FTL)的方法,考虑到景观位置和成土岩石的机械组成,在俄罗斯欧洲部分布良斯克波列西和莫斯科沃雷茨科-奥克斯卡亚平原领土上的23个地点获得了土壤和植被数据。为了间接(在E. Landolt的生态尺度上使用SpeDiv程序)评价不同FTLS森林土壤丰富度的差异,对莫斯科、布良斯克、斯摩棱斯克、科斯特罗马地区、克拉斯诺达尔边疆区和Adygea共和国(西北高加索)的160种森林植被描述进行了物种组成分析。结果。给出了俄罗斯欧洲部分针叶林和阔叶林功能林类型的实例。在此基础上,分析了不同林地土壤碳积累水平的差异,初步评价了林地景观位置和土壤力学组成对林地土壤碳积累的影响。结论。通过对俄罗斯欧洲部分针叶林带和高加索西北部针叶林带常见森林群落的地理植物学描述,确定了15个森林凋落物的质量,并通过实例加以证实。23个站点的数据证实,在考虑“外部因素”(景观中的位置和成土岩石的机械组成)影响的情况下,基于植物凋落物质量分配FTL对土壤碳积累效率的有效性;土壤中碳储量的估算,以及生态尺度上的土壤丰富度估算,揭示了分配的FTLS之间的差异。揭示了在壤土和砂壤土成土岩石上形成的相同FTL中森林生态系统碳储量的差异。已证实,同一FTL但在景观不同位置形成的森林土壤碳储量存在差异;在过渡景观中,土壤碳储量高于自治景观。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
QUALITY OF WOOD LITTER AS AN INFORMATIVE INDICATOR OF FUNCTIONAL CLASSIFICATION OF FORESTS
Relevance and goals. In the context of global climate change, the climate-regulating function of forests deserves special attention. There is still no functional classification of forests according to the effectiveness of their carbon storage function. The purpose of this article is to discuss an approach to such classification based on the assessment of the quality of tree litter. Objects and methods. To test the approach to the identification of functional types of forests (FTL) based on the quality of tree litter, taking into account the position in the landscape and the mechanical composition of soil-forming rocks, data on soils and vegetation obtained at 23 sites operating in the subzone of coniferous-broadleaf forests of the European part of Russia on the territory of Bryansk Polesie and Moskvoretsko-Okskaya plain were used. For indirect (on the ecological scale of E. Landolt using the SpeDiv program) to assess differences in the soil richness of forests belonging to different FTLS, the species composition of 160 descriptions of forest vegetation of the Moscow, Bryansk, Smolensk, Kostroma regions, Krasnodar Krai and the Republic of Adygea (North-Western Caucasus) was analyzed. Results. Examples of functional forest types (FTL) for coniferous and broad-leaved forests of the European part of Russia are given. The differences in the level of soil carbon accumulation between different FTLS are shown, and a preliminary assessment of the influence of the position in the landscape and the mechanical composition of soils on the accumulation of carbon in soils within FTLS is given. Conclusion. Based on the quality of the fall of tree litter, 15 FTL were identified, which are confirmed by examples based on geobotanical descriptions of forest communities common in the zone of coniferous-deciduous forests of the European part of Russia and in the belt of coniferous-deciduous forests of the North-Western Caucasus. The validity of the allocation of FTL for the efficiency of carbon accumulation in soils based on the quality of plant litter, taking into account the influence of “external factors” (the position in the landscape and the mechanical composition of soil-forming rocks) is confirmed by data obtained at 23 sites; estimates of the carbon reserves in the soil, as well as the soil richness estimated on an ecological scale, revealed differences between the allocated FTLS. Differences in carbon stocks in forest ecosystems in the same FTL formed on loamy and sandy loam soil-forming rocks were revealed. Differences in soil carbon reserves in forests belonging to the same FTL, but formed at different positions in the landscape, have been confirmed; in transit landscapes, soil carbon reserves are higher than in autonomous ones.
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