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首页> 外文期刊>Plant and Soil >Humification processes of needle litters on forest floors in Japanese cedar (Cryptomeria japonica) and Hinoki cypress (Chamaecyparis obtusa) plantations in Japan
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Humification processes of needle litters on forest floors in Japanese cedar (Cryptomeria japonica) and Hinoki cypress (Chamaecyparis obtusa) plantations in Japan

机译:日本柳杉(Cryptomeria japonica)和H柏(Chamaecyparis obtusa)人工林林地针叶的增湿过程

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摘要

We quantitatively clarified the early humification processes on Japanese cedar and Hinoki cypress forest floors by using a litterbag experiment and the solid-state 13C CPMAS NMR technique. There was no significant effect on litter mass loss during early humification between both coniferous litters regardless of the shape of their needles. Carbon composition in both litters showed similar trends during early humification. A/O-A as a humification index was low, around 0.6, in both litters throughout the experiment period although 60% of litter mass was lost. Coniferous litter incubated for 3 years might not be well-humified and would be susceptible to physical fragmentation. Carbon mass loss rates in conifers were in the following order: O-alkyl > aliphatic > aromatic > carbonyl carbons, differing with hardwoods. Conifers had concomitantly higher and lower mass loss rates of aliphatic and aromatic carbons than hardwoods. Soil organic carbon (SOC) accumulated in topsoil for conifers had relatively high and low contents of aliphatic and aromatic carbons than that for hardwood. These compositional differences of SOC among forests could be caused by the high and low supply rates of aliphatic and aromatic carbons from litter to topsoil. Consequently, initial litter nature and humification processes can affect the compositional qualities of SOC accumulated in soil.
机译:我们利用垃圾袋实验和固态 13 C CPMAS NMR技术定量地阐明了日本雪松和Hinoki柏树地上的早期腐殖化过程。在两个针叶树凋落物的早期腐殖化过程中,无论其针的形状如何,对凋落物质量的损失均无明显影响。在早期腐殖化过程中,两个垃圾中的碳组成均显示出相似的趋势。在整个实验期间,两个垫料的A / O-A作为增湿指数都很低,约为0.6,尽管损失了60%垫料质量。孵育3年的针叶凋落物可能不会被很好地腐化,并且容易受到物理破碎的影响。针叶树的碳质量损失率按以下顺序排列:O-烷基>脂族>芳族>羰基碳,与硬木不同。针叶树的脂族和芳族碳的质量损失率分别高于硬木。针叶树的表层土壤中积累的土壤有机碳(SOC)与硬木相比具有较高和较低的脂肪族和芳香族碳含量。森林之间SOC的这些组成差异可能是由于从枯枝落叶到表层土壤中脂肪族和芳香族碳的高和低供应率引起的。因此,最初的垫料性质和增湿过程会影响土壤中累积的SOC的组成质量。

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