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首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >Disentangling the effects of parent material and litter input chemistry on molecular soil organic matter composition in converted forests in Western Europe
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Disentangling the effects of parent material and litter input chemistry on molecular soil organic matter composition in converted forests in Western Europe

机译:脱落母材及凋落物投入化学对西欧转化林分子土有机质组合物的影响

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By storing carbon in the soil, forests contribute to climate change mitigation. Edaphic (soil-related) factors, such as soil pH, as well as tree species affect forest carbon cycles, but are difficult to disentangle. We studied how conversion of deciduous stands to mono-culture spruce plantations affected the soil organic matter (SOM) composition along a lithological gradient in the Mullerthal (Luxembourg) and Gaume (south-east Belgium) regions. Parent materials in these regions range from decalcified sands to calcareous marls. A twin plot setup of adjacent deciduous and coniferous stands on the same parent material was used to evaluate the effect of edaphic factors versus litter input differences on SOM composition and soil organic carbon (SOC) stocks. Lignin and cutin/suberin molecular proxies were identified with thermally assisted hydrolysis and methylation (THM), to distinguish litter sources (coniferous vs deciduous and leaf litter vs roots) in the studied stands. In this study, SOC stocks were influenced more by parent material than by forest type. Lignin yield, composition and degradation state were influenced both by litter input chemistry and edaphic context. There appear to be important interaction effects between the two, as the relative importance of parent material and litter quality was site specific. We therefore advice that carbon stock models include data on both vegetation history as well as edaphic context. (C) 2019 The Authors. Published by Elsevier Ltd.
机译:通过在土壤中储存碳,森林有助于减缓气候变化。拭子(与土壤相关)因素,如土壤pH,以及树种影响森林碳循环,但难以解开。我们研究了落叶的转换是如何沿着Mullerthal(卢森堡)和Gaume(西南比利时)地区的岩性梯度影响土壤有机物质(SOM)组成的落叶。这些地区的家长材料范围从贬值的砂岩到钙质沼泽。在同一母体材料上进行相邻落叶和针叶树的双绘图设置用于评估辅助因子与凋落物输入差异对SOM组成和土壤有机碳(SOC)股的影响。用热辅助水解和甲基化(THM)鉴定木质素和Cutin / Suberin分子代理,以区分所研究的垫片中的垃圾来源(针叶液和叶窝和叶子垃圾VS根)。在这项研究中,SoC股受母材的影响更多,而不是森林类型。木质素产量,组成和降解状态受到凋落物输入化学和仿镜背景的影响。两者之间似乎是重要的相互作用效应,因为母体材料和垃圾质量的相对重要性是特定的。因此,我们建议碳库存模型包括植被历史和辅助背景的数据。 (c)2019年作者。 elsevier有限公司出版

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