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首页> 外文期刊>Scandinavian Journal of Forest Research >Decomposing cones of Norway spruce (Picea abies (L.) H. Karst.): dry weight loss, chemical changes, and vertical transport in a Norwegian raw humus soil profile
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Decomposing cones of Norway spruce (Picea abies (L.) H. Karst.): dry weight loss, chemical changes, and vertical transport in a Norwegian raw humus soil profile

机译:分解挪威云杉(Picea abies(L.)H. Karst。)的球果:干燥的失重,化学变化和挪威原始腐殖质土壤剖面中的垂直运输

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摘要

Naturally shed cones of Norway spruce (Picea abies) were placed on the forest floor, partly on moss-covered ground, and partly on vegetation-free needle mats. Numbered sticks allowed individual recovery after 1, 3, 5, 7, 9, 11, and 13 years. During the first nine years, cones decomposed fastest in the moss site. After 13 years, dry weight loss was about 60% in both habitats, but cones still retained their shape. In the moss site, cones were then situated in the middle of the organic layer, with their underside about 3cm above the bleached layer. Cones in the needle mat profile had sunk less. One cone with rather intact shape was found below a nylon strip laid out 28 years earlier. Compared to needle litter from Norway spruce and Scots pine, spruce cones had low concentrations of Ca, Mn, and Fe. The concentration of these elements, as well as N, Al, and S, was greatly increased during decomposition. Ca, Mn, Fe, and Al were immobilized for a long time, as their total amount per cone increased with time. Cones decomposed slower than needles, so their role in humus composition and carbon storage may be greater than indicated by their fraction of fresh litter.
机译:将自然脱落的挪威云杉球果(Picea abies)放在森林地面上,部分放置在苔藓覆盖的地面上,部分放置在无植被的针垫上。编号的棍棒允许在1、3、5、7、9、11和13年后单独恢复。在最初的九年中,圆锥体在苔藓部位的分解速度最快。 13年后,两个生境的干重减轻约60%,但视锥仍保持其形状。然后在苔藓部位,将圆锥体置于有机层的中间,其底面在漂白层上方约3cm处。针垫轮廓中的锥体下沉较少。在28年前铺设的尼龙条下面发现了一个形状相当完好的圆锥。与来自挪威云杉和苏格兰松树的针叶凋落物相比,云杉球果的钙,锰和铁含量低。在分解过程中,这些元素以及N,Al和S的浓度大大增加。钙,锰,铁和铝的固定时间较长,因为每个锥体的总量随时间增加。圆锥体的分解速度比针头慢,因此它们在腐殖质组成和碳储藏中的作用可能大于其新鲜垃圾所占的比例。

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