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Responses of decomposition rate and nutrient release of floating-leaved and submerged aquatic macrophytes to vertical locations in an urban lake (Nanhu Lake, China)

机译:浮叶和淹没水生型水生素源释放对城市湖(南湖湖)垂直地区的分解率和营养释放的反应

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摘要

A leaf-bag field experiment was conducted to investigate the decomposition and release of nutrients from leaves of two aquatic macrophytes (floating-leaved Trapa bispinosa and submerged Vallisneria natans) deposited in the four vertical locations (i.e. air-water interface, AW; sediment-water interface, SW; buried at a depth of 10 cm, B10; buried at a depth of 20 cm, B20) of littoral zone in Nanhu Lake, China, for 60 days from July to August 2015. Leaf initial quality significantly influenced mass loss and nutrient release except TN (total nitrogen) remaining. Compared to V. natans, T. bispinosa leaves decomposed faster under the same treatments. The decomposition was greatly affected by both leaf chemical quality and the location of deposition. With the increasing depth of vertical locations, leaf biomass loss and nutrient release of both T. bispinosa and V. natans decreased. In addition, initial N:P ratio and cellulose were the major determinants for decomposition in AW and SW treatments while total phenol in B10 and B20. Our results suggest that the combined effect of leaf chemical quality and burial could mediate macrophyte mass loss and release of nutrients and carbon, which in turn can influence organic matter accumulation and nutrient cycling in shallow freshwater lakes.
机译:进行了一种叶袋田间实验,以研究沉积在四个垂直位置的两种水生植物(浮叶陷阱Bispinosa和淹没的Vallisneria Natiss植物的叶片的分解和释放)(即空气界面,AW;沉积物 - 水界面,SW;埋在10厘米的深度,B10;埋藏在中国南湖湖,南湖湖,2015年8月60日埋设了60天的深度。叶初级质量显着影响了大众损失除TN(总氮)之外的营养释放剩余。与V. Natsans相比,T.Bispinosa叶在同一治疗中更快地分解。叶子化学质量和沉积位置的分解极大地影响。随着垂直位置的深度越来越深,叶片生物质损失和纳米培养物和五年的营养释放减少。此外,初始N:P比和纤维素是在AW和SW处理中分解的主要决定因素,而B10和B20中的总苯酚。我们的研究结果表明,叶子化学质量和埋葬的综合作用可以介导宏观物质损失和营养和碳的释放,这反过来可以影响浅淡水湖泊中的有机物质积累和营养循环。

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