Examination of the decomposition of willow (Salix sp.), poplar (Populus sp.), reed (Phragmites australis) and mixed leaf litter with litterbag technique

Ariel Tóth, Szabina Simon, Brigitta Simon-Gáspár
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Abstract

Leaf litter decomposition is one of the main ecological material cycle processes in waterfront areas. In this microcosm experiment, the rate of decomposition of the most frequently occurring dominant waterside plants were examined in the summer months of 2022 in a class “A” evaporation pan, using litterbag technique. The study provides information about the decomposition dynamics of willow (Salix sp.), poplar (Populus sp.), reed (Phragmites australis) and different leaf litter mixture combinations. Dry mass, exponential decay coefficient and the chemical parameters of the water (pH, conductivity, NH4+, PO43-, SO42-) were determined during the 84 days long experimental period. The weight loss curves showed negative exponential pattern in every case. On average, the different samples lost ~ 57% of their initial dry mass during the experimental period. The largest mass loss was measured in case of poplar (67.2%), while reed leaves had the smallest mass loss (47.25%). Based on the results, it cannot be proven, that mixed leaf litter accelerates the rate of decomposition.
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用垃圾袋技术研究柳树(Salix sp.)、杨树(Populus sp.)、芦苇(Phragmites australis)和混合凋落叶的分解
凋落叶分解是滨水地区主要的生态物质循环过程之一。在这个微观实验中,利用垃圾袋技术,研究了2022年夏季在a类蒸发锅中最常见的优势水边植物的分解率。研究提供了柳树(Salix sp.)、杨树(Populus sp.)、芦苇(Phragmites australis)和不同凋落叶混合组合分解动态的信息。在84 d的实验期间,测定了水的干质量、指数衰减系数和化学参数(pH、电导率、NH4+、PO43-、SO42-)。减肥曲线均呈负指数型。在实验期间,不同样品平均损失了约57%的初始干质量。白杨叶质量损失最大(67.2%),芦苇叶质量损失最小(47.25%)。根据研究结果,不能证明混合凋落叶加速了分解速度。
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