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首页> 外文期刊>The Science of the Total Environment >Biomass decaying and elemental release of aquatic macrophyte detritus in waterways of the Indian River Lagoon basin, South Florida, USA
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Biomass decaying and elemental release of aquatic macrophyte detritus in waterways of the Indian River Lagoon basin, South Florida, USA

机译:美国南佛罗里达印度河泻湖盆地水道中水生植物碎屑的生物量衰减和元素释放

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摘要

Decaying experiments of four major aquatic macrophyte detritus, namely cattail (Typha orientalis), water lettuce (Pistia stratiotes), hydrilla (Hydrilla verticillata) and maidencane (Panicum hemitomon), were conducted using the litterbag technique in the stormwater detention pond of South Florida, USA. Dry weight and chemical composition of remaining biomass were dynamically determined during the 185-day decay experiment. The results showed that decomposition rates (k), and the derived turnover (t50%andt95%) were species specific. Thekvalues decreased in the order of hydrilla (0.0123 g day−1) > water lettuce (0.0082 g day−1) > maidencane (0.0049 g day−1) > cattail (0.0031 g day−1), whereast50%andt95%varied in the reverse way. Biomass properties including concentrations of C, N, P, lignin, cellulose, hemicellulose, and the ratios of C/N, C/P, N/P and lignin/N affected decaying rate of the studied aquatic plants. The dry mass loss and concentrations of C, N, P, lead (Pb), chromium (Cr), copper (Cu), manganese (Mn), zinc (Zn), lignin, cellulose, hemicellulose and ratios C/N, C/P, N/P and Lignin/N of plant detritus were significantly affected by species, decaying time, and their interactions. However, the influence of species differences was greater than that of decaying time on those indexes. The estimated amounts (kg) of nutrients and metals released based onkvalues for the waterways of the IRL basin (water surface area 15.6 km2) were N 126.85 × 103, P 8.89 × 103, Zn 408.20, Pb 97.95, Cr 128.99, Mn 313.03, and Cu 82.40. Water lettuce contributed most, accounting for 52.13% N, 56.81% P, 74.95% Zn, 59.58% Pb, and 74.65% Mn, followed by hydrilla, cattail and maidencane. For Cr and Cu, cattail had the greatest contribution of 65.77% and 54.15%, respectively, followed by water lettuce, hydrilla and maidencane.
机译:在南佛罗里达州的雨水滞留池中,采用垃圾袋技术对香蒲(香蒲(Typha Orientalis),生菜(Pistia stratiotes),水illa(Hydrilla verticillata)和麦丹烷(Panicum hemitomon)这四种主要水生植物碎屑进行了腐烂实验,美国。在185天的衰变实验中,动态确定了剩余生物质的干重和化学成分。结果表明,分解速率(k)和衍生的周转率(t50%和t95%)是物种特异性的。 k值按水hydr(0.0123 g day-1)>生菜(0.0082 g day-1)>藤(0.0049 g day-1)>香蒲(0.0031 g day-1)的顺序降低,其中50%和95%在反向方式。生物质特性包括C,N,P,木质素,纤维素,半纤维素的浓度,以及C / N,C / P,N / P和木质素/ N的比率会影响所研究水生植物的腐烂率。干质量损失和C,N,P,铅(Pb),铬(Cr),铜(Cu),锰(Mn),锌(Zn),木质素,纤维素,半纤维素的浓度以及C / N,C的比植物碎屑的/ P,N / P和木质素/ N受物种,衰变时间及其相互作用的影响很大。但是,物种差异对这些指标的影响大于衰变时间的影响。根据IRL流域水表面积(水表面积15.6 km2)的k值估算的养分和金属的释放量(kg)为N 126.85××103,P 8.89××103,Zn 408.20,Pb 97.95,Cr 128.99,Mn 313.03,和铜82.40。生菜贡献最大,占52.13%N,56.81%P,Zn 74.95%Zn,59.58%Pb和74.65%Mn,其次是水,香蒲和麦丹烷。对于铬和铜,香蒲的贡献最大,分别为65.77%和54.15%,其次是生菜,水,和麦丹烷。

著录项

  • 来源
    《The Science of the Total Environment》 |2018年第1期|878-891|共14页
  • 作者单位

    Indian River Research and Education Center, Institute of Food and Agricultural Sciences, University of Florida,School of the Environment and Safety Engineering, Jiangsu University;

    Indian River Research and Education Center, Institute of Food and Agricultural Sciences, University of Florida;

    Indian River Research and Education Center, Institute of Food and Agricultural Sciences, University of Florida,Lishui University;

    Indian River Research and Education Center, Institute of Food and Agricultural Sciences, University of Florida;

    Indian River Research and Education Center, Institute of Food and Agricultural Sciences, University of Florida;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aquatic macrophyte plants; Decomposition rates; Detritus; Freshwater ecosystems; Nutrient and metals released amount;

    机译:水生植物;分解速率;碎屑;淡水生态系统;养分和金属释放量;

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