一株叶芝属植物的溶解气体和营养动态。床上

C. Ribaudo, V. Bertrin, A. Dutartre
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引用次数: 11

摘要

水下水生杂草可能通过形成密集的草席在淡水浅水湖泊中定植,当这种情况发生时,它们的入侵干扰了人类活动并对水生过程产生了若干影响。在本文中,我们提出了一个调查的初步结果,溶解气体和营养动态在一个床内的密实稻。位于拉卡瑙湖的一个海湾(法国西南部)。在2013年夏季和秋季进行了两个24小时循环,用于测量溶解氧(O2),二氧化碳(CO2),甲烷(CH4)和溶解无机氮(DIN)。结果表明,绿僵菌的季节动态可能对定植区有强烈的影响:在夏季,稳定的O2水平(O2 bb0 0.15 mm)与大型植物的光合活性耦合,而在秋季,呼吸过程最为明显(0.02 mm < O2 < 0.25 mm)。在两次采样活动中,在床层内测量到高浓度的CH4 (0.6-53.9 μm)和CO2 (0.03-0.83 mm),这表明对大气中温室气体排放的潜在贡献。该研究表明,被淹没的水生杂草生物量增加的浅水环境最可能受到水缺氧和营养动员的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dissolved gas and nutrient dynamics within an Egeria densa Planch. bed
Abstract Submerged aquatic weeds may colonize freshwater shallow lakes by forming dense mats: when this occurs, their invasion interferes with human activities and generates several impacts on aquatic processes. In this paper, we present the preliminary results of an investigation concerning the dissolved gas and nutrient dynamics within a bed of Egeria densa Planch. in a bay of Lacanau Lake (southwestern France). Two 24-h cycles were carried out during summer and autumn 2013, for the measurement of dissolved oxygen (O2), carbon dioxide (CO2), methane (CH4) and dissolved inorganic nitrogen (DIN). Our results show that Egeria densa seasonal dynamics might strongly influence the colonized area: during summer, steady levels of O2 (O2 > 0.15 mm) were coupled to the macrophyte photosynthetic activity, while during autumn respiration processes were mostly pronounced (0.02 mm < O2 < 0.25 mm). High concentrations of CH4 (0.6–53.9 μm) and CO2 (0.03–0.83 mm) were measured within the bed during both sampling campaigns, that indicating a potential contribution to greenhouse gas emissions towards the atmosphere. This study suggests that a shallow environment colonized by an elevated biomass of submerged aquatic weeds is most likely subjected to water hypoxia and nutrient mobilization.
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