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Benthic nutrient fluxes and sediment oxygen consumption in a full-scale facultative pond in Patagonia, Argentina

机译:阿根廷巴塔哥尼亚大型人工池塘的底栖营养通量和沉积物耗氧量

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The study of benthic metabolism is an interesting tool to understand the process that occurs in bottom water at wastewater stabilization ponds. Here, rates of benthic oxygen consumption and nutrient exchange across the water-sludge interface were measured in situ using a benthic chamber. The research was carried out during autumn, winter, and summer at a municipal facultative stabilization pond working in a temperate region (Puerto Madryn city, Argentina). Both a site near the raw wastewater inlet (Inlet station) and a site near the outlet (Outlet station) were sampled. Important seasonal and spatial patterns were identified as being related to benthic fluxes. Ammonium release ranged from undetectable (autumn/summer - Inlet station) to +30.7 kg-NH_4 + ha~(-1) d~(-1) (autumn - Outlet station), denitrification ranged from undetectable (winter - - in both sites) to -4.0 kg-NO_3 - ha~(-1) d~(-1) (autumn - Outlet station), and oxygen consumption ranged from 0.07 kg-O2 ha-1 d-1 (autumn/summer - Outlet station) to 0.84 kg-O_2 ha~(-1) d~(-1) (autumn - Inlet station). During the warmer months, the mineralization of organic matter from the bottom pond acts as a source of nutrients, which seem to support the important development of phytoplankton and nitrification activity recorded in the surface water. Bottom processes could be related to the advanced degree and efficiency of the treatment, the temperature, and probably the strong and frequent wind present in the region.
机译:对底栖生物代谢的研究是了解废水稳定池底部水中发生的过程的有趣工具。在这里,使用底栖腔室就地测量了底栖氧气消耗率和整个水泥界面的养分交换率。该研究是在秋季,冬季和夏季在温带地区(阿根廷波多黎各马德林市)的市政兼职稳定池中进行的。对原始废水入口附近(进口站)和出口附近(出口站)都进行了采样。重要的季节和空间格局被确定为与底流有关。铵盐释放的范围从无法检测到(秋季/夏季-入口站)到+30.7 kg-NH_4 + ha〜(-1)d〜(-1)(秋季-出口站),反硝化的范围从无法检测到(冬季--在两个站点中) )至-4.0 kg-NO_3-ha〜(-1)d〜(-1)(秋季-出口站),耗氧量范围为0.07 kg-O2 ha-1 d-1(秋季/夏季-出口站)至0.84 kg-O_2 ha〜(-1)d〜(-1)(秋天-入口站)。在较暖的月份,底池有机物的矿化作用是养分的来源,这似乎支持浮游植物的重要发展和地表水中记录的硝化活性。底部过程可能与处理的先进程度和效率,温度以及该地区可能存在的强风和频繁风有关。

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