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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Factors affecting denitrification rates in experimental wetlands:Field and laboratory studies
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Factors affecting denitrification rates in experimental wetlands:Field and laboratory studies

机译:影响实验湿地反硝化率的因素:现场和实验室研究

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To identify the conditions that promote high rates of denitrification we systematically investigated the interactions of wetland age,water temperature,organic carbon,macrophytic type and density,hydraulic conditions on denitrification rates in field and laboratory experiments.In the field,nitrate removal was consistently greater in a shallow,young,well-mixed constructed wetland,regardless of temperature and despite lower sediment denitrification potential (DNP),than in mature,more diverse,less well-mixed wetlands.We believe the presence of a benthic mesh,which supported a dense periphytic biofilm,to be partly responsible for the unexpectedly high observed rates.We measured the DNP of wetland sediments and periphyton in the laboratory with the acetylene block method under different temperatures,nitrate concentrations,and carbon sources.The overall DNP of periphyton was greater than the corresponding sediment samples on a per cell basis.We hypothesize that the organic carbon produced by the periphytic algae is readily degradable and promoted the higher denitrification rates.We found a positive relationship between DNP and biodegradable organic carbon concentration and identified chemical markers illustrating that biodegradability is promoted by a combination of polyhydroxyaromatic and polysaccharide parent structures.These findings highlight the importance of organic quality and the role of periphyton in accelerating the rates of denitrification in wetlands.
机译:为了确定促进高反硝化率的条件,我们在田间和实验室实验中系统地研究了湿地年龄,水温,有机碳,微生植物类型和密度,水力条件对反硝化率的相互作用。与温度成熟度不同,尽管沉积物的反硝化潜能(DNP)较低,但在较浅,年轻且混合充分的人工湿地中,比成熟,多样化,混合程度较差的湿地好。我们相信存在底栖网,这支持了在不同温度,硝酸盐浓度和碳源下,采用乙炔块法在实验室中测量了湿地沉积物和周生植物的DNP,这是造成异常高观测速率的部分原因。比每个细胞的相应沉积物样本要多。我们假设我们发现DNP与可生物降解的有机碳浓度之间存在正相关关系,并确定了化学标记,说明多羟基芳族化合物和多糖母体结构的组合可促进生物降解性。有机质和周生植物在加速湿地反硝化速率中的作用。

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