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Impact of calcium and TOC on biological acidification assessment in Norwegian rivers

机译:钙和TOC对挪威河流生物酸化评估的影响

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Acidification continues to be a major impact in freshwaters of northern Europe, and the biotic response to chemical recovery from acidification is often not a straightforward process. The focus on biological recovery is relevant within the context of the EU Water Framework Directive, where a biological monitoring system is needed that detects differences in fauna and flora compared to undisturbed reference conditions. In order to verify true reference sites for biological analyses, expected river pH is modeled based on Ca and TOC, and 94% of variability in pH at reference sites is explained by Ca alone, while 98% is explained by a combination of Ca and TOC. Based on 59 samples from 28 reference sites, compared to 547 samples from 285 non-reference sites, the impact of calcium and total organic carbon (TOC) on benthic algae species composition, expressed as acidification index periphyton (AIP), is analyzed. Rivers with a high Ca concentration have a naturally higher AIP, and TOC affects reference AIP only at low Ca concentrations. Four biological river types are needed for assessment of river acidification in Norway based on benthic algae: very calcium-poor, humic rivers (Ca2 mg/l); very calcium-poor, clear rivers (Ca4 mg/l). A biological assessment system for river acidification in Norway based on benthic algae is presented, following the demands of the Water Framework Directive.
机译:酸化仍然是北欧淡水的主要影响,而对酸化过程中的化学回收进行生物反应通常不是一个简单的过程。在欧盟水框架指令的范围内,对生物恢复的关注是相关的,在欧盟水框架指令中,需要一种生物监测系统来检测动植物与未受干扰的参考条件相比的差异。为了验证用于生物学分析的真实参考位点,基于Ca和TOC对预期河流的pH值进行建模,单独使用Ca可以解释参考位点pH的94%,而通过Ca和TOC的组合可以解释98%。 。基于来自28个参考点的59个样本,与来自285个非参考点的547个样本相比,分析了钙和总有机碳(TOC)对底栖藻类物种组成的影响,用酸化指数周生植物(AIP)表示。钙含量高的河流自然具有较高的AIP,而TOC仅在钙含量低时才影响参考AIP。根据底栖藻类评估挪威的酸化需要四种生物河流类型:钙含量低,腐殖质严重的河流(Ca <1 mg / l,TOC> 2 mg / l);钙含量非常低的清澈河流(Ca <1 mg / l,TOC <2 mg / l);钙缺乏的河流(钙含量在1-4 mg / l之间);钙含量适中的河流(Ca> 4 mg / l)。根据水框架指令的要求,提出了基于底栖藻类的挪威河流酸化生物评估系统。

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