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Deep chlorophyll maxima in small boreal forest lakes after experimental catchment and shoreline logging

机译:实验集水区和海岸线伐木后北方小森林湖泊的深叶绿素最大值

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摘要

In situ profiles of chlorophyll fluorescence combined with depth-specific water chemistry and biotic analysis were used to assess deep chlorophyll maxima (DCM) in four boreal shield lakes that were subjected to different levels of watershed disturbance by clear-cut logging. Phytoplankton communities within the DCPvl varied among lakes, but were generally comprised of chrysophytes, diatoms, and cryptophytes. One lake also had deep cyanobacterial populations. Relative in situ fluorescence (absolute fluorescence at each peak minus background fluorescence) at the fluorescence peaks was significantly correlated with the level of chlorophyll a at the peak (r(2) = 0.81, p 0.025) for all lakes. In general, DCM peak heights were consistent in each lake over the four-year post-logging sampling period, whereas DCM depths declined slightly in the most heavily logged takes associated with increases in dissolved organic carbon. Therefore, on the basis of DCM data, only mild effects on lake water quality were apparent after the logging activity.
机译:叶绿素荧光的原位剖面图与深度特定的水化学和生物分析相结合,用于评估四个裸露盾构湖中的深层叶绿素最大值(DCM),这些湖区通过明晰的测井受到不同程度的分水岭干扰。 DCPvl内的浮游植物群落在湖泊之间有所不同,但通常由温藻,硅藻和隐藻组成。一个湖也有深蓝细菌种群。对于所有湖泊,荧光峰的相对原位荧光(每个峰的绝对荧光减去背景荧光)与该峰的叶绿素a水平显着相关(r(2)= 0.81,p <0.025)。一般而言,在采伐后四年的采样期内,每个湖泊中的DCM峰值高度均保持一致,而与溶解有机碳增加相关的最密集采伐中,DCM深度则略有下降。因此,根据DCM数据,伐木活动后,对湖泊水质的影响只有轻微的影响。

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