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Increases in Fluxes off Greenhouse Gases and Methyl Mercury following Flooding off an Experimental Reservoir

机译:实验水库注水后,温室气体和甲基汞的通量增加

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Experimental flooding of a boreal forest wetland caused the wetland to change from being a small, natural carbon sink, with respect to the atmosphere, of —6.6 g of C m~(-2) yr~(-1) to a large source of +130 g of C m~(-2) yr~(-1). This change was caused by the death of the vegetation, which eliminated the photosynthetic CO_2 sink and stimulated the microbial production of CO_2 and CH_4 from decomposition of plant tissues and peat. Another type of microbial activity that increased was the methylation of inorganic mercury to the much more toxic methyl mercury (MeHg) form. The wetland was a source of MeHg prior to flooding and became an even larger source (39 fold) after flooding. MeHg concentrations in the water sometimes exceeded 2 ng L~(-1), with the average being 0.9 ng L~(-1) in the first 2 years after flooding. MeHg also increased in the flooded vegetation and peat, in lower food chain organisms, and in fish. Two recommendations, which should minimize both greenhouse gas production and MeHg production in reservoirs, can be made: (1) minimize the total area of land flooded (i.e., avoid flooding areas of low relief) and (2) minimize the flooding of wetlands, which contain larger quantities of organic carbon than uplands and are sites of intense production of MeHg.
机译:北方森林湿地的实验性洪水使湿地从相对于大气的小的天然碳汇变成了6.6 g C m〜(-2)yr〜(-1)变为大量的碳源。 +130 g C m〜(-2)yr〜(-1)。这种变化是由植被的死亡引起的,植被的消失消除了光合作用的CO_2库,并刺激了植物组织和泥炭分解产生的微生物CO_2和CH_4。增加的另一种微生物活性是无机汞的甲基化为毒性更大的甲基汞(MeHg)形式。洪水之前,湿地是甲基汞的来源,洪水后成为湿地的更大来源(39倍)。水中的MeHg浓度有时超过2 ng L〜(-1),洪水后的前两年平均为0.9 ng L〜(-1)。淹没的植被和泥炭,较低食物链生物和鱼类中的甲基汞也有所增加。可以提出两项建议,这些建议应同时减少水库中温室气体的产生和甲基汞的产生:(1)最小化被洪水淹没的土地的总面积(即,避免低浮雕的洪水区域)和(2)最小化湿地的洪水,这些有机碳比高地含有更多的有机碳,并且是大量生产甲基汞的场所。

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