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Punching above their weight: Large release of greenhouse gases from small agricultural dams

机译:在他们的重量之上打孔:来自小农业水坝的大型温室气体释放

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摘要

Freshwater ecosystems play a major role in global carbon cycling through the breakdown of organic material and release of greenhouse gases (GHGs). Carbon dioxide (CO2) and methane (CH4) emissions from lakes, wetlands, reservoirs and small natural ponds have been well studied, however, the GHG emissions of highly abundant, small-scale (&0.01 km(2)) agricultural dams (small stream and run-off impoundments) are still unknown. Here, we measured the diffusive CO2 and CH4 flux of 77 small agricultural dams within south-east Australia. The GHG emissions from these waterbodies, which are currently unaccounted for in GHG inventories, amounted to 11.12 +/- 2.59 g CO2-equivalent m(2)/day, a value 3.43 times higher than temperate reservoir emissions. Upscaling these results to the entire state of Victoria, Australia, resulted in a farm dam CO2-equivalent/day emission rate of 4,853 tons, 3.1 times higher than state-wide reservoir emissions in spite of farm dams covering only 0.94 times the comparative area. We also show that CO2 and CH4 emission rates were both significantly positively correlated with dissolved nitrate concentrations, and significantly higher in livestock rearing farm dams when compared to cropping farm dams. The results from this study demonstrate that small agricultural farm dams can be a major source of greenhouse gas emissions, thereby justifying their inclusion in global carbon budgets.
机译:淡水生态系统在全球碳循环中发挥着主要作用,通过有机材料的崩溃和释放温室气体(GHG)。从湖泊,湿地,水库和小型天然池中进行了二氧化碳(CO2)和甲烷(CH4)排放,然而,高度丰富,小规模(& 0.01公里(2))农业的温室气体排放水坝(小型流和耗尽蓄水量)仍然未知。在这里,我们测量了澳大利亚东南部77个小农产品水坝的扩散二氧化碳和CH4通量。这些Waterbodies的温室气体排放,目前在温室气体库存中未达到11.12 +/- 2.59g CO2-相同的m(2)/天,比温带储层排放量高3.43倍。将这些结果升级到澳大利亚维多利亚维多利亚州的全国,导致农场大坝二氧化碳当量/日排放率为4,853吨,比全面储层排放量高3.1倍,尽管农场坝仅占比较区域的0.94倍。我们还表明,与裁剪农场坝相比,二氧化碳和CH4排放率与溶解的硝酸盐浓度显着与溶解的硝酸盐浓度显着相关,并且在牲畜饲养场坝中显着高。本研究结果表明,小型农业农场水坝可以是温室气体排放的主要来源,从而证明了它们在全球碳预算中的纳入。

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