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Carbon sequestration in a surface flow constructed wetland after 12 years of swine wastewater treatment

机译:养猪场废水处理12年后,地表流人工湿地中的碳固存

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Constructed wetlands used for the treatment of swine wastewater may potentially sequester significant amounts of carbon. In past studies, we evaluated the treatment efficiency of wastewater in a marsh-pond-marsh design wetland system. The functionality of this system was highly dependent on soil carbon content and organic matter turnover rate. To better understand system performance and carbon dynamics, we measured plant dry matter, decomposition rates and soil carbon fractions. Plant litter decomposition rate was 0.0052 g day(-1) (+/- 0.00119 g day(-1)) with an estimated half-life of 133 days. The detritus layer accumulated over the soil surface had much more humin than other C fractions. In marsh areas, soil C extracted with NaOH had four to six times higher amounts of humic acid, fulvic acid and humin than soil C extracted by cold and hot water, HCl/HF, and Na pyruvate. In the pond area, humic acid, fulvic acid and humin content were two to four times lower than in the marsh area. More soil C and N was found in the marsh area than in the pond area. These wetlands proved to be large sinks for stable C forms.
机译:用于处理猪废水的人工湿地可能会隔离大量的碳。在过去的研究中,我们评估了沼泽-池塘-沼泽设计湿地系统中废水的处理效率。该系统的功能高度依赖于土壤碳含量和有机质周转率。为了更好地了解系统性能和碳动力学,我们测量了植物干物质,分解率和土壤碳含量。植物凋落物分解速率为0.0052 g day(-1)(+/- 0.00119 g day(-1)),估计半衰期为133天。积聚在土壤表面的碎屑层的腐殖质比其他C组分高得多。在沼泽地区,用NaOH萃取的土壤C的腐殖酸,黄腐酸和腐殖质的含量是用冷热水,HCl / HF和丙酮酸钠萃取的土壤C的四到六倍。在池塘地区,腐殖酸,黄腐酸和腐殖质含量比沼泽地区低2-4倍。在沼泽地区发现的土壤中的碳和氮比池塘地区多。这些湿地被证明是稳定C形态的大水池。

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