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Changes in the amount of soluble carbohydrates and polyphenols contents during decomposition of Montrichardia arborescens (L.) Schott

机译:山梨木(Montrichardia arborescens(L.)Schott)分解过程中可溶性碳水化合物和多酚含量的变化

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This study describes the aerobic and anaerobic decay of soluble carbohydrates (CH) and polyphenols (PH) during decomposition of Montrichardia arborescens. Plant and water samples were collected in the Cantá stream (2o 49' 11" N and 60o 40' 24" W), Roraima, Brazil. Decomposition chambers with plant fragments and stream water were incubated. Particulate organic matter was separated from dissolved organic matter and concentrations of CH and PH were determined. The results were fitted to 1st order kinetics models. CH and PH comprised a labile fraction (LCH and LPH) and a refractory fraction (RCH and RPH). The global coefficient associated with LCH weight loss was 1.4 times higher under aerobic conditions (3.4 day-1) higher than for anaerobic conditions. On the other hand, the RCH decay rate in the anaerobic process (0.0074 day-1) was 1.39 times higher. LCH was estimated to be 92% while RCH amounted to 8%. The LPH anaerobic decay was 5.2 times the value for the aerobic decay (0.67 day-1). For both conditions, RPH decay coefficients were similar (? 0.011 day-1). In the aerobic experiments LPH and RPH corresponded to 92.5% and 7.5%, respectively. For the anaerobic process these contents were 85.5% and 14.5%, respectively. From these results, we concluded that in the Cantá stream, the anaerobic degradation of phenols is more efficient than the aerobic counterpart. The aerobic condition provides a faster decay of carbohydrates of this plant.
机译:这项研究描述了山梨山雀(Montrichardia arborescens)分解过程中可溶性碳水化合物(CH)和多酚(PH)的需氧和厌氧降解。在巴西罗赖马的Cantá溪流(北纬2o 49'11“和西经60o 40'24”)中收集了植物和水样。温育具有植物碎片和流水的分解室。从溶解的有机物中分离出颗粒状有机物,并测定CH和PH的浓度。结果拟合到一阶动力学模型。 CH和PH包含不稳定级分(LCH和LPH)和耐火级分(RCH和RPH)。在有氧条件下(3.4天-1),与LCH减肥相关的总体系数比无氧条件下高1.4倍。另一方面,厌氧过程(0.0074天-1)中的RCH衰减率高1.39倍。 LCH估计为92%,RCH为8%。 LPH厌氧衰减是有氧衰减值(0.67天-1)的5.2倍。在这两种情况下,RPH衰减系数都相似(约0.011天-1)。在有氧实验中,LPH和RPH分别对应于92.5%和7.5%。对于厌氧工艺,这些含量分别为85.5%和14.5%。根据这些结果,我们得出结论,在Cantá流中,苯酚的厌氧降解比需氧的苯酚更有效。有氧条件使该植物的碳水化合物更快地腐烂。

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