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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Solid-state C-13 NMR to assess organic matter transformation in a subsurface wetland under cheese-dairy farm effluents
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Solid-state C-13 NMR to assess organic matter transformation in a subsurface wetland under cheese-dairy farm effluents

机译:固态C-13 NMR评估奶酪奶牛场废水下地下湿地中的有机物转化

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Solid-state w(13)C NMR were used to follow organic matter transformation ill a Subsurface wetland under the effluent of a small cheese-dairy farm Under a Mediterranean climate. The results showed that the ratios Commonly used to quantify humification, (aromaticity and Alkyl-C/O-Alkyl-C ratios) call be considered as relevant chemical indicators of organic matter transformation. Polysaccharides were transformed throughout the Subsurface wetland whereas aromatic, phenolic and alkyl compounds accumulated. Furthermore, Phenolic-C signal and O-Alkyl-C signal were negatively correlated to proteases and beta-galactosidase activities showing that recalcitrant molecules actually accumulated. These results were correlated with high purification yields: the average decrease in chemical demand in oxygen was 90.75% and that in Total Kjeldahl Nitrogen was 75.65%. Thus Subsurface wetlands call be considered as all efficient technology to purify effluents with high organic matter contents, such as cheese-dairy effluent. under drastic climate conditions. Furthermore this study highlights the fact that solid-state C-13 NMR is a Suitable toot to follow organic matter transformation.
机译:在地中海气候下,固态干酪w(13)C NMR被用于追踪小型奶酪奶牛场出水下地下湿地中有机物的转化。结果表明,通常用来量化腐殖化的比例(芳香度和烷基-C / O-烷基-C比例)被认为是有机物转化的相关化学指标。多糖在整个地下湿地中转化,而芳香族,酚类和烷基化合物则不断积累。此外,苯酚-C信号和O-烷基-C信号与蛋白酶和β-半乳糖苷酶活性呈负相关,表明顽固分子实际上已经积累。这些结果与高纯化产率相关:氧气中化学需求量的平均下降为90.75%,而凯氏总氮中的化学需求量的平均下降为75.65%。因此,地下湿地被认为是用于净化有机物含量高的废水(如奶酪-乳制品废水)的所有有效技术。在剧烈的气候条件下。此外,这项研究强调了一个事实,即固态C-13 NMR是跟随有机物转变的合适嘟嘟声。

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