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首页> 外文期刊>International Journal of Molecular Sciences >Assessing Transformations of Algal Organic Matter in the Long-Term: Impacts of Humification-Like Processes
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Assessing Transformations of Algal Organic Matter in the Long-Term: Impacts of Humification-Like Processes

机译:长期评估藻类有机物的转化:类似增湿过程的影响

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Algae and cyanobacteria are important contributors to the natural organic matter (NOM) of eutrophic water resources. The objective of this work is to increase knowledge on the modifications of algal organic matter (AOM) properties in the long term to anticipate blooms footprint in such aquatic environments. The production of AOM from an alga (Euglena gracilis) and a cyanobacteria (Microcystis aeruginosa) was followed up and characterized during the stationary phase and after one year and four months of cultivation, in batch experiments. Specific UV absorbance (SUVA) index, organic matter fractionation according to hydrophobicity and apparent molecular weight were combined to assess the evolution of AOM. A comparison between humic substances (HS) mainly derived from allochthonous origins and AOM characteristics was performed to hypothesize impacts of AOM transformation processes on the water quality of eutrophic water resources. Each AOM fraction underwent a specific evolution pattern, depending on its composition. Impacts of humification-like processes were predominant over release of biopolymers due to cells decay and led to an increase in the hydrophobic compounds part and molecular weights over time. However, the hydrophilic fraction remained the major fraction whatever the growth stage. Organic compounds generated by maturation of these precursors corresponded to large and aliphatic structures.
机译:藻类和蓝细菌是富营养化水资源的天然有机物(NOM)的重要贡献者。这项工作的目的是长期了解藻类有机物(AOM)的特性,以期预测此类水生环境中的水华足迹。在分批实验中,对由藻类(Euglena gracilis)和蓝藻(Microcystis aeruginosa)生产的AOM进行了跟踪,并在静止期以及培养一年零四个月后对其进行了表征。结合特定的紫外线吸收率(SUVA)指数,根据疏水性的有机物分级和表观分子量来评估AOM的演变。比较了主要来自异源来源的腐殖质(HS)和AOM特性,以推测AOM转化过程对富营养化水资源水质的影响。每个AOM组分都经历了特定的演化模式,具体取决于其组成。像腐殖化一样的过程的影响主要是由于细胞腐烂而释放生物聚合物,并导致疏水化合物部分和分子量随时间增加。然而,无论生长期如何,亲水部分仍是主要部分。这些前体的成熟产生的有机化合物对应于较大的脂族结构。

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