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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Ammonium removal potential and its conversion pathways by free and immobilized Scenedesmus obliquus from wastewater
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Ammonium removal potential and its conversion pathways by free and immobilized Scenedesmus obliquus from wastewater

机译:从废水中通过自由和固定的铜粘土倾斜度和其转化途径及其转化途径

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摘要

In this study, the immobilization with sodium alginate (SA) for cultivating microalgae in entrapped matrix gel beads was conducted for separating it from water. Batch experiments with a period of 5 days were carried out for free and immobilized Scenedesmus obliquus simultaneously under two trophic modes, to compare the removal performances of different initial ammonium (NH4+-N) concentrations. In both free and immobilized form, the positive C-dependent effect in mixotrophy and the negative N-dependent effect in heterotrophy were observed. And the performances of immobilized form were all superior to that of free form, which showed greater tolerance to high concentration, maximally representing 96.6 +/- 0.1% removal in 50 mg/L of NH4+-N in mixotrophy. Assimilation of NH4+-N was the main removal pathway resulting the protein synthesis with the dominant component including glutamic acid (Glu), cystine (Cys), arginine (Arg) and proline (Pro). The results demonstrated a systematic understanding for NH4+-N removal in microalgae-based system.
机译:在该研究中,进行了用藻酸钠(Sa)固定用于在捕获的基质凝胶珠粒中培养微藻,以将其与水分离。在两种营养模式下同时进行5天的分批实验,同时进行自由和固定的Scenedesmus斜肌,以比较不同初始铵(NH4 + -N)浓度的去除性能。在自由和固定的形式中,观察到阳性阳性的阳性C依赖性效应和异营养学中的阴性N依赖性作用。固定化形式的性能均优于自由形式的性能,这表明对高浓度的更大耐受性,最大地表示在混纺中50mg / L的NH 4 + -N中的96.6 +/- 0.1%。 NH4 + -N的同化是主要的去除途径,导致蛋白质合成与包括谷氨酸(Glu),胱氨酸(Cys),精氨酸(Arg)和脯氨酸(Pro)的主体合成。结果表明,对基于微藻的系统中的NH 4 + -N除去了系统的系统理解。

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