首页> 外文期刊>The Science of the Total Environment >Variations of physical and chemical properties in relation to erythromycin mycelial dreg dewaterability under heat-activated persulfate oxidation conditioning
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Variations of physical and chemical properties in relation to erythromycin mycelial dreg dewaterability under heat-activated persulfate oxidation conditioning

机译:热活化过硫酸盐氧化条件下与红霉素菌丝残渣脱水性有关的理化性质变化

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摘要

Erythromycin mycelial dreg (EMD) resulting from erythromycin (ERY) production process may be used as a nutrient resource. However, it has a high moisture content, which makes handling operations complicated. In this study, the EMD dewaterability under heat-activated persulfate (PS) oxidation conditioning was investigated. The variations of physical and chemical properties of EMD were further investigated to uncover the underlying mechanism of EMD dewaterability. Results indicated that EMD dewaterability was worse under single heat process, but significantly improved under heat-activated PS oxidation process. Heat-activated PS oxidation conditioning was capable to increase zeta potential, reduce median particle size, alter EMD flocs morphology, and disrupt mycelial cells. Concurrently, heat-activated PS oxidation conditioning resulted in the decrease of protein in tightly bound (TB) extracellular polymeric substances (EPS) and total EPS, and the decrease of fluorescing constituents (tryptophan protein, tyrosine protein and tryptophan amino acid) in EPS. Furthermore, a possible mechanism was proposed for heat-activated PS oxidation conditioning. (C) 2019 Published by Elsevier B.V.
机译:红霉素(ERY)生产过程中产生的红霉素菌丝残渣(EMD)可用作营养素。然而,它具有高的水分含量,这使得处理操作变得复杂。在这项研究中,研究了热活化过硫酸盐(PS)氧化条件下的EMD脱水性能。进一步研究了EMD的理化性质的变化,以揭示EMD脱水性的潜在机理。结果表明,单次加热过程中EMD的脱水性较差,但在热活化的PS氧化过程中,EMD的脱水性显着提高。热活化的PS氧化调理能够增加zeta电位,减小中值粒径,改变EMD絮凝物形态并破坏菌丝体细胞。同时,热活化的PS氧化调节导致紧密结合的(TB)细胞外聚合物(EPS)和总EPS中蛋白质的减少,以及EPS中发荧光成分(色氨酸,酪氨酸和色氨酸)的减少。此外,提出了一种热活化PS氧化调节的可能机理。 (C)2019由Elsevier B.V.发布

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