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A novel protease-immobilized carbon catalyst for the effective fragmentation of proteins in high-TDS wastewater generated in tanneries: Spectral and electrochemical studies

机译:一种新型蛋白酶固定化碳催化剂,用于制革中的高TDS废水中蛋白质的有效碎片:光谱和电化学研究

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The aim of this study was to degrade proteins in high-total dissolved solids (TDS)-containing wastewater produced during the soaking process in tanneries (tannery-TDS wastewater) using a halotolerant protease-assisted nanoporous carbon catalyst (STPNPAC). A halotolerant protease was obtained from the halophile, Lysinibacillus macroides, using animal fleshing as the substrate. The protease was immobilized using ethylene diamine (EDA)/glutaraldehyde functionalized nanoporous activated carbon (EGNPAC). The optimum conditions for the immobilization of protease were determined as time (120 min), pH (6), protease concentration (575-600 U/g), EGNPAC size, salinity, and temperature (30 degrees C). The immobilization was confirmed by FTIR, TGA-DSC, SEM, and XRD analyses. The adsorption kinetics was consistent with a pseudo first order rate constant of 1.43 x 10(-2) min(-1). The thermodynamic parameters (Delta G, Delta H, and Delta S) confirmed the effective immobilization of the protease onto EGNPAC. STPNAPC was found to efficiently degrade the proteins in tannery-TDS wastewater, with a complete fragmentation time of 90 min at pH 6 and 30 degrees C. Accordingly, the protein fragmentation was confirmed by UV-visible and UV-fluorescence spectroscopy, ESI-mass spectrometric analysis and circular dichroic studies. The formation of protein hydrolysates was confirmed by cyclic voltammetry and electrical impedance studies. BOD5: COD value, 0.426 of treated tannery-TDS wastewater may favor sequential biological treatment processes.
机译:本研究的目的是使用卤素蛋白酶辅助纳米多孔碳催化剂(STPNPAC)在制氮(Tannery-TDS废水)中浸泡过程中产生的高总溶解固体(TDS) - 筛选废水中的蛋白质。使用动物肉体作为基质,从嗜嗜盐,赖氨酸菌,获得卤素蛋白酶。使用乙二胺(EDA)/戊二醛官能化纳米多孔活性炭(EGNPAC)固定该蛋白酶。将蛋白酶固定化的最佳条件确定为时间(120分钟),pH(6),蛋白酶浓度(575-600 U / g),EGNPAC尺寸,盐度和温度(30℃)。通过FTIR,TGA-DSC,SEM和XRD分析证实了固定化。吸附动力学与伪第一阶率常数为1.43×10(-2)分钟(-1)一致。热力学参数(Delta g,delta h和delta s)证实了蛋白酶的有效固定在Egnpac上。发现STPNAPC有效地降解了Tannery-TDS废水中的蛋白质,在pH 6和30摄氏度下具有90分钟的完整碎片时间。因此,通过UV可见和UV-荧光光谱,ESI质证实了蛋白质片段化光谱分析与圆形二向色研究。通过循环伏安法和电阻抗研究证实了蛋白质水解产物的形成。 BOD5:COD值,0.426处理的Tannery-TDS废水可能有利于顺序生物处理过程。

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