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Improvement of green table olive processing wastewater decolorization by Geotrichum candidum

机译:念珠菌改善绿橄榄加工废水的脱色

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In the current paper, olive processing wastewater (TOPW) decolorization by Geotrichum candidum was investigated. For environmental factor optimization, a 2(3) factorial experimental design was employed, wherein three factors, namely glucose, diammonium tartrate, and pH were varied simultaneously. Then, the interaction between the factors was analyzed using MINITAB 16 statistical software. Glucose and diammonium tartrate and their interactive effect influenced the decolorization yield. Regression models were developed to study the interaction between color removal variables. The effect of various carbon (glucose, glycerol and lactic acid) and nitrogen sources (diammonium tartrate, ammonium sulfate, ammonium nitrate and yeast extract) on the decolorization was further determined. G. candidum showed 63% TOPW decolorization with optimized medium containing glucose (5 g/L) and yeast extract (5 mM nitrogen) at pH 6, with significant reduction of phenolic compounds (60%) and COD (71%). HPLC and FTIR study suggests that decolorization can be attributed to adsorption to biomass and to certain phenolic compound biodegradation. Manganese peroxidase (MnP) and lignin-peroxidase (LiP) are the two enzymes responsible for the TOPW decolorization. With optimized culture conditions, G. candidum had maximum LiP and MnP activities of 58.4 and 78 U/L respectively.
机译:在本文中,研究了白色假丝酵母对橄榄加工废水(TOPW)的脱色。为了优化环境因素,采用了2(3)析因实验设计,其中三个因素(即葡萄糖,酒石酸二铵和pH)同时变化。然后,使用MINITAB 16统计软件分析这些因素之间的相互作用。葡萄糖和酒石酸二铵及其相互作用影响脱色率。开发了回归模型来研究颜色去除变量之间的相互作用。进一步确定了各种碳(葡萄糖,甘油和乳酸)和氮源(酒石酸二铵,硫酸铵,硝酸铵和酵母提取物)对脱色的影响。用pH值为6的葡萄糖(5 g / L)和酵母提取物(5 mM氮)的优化培养基,念珠菌显示出63%的TOPW脱色,酚类化合物(60%)和COD显着减少(71%)。 HPLC和FTIR研究表明,脱色可归因于生物质的吸附和某些酚类化合物的生物降解。锰过氧化物酶(MnP)和木质素过氧化物酶(LiP)是负责TOPW脱色的两种酶。在优化的培养条件下,假丝酵母​​的最大LiP和MnP活性分别为58.4和78 U / L。

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