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OLIVE OIL MILL WASTEWATERS POLLUTION ABATEMENT BY PHYSICAL TREATMENTS AND BIODEGRADATION WITH PHANEROCHAETAE CHRYSOSPORIUM

机译:物理处理处理橄榄油废水污染及与百里孢霉属细菌的生物降解。

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This paper discusses decolorization and chemical oxygen demand (COD) abatement in olive mill wastewaters (OMW) by Phanerochaetae chrysosporium grown in static, suspended and immobilised cultures. When P chrysosporium is used in cultures, no decolorization of crude OMW is observed. Decolorization occurs only after removal of polyphenols by adsorption on wood sawdust, which allows for removal of 39% of polyphenols. The use of High lignin peroxides (Lip) producing medium, yields the highest OMW decolorization and COD removal efficiencies. The use of P chrysosporium immobilized on polyurethane foam leads to significant abatements of OMW polluting characteristics. In fact, chemical oxygen demand (COD), Biological oxygen demand (BOD_5) and polyphenols contents are significantly reduced. In addition, a significant effluent decolorization is obvious.
机译:本文讨论了在静态,悬浮和固定培养中生长的Phanerochaetae chrysosporium对橄榄磨厂废水(OMW)中的脱色和化学需氧量(OMD)的消除。当在培养物中使用P chrysosporium时,未观察到粗OMW的脱色。脱色仅在通过吸附在木屑上除去多酚后才发生,这允许除去39%的多酚。使用高木质素过氧化物(Lip)产生培养基,可获得最高的OMW脱色和COD去除效率。固定在聚氨酯泡沫上的金黄色葡萄球菌的使用导致OMW污染特征的显着减少。实际上,化学需氧量(COD),生物需氧量(BOD_5)和多酚含量显着降低。另外,明显的废水脱色是明显的。

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