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首页> 外文期刊>Biotechnology Progress >Fungal Bioremediation of Phenolic Wastewaters in an Airlift Reactor
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Fungal Bioremediation of Phenolic Wastewaters in an Airlift Reactor

机译:气举反应器中酚类废水的真菌生物修复

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Of the various types of industry-generated effluents,those containing organic pollutants such as phenols are generally difficult to remediate.There is a need to develop new technologies that emphasize the destruction of these pollutants rather than their disposal.In this work the white rot fungus,Trametes pubescens,was demonstrated to be an effective bioremediation agent for the treatment of phenolic wastewaters.An airlift loop reactor was optimized,in terms of volumetric oxygen transfer rate (Kya = 0.45 s"1),to provide an environment suited to rapid growth of T.pubescens (w = 0.25 day"1) and a particularly efficient growth yield on glucose of 0.87 g biomass-g glucose^1.The phenolic effluent was shown to be a paramorphogen,influencing fungal pellet morphology in the reactor,as well as increasing laccase enzyme activity by a factor-of 5 over the control,to a maximum of 11.8 U-mL"1.This increased activity was aided by the feeding of nonrepressing amounts (0.5 g*L~J) of glucose to the reactor culture.To our knowledge the degradation results represent the highest rate of removal (0.033 g phenol-g biomass"1*day"1) of phenolic compounds from water reported for white rot fungi.
机译:在各种类型的工业产生的废水中,含有有机污染物(例如苯酚)的废水通常很难补救。需要开发新技术来强调这些污染物的破坏而不是其处置。在这项工作中,白腐真菌已证明,Trametes pubescens是用于处理含酚废水的有效生物修复剂。对空运回路反应器进行了优化,以提高氧气的体积传输率(Kya = 0.45 s“ 1),从而提供了适合快速生长的环境T. pubescens(w = 0.25天“ 1),在葡萄糖上的生长效率特别高,为0.87 g生物质-g葡萄糖^ 1。酚类废水被证明是一种多态性原,也影响了反应器中的真菌沉淀形态。因为漆酶的活性比对照提高了5倍,最大达到11.8 U-mL“ 1。这种活性的提高是通过将非抑制量(0.5 g * L〜J)的葡萄糖喂入尿素而得到的。据我们所知,降解结果代表了从白腐菌中去除水中酚类化合物的最高去除率(0.033 g酚-g生物量“ 1 * day” 1)。

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