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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Fungal post-treatment of pulp mill effluents for the removal of recalcitrant pollutants
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Fungal post-treatment of pulp mill effluents for the removal of recalcitrant pollutants

机译:纸浆厂废水的真菌后处理以去除难处理的污染物

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摘要

The objective of this work was to evaluate the post-treatment of an anaerobic recalcitrant effluent (anaerobically-treated weak black liquor, AnE) in an aerobic, upflow reactor packed with "biocubes" of Trametes uersicolor immobilized onto small cubes of holm oak wood. The treated effluent (named anaerobic effluent; AnE) from all anaerobic fluidized bed reactor was fed to an up-flow aerobic fungal packed bed reactor (PBR). Two HRT were tested in this unit, namely 5 and 2.5 days; the PBR operated 60 days at 5-day HRT and 35 days at 2.5-day HRT. The aerobic packed bench scale reactor was a glass column 1.5 L total geometric volume containing 0.75 L biocubes of T. versicolor immobilized onto holm oak wood small cubes of 5 mm side. The reactor was operated at 25 C. The pH of the AnE was adjusted to 4.5 before feeding; no carbohydrates or other soluble carbon source was supplemented. The fungal packed bed bioreactor averaged organic matter removals of 30% and 32%, COD basis, during an experimental run of 60 days at 5-day HRT and 35 days at 2.5-day HRT, respectively. Colour and ligninoids contents were removed at higher percentages (69%, and 54% respectively, average of both HRT). There was no significant difference between reactor performance at 5- and 2.5-day HRT, so, operation at 2.5-day HRT is recommended since reactor throughput is double. Activity of manganese peroxidase and laccase was found during the entire operation of the fungal PBR whereas lignin peroxidase activity practically disappeared in the second operation period. In general, enzyme activities were higher in the first period of operation (5-day HRT) than at 2.5-day HRT. To the best of our knowledge, this is one of the few works that demonstrated extended performance (3 months) of a fungal bioreactor for the treatment of a recalcitrant wastewater with no supplementation of glucose or other expensive, soluble carbohydrate.
机译:这项工作的目的是评估在厌氧难处理废水(经厌氧处理的稀黑液,AnE)在需氧的上流式反应器中的后处理,该反应器装有固定在圣栎木小方块上的乌拉特色曲霉的“生物立方”。将来自所有厌氧流化床反应器的处理过的废水(称为厌氧废水; AnE)进料到上流式好氧真菌填充床反应器(PBR)中。在该单元中测试了两个HRT,即5天和2.5天; PBR在5天的HRT下运行60天,在2.5天的HRT下运行35天。好氧填充台式规模反应器是一个玻璃柱,总几何体积为1.5 L,其中包含0.75 L杂色丁香生物立方,固定在5毫米边的圣栎木小方块上。反应器在25℃下操作。在进料前将AnE的pH调节至4.5。没有补充碳水化合物或其他可溶性碳源。真菌填充床生物反应器在5天HRT的60天和2.5天HRT的35天的实验运行中,平均有机物去除量分别为COD的30%和32%。颜色和木质素含量以较高的百分比(分别为两种HRT的平均值)去除了(69%和54%)。在5天和2.5天的HRT下反应堆性能之间没有显着差异,因此,建议在2.5天的HRT下运行,因为反应堆的吞吐量是原来的两倍。在真菌PBR的整个操作过程中发现了锰过氧化物酶和漆酶的活性,而木质素过氧化物酶的活性在第二个操作期间实际上消失了。通常,在手术的第一阶段(5天HRT)中的酶活性高于2.5天HRT。据我们所知,这是证明真菌生物反应器在不补充葡萄糖或其他昂贵的可溶性碳水化合物的情况下用于处理难处理废水的性能延长(3个月)的少数工作之一。

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