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Effectiveness of algae in the treatment of a wood-based pulp and paper industry wastewater

机译:藻类在处理木浆和造纸工业废水中的功效

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In this study, the ability of algae to treat a wood-based pulp and paper industry wastewater was investigated. Tests were performed in batch reactors seeded with a mixed culture of algae. Under different lighting and initial wastewater strength conditions, changes in COD, AOX and color contents of reactors were followed with time. Algae were found to remove up to 58% of COD, 84% of color and 80% of AOX from pulp and paper industry wastewaters. No remarkable differences were observed in COD and color when light intensity and wastewater strength were changed, while AOX removals were strongly affected. Algal species identification studies revealed that some green algae (Chlorella) and diatom species were dominant in the treatment. The study also showed that algae grew mixotrophically, while the main mechanism of color and organics removal from pulping effluents was partly metabolism and partly metabolic conversion of colored and chlorinated molecules to non-colored and non-chlorinated molecules. Adsorption onto algal biomass was not so effective. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 21]
机译:在这项研究中,研究了藻类处理木浆和造纸工业废水的能力。在接种有藻类混合培养物的分批反应器中进行测试。在不同的光照和初始废水强度条件下,反应堆的COD,AOX和颜色含量随时间变化。发现藻类可从纸浆和造纸工业废水中去除多达58%的COD,84%的颜色和80%的AOX。当改变光强度和废水强度时,COD和颜色没有观察到显着差异,而AOX的去除受到很大影响。藻类鉴定研究表明,某些绿藻(小球藻)和硅藻物种在该处理中占主导地位。研究还表明,藻类是混合营养的,而从制浆废水中去除颜色和有机物的主要机制是部分代谢和部分代谢,将有色和氯化的分子转变为无色和非氯化的分子。吸附到藻类生物质上不是很有效。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:21]

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