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Methanogenic toxicity and continuous anaerobic treatment of wood processing effluents

机译:木材加工废水的产甲烷毒性和连续厌氧处理

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摘要

Wood processing effluents contain different types of phenolic compounds, from simple monomers to high molecular weight (MW) polyphenolic polymers, that can inhibit wastewater treatment. This work presents a comparative study of the methanogenic toxicity produced by three wood processing effluents (hardboard, fiberboard and BKME (kraft mill effluent)) using Pinus radiata, Eucalyptus and Tepa as feedstock (the last one being a native Chilean tree species). This study evaluates the influence of non-adapted granular and adapted flocculent sludge on forest industrial wastewater treatment as well as continuous anaerobic biodegradation of hardboard processing effluent using the upflow anaerobic sludge blanket (UASB). The adapted biomass (flocculent sludge) did not show any lag-phase signs. The 50% IC (the concentration causing 50% inhibition of methanogenic activity) was 4.3 g COD-effluent (chemical oxygen demand (COD)-of the effluent)/l and 2.8 g COD-effluent/l for the flocculent sludge and the granular sludge, respectively. The UASB system worked at low organic load rates (0.1-0.4 g COD/l d) with the COD removal ranging between 10 and 30%, and color removal did not occur under anaerobic conditions due to high MW. Indeed, the MW analysis indicates the presence of phenolic compounds over 25,000 Da in the anaerobic effluent.
机译:木材加工废水中含有不同类型的酚类化合物,从简单的单体到高分子量(MW)的多酚类聚合物,都会抑制废水的处理。这项工作对三种木材加工废水(硬纸板,纤维板和BKME(牛皮纸厂废水))产生的产甲烷毒性进行了比较研究,辐射松,桉树和特帕作为原料(最后一种是智利本地树种)。这项研究评估了不适应的颗粒状和适应性絮状污泥对森林工业废水处理以及使用上流厌氧污泥层(UASB)对硬纸板加工废水进行连续厌氧生物降解的影响。适应的生物量(絮凝污泥)没有显示任何滞后迹象。 50%的IC(导致50%的甲烷生成活性抑制的浓度)为4.3 g COD废水(化学需氧量(COD)-废水)/ l和2.8 g COD废水/ l絮凝污泥和颗粒污泥分别。 UASB系统在低有机负荷率(0.1-0.4 g COD / l d)下工作,COD去除率为10%至30%,并且由于高MW在厌氧条件下没有发生颜色去除。实际上,MW分析表明厌氧废水中存在超过25,000 Da的酚类化合物。

著录项

  • 来源
    《Journal of Environmental Management》 |2005年第4期|p.317-325|共9页
  • 作者

    Vidal G; Diez MC;

  • 作者单位

    Environmental Science Center EULA-Chile, Universidad de Concepcion, Casila P. O. Box 160-C. Concepcion, Chile. glvidal@udec.cl;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境规划与环境管理;
  • 关键词

  • 入库时间 2022-08-17 13:38:54

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