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Two-stage biofiltration for treatment of POTW off-gases (Hydrogen sulfide).

机译:两级生物滤池处理POTW废气(硫化氢)。

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摘要

Recent efforts have been made to reduce releases of air toxics and smog precursors from wastewater treatment plants. Hydrogen sulfide is commonly the primary odor and is an important target for removal. Its oxidation, however, generates sulfuric acid and sometimes elemental sulfur, which can create substantial operational problems for biofilters. Declining pH may inhibit the organisms that degrade compounds other than hydrogen sulfide and may hasten aging of organic biofilter media. A two-stage biofilter was designed and installed at the Ojai Valley Sanitary District wastewater treatment plant. The first stage was an enclosed system with a medium of small, inert, porous stones. It was called an acid gas biofilter. The second stage was a section of a traditional open biofilter filled with wood chips. The acid gas biofilter effectively removed H2S and volatile organic compounds while causing much lower headloss than traditional biofilters. However, considerable flow heterogeneity in both the acid gas biofilter and the wood chip biofilter was observed. The two-stage system presumably will have a longer bed life because the first stage bed was inert and because the second stage was protected from acidification by removal of H2S in the first stage.; As a result of the observed flow heterogeneity, a two-dimensional steady-state computational fluid dynamics model was developed to simulate flow through a biofilter. This modeling effort demonstrated that the optimal design depends on the permeability of the medium, the operational flowrate, and biofilter design. In very low permeability medium, the flow had low flow heterogeneity regardless of the design. With highly permeable medium, the design was significant. Several different design options were compared. Choice of optimal design depended on the operational Reynolds number, however, the design with top, side inlet and bottom, same side outlet had the lowest flow heterogeneity of the five designs over a wide range of Reynolds number. This modeling effort also demonstrated that removal efficiency decreases as flow heterogeneity increases.
机译:为了减少废水处理厂中的空气有毒物质和烟雾前体的释放,最近进行了努力。硫化氢通常是主要气味,并且是去除的重要目标。但是,其氧化会生成硫酸,有时还会生成元素硫,这会对生物过滤器造成严重的运行问题。 pH值下降可能会抑制降解除硫化氢以外的化合物的生物,并可能加速有机生物滤池介质的老化。在Ojai谷卫生区废水处理厂设计并安装了两级生物滤池。第一阶段是一个封闭的系统,其中装有小的,惰性的,多孔的石头。它被称为酸性气体生物过滤器。第二阶段是装满木屑的传统开放式生物滤池的一部分。酸性气体生物滤池可有效去除H 2 和挥发性有机化合物,同时造成的损失比传统生物滤池低得多。但是,在酸性气体生物滤池和木屑生物滤池中均观察到明显的流量异质性。推测该两阶段系统将具有更长的床寿命,因为第一阶段的床是惰性的,并且第二阶段通过在第一阶段中除去H 2 S被保护免受酸化。由于观察到的流动非均质性,开发了二维稳态计算流体动力学模型来模拟通过生物滤池的流动。该建模工作表明,最佳设计取决于介质的渗透性,工作流速和生物滤池的设计。在极低渗透率的介质中,无论设计如何,流动的流动非均质性都较低。使用高渗透性介质,设计意义重大。比较了几种不同的设计方案。最佳设计的选择取决于可操作的雷诺数,但是,在较大的雷诺数范围内,具有顶部,侧面入口和底部,同一侧出口的设计在五种设计中流动异质性最低。该建模工作还表明,去除效率随流动异质性的增加而降低。

著录项

  • 作者

    Chitwood, Derek Evan.;

  • 作者单位

    University of Southern California.;

  • 授予单位 University of Southern California.;
  • 学科 Engineering Environmental.; Engineering Sanitary and Municipal.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 181 p.
  • 总页数 181
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境污染及其防治;建筑科学;
  • 关键词

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