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Determination of Schulze Equation for Chemical Oxygen Demand Reduction Using Stabilized Landfill Refuse Media

机译:确定使用稳定的垃圾填埋场垃圾介质减少化学需氧量的舒尔茨方程

摘要

[[abstract]]Three columns each with 770 cm² of surface area and 60 - 105 cm effective depth were set up for this study. These columns were filled with compacted, stabilized refuse. High-strength brewery wastewaters were uniformly trickled down the medium. Overall, 16 runs with various organic loadings were tested and the results demonstrated that the stabilized refuse had excellent capability in removing chemical oxygen demand (COD). The COD removal efficiency reached 95% at a depth of 60 cm at Q = 8 L/day for the initial COD of ∼ mg/L and the efficiency increased to >99% at a depth of 90 cm (organic loading of 0.69 kg/m³/day). As would be expected, the filter performance is a function of flow rate, influent COD concentration, and bed depth. The Schulze equation is able to predict the COD removal performance well. The variations of pH, oxidation reduction potential, and volatile fatty acids indicated that the acidogenesis reaction occurred in the upper layers.
机译:[[摘要]]为这项研究设置了三列,每列的表面积为770cm²,有效深度为60-105 cm。这些柱子充满了压实的,稳定的垃圾。高强度啤酒废水均匀地滴入培养基中。总体而言,测试了16种不同有机负荷的运行,结果表明稳定的垃圾具有优异的去除化学需氧量(COD)的能力。在Q = 8 L / day的情况下,在60 cm深度处的COD去除效率达到95%,初始COD为〜mg / L,在90 cm深度处的有机物去除效率提高至> 99%(有机负荷为0.69 kg / L立方米/天)。如预期的那样,过滤器性能是流速,进水COD浓度和床深度的函数。 Schulze方程能够很好地预测COD去除性能。 pH值,氧化还原电位和挥发性脂肪酸的变化表明酸发生反应发生在上层。

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    Fan Kuo-Shuh;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 eng
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