首页> 外文期刊>Transactions of the ASABE >Biofilter Media Characterization Using Water Sorption Isotherms
【24h】

Biofilter Media Characterization Using Water Sorption Isotherms

机译:使用吸水等温线进行生物滤池介质表征

获取原文
获取原文并翻译 | 示例
           

摘要

Compost material has been used extensively as a gas-phase biofilter media for contaminant gas treatment in recent years. One of the biggest challenges in the use of this type of material is adequate control of compost moisture content and understanding its effect on the biofiltration process. The present work provides a methodology for characterization of biofilter media under low moisture conditions. Results indicated that low levels of equilibrium moisture content (EMC) were obtained for high levels of equilibrium relative humidity (ERH), i.e., 99% ERH produced EMC of approximately 20%o (dry basis) at 25 °C. Most bacteria struggle to survive in environments with ERH levels lower than 95%. Compost material from the same source was sieved into fourcompost particle size (PS) ranges to evaluate its water sorption behavior: 4.76 mm > PS_1 > 3.36 mm > PS_2 > 2.38 mm > PS_3 > 2.00 mm > PS_4 > 1.68 mm. Observed data were tested against isotherm models for their goodness-of-fit. Seven isotherm models were compared: (1) Langmuir; (2) Freundlich; (3) Sips; (4) Brunauer, Emmett, and Teller (BET); (5) BET for n-layers; (6) Guggenheim, Anderson, de Boer (GAB); and (7) Henderson. In comparison with the other models, the Henderson model provided the best fit,as determined by the best combination of regression coefficient standard errors (A) and coefficients of determination (r~2) for all four particle size ranges tested (95%) confidence interval, C.I., and prediction interval, P.I.). The Henderson model wasthen used to test for significant differences in isotherms by particle size ranges. The four tested particle size ranges were not significantly different from each other (p < 0.05), indicating similar water sorption behavior. Data from all four particlesize ranges were pooled and regressed, and the minimum required moisture to maintain ERH at or above 95%) was 16.41% ±2.68% (dry basis).
机译:近年来,堆肥材料已被广泛用作气相生物过滤器介质,用于处理污染气体。使用这种材料的最大挑战之一是如何充分控制堆肥的水分含量并了解其对生物过滤过程的影响。本工作提供了一种在低湿度条件下表征生物滤池介质的方法。结果表明,对于较高水平的平衡相对湿度(ERH),可以获得较低水平的平衡水分含量(EMC),即99%ERH在25°C时产生的EMC约为20%(干基)。大多数细菌难以在ERH低于95%的环境中生存。将来自相同来源的堆肥材料筛分为四个堆肥粒径(PS)范围,以评估其吸水性能:4.76毫米> PS_1> 3.36毫米> PS_2> 2.38毫米> PS_3> 2.00毫米> PS_4> 1.68毫米。根据等温线模型的拟合优度对观察到的数据进行了测试。比较了七个等温模型:(1)Langmuir; (2)Freundlich; (3)喝酒; (4)Brunauer,Emmett和Teller(BET); (5)n层的BET; (6)古根海姆,安德森,德布尔(GAB); (7)亨德森。与其他模型相比,Henderson模型提供了最佳拟合,这是通过对所测试的所有四个粒径范围(95%)的置信度由回归系数标准误差(A)和测定系数(r〜2)的最佳组合确定的间隔(CI)和预测间隔(PI)。然后,使用亨德森模型来测试等温线在粒径范围上的显着差异。四个测试的粒度范围彼此之间无显着差异(p <0.05),表明相似的水吸附行为。汇总并回归所有四个粒度范围的数据,将ERH维持在95%或以上的最低湿度为16.41%±2.68%(干基)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号