...
首页> 外文期刊>Indian Chemical Engineer Sections A & B >Biomethanation of Distillery Wastewaters in Fluidised-Bed Bioreactor and Mathematical Modelling
【24h】

Biomethanation of Distillery Wastewaters in Fluidised-Bed Bioreactor and Mathematical Modelling

机译:流化床生物反应器中酿酒废水的生物甲烷化及数学模型

获取原文
获取原文并翻译 | 示例
           

摘要

An anaerobic three-phase fluidised-bed reactor (FBR) was used to treat distillery wastewaters for biogas generation using actively digested aerobic sludge from a sewage plant. The optimum digestion time was 8 h and optimum initial pH of feed was 7.5. The optimum temperature of feed was 40°C, optimum feed flow was 14 L/min and maximum organic loading rate (OLR) was 39.513 kg COD m~(-3) h~(-1). The OLRs were calculated on the basis of chemical oxygen demand (COD) inlet in the bioreactor at different flow rates. The maximum methane (CH4) concentration was 63.56% (v/y) of the total biogas generation at optimum biomethanation process parameters. The maximum biogas yield rate was 0.835 m~3/kg COD m~(-3) h~(-1) with maximum CH4 yield rate (63.56% v/v) of 0.530 m~3/kg COD m~(-3) h~(-1) at optimum digestion parameters. The maximum COD and biological oxygen demand (BOD) reduction of the distillery wastewaters were 76.82% (w/w) and 81.65% (w/w), respectively, with maximum OLR of 39.513 kg COD m~(-3) h~(-1) at optimum conditions. The optimisation of these parameters enabled stable functioning of the process and allowed the application of high loading rates. This study deals with mathematical modelling of the experimental data on biomethanation and suggests model equations relating kinetic parameter (rate constant k) and maximum specific growth rate μ_(max) with respect to COD (substrate) removal. The mathematical modelling is also analysed for hydrodynamic pressure Ap vs. feed flow u and hydrodynamic pressure Δp with respect to CH4 gas yields.
机译:厌氧三相流化床反应器(FBR)用于处理酒厂废水,利用污水处理厂的主动消化好氧污泥来生产沼气。最佳消化时间为8小时,最佳进料初始pH为7.5。最佳进料温度为40°C,最佳进料流量为14 L / min,最大有机负载量(OLR)为39.513 kg COD m〜(-3)h〜(-1)。根据不同流量下生物反应器中的化学需氧量(COD)入口计算OLR。在最佳生物甲烷化工艺参数下,最大沼气产生量的最大甲烷(CH4)浓度为总沼气的63.56%(v / y)。最大沼气产量为0.835 m〜3 / kg COD m〜(-3)h〜(-1),最大CH4产率(63.56%v / v)为0.530 m〜3 / kg COD m〜(-3 h〜(-1)在最佳消化参数下。酒厂废水的最大COD和生物需氧量(BOD)减少分别为76.82%(w / w)和81.65%(w / w),最大OLR为39.513 kg COD m〜(-3)h〜( -1)在最佳条件下。这些参数的优化实现了过程的稳定运行,并允许高装载率的应用。这项研究涉及生物甲烷化实验数据的数学建模,并提出了有关动力学参数(速率常数k)和相对于COD(基质)去除的最大比生长率μ_(max)的模型方程式。还针对相对于CH 4气体产率的流体动力压力Ap与进料流量u和流体动力压力Δp进行了数学建模分析。

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