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Determination of biodegradation kinetics of select aromatic hydrocarbons using extant respirometry.

机译:使用现存的呼吸测定法测定某些芳香烃的生物降解动力学。

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摘要

Information on biodegradation kinetics is important for the design and operation of wastewater treatment systems. An extant respirometry test method was used to measure the kinetic parameters of activated sludge biomass degrading the aromatic hydrocarbons benzene, toluene and xylene.; The activated sludge biomass used for respirometric testing was obtained from a sequencing batch reactor. The reactor was primarily fed primary clarifier effluent as an organic source and target aromatic hydrocarbon substrates were fed to the reactor during respirometric testing to acclimate the seed biomass. A series of tests were conducted using each substrate during the testing period. The kinetic parameters for benzene and xylene were determined but there was no measurable response of the biomass to toluene. Subsequently, toluene was mixed with ethanol to determine its biodegradability in presence of ethanol. The kinetic parameters for the mixture of toluene and ethanol were determined as chemical oxygen demand (COD) mixtures of 80, 60, 40, and 20% toluene. The kinetic parameters found from each respirometric testing were yield (Y), half saturation coefficient (Ks), maximum specific growth rate (mu m) and maximum rate of substrate utilization (qm).; Benzene was found to have mean values for yield (Y), half saturation coefficient (Ks) and maximum specific growth rate (mum) of 0.99 mg COD/mg COD, 2.53 mg SCOD/L and 0.75/hr respectively. The 95% lower confidence interval (LCL) of Y, Ks and mum were 0.98 mg COD/mg COD, 1.75 mg SCOD/L and 0.59/hr respectively. The 95% upper confidence interval (UCL) of Y, Ks and mum were 0.99 mg COD/mg COD, 3.31 mg SCOD/L and 0.91/hr respectively.; Toluene (80%) + Ethanol (20%) was found to have mean values for yield (Y), half saturation coefficient (Ks) and maximum specific growth rate (mum) of 0.96 mg COD/mg COD, 0.88 mg SCOD/L and 1.00/hr respectively. The 95% lower confidence interval (LCL) of Y, Ks and mum were 0.95mg COD/mg COD, 0.85 mg SCOD/L and 0.74/hr respectively. The 95% upper confidence interval (UCL) of Y, Ks and mu m were 0.97 mg COD/mg COD, 0.91 mg SCOD/L and 1.26/hr respectively.; Xylene was found to have mean values for yield (Y), half saturation coefficient (Ks) and maximum specific growth rate (mum) of 0.97 mg COD/mg COD, 0.40 mg SCOD/L and 0.19/hr respectively. The 95% lower confidence interval (LCL) of Y, Ks and mum were 0.95 mg COD/mg COD, 0.28 mg SCOD/L and 0.17/hr respectively. The 95% upper confidence interval (UCL) of Y, Ks and mum were 0.98 mg COD/mg COD, 0.52 mg SCOD/L and 0.21/hr respectively.; The mean yield values for benzene, toluene (80%) + ethanol (20%) and xylene were nearly the same. Typical municipal wastewater has yield value lower than those of substrates tested in the laboratory. The Ks value of typical municipal wastewater was substantially higher than those of substrates tested in the laboratory. Benzene and toluene (80%) + ethanol (20%) exhibited higher mum values than those of typical municipal wastewater. Some of xylene mum values were in the range of typical municipal wastewater.
机译:有关生物降解动力学的信息对于废水处理系统的设计和操作很重要。用现存的呼吸测定法测量活性污泥生物量降解芳烃苯,甲苯和二甲苯的动力学参数。用于呼吸测定的活性污泥生物质从定序分批反应器中获得。首先在反应器测试期间向反应器中添加一级澄清池出水作为有机源,并将目标芳香烃底物加入到反应器中以适应种子生物量。在测试期间,使用每种基材进行了一系列测试。确定了苯和二甲苯的动力学参数,但是没有可测量的生物量对甲苯的响应。随后,将甲苯与乙醇混合以测定在乙醇存在下的生物降解性。甲苯和乙醇混合物的动力学参数确定为80%,60%,40%和20%甲苯的化学需氧量(COD)混合物。每次呼吸测定的动力学参数是产量(Y),半饱和系数(Ks),最大比生长速率(μm)和最大底物利用率(qm)。苯的收率(Y),半饱和系数(Ks)和最大比生长率(mum)的平均值分别为0.99 mg COD / mg COD,2.53 mg SCOD / L和0.75 / hr。 Y,Ks和妈妈的95%低置信区间(LCL)分别为0.98 mg COD / mg COD,1.75 mg SCOD / L和0.59 / hr。 Y,Ks和妈妈的95%最高置信区间(UCL)分别为0.99 mg COD / mg COD,3.31 mg SCOD / L和0.91 / hr。发现甲苯(80%)+乙醇(20%)的平均值(Y),半饱和系数(Ks)和最大比生长速率(mum)的平均值为0.96 mg COD / mg COD,0.88 mg SCOD / L和1.00 / hr。 Y,Ks和妈妈的95%低置信区间(LCL)分别为0.95mg COD / mg COD,0.85mg SCOD / L和0.74 / hr。 Y,Ks和μm的95%上限置信区间(UCL)分别为0.97 mg COD / mg COD,0.91 mg SCOD / L和1.26 / hr。发现二甲苯具有0.97mg COD / mg COD,0.40mg SCOD / L和0.19 / hr的平均值(Y),半饱和系数(Ks)和最大比生长速率(μm)的平均值。 Y,Ks和妈妈的95%低置信区间(LCL)分别为0.95 mg COD / mg COD,0.28 mg SCOD / L和0.17 / hr。 Y,Ks和妈妈的95%上限置信区间(UCL)分别为0.98 mg COD / mg COD,0.52 mg SCOD / L和0.21 / hr。苯,甲苯(80%)+乙醇(20%)和二甲苯的平均产率值几乎相同。典型的市政废水的产值低于实验室测试的底物。典型的市政废水的Ks值大大高于实验室中测试的底物的Ks值。苯和甲苯(80%)+乙醇(20%)的妈妈值高于典型的城市废水。二甲苯的某些值在典型的城市废水范围内。

著录项

  • 作者

    Panta, Nawaraj.;

  • 作者单位

    South Dakota State University.;

  • 授予单位 South Dakota State University.;
  • 学科 Environmental Sciences.; Engineering Environmental.
  • 学位 M.S.
  • 年度 2007
  • 页码 165 p.
  • 总页数 165
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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