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  <titleInfo>
    <nonSort>A </nonSort>
    <title>kinetic design approach to multistage aerated lagoons</title>
  </titleInfo>
  <name type="personal">
    <namePart>Hum, Ke-siong Eddie</namePart>
    <role>
      <roleTerm authority="marcrelator" type="text">creator</roleTerm>
    </role>
  </name>
  <name type="personal">
    <namePart>Nguyen, Cong Thanh</namePart>
    <role>
      <roleTerm type="text">Chairperson</roleTerm>
    </role>
  </name>
  <name type="personal">
    <namePart>Orth, H. M.</namePart>
    <role>
      <roleTerm type="text">Examination Committee</roleTerm>
    </role>
  </name>
  <name type="personal">
    <namePart>Chongrak Polprasert</namePart>
    <role>
      <roleTerm type="text">Examination Committee</roleTerm>
    </role>
  </name>
  <name type="personal">
    <namePart>Vongvisessomjai, S.</namePart>
    <role>
      <roleTerm type="text">Examination Committee</roleTerm>
    </role>
  </name>
  <name type="corporate">
    <namePart>The King's (Royal Thai Government) Scholarship</namePart>
    <role>
      <roleTerm type="text">Scholarship Donor</roleTerm>
    </role>
  </name>
  <typeOfResource>text</typeOfResource>
  <genre authority="marc">series</genre>
  <genre authority="marc">technical report</genre>
  <originInfo>
    <place>
      <placeTerm type="code" authority="marccountry">th</placeTerm>
    </place>
    <place>
      <placeTerm type="text">Bangkok</placeTerm>
    </place>
    <publisher>Asian Institute of Technology</publisher>
    <dateIssued>1983</dateIssued>
    <issuance>continuing</issuance>
  </originInfo>
  <language>
    <languageTerm authority="iso639-2b" type="code">eng</languageTerm>
  </language>
  <physicalDescription>
    <extent>159 leaves : ill.</extent>
  </physicalDescription>
  <abstract>Multistage lagoons operated at dual-power level have many advantages  over a single system. Mathematical formulations which have been proposed  for the design of multistage aerated lagoons are empirical in nature and are  the representation of the overall performance of the system with no conside-  ration of the internal interactions which lead to the overall system beha-  viour.  In this study, a kinetic design approach which is based on established  mechanisms of substrate removal and growth was developed to represent the  steady state responses in multistage aerated lagoons. Data obtained from the  laboratory are presented to verify the validity of the proposed formulations.  The formulae presented here require the determination of nine parameter  values. The Newton-Raphson method coupled with sensitivity analysis was  used to optimize the values of the parameters. The dynamic nature of the  batch process with well defined initial conditions provided the data for the  identification of the parameters. The proposed formulations were also com-  pared with the well-known Monod model including endogeneous respiration  constant, kd. It was found that the proposed formulae gave a better des-  cription of substrate removal and growth. The proposed model was able to  explain quantitatively the three phases of growth of acclimated micro-  organisms. </abstract>
  <note>A dissertation submitted in partial fulfillment of the requirements for the degree of Doctor of Technical Science</note>
  <note>Thesis (Ph.D.) - Asian Institute of Technology</note>
  <subject authority="lcsh">
    <topic>Carbon monoxide</topic>
    <topic>Environmental aspects</topic>
  </subject>
  <relatedItem type="series">
    <titleInfo>
      <title>Dissertation ; no. EV-83-1</title>
    </titleInfo>
    <name type="corporate">
      <namePart>Asian Institute of Technology.</namePart>
      <namePart/>
    </name>
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    <recordCreationDate encoding="marc">170699</recordCreationDate>
    <recordChangeDate encoding="iso8601">20260818144926.0</recordChangeDate>
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