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            <Value value="Argo reference table 2"/>
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            <Value value="F.4f"/>
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            <Value value="%.4f"/>
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            <Value value="ppb"/>
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            <Value value="9.999999747378752E-5"/>
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            <Value value="%.4f"/>
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            <Value value="Concentration of coloured dissolved organic matter in sea water"/>
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            <Value value="Argo reference table 2"/>
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            <Value value="quality flag"/>
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            <Value value="F.4f"/>
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            <Value value="99999.0"/>
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        <Attribute name="units" type="String">
            <Value value="ppb"/>
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            <Value value="9.999999747378752E-5"/>
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            <Value value="%.4f"/>
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            <Value value="Contains the error on the adjusted values as determined by the delayed mode QC process"/>
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            <Value value="Argo reference table 3"/>
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            <Value value="List of parameters with calibration information"/>
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            <Value value="Comment applying to this parameter calibration"/>
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            <Value value="YYYYMMDDHHMISS"/>
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            <Value value="Date of calibration"/>
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            <Value value="Version/release of software which performed action"/>
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            <Value value="Reference of database"/>
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        <Value value="http://www.argodatamgt.org/Documentation"/>
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        <Value value="2023-02-08T16:01:25Z creation; 2026-04-23T03:15:27Z last update"/>
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    <Attribute name="title" type="String">
        <Value value="Argo float vertical profile"/>
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</Dataset>
  B-Argo profile                  3.1 1.2 1950010100000020230208160125202604230315272902857 2902857 PROVOR                          PROVOR                          CHINA ARGO PROJECT                                              CHINA ARGO PROJECT                                              FEI CHAI                                                        FEI CHAI                                                        PRES                                                                                                                                                                                                                                                                                                                                                                                                                                                            PRES                                                            FLUORESCENCE_CHLA                                               BETA_BACKSCATTERING700                                          FLUORESCENCE_CDOM                                               CHLA                                                            BBP700                                                          CDOM                                                                AAHZHZ0550_siobio006_270              0550_siobio006_270              2B  2B  R      RRRRARRRAP41305-17CH004                  P41305-17CH004                  V3.01                           V3.01                           841 841 11Ic@Ic@fsqF@fsqF@\wTd@\wTd@11GPS     GPS            A B  Primary sampling: averaged []                                                                                                                                                                                                                                   Secondary sampling: mixed []                                                                                                                                                                                                                                          ̽   ??ff&@  `@  @  @  @@  AA  0A  PAffnA  A  A33A  A  A  A  A  A  B  B  BB#Bff,B  4B  <B  DBKBffTBff\B  dB  lB  tB  |B  B  B33B  B  B  B  B33B  B  B  B  B  B  B̹B̽B  B  B  B33B33BB  B  B  B  B  BBBB  BB  C  CCC	C  C  CC  CfCfC  C  CC  C  C  !C#C  %C  'Cf(C  +C  -C  /C  1Cf2C5C  7C  9Cf:Cf<Cf>C  ACCC  EC  GC  IC  KCfLCfNC  QCSC  UC  WCfXC  [C]C  _C  aC  cC  eC  gC  iC  kC  mCoC  qC  sC  uCfvC  yC  {C  }C  C CC C C C C C C C C C3sC C͌C͌C͌C C3sC C C C CYC3sC͌CC C3sC3sCffCffCffC C C͌CCC͌C3sC3sC3sC͌C C D33DfD `Df
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C3!C"C#Cf$Cf%C'C(Cff)C *C3+C,C.C/Cff0Cff1C32C3C5C6Cff7C38C9C33;CL<C=C3>C  @CACffBC CCDCfEC33GCffHC3ICJCLCMCLNCLOC  PCfPC3QCRCffSCLTCUCVCfVCfWC3XC3YC ZC [CL\CL]C33^C33_C33`CaCbC  cCdCfdC  fCffC  hChCfiCjCfkClCfmCnCfoCfpC  rCfrC  tCuC  vCwCxC33yCzC33{C33|CL}CL~C C33C̀CLCfCYC3C3sCC͌Cf&C̅CLCfC3sCCC33C CffC3C͌CC CLC3C͌C33C C3sCf&C3CffC3CfC @Cf&CC C͌C C  CffC̷CLCfC͌CLC  C3C  Cf&C3sC3CCCf&C3CDfD D	DfDf&DLD DD33DͬD9D D !Dl$DfF'D )Df+D -D͌/D 1D 3D 5D7D3:D,<D @>D3S@DlBD DD͌FDHD JD3LDfFODͬQD33TD VDlYD9\D3^Df`DfbDdDfDfhD3kDLmD͌oD3qDf&tDyvDxDOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOG  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  #C  C  C  C  C  C  C  C  C  !C  #C  C  C  C  #C  C  C  C  C  !C  +C  C  C  C  C  C  C  C  C  C  C  C  C  C  C  "C  C  !C  "C  C  C  C  C  'C  C  C  C  C  C  C  C  C  C  C  2C  C  /C  C  C  C  C  C  C  $C  C  C  C  C  C  C  C  C  C  )C  C  $C  C  .C  C  C  C  C  C  C  C  C  C  C  C  :C  C  (C  C  C  C  C  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  |B  |B  |B  pB  pB  pB  hB  hB  `B  \B  \B  dB  `B  \B  `B  \B  \B  dB  `B  `B  `B  `B  `B  XB  `B  dB  `B  dB  `B  `B  `B  `B  \B  `B  `B  dB  `B  dB  `B  `B  `B  `B  `B  dB  \B  `B  hB  `B  `B  \B  `B  \B  pB  dB  `B  `B  `B  `B  `B  `B  `B  \B  `B  \B  \B  \B  dB  `B  `B  `B  `B  `B  dB  `B  dB  `B  `B  `B  `B  \B  `B  dB  `B  `B  `B  `B  dB  `B  `B  \B  \B  dB  dB  dB  dB  dB  dB  dB  dB  `B  dB  dB  dB  dB  dB  `B  `B  dB  `B  `B  `B  dB  `B  dB  dB  `B  lB  dB  dB  `B  dB  `B  `B  dB  `B  dB  dB  `B  dB  hB  `B  dB  dB  dB  dB  `B  dB  dB  hB  dB  dB  dB  dB  `B  dB  dB  dB  dB  `B  `B  dB  dB  dB  `B  dB  `B  dB  dB  dB  `B  dB  dB  hB  `B  dB  dB  hB  `B  `B  dB  dB  hB  `B  dB  `B  `B  dB  dB  dB  dB  dB  `B  `B  `B  dB  `B  dB  `B  `B  `B  `B  `B  `B  `B  dB  `B  `B  `B  `B  `B  dB  dB  `B                                                                                                                                                                                                                                                                                                                                                                                                                               0000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000OGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOG  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  C  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  iC  B  B  B  B  B  B  B  B  B  B  B  	C  B  B  B  B  B  B  B  B  B  B  B  0C  B  B  B  B  B  B  B  B  B  B  B  B  C  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  	C  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  C  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  C  B  B  B  B  B  B  B  B  C  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B                                                                                                                                                                                                                                                                                                                                                                                                                               0000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000OGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOGOG  lB  lB  lB  lB  lB  lB  lB  lB  lB  hB  lB  pB  lB  hB  hB  lB  pB  lB  lB  lB  lB  pB  lB  hB  lB  lB  lB  lB  lB  lB  lB  lB  lB  pB  lB  lB  lB  lB  pB  pB  lB  lB  lB  lB  pB  pB  lB  lB  lB  lB  lB  pB  lB  lB  lB  lB  lB  pB  lB  lB  pB  lB  lB  lB  pB  lB  pB  lB  lB  lB  lB  lB  pB  pB  lB  lB  hB  lB  lB  pB  lB  lB  lB  lB  lB  lB  lB  pB  lB  lB  lB  lB  lB  lB  lB  pB  pB  lB  lB  lB  pB  lB  lB  lB  lB  lB  lB  pB  lB  lB  pB  lB  lB  pB  lB  lB  pB  lB  pB  lB  lB  pB  pB  lB  lB  pB  lB  lB  lB  lB  lB  lB  lB  lB  lB  lB  lB  lB  lB  lB  pB  lB  lB  lB  pB  lB  lB  lB  lB  lB  pB  pB  lB  pB  pB  lB  hB  lB  lB  pB  lB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  pB  tB  pB  tB  pB  pB  tB  pB  pB  tB  pB  tB  tB  tB  tB  tB  tB  tB  tB  tB  pB  tB  tB  tB  tB  tB  tB  tB  tB  tB  tB  tB  tB  tB  tB  xB  tB  tB  tB  tB  tB  tB  xB  xB  xB  xB  tB  xB  xB  xB  |B  xB  xB  xB  |B  xB  xB  |B  xB  xB  |B  |B  |B  xB  xB  |B  |B  xB  |B  xB  |B  xB  |B  xB  |B  |B  |B  xB  |B  |B  |B  B  xB  |B  |B  |B  |B  |B  |B  |B  |B  |B  |B  |B  |B  |B  |B  |B  B  |B  |B  |B  |B  B  |B  B  B  |B  B  |B  |B  |B  xB  B  |B  |B  |B  B  |B  |B  |B  |B  |B  B  B  |B  |B  B  B  |B  B  |B  B  B  |B  |B  |B  B  |B  B  B  B  |B  |B  |B  B  B  B  B  B  B  |B  |B  |B  |B  B  B  B  |B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  |B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B  B 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                                                                                                                                                                                                                                                                                                                                                                                                                                                           PRES                                                            FLUORESCENCE_CHLA                                               BETA_BACKSCATTERING700                                          FLUORESCENCE_CDOM                                               CHLA                                                            BBP700                                                          CDOM                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                            CHLA_ADJUSTED = CHLA_NPQ for PRES in [0,ZMaxFluo], CHLA_ADJUSTED = ((FLUORESCENCE_CHLA-MEDIAN(PRELIM_DARK_CHLA))*SCALE_CHLA)/PHYSIO_RATIO otherwise                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                             CHLA_NPQ = [], ZMaxFluo = [], PRELIM_DARK_CHLA = [55,55,55,55,55], SCALE_CHLA = 0.0073, PHYSIO_RATIO = 1.5701                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                   CHLA real time adjustment (specified in http://dx.doi.org/10.13155/35385 and computed with MLD_LIMIT = 0.03, and following recommendations of Roesler et al., 2017 (https://doi.org/10.1002/lom3.10185))                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                  20260423031527                            HZ  HZ  HZ  HZ  HZ  HZ  ARFMARFMARGQARGQARGQARGQ                                                                                                                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