same file as V008, with addition of columns 82 to 90. date/time was incorrectly reported as UTC in the previous version. this is now correctly reported as UTC+5 units for latitude and longitude are now mentionned column 1 : Cruise Column 2 : Station NAMESTATION_CTDNUMBER Column 3 : Type B=Bottle (ODV requirement) Column 4 : Date and time (UTC+5) Column 5 : Latitude [degrees_north] (unit are degree decimal) Column 6 : Longitude [degrees_east] (unit are degree decimal) Column 7 : Bottom depth (m) Column 8 : niskin number Column 9 : pressure (db) Column 10 : Temperature (°C) Column 11 : potential temperature (°C) Column 12 : salinity Column 13 : density anomaly Column 14 : dioxygene concentration (mL/L) Column 15 : dioxygene concentration (mmol/kg) Column 16 : fluorescence (mg/m-3), uncorrected value. column 17 : corrected fluorescence (mg/m-3) see below for method. column 18 : quality flag of fluorescence : column 19 : nitrate concentration from ISUS sensor (µmol/l) column 20 : calibrated nitrate concentration from ISUS sensor (µmol/L) see below for method column 21 : quality flag for calibrated nitrate concentration column 22 : fluroescence CDOM (not calibrated). column 23 : CPAR column 24 : Photosynthetic available radiation (PAR) UNIT column 25 : Surface photosynthetic radiation (SPAR) UNIT column 26 : transmission (%) column 27 : particulate organic carbon (POC) derived from transmission (µmol/L) see below for method column 28 : quality flag column 29 : phosphate (µmol/l) column 30 : silic acid (µmol/l) column 31 : nitrite (µmol/l) column 32 : nitrate (µmol/l) column 33 : ammonium (µmol/l) column 34 : Dissolved organic Phosphorus [µmol/l] column 35 : Dissolved organic nitrogen [µmol/l] column 36 : Chlorophyll c3 [ug/l] column 37 : Chlorophyll c1+c2 [ug/l] column 38 : Sum Chlorophyllid a [ug/l] column 39 : Peridinin [ug/l] column 40 : Sum Phaeophorbid a [ug/l] column 41 : 19'-Butanoyloxyfucoxanthin [ug/l] column 42 : Fucoxanthin [ug/l] column 43 : Neoxanthin [ug/l] column 44 : Prasinoxanthin [ug/l] column 45 : Violaxanthin [ug/l] column 46 : 19'-Hexanoyloxyfucoxanthin [ug/l] column 47 : Diadinoxanthin [ug/l] column 48 : Alloxanthin [ug/l] column 49 : Diatoxanthin [ug/l] column 50 : Zeaxanthin [ug/l] column 51 : Lutein [ug/l] column 52 : Bacteriochlorophyll a [ug/l] column 53 : Chlorophyll b [ug/l] column 54 : Chlorophyll a [ug/l] column 55 : Total Chlorophyll a [ug/l] column 56 : Sum Phaeophytin a [ug/l] column 57 : Sum Carotenes [ug/l] column 58 : bacteria cellular abundance [cell/ml] column 59 : % of bacteria with High Nucleic Acid content column 60 : Synechococcus abundance [cell/ml] column 61 : Picoeucaryotes abundance [cell/ml] column 62 : Nanoeucaryotes abundance [cell/ml] column 63 : Alkalinity [µmol/kg] column 64 : DIC [µmol/kg] column 65 : heterotrophic nanoflagellates [HNF tot/mL] column 66 : low DNA virus [LDNA virus/mL] column 67 : high DNA virus [HDNA virus/mL] column 68 : total virus [virusTOT/mL] column 69 : Bacterial production [BP ngC/L/h] column 70 : standard deviation on triplicate Bacterial production [sd BP ngC/L/h] column 71 : particulate organic carbon [POC µmol/L] column 72 : particulate organic nitrogen [PON µmol/L] column 73 : particulate organic phosphorus [POP µmol/L] column 74 : transparent exopolymer [mg eq GX] column 75 : Biogenic Silica -fraction >20 µm (µmol/L) column 76 : Lithogenic Silica -fraction > 20µm (µmol/L) column 78 : Biogenic Silica-20µm < fraction< 0.8µm (µmol/L) column 79 : Lithogenic Silica -20µm < fraction< 0.8µm (µmol/L) column 80 : Total Biogenic Silica -fraction > 0.8µm (µmol/L) column 81 : Total Lithogenic Silica -fraction > 0.8µm (µmol/L) column 82 : Fluorescence_calib_2015 (mg/m3) see below for method. column 83 : dinoflagelates(cell/L) column 84 : Naked ciliates (cell/L) column 85 : Tintinnids(cell/L) column 86 : Total ciliate (cell/L) column 87 : Dinoflagellate biomass (ngC/L) Conversion factor from biovolume to biomass for ciliates:190 fg C µm–3 for ciliates (Putt and Stoecker, 1989) Putt, M. and Stoecker, D. K. (1989) ciliates from estuarine and coastal waters. Limnol. Oceanogr., 34, 1097–1103. column 88 : Naked ciliate biomass (ngC/L)Conversion factor from biovolume to biomass for dinoflagellates, 0.760xbiovolume^0.819 pg C µm-3 (Stoecker et al., 1994) column 89 : tintinnid biomass (ngC/L) column 90 : total ciliate biomass (ngC/L) ***************************************************** calibration of CTD sensors ***************************************************** CTD-Fluorescence was calibrated by comparison with in situ measurement of total chlorophyll a (µg/L) from Niskin bottles. A regression was used to convert the fluorescence values to an actual chl-a concentration. As daylight fluorescence profiles are known to be affected by quenching, only values collected during night (18:00 pm to 06:00 am) were included in the analysis to determine the regression equation. The regression equation applied is: Fluorescence_calib=Fluorescence*1.2935+0.2886 NOTE : the linear calibration produce a significant offset. a new new non linear calibration has been processed. column 81 and below for methode CTD-Nitrates (upoly0) was calibrated by comparison with in situ measurement of Nitrates (µmol/L) from Niskin bottles. The following regression was used to convert the upoly0 values to an actual Nitrates concentration: Nitrates_calib=upoly0*0.8958779+3.94843938 Particulate Organic Carbon (POC) The transmissometer (Xmiss) has been initially calibrated to give 0 to 100% full scale deflection. Data from CTD were compared to in situ measurement of POC from Niskin bottles. The following regression was used to convert the Xmiss (%) values to an actual POC concentration (µmol/L): POC_calib=LN(Xmiss/100)*(-100.74)+0.6401 Fluorescence_code (column 18), Nitrates_code (column 22), and POC_code (column 28) contain quality code of the respective variables, with 0=validated data and 9=wrong data. NEW calibration of flurorescence sensor: using florescence and total chlorophyll a measured by HPLC, two different calibration were produced: for the stations TEW-1, TEW-7, TEW-8 and F-L and F-S the equation is : fluo_cor=2.954 * fluo^0.843 for all other stations the equation is : fluo_cor=1.545 * fluo^0.565