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  • A1_L; A1a; A5_L; B5; biogeochemical signal; CTD; D5; D8; D9; DATE/TIME; Density, potential anomaly; dentrifier method; Depth, bottom/max; DEPTH, water; E3; E401; E405; E607; Event label; F1; H2; H6; H7; I6; KK1; LATITUDE; LE04a; LE10; LONGITUDE; LU60; LU65; N18-9; N20_11; N20_17; N20_18; N20-14; N20-15; N20-19; Nitrate, anomaly; Nitrate and Nitrite; Nitrate isotopes; Nitrite; Nitrite/Nitrate ratio; Oxygen; Oxygen, apparent utilization; P3; P5; Philippine Sea; PhiSea_LU60; PhiSea_LU65; PhiSea_N18-9; PhiSea_N20_11; PhiSea_N20_17; PhiSea_N20_18; PhiSea_N20-14; PhiSea_N20-15; PhiSea_N20-19; PhiSea_P3; PhiSea_P5; Phosphate; S504; Salinity; SCS_A1_L; SCS_A1a; SCS_A5_L; SCS_B5; SCS_D5; SCS_D8; SCS_D9; SCS_E3; SCS_E401; SCS_E405; SCS_E607; SCS_F1; SCS_H2; SCS_H6; SCS_H7; SCS_I6; SCS_KK1; SCS_LE04a; SCS_LE10; SCS_S504; Silicate; South China Sea; Technicon AA3 Auto-Analyzer; Temperature, water; Temperature, water, potential; Titration, Winkler; water exchange; western North Pacific; Δ(15-18); δ15N; δ15N, standard deviation; δ18O, standard deviation; δ18O, water  (1)
  • Chemical Engineering  (1)
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  • 1
    Publication Date: 2023-05-26
    Description: This dataset includes nitrate isotopes and relevant hydrographic and chemical parameters (temperature, salinity, nitrate, phosphate, dissolved oxygen, and so on) observed in the South China Sea basin and the adjoining western North Pacific Ocean during 2011 and 2014. Nitrate isotopes were measured by the denitrifier method. Nutrients were analyzed onboard using a Technicon AA3 Auto-Analyzer (Ban-Lube, GmbH). Dissolved oxygen (DO) was determined using the Winkler method. These data were used to elucidate nitrate dynamics in these regions.
    Keywords: A1_L; A1a; A5_L; B5; biogeochemical signal; CTD; D5; D8; D9; DATE/TIME; Density, potential anomaly; dentrifier method; Depth, bottom/max; DEPTH, water; E3; E401; E405; E607; Event label; F1; H2; H6; H7; I6; KK1; LATITUDE; LE04a; LE10; LONGITUDE; LU60; LU65; N18-9; N20_11; N20_17; N20_18; N20-14; N20-15; N20-19; Nitrate, anomaly; Nitrate and Nitrite; Nitrate isotopes; Nitrite; Nitrite/Nitrate ratio; Oxygen; Oxygen, apparent utilization; P3; P5; Philippine Sea; PhiSea_LU60; PhiSea_LU65; PhiSea_N18-9; PhiSea_N20_11; PhiSea_N20_17; PhiSea_N20_18; PhiSea_N20-14; PhiSea_N20-15; PhiSea_N20-19; PhiSea_P3; PhiSea_P5; Phosphate; S504; Salinity; SCS_A1_L; SCS_A1a; SCS_A5_L; SCS_B5; SCS_D5; SCS_D8; SCS_D9; SCS_E3; SCS_E401; SCS_E405; SCS_E607; SCS_F1; SCS_H2; SCS_H6; SCS_H7; SCS_I6; SCS_KK1; SCS_LE04a; SCS_LE10; SCS_S504; Silicate; South China Sea; Technicon AA3 Auto-Analyzer; Temperature, water; Temperature, water, potential; Titration, Winkler; water exchange; western North Pacific; Δ(15-18); δ15N; δ15N, standard deviation; δ18O, standard deviation; δ18O, water
    Type: Dataset
    Format: text/tab-separated-values, 7804 data points
    Location Call Number Expected Availability
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  • 2
    Electronic Resource
    Electronic Resource
    Hoboken, NJ : Wiley-Blackwell
    AIChE Journal 41 (1995), S. 1500-1512 
    ISSN: 0001-1541
    Keywords: Chemistry ; Chemical Engineering
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology , Process Engineering, Biotechnology, Nutrition Technology
    Notes: A quantitative model for scrap tire pyrolysis in a batch scale reactor developed comprises the following basic phenomena: conduction inside tire particles; conduction, convection, and radiation between the feedstock particles or between the fluids and the particles; tire pyrolysis reaction; exothermicity and endothermicity caused by tire decomposition and volatilization; and the variation of the composition and the thermal properties of tire particles. This model was used to predict the transient temperature and density distributions in the bed of particles, the volatile product evolution rate, the mass change, the energy consumption during the pyrolysis process, and the pressure histoiy in a tire pyrolysis reactor with a load of 1 kg. The model predictions agree well with independent experimental data.
    Additional Material: 15 Ill.
    Type of Medium: Electronic Resource
    Location Call Number Expected Availability
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