A large-scale coal gasification plant is producing synthesis gas at a temperature of 650 K and a pressure of 6.3 MPa. The rate of production from this process is 18000 mol/s of H2. The hydrogen is produced for use in a Phosphoric-Acid Fuel cell, which operates at a temperature of 226.2 °C at the same pressure. Determine the heat transferred from the cooling of hydrogen in MJ/s. Give your answer with 1 decimal point with correct signs (use the correct final and initial temperatures in the enthalpy equation). Specific heat capacity of H2 gas is 0.032 kJ/mol/C. Temperature conversion: T(K) = T(C) + 273 ΔΗ mC„AT

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A large-scale coal gasification plant is producing synthesis gas at a temperature of
650 K and a pressure of 6.3 MPa. The rate of production from this process is
18000 mol/s of H2. The hydrogen is produced for use in a Phosphoric-Acid Fuel
cell, which operates at a temperature of 226.2 °C at the same pressure. Determine
the heat transferred from the cooling of hydrogen in MJ/s. Give your answer with 1
decimal point with correct signs (use the correct final and initial temperatures in
the enthalpy equation).
Specific heat capacity of H2 gas is 0.032 kļ/mol/C.
Temperature conversion: T(K) = T(C) + 273
ΔΗ
= mC,AT
Ξ
Transcribed Image Text:A large-scale coal gasification plant is producing synthesis gas at a temperature of 650 K and a pressure of 6.3 MPa. The rate of production from this process is 18000 mol/s of H2. The hydrogen is produced for use in a Phosphoric-Acid Fuel cell, which operates at a temperature of 226.2 °C at the same pressure. Determine the heat transferred from the cooling of hydrogen in MJ/s. Give your answer with 1 decimal point with correct signs (use the correct final and initial temperatures in the enthalpy equation). Specific heat capacity of H2 gas is 0.032 kļ/mol/C. Temperature conversion: T(K) = T(C) + 273 ΔΗ = mC,AT Ξ
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