Thread Content
What is the impact of H2 in the process gas of the exhaust gas purification system on the operation of the quench tower? Answer: The purpose of the exhaust gas purification reactor is to reduce all of the S and SO2 in the exhaust gas to H2S. If the exhaust gas containing unreacted S and SO2 enters the quench tower, sulfur accumulation in the quench water will increase, leading to clogging of the packing layer in the quench tower. Additionally, SO2 dissolves in the quench water, increasing its acidity and causing severe corrosion to the equipment and pipelines. To ensure that S and SO2 are completely reduced, it is necessary to maintain a H2 concentration in the exhaust gas after the quench tower at above 2% (V).
The purpose of the exhaust gas purification reactor is to reduce all of the S and SO2 in the exhaust gas to H2S. If exhaust gas in which S and SO2 have not been completely reduced to H2S enters the quench tower, sulfur accumulation in the quench water will increase
The purpose of the exhaust gas purification reactor is to reduce all of the S and SO2 in the exhaust gas to H2S. If the exhaust gas containing unreacted S and SO2 enters the quench tower, sulfur accumulation in the quench water will increase, leading to clogging of the packing layer in the quench tower. Additionally, SO2 dissolves in the quench water, increasing its acidity and causing severe corrosion to the equipment and pipelines. To ensure that S and SO2 are completely reduced, it is necessary to maintain a H2 concentration in the exhaust gas after the quench tower at over 2% (V).
The purpose of the exhaust gas purification reactor is to reduce all of the S and SO2 in the exhaust gas to H2S. If the exhaust gas containing unreacted S and SO2 enters the quench tower, sulfur accumulation in the quench water will increase, leading to clogging of the packing layer in the quench tower. Additionally, SO2 dissolves in the quench water, increasing its acidity and causing severe corrosion to the equipment and pipelines. To ensure that S and SO2 are completely reduced, it is necessary to maintain a H2 concentration in the exhaust gas after the quench tower at over 2% (V).
Answer: The purpose of the exhaust gas purification reactor is to reduce all of the S and SO2 in the exhaust gas to H2S. If exhaust gas containing unreacted S and SO2 enters the quench tower, sulfur accumulation in the quench water will increase, leading to clogging of the packing layer in the quench tower
Answer: The purpose of the exhaust gas purification reactor is to reduce all of the S and SO2 in the exhaust gas to H2S. If exhaust gas containing unreacted S and SO2 enters the quench tower, sulfur accumulation in the quench water will increase, leading to clogging of the packing layer in the quench tower
The purpose of the exhaust gas purification reactor is to reduce all of the S and SO2 in the exhaust gas to H2S. If the exhaust gas containing unreacted S and SO2 enters the quench tower, sulfur accumulation in the quench water will increase, leading to clogging of the packing layer in the quench tower. Additionally, SO2 dissolves in the quench water, increasing its acidity and causing severe corrosion to the equipment and pipelines. To ensure that S and SO2 are completely reduced, it is necessary to maintain a H2 concentration in the exhaust gas after the quench tower at above 2% (V)
Is the exhaust gas purification reactor here the same as the hydrogenation reactor?
The purpose of the exhaust gas purification reactor is to reduce all of the S and SO2 in the exhaust gas to H2S. If the exhaust gas containing unreacted S and SO2 enters the quench tower, sulfur accumulation in the quench water will increase, leading to clogging of the packing layer in the quench tower. Additionally, SO2 dissolves in the quench water, increasing its acidity and causing severe corrosion to the equipment and pipelines. To ensure that S and SO2 are completely reduced, it is necessary to maintain a H2 concentration in the exhaust gas after the quench tower at over 2% (V).