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This post was last edited by YongBu※YanQi on July 30, 2015, at 18:46. Fill-in-the-blank question: The explosion-proof membrane installed on the mixer serves to prevent excessive free chlorine in HCl gas from causing __________, along with the release of a large amount of heat. This leads to rapid expansion of the gas and a significant increase in pressure, which could damage weaker components within the system, such as __________ etc. Answer: Chloroacetylene, mixer cooler, acid pipeline for mixing and dehydration.
An explosion-proof membrane is installed on the mixer to prevent excessive free chlorine in the HCl gas from leading to the formation of chloroacetylene, as well as to avoid the release of large amounts of heat that could cause rapid expansion of the gas and an excessively high pressure, thereby damaging the weakest components in the system such as the mixer cooler and the acid drainage pipelines.
Chloroacetylene, cooler. ------------------------------------
An explosion-proof membrane is installed on the mixer to prevent excessive free chlorine in the HCl gas from leading to the formation of chloroacetylene, as well as to avoid the release of large amounts of heat that would cause the gas to expand rapidly and result in excessively high pressure, thereby damaging the weakest components in the system such as the mixer cooler and the acid drainage pipelines.
An explosion-proof membrane is installed on the mixer to prevent excessive free chlorine in the HCl gas from leading to the formation of chloroacetylene, as well as to avoid the release of large amounts of heat that could cause rapid expansion of the gas and an excessively high pressure, thereby damaging the weakest components in the system such as the mixer cooler and the acid drainage pipelines.
An explosion-proof membrane is installed on the mixer to prevent excessive free chlorine in the HCl gas from leading to the formation of chloroacetylene, as well as to avoid the release of large amounts of heat. This would cause the gas to expand rapidly, resulting in excessively high pressure that could damage the weakest components in the system, such as the mixer cooler and the acid pipelines used for mixing and dehydration.
An explosion-proof membrane is installed on the mixer to prevent excessive free chlorine in the HCl gas from leading to the formation of chloroacetylene, as well as to avoid the release of large amounts of heat that could cause rapid expansion of the gas and an excessive increase in pressure, thereby damaging the weakest components in the system such as the mixer cooler and the acid drainage pipelines.
An explosion-proof membrane is installed on the mixer to prevent excessive free chlorine in the HCl gas from leading to the formation of chloroacetylene, as well as to avoid the release of large amounts of heat that could cause the gas to expand rapidly and result in excessively high pressure, thereby damaging the weaker components of the system such as the mixer cooler and the acid drainage pipelines
To prevent too much free chlorine in the HCl gas from leading to the formation of chloroacetylene along with the release of large amounts of heat; this would cause the gas to expand rapidly, resulting in excessively high pressure that could damage the weakest parts of the system, such as the mixer coolers and the pipelines for acid separation
An explosion-proof membrane is installed on the mixer to prevent excessive free chlorine in the HCl gas from causing a large amount of heat to be generated; this leads to rapid expansion of the gas, resulting in excessively high pressure that could damage the weakest components in the system. It prevents too much free chlorine in the HCl gas from leading to the formation of chloroacetylene, which in turn generates a large amount of heat; this causes the gas to expand rapidly, resulting in excessively high pressure that can damage the weakest parts of the system, such as the mixer coolers and the acid removal pipelines.