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3.jpg Participation: Prize of 5 Wealth; Correct answer: Reward of 10 wealth points ; Note: This post is valid for 48 hours. Question: What is the function of the acetylene hydrogenation reactor in the (DMTO) olefin separation unit? The function of the acetylene hydrogenation reactor is to remove the acetylene component from ethylene in the presence of a catalyst, thereby reducing the acetylene content in the ethylene product to meet the requirements of downstream processing units. The acetylene hydrogenation reactor is located after the deethanizer and before the ethylene distillation tower. The acetylene hydrogenation reactor is a gas-solid heterogeneous reaction reactor. It is a single-layer insulated fixed-bed reactor that consists of a shell, internal components, catalyst, sieve screens, and inert ceramic balls. The reactor has a simple structure, low cost, and high space utilization efficiency. Note: The answers will be announced automatically in two days!
Answer: Its function is to remove acetylene from the overhead product of the deethanization distillation column in the recovery system, so as to meet the quality requirements regarding acetylene concentration for the target products of the ethylene plant.
The acetylene hydrogenation reactor unit is an important device in the recovery system of an ethylene plant; its function is to convert acetylene present in the C2 fraction into ethylene and ethane through hydrogenation. Its proper operation directly affects the purity and yield of ethylene products.
Its function is to remove acetylene from the overhead product of the deethanization distillation column in the recovery system, in order to meet the quality requirements regarding acetylene concentration for the target products of the ethylene plant
What is the function of the acetylene hydrogenation reactor in the olefin separation unit? Answer: The function of the acetylene hydrogenation reactor is to remove the acetylene component from ethylene in the presence of a catalyst, thereby reducing the acetylene content in the ethylene product to meet the requirements of downstream processing units. The acetylene hydrogenation reactor is located after the deethanizer and before the ethylene distillation tower. The acetylene hydrogenation reactor is a gas-solid heterogeneous reaction reactor. It is a single-layer insulated fixed-bed reactor that consists of a shell, internal components, catalyst, sieve screens, and inert ceramic balls. The reactor has a simple structure, low cost, and high space utilization efficiency.
What is the function of the acetylene hydrogenation reactor in the olefin separation unit? Answer: The function of the acetylene hydrogenation reactor is to remove the acetylene component from ethylene in the presence of a catalyst, thereby reducing the acetylene content in the ethylene product to meet the requirements of downstream processing units. The acetylene hydrogenation reactor is located after the deethanizer and before the ethylene distillation tower. The acetylene hydrogenation reactor is a gas-solid heterogeneous reaction reactor, and it is a single-layer insulated fixed-bed reactor.
The acetylene hydrogenation reactor unit is an important device in the recovery system of an ethylene plant; its function is to convert acetylene present in the C2 fraction into ethylene and ethane through hydrogenation.
Its function is to remove acetylene from the overhead product of the deethanization distillation column in the recovery system, in order to meet the quality requirements regarding acetylene concentration for the target products of the ethylene plant.
The function of the acetylene hydrogenation reactor is to remove the acetylene component from ethylene in the presence of a catalyst, thereby reducing the acetylene content in the ethylene product to meet the requirements of downstream processing units. The acetylene hydrogenation reactor is located after the deethanizer and before the ethylene distillation tower. The acetylene hydrogenation reactor is a gas-solid heterogeneous reaction reactor. It is a single-layer insulated fixed-bed reactor that consists of a shell, internal components, catalyst, screens, and inert ceramic balls. The reactor has a simple structure, low cost, and high space utilization efficiency