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Methanol Purification Version – One Question per Day 20200306

2020-03-06View Original

Thread Content

What are the components of the inert gases in the circulating gas? What are the impacts on synthetic methanol? Answer: The inert gases are CH4, N2, and Ar. Inert gas components do not participate in the synthetic reaction, but they affect the reaction rate. Too high an inert gas content reduces the reaction rate, increasing the energy consumption per unit of output produced ; To maintain a low inert gas content, the vent volume increases, resulting in greater loss of useful gas. Generally speaking, the appropriate level of inert gas content depends on specific circumstances, and it is also one of the means used to adjust operating conditions; at the beginning of catalyst use, when its activity is high, a higher level of inert gas content can be tolerated ; In the later stages of catalyst use, the inert gas content is generally kept at a low level. If high yield is the goal, the inert gas content can be kept low; if low consumption is the goal, a higher inert gas content can be maintained.
Reply #22020-03-06
Inert gases include CH4, N2, and Ar. Inert gas components do not participate in the synthetic reaction, but they affect the reaction rate. Too high an inert gas content reduces the reaction rate
Reply #32020-03-06
Inert gases include methane, nitrogen, and argon. Inert gas components do not participate in the synthetic reaction; they affect the reaction rate. A high content of inert gases reduces the reaction rate, thereby increasing the energy consumption required to produce a given amount of product ; To maintain a low inert gas content, the vent volume increases, resulting in greater loss of useful gas. Generally speaking, the appropriate level of inert gas content depends on specific circumstances, and it is also one of the means used to adjust operating conditions. At the beginning of catalyst use, when its activity is high, a higher level of inert gas can be tolerated; later in the catalyst’s life cycle, a lower level of inert gas is usually maintained. If the goal is high productivity, a lower level of inert gas can be used, while if the goal is low consumption, a higher level of inert gas can be maintained.
Reply #42020-03-06
Inert gases include methane, nitrogen, and argon. Inert gas components do not participate in the synthetic reaction; they affect the reaction rate. A high content of inert gases reduces the reaction rate, thereby increasing the energy consumption required to produce a given amount of product ; To maintain a low inert gas content, the vent volume increases, resulting in greater loss of useful gas. Generally speaking, the appropriate level of inert gas content depends on specific circumstances, and it is also one of the means used to adjust operating conditions. At the beginning of catalyst use, when its activity is high, a higher level of inert gas can be tolerated; later in the catalyst’s life cycle, a lower level of inert gas is usually maintained. If the goal is high productivity, a lower level of inert gas can be used, while if the goal is low consumption, a higher level of inert gas can be maintained.
Reply #52020-03-06
Inert gases include CH4, N2, and Ar. Inert gas components do not participate in the synthetic reaction, but they affect the reaction rate. Too high an inert gas content reduces the reaction rate, increasing the energy consumption per unit of output produced ; To maintain a low inert gas content, the vent volume increases, resulting in greater loss of useful gas. Generally speaking, the appropriate level of inert gas content depends on specific circumstances, and it is also one of the means used to adjust operating conditions; at the beginning of catalyst use, when its activity is high, a higher level of inert gas content can be tolerated ; In the later stages of catalyst use, the inert gas content is generally kept at a low level. If high yield is the goal, the inert gas content can be lower; if low consumption is the goal, a higher inert gas content can be maintained
Reply #62020-03-06
Inert gases include CH4, N2, and Ar. Inert gas components do not participate in the synthetic reaction, but they affect the reaction rate. Too high an inert gas content reduces the reaction rate, increasing the energy consumption per unit of output produced ; To maintain a low inert gas content, the vent volume increases, resulting in greater loss of useful gas. Generally speaking, the appropriate level of inert gas content depends on specific circumstances, and it is also one of the means used to adjust operating conditions; at the beginning of catalyst use, when its activity is high, a higher level of inert gas content can be tolerated ; In the later stages of catalyst use, the inert gas content is generally kept at a low level. If high yield is the goal, the inert gas content can be kept low; if low consumption is the goal, a higher inert gas content can be maintained.
Reply #72020-03-06
Inert gases include methane, nitrogen, and argon. Inert gas components do not participate in the reaction, but they affect the reaction rate. The high content of inert gases reduces the reaction rate and increases power consumption at the same time.
Reply #82020-03-06
Inert gases include methane, nitrogen, and argon. Inert gas components do not participate in the synthetic reaction; they affect the reaction rate. A high content of inert gases reduces the reaction rate, thereby increasing the energy consumption required to produce a given amount of product ; To maintain a low inert gas content, the vent volume increases, resulting in greater loss of useful gas. Generally speaking, the appropriate level of inert gas content depends on specific circumstances, and it is also one of the means used to adjust operating conditions. At the beginning of catalyst use, when its activity is high, a higher level of inert gas can be tolerated; later in the catalyst’s life cycle, a lower level of inert gas is usually maintained. If the goal is high productivity, a lower level of inert gas can be used, while if the goal is low consumption, a higher level of inert gas can be maintained.
Reply #92020-03-06
Inert gases include methane, nitrogen, and argon. Inert gas components do not participate in the synthetic reaction; they affect the reaction rate. A high content of inert gases reduces the reaction rate, thereby increasing the energy consumption required to produce a given amount of product ; To maintain a low inert gas content, the vent volume increases, resulting in greater loss of useful gas. Generally speaking, the appropriate level of inert gas content depends on specific circumstances, and it is also one of the means used to adjust operating conditions. At the beginning of catalyst use, when its activity is high, a higher level of inert gas can be tolerated; later in the catalyst’s life cycle, a lower level of inert gas is usually maintained. If the goal is high productivity, a lower level of inert gas can be used, while if the goal is low consumption, a higher level of inert gas can be maintained.
Reply #102020-03-06
Inert gases include N2 and Ar. Inert gas components do not participate in the synthetic reaction, but they affect the reaction rate. Too high an inert gas content reduces the reaction rate
Reply #112020-03-06
Inert gases include methane, nitrogen, and argon. Inert gas components do not participate in the synthetic reaction; they affect the reaction rate. A high content of inert gases reduces the reaction rate, thereby increasing the energy consumption required to produce a given amount of product ; To maintain a low inert gas content, the vent volume increases, resulting in greater loss of useful gas. Generally speaking, the appropriate level of inert gas content depends on specific circumstances, and it is also one of the means used to adjust operating conditions. At the beginning of catalyst use, when its activity is high, a higher level of inert gas can be tolerated; later in the catalyst’s life cycle, a lower level of inert gas is usually maintained. If the goal is high productivity, a lower level of inert gas can be used, while if the goal is low consumption, a higher level of inert gas can be maintained.

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