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【Daily Question 2019】Hydrogen production and hydrogenation section – Question No. 003

2019-01-03View Original

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【Daily Question 2019】Hydrogen production and hydrogenation section – Question No. 003: Briefly describe the hazards of too low feed rate to the plant The disadvantages of too low a feed rate are: (1) at the same temperature, the space velocity is low and the residence time is long, resulting in intense hydrogenation reactions that make it difficult to control the bed temperature ; (2) An excessively low space velocity increases the likelihood of condensation reactions, leading to coking on the catalyst surface ; (3) An excessively low air velocity results in a higher content of light components in the products, especially an increase in the amount of gas ; (4) Too low an air velocity can cause channeling in the reaction bed ; (5) When the feed rate is too low, the operation of the diversion system becomes more difficult. (Unless otherwise specified, all questions and answers are based on hydrogenation units.) ) Correct: 3 wealth, Incorrect: 1 wealth ; Mass posting of posts – rated based on the lowest score ; Replies that are unrelated to the answer are considered spam and will be deleted immediately. For management purposes, if you need to view content from a few days ago, please go to https://bbs.hcbbs.com/home.php?mod=space&uid=3862647&do=thread&view=me&from=space through the summary post below
Reply #22019-01-03
The disadvantages of too low a feed rate are as follows: ① At the same temperature, a low space velocity and long residence time lead to intense hydrogenation reactions, making it difficult to control the bed temperature; ②Too low an air velocity increases the likelihood of condensation reactions, leading to coking on the catalyst surface ; ③Too low an air velocity results in a higher content of light components in the products, especially an increase in the amount of gas ; ④Too low an air velocity can cause channeling in the reaction bed ; ⑤When the feed rate is too low, it becomes more difficult to operate the distillation system.
Reply #32019-01-03
①At the same temperature, a low space velocity and long residence time lead to intense hydrogenation reactions, making it difficult to control the bed temperature; ②Too low an air velocity increases the likelihood of condensation reactions, leading to coking on the catalyst surface ; ③Too low an air velocity results in a higher content of light components in the products, especially an increase in the amount of gas ; ④Too low an air velocity can cause channeling in the reaction bed ; ⑤When the feed rate is too low, it becomes more difficult to operate the distillation system.
Reply #42019-01-03
(1) At similar temperatures, a low space velocity and long residence time lead to intense hydrogenation reactions, making it difficult to control the bed temperature; (2) An excessively low space velocity increases the likelihood of condensation reactions, leading to coking on the catalyst surface ; (3) An excessively low air velocity results in a higher content of light components in the products, especially an increase in the amount of gas ; (4) Too low an air velocity can cause channeling in the reaction bed ; (5) When the feed rate is too low, the operation of the diversion system becomes more difficult
Reply #52019-01-03
At the same temperature, a low space velocity and long residence time lead to intense hydrogenation reactions, making it difficult to control the bed temperature; Too low an air velocity increases the likelihood of condensation reactions, leading to coking on the catalyst surface ; Too low an air velocity results in a higher content of light components in the products, especially an increase in the amount of gas ; Too low an air velocity can cause channeling in the reaction bed ; When the feed rate is too low, it becomes more difficult to operate the distillation system.
Reply #62019-01-03
The feed rate is too low to maintain the system temperature
Reply #72019-01-03
①At the same temperature, a low space velocity and long residence time lead to intense hydrogenation reactions, making it difficult to control the bed temperature; ②Too low an air velocity increases the likelihood of condensation reactions, leading to coking on the catalyst surface ; ③Too low an air velocity results in a higher content of light components in the products, especially an increase in the amount of gas ; ④Too low an air velocity can cause channeling in the reaction bed ; ⑤When the feed rate is too low, it becomes more difficult to operate the distillation system.
Reply #82019-01-03
1) At the same temperature, a low feed rate and long residence time lead to intense hydrogenation reactions, which can easily result in uncontrolled bed temperature. 2) An excessively low space velocity can cause coking on the catalyst surface. 3) A low space velocity results in an increased content of light components in the products. 4) A low space velocity causes channeling in the catalyst bed. 5) A low feed rate increases the operational difficulties of the distillation system.
Reply #92019-01-03
Too low a feed rate can cause the compressor outlet temperature to rise and lead to high energy consumption.
Reply #102019-01-03
1) At similar temperatures, a low space velocity and long residence time lead to intense hydrogenation reactions, which can make it difficult to control the bed temperature; (2) An excessively low space velocity increases the likelihood of condensation reactions, leading to coking on the catalyst surface ; (3) An excessively low air velocity results in a higher content of light components in the products, especially an increase in the amount of gas ; (4) Too low an air velocity can cause channeling in the reaction bed ; (5) When the feed rate is too low, the operation of the diversion system becomes more difficult.
Reply #112019-01-03
1) At the same temperature, a low feed rate and long residence time lead to intense hydrogenation reactions, which can easily result in uncontrolled bed temperature. 2) An excessively low space velocity can cause coking on the catalyst surface. 3) A low space velocity results in an increased content of light components in the products. 4) A low space velocity causes channeling in the catalyst bed. 5) A low feed rate increases the operational difficulties of the distillation system.

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