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One question per day; those who answer correctly receive 6 wealth points, while participants receive 2 wealth points; Question 443

2016-02-23View Original

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True or False: In the production of acetylene via the calcium carbide method, fluctuations in the outlet pressure of the water ring compressor can cause variations in the flow rate of the acetylene feedstock. This severely affects the accuracy of the ratio between hydrogen chloride and acetylene in the synthesis system, and it can even impact the activity of the catalysts. Such fluctuations disrupt the stable operating conditions of the synthesis system, which is extremely detrimental to production. ( ) Answer: Correct
Reply #22016-02-23
In the production of acetylene via the calcium carbide method, fluctuations in the outlet pressure of the water ring compressor lead to variations in the flow rate of the acetylene feedstock. This severely affects the accuracy of the ratio between hydrogen chloride and acetylene in the synthesis system, and can even impact the activity of the catalysts. It disrupts the stable operating conditions of the synthesis system, which is extremely detrimental to production. (Yes)
Reply #32016-02-23
In the production of acetylene via the calcium carbide method, fluctuations in the outlet pressure of the water ring compressor lead to variations in the flow rate of the acetylene feedstock. This severely affects the accuracy of the ratio between hydrogen chloride and acetylene in the synthesis system, and can even impact the activity of the catalysts. It disrupts the stable operating conditions of the synthesis system, which is extremely detrimental to production. (Yes)
Reply #42016-02-24
In the production of acetylene via the calcium carbide method, fluctuations in the outlet pressure of the water ring compressor lead to variations in the flow rate of the acetylene feedstock. This severely affects the accuracy of the ratio between hydrogen chloride and acetylene in the synthesis system, and can even impact the activity of the catalysts. It disrupts the stable operating conditions of the synthesis system, which is extremely detrimental to production. ( √ )

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