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This post was last edited by yuzp000 on 2015-12-1 08:21 to ensure consistency. :) To enable the processing of heavy oil feedstocks with high carbon residue and high nitrogen content, a higher catalyst-to-oil ratio should be used; increasing this ratio can compensate for the degradation of the catalyst caused by high-temperature regeneration. A
To process heavy oil feedstocks with high residue and high nitrogen content, a higher catalyst-to-oil ratio should be maintained; increasing this ratio can compensate for the (hydrothermal deactivation) of the catalyst caused by high-temperature regeneration.
When processing heavy oil feedstocks with high residue and high nitrogen content, a higher catalyst-to-oil ratio should be maintained; increasing this ratio can compensate for the hydrothermal deactivation of the catalyst caused by high-temperature regeneration.
To process heavy oil feedstocks with high residue and high nitrogen content, a higher catalyst-to-oil ratio should be maintained; increasing this ratio can compensate for the (hydrothermal deactivation) of the catalyst caused by high-temperature regeneration. The hidden feature doesn’t work
When processing heavy oil feedstocks with high residue and high nitrogen content, a higher catalyst-to-oil ratio should be maintained; increasing this ratio can compensate for the hydrothermal deactivation of the catalyst caused by high-temperature regeneration.
I didn’t understand. . . . . . . .
To ensure the processing of heavy oil feedstocks with high residue and high nitrogen content using M, a higher catalyst-to-oil ratio should be maintained; increasing this ratio can compensate for the hydrothermal deactivation of the catalyst caused by high-temperature regeneration
When processing heavy oil feedstocks with high residue and high nitrogen content, a higher catalyst-to-oil ratio should be maintained; increasing this ratio can compensate for the hydrothermal deactivation of the catalyst caused by high-temperature regeneration.
When processing heavy oil feedstocks with high residue and high nitrogen content, a higher catalyst-to-oil ratio should be maintained; increasing this ratio can compensate for the hydrothermal deactivation of the catalyst caused by high-temperature regeneration.
Is this a true or false question or a fill-in-the-blank question? ? ? ?