Article ID Journal Published Year Pages File Type
4763882 Chemical Engineering Science 2017 36 Pages PDF
Abstract
Under the best conditions studied experimentally, an absorption efficiency of 99% was achieved at 2 bar, with an intensification factor relative to a conventional tower absorber of the order of 1000. The NOx concentration in the tail gas is of the order of a few percent under these conditions but the tail gas flow is very small. While further work remains to develop a complete process with acceptable emissions, these results indicate that a microstructured system employing passages ∼1 m long could replace the ∼70 m absorption tower in a conventional nitric acid plant.
Related Topics
Physical Sciences and Engineering Chemical Engineering Chemical Engineering (General)
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