The choice of technology to reduce emissions of malodorous gases in sulphate pulping production at existing mills

Pulp and paper mills are characterized by emissions of malodorous gases that commonly create discomfort for people, also in little concentration in the air. This issue is crucial for enterprises that are not actually using the best available technology for reducing non-condensable gases. Thereby, for existing enterprises, it is very important to realize the proper suitable upgrading by choosing the best solution for their specific working process. In this work, a preliminary review of the scientific literature has been done in order to select the best technology for a case study located in Russian Federation. After the technology choice, the pollutant dispersions in the atmospheric air has been calculated by using a specific software (“Prism” NPP “Logus”) based on Method OND-86. Obtained outcomes respect the actual Russian regulation.

Pulp and paper mills are characterized by emissions of malodorous gases that commonly create discomfort for people, also in little concentration in the air. This issue is crucial for enterprises that are not actually using the best available technology for reducing non-condensable gases. Thereby, for existing enterprises, it is very important to realize the proper suitable upgrading by choosing the best solution for their specific working process. In this work, a preliminary review of the scientific literature has been done in order to select the best technology for a case study located in Russian Federation. After the technology choice, the pollutant dispersions in the atmospheric air has been calculated by using a specific software (“Prism” NPP “Logus”) based on Method OND-86. Obtained outcomes respect the actual Russian regulation.


ISSN 1121-9041

CiteScore:
2020: 3.8
CiteScore measures the average citations received per peer-reviewed document published in this title.
CiteScore values are based on citation counts in a range of four years (e.g. 2016-2019) to peer-reviewed documents (articles, reviews, conference papers, data papers and book chapters) published in the same four calendar years, divided by the number of these documents in these same four years (e.g. 2016 —19).
Source Normalized Impact per Paper (SNIP):
2019: 1.307
SNIP measures contextual citation impact by weighting citations based on the total number of citations in a subject field.
SCImago Journal Rank (SJR)
2019: o.657
SJR is a prestige metric based on the idea that not all citations are the same. SJR uses a similar algorithm as the Google page rank; it provides a quantitative and a qualitative measure of the journal's impact.
Journal Metrics: CiteScore: 1.0 , Source Normalized Impact per Paper (SNIP): 0.381 SCImago Journal Rank (SJR): 0.163

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