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Journal Article

Fast high-pressure tanning of animal skins by accelerated chromium sulphate complexation

M. Prokein; M. Renner; E. Weidner
Clean Technologies and Environmental Policy · Vol. 22, Issue 5 · pp. 1133-1143 · 2020

Abstract

In the conventional leather production process, basic chromium sulphate (BCS) penetrates fully inside the collagen matrix during tanning and forms oligo-nuclear complexes that stabilize the skin structure during basification. Accelerated chromium sulphate complexation by basifying the BCS before full penetration leads to surface tanning and low leather qualities. Therefore, long processing times of 16 h for tanning and basification are common in modern tanneries. We used sodium hydrogen carbonate to basify BCS before penetration. However, instead of conventional tanning we performed CO 2 tanning at 30 bar. The influence of accelerated chromium sulphate complexation on the leather quality was investigated. To estimate the structures of the formed chromium complexes, we considered the pH trend of the tanning solution during basification depending on the amount of basifying agent. The distribution of chromium oxide (Cr 2 O 3 ) and the shrinkage temperature ( T s ) in three different layers of the cross section were analysed. The analytics allowed the assessment whether the tanning agent penetrates through the whole cross section or adheres to the surface during CO 2 tanning. We show that CO 2 -intensified tanning allows accelerated chromium sulphate complexation and a reduction in the tanning time from 16 to 4 h. The Cr 2 O 3 is equally distributed, and T s above 100 °C meets the standards of high-quality wet blue. However, the pH value of the tanning solution must not rise above 4.5 during basification. Otherwise, the T s decrease dramatically. The feasibility of the process is demonstrated in a 1700-L drum, with a batch size of about 500 kg. The CO 2 -intensified tanning process has high potential to save time and chemicals and reduce emissions in industrial applications and is commercially competitive. Graphic abstract

Bibliographic Information

JournalClean Technologies and Environmental Policy
PublisherSpringer
Publication Date2020-07-01
Publication Year2020
Volume22
Issue5
Pages1133-1143
Document TypeJournal Article
Print ISSN1618-954X
eISSN1618-9558
DOI10.1007/s10098-020-01855-6

Access Information

NARA Access Coverage1998-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10098
Publisher PageOpen Publisher Page
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