SMART BIOCONVERSION OF PELT WASTE FROM TANNERIES
The area of interest is the synthesis and study of properties of new types of hydrogels made from pelt waste, in order to recover waste from tanneries. Leather processing in tanneries results in about 500-600 kg of pelt waste from a ton of raw hides. These hydrogels are made using smart processes...
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Editura Universităţii din Oradea
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doaj-53adc503e02d4a9d8d6b082fb96a23502020-11-24T21:02:18ZengEditura Universităţii din OradeaAnnals of the University of Oradea: Fascicle of Textiles, Leatherwork1843-813X2457-48802017-05-01XVIII2165170SMART BIOCONVERSION OF PELT WASTE FROM TANNERIES ZAINESCU Gabriel0CONSTANTINESCU Roxana1ALBU Luminita2National R&D Institute for Textile and Leather – Division: Leather and Footwear Research Institute, 93 Ion Minulescu str., 031215, Bucharest, RomaniaNational R&D Institute for Textile and Leather – Division: Leather and Footwear Research Institute, 93 Ion Minulescu str., 031215, Bucharest, RomaniaNational R&D Institute for Textile and Leather – Division: Leather and Footwear Research Institute, 93 Ion Minulescu str., 031215, Bucharest, Romania The area of interest is the synthesis and study of properties of new types of hydrogels made from pelt waste, in order to recover waste from tanneries. Leather processing in tanneries results in about 500-600 kg of pelt waste from a ton of raw hides. These hydrogels are made using smart processes in order to then be applied in agriculture, for preservation of water in the soil or for controlled release of fertilizers, pesticides but also for the development of additivated agricultural film biodegradable over time (between 1 month and 6 months). Hydrogels that are based on biopolymers, compared with hydrogels based on synthetic polymers, have the advantage of biodegradability, biocompatibility, and a low level of toxicity. The paper presents the production of biodegradable polymer mixtures obtained from hydrolysis and enrichment of the resulting hydrolysate with phosphorus and potassium. Hydrogels with collagenous structure are tested using a high-performance instrumental analysis system (FT-IR-ATR, UV-VIS-NIR, SEM, EDAX, etc). The paper presents an experimental model for obtaining hydrogels with collagenous structure from pelt waste resulting from the liming process.http://textile.webhost.uoradea.ro/Annals/Vol%20XVIII-No%202-2017/Pielarie/Art.nr.%20276-pag.%20165-170.pdfbiopolymershydrogelscollagentannerysoil |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
ZAINESCU Gabriel CONSTANTINESCU Roxana ALBU Luminita |
spellingShingle |
ZAINESCU Gabriel CONSTANTINESCU Roxana ALBU Luminita SMART BIOCONVERSION OF PELT WASTE FROM TANNERIES Annals of the University of Oradea: Fascicle of Textiles, Leatherwork biopolymers hydrogels collagen tannery soil |
author_facet |
ZAINESCU Gabriel CONSTANTINESCU Roxana ALBU Luminita |
author_sort |
ZAINESCU Gabriel |
title |
SMART BIOCONVERSION OF PELT WASTE FROM TANNERIES |
title_short |
SMART BIOCONVERSION OF PELT WASTE FROM TANNERIES |
title_full |
SMART BIOCONVERSION OF PELT WASTE FROM TANNERIES |
title_fullStr |
SMART BIOCONVERSION OF PELT WASTE FROM TANNERIES |
title_full_unstemmed |
SMART BIOCONVERSION OF PELT WASTE FROM TANNERIES |
title_sort |
smart bioconversion of pelt waste from tanneries |
publisher |
Editura Universităţii din Oradea |
series |
Annals of the University of Oradea: Fascicle of Textiles, Leatherwork |
issn |
1843-813X 2457-4880 |
publishDate |
2017-05-01 |
description |
The area of interest is the synthesis and study of properties of new types of hydrogels made from pelt waste, in order to recover waste from tanneries. Leather processing in tanneries results in about 500-600 kg of pelt waste from a ton of raw hides.
These hydrogels are made using smart processes in order to then be applied in agriculture, for preservation of water in the soil or for controlled release of fertilizers, pesticides but also for the development of additivated agricultural film biodegradable over time (between 1 month and 6 months). Hydrogels that are based on biopolymers, compared with hydrogels based on synthetic polymers, have the advantage of biodegradability, biocompatibility, and a low level of toxicity.
The paper presents the production of biodegradable polymer mixtures obtained from hydrolysis and enrichment of the resulting hydrolysate with phosphorus and potassium.
Hydrogels with collagenous structure are tested using a high-performance instrumental analysis system (FT-IR-ATR, UV-VIS-NIR, SEM, EDAX, etc).
The paper presents an experimental model for obtaining hydrogels with collagenous structure from pelt waste resulting from the liming process. |
topic |
biopolymers hydrogels collagen tannery soil |
url |
http://textile.webhost.uoradea.ro/Annals/Vol%20XVIII-No%202-2017/Pielarie/Art.nr.%20276-pag.%20165-170.pdf |
work_keys_str_mv |
AT zainescugabriel smartbioconversionofpeltwastefromtanneries AT constantinescuroxana smartbioconversionofpeltwastefromtanneries AT albuluminita smartbioconversionofpeltwastefromtanneries |
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1716775818518069248 |