ISSN:
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Disciplines
(Field of Science):
- chemical engineering (Engineering and Technology)
- mechanical engineering (Engineering and Technology)
- medical biology (Medical and Health Sciences )
- pharmacology and pharmacy (Medical and Health Sciences )
- health sciences (Medical and Health Sciences )
- agriculture and horticulture (Agricultural sciences)
- food and nutrition technology (Agricultural sciences)
- biotechnology (Natural sciences)
- chemical sciences (Natural sciences)
(Field of Science)
Ministry points: Help
Year | Points | List |
---|---|---|
Year 2025 | 140 | Ministry scored journals list 2024 |
Year | Points | List |
---|---|---|
2025 | 140 | Ministry scored journals list 2024 |
2024 | 140 | Ministry scored journals list 2024 |
2023 | 140 | Ministry Scored Journals List |
2022 | 140 | Ministry Scored Journals List 2019-2022 |
2021 | 140 | Ministry Scored Journals List 2019-2022 |
2020 | 140 | Ministry Scored Journals List 2019-2022 |
2019 | 140 | Ministry Scored Journals List 2019-2022 |
2018 | 35 | A |
2017 | 35 | A |
2016 | 35 | A |
2015 | 35 | A |
2014 | 30 | A |
2013 | 30 | A |
2012 | 25 | A |
2011 | 25 | A |
2010 | 20 | A |
Model:
Points CiteScore:
Year | Points |
---|---|
Year 2023 | 9.7 |
Year | Points |
---|---|
2023 | 9.7 |
2022 | 9.1 |
2021 | 7.2 |
2020 | 5.9 |
2019 | 6.1 |
2018 | 6.4 |
2017 | 4.4 |
2016 | 3.7 |
2015 | 4.7 |
2014 | 5.6 |
2013 | 4.1 |
2012 | 3 |
2011 | 2.5 |
Impact Factor:
Open Policy Finder
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Papers published in journal
Filters
total: 2
Catalog Journals
Year 2025
-
Thermal pathways for sustainable waste management: Leveraging leather tannery waste as a renewable energy source
PublicationThe growing production of consumer goods increases waste generation, challenging disposal systems. The aim of the work was to use real data to propose a closed loop leather production process, so as to eliminate storage and use the potential of thermal processes for energy recovery. Such actions allow for improving the company's economic balance, but above all for a positive environmental impact. The tanning industry generates...
Year 2013
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Immobilization on magnetic nanoparticles of therecombinant trehalose synthase from Deinococcusgeothermalis
PublicationtIn our study the gene encoding trehalose synthase from Deinococcus geothermalis was cloned and overexpressed inEscherichia coli Rosetta (DE3)pLysS. Wild-type trehalose synthase has been purified from host protein after cell dis-ruption and precipitation at 20% ammonium sulphate saturation. Recombinant trehalose synthase was immobilizedonto glutaraldehyde activated silanized magnetic ferrous-ferric oxide by using covalent binding...
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