Conversion of Untanned Proteinaceous Solid Wastes from Tanneries into Aerogel and Its Application in Batch and Continuous Fixed-Bed Adsorption of Acid Red 97Source: Journal of Environmental Engineering:;2024:;Volume ( 150 ):;issue: 008::page 04024035-1Author:Bouchra Nechchadi
,
Jamila Hassoune
,
Said Ait Talhajt
,
Hind Ghazzaf
,
Moad Lobani
,
Rajaa Mouratib
,
Mohammed El Krati
,
Soufiane Tahiri
DOI: 10.1061/JOEEDU.EEENG-7524Publisher: American Society of Civil Engineers
Abstract: Gelatin-based aerogel (G-Aerogel) from untanned proteinaceous solid wastes was applied as an adsorbent in batch and fixed-bed column systems to remove acid red 97 (AR97) from water. Adsorption was evaluated as a function of pH, adsorbent mass, contact time, temperature, and initial dye concentration. Maximum removal of AR97 was achieved at pH 3 after about 4 h. The pseudo-second-order equation provided the best adsorption kinetic model. The adsorption of AR97 onto G-Aerogel was best described with the Langmuir model, and the maximum adsorption capacity was about 196 mg·g−1. A thermodynamic study showed an exothermic and spontaneous adsorption process. It was also demonstrated that G-Aerogel can be reused several times. The column study showed that breakthrough and saturation times decreased with increasing initial AR97 concentration. Thomas and Yoon-Nelson kinetic models were applied to the experimental data to predict the breakthrough curves and determine the characteristic parameters of column adsorption. Tannery solid wastes composed mainly of collagen are very abundant and constitute a material that should be valorized. In this study, we examined the transformation of untanned proteinaceous wastes into a biomaterial [Gelatin-based aerogel (G-Aerogel)] of environmental interest. The results demonstrated the promise of this material for dye adsorption because of its advantages in terms of its ease of preparation, its containing functional groups that are able to attract dye, its ability to be reused several cycles, and its high adsorption capacity. In addition to studying adsorption in static mode, we also studied dynamic adsorption, because the common industrial practice is to pass water to be treated through a column packed with an adsorbent, allowing the transport of the pollutant from the liquid to the solid. In summary, G-Aerogel can be applied as an environmentally friendly and efficient adsorbent for the removal of dyes from contaminated water.
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| contributor author | Bouchra Nechchadi | |
| contributor author | Jamila Hassoune | |
| contributor author | Said Ait Talhajt | |
| contributor author | Hind Ghazzaf | |
| contributor author | Moad Lobani | |
| contributor author | Rajaa Mouratib | |
| contributor author | Mohammed El Krati | |
| contributor author | Soufiane Tahiri | |
| date accessioned | 2024-12-24T10:43:30Z | |
| date available | 2024-12-24T10:43:30Z | |
| date copyright | 8/1/2024 12:00:00 AM | |
| date issued | 2024 | |
| identifier other | JOEEDU.EEENG-7524.pdf | |
| identifier uri | http://yetl.yabesh.ir/yetl1/handle/yetl/4299436 | |
| description abstract | Gelatin-based aerogel (G-Aerogel) from untanned proteinaceous solid wastes was applied as an adsorbent in batch and fixed-bed column systems to remove acid red 97 (AR97) from water. Adsorption was evaluated as a function of pH, adsorbent mass, contact time, temperature, and initial dye concentration. Maximum removal of AR97 was achieved at pH 3 after about 4 h. The pseudo-second-order equation provided the best adsorption kinetic model. The adsorption of AR97 onto G-Aerogel was best described with the Langmuir model, and the maximum adsorption capacity was about 196 mg·g−1. A thermodynamic study showed an exothermic and spontaneous adsorption process. It was also demonstrated that G-Aerogel can be reused several times. The column study showed that breakthrough and saturation times decreased with increasing initial AR97 concentration. Thomas and Yoon-Nelson kinetic models were applied to the experimental data to predict the breakthrough curves and determine the characteristic parameters of column adsorption. Tannery solid wastes composed mainly of collagen are very abundant and constitute a material that should be valorized. In this study, we examined the transformation of untanned proteinaceous wastes into a biomaterial [Gelatin-based aerogel (G-Aerogel)] of environmental interest. The results demonstrated the promise of this material for dye adsorption because of its advantages in terms of its ease of preparation, its containing functional groups that are able to attract dye, its ability to be reused several cycles, and its high adsorption capacity. In addition to studying adsorption in static mode, we also studied dynamic adsorption, because the common industrial practice is to pass water to be treated through a column packed with an adsorbent, allowing the transport of the pollutant from the liquid to the solid. In summary, G-Aerogel can be applied as an environmentally friendly and efficient adsorbent for the removal of dyes from contaminated water. | |
| publisher | American Society of Civil Engineers | |
| title | Conversion of Untanned Proteinaceous Solid Wastes from Tanneries into Aerogel and Its Application in Batch and Continuous Fixed-Bed Adsorption of Acid Red 97 | |
| type | Journal Article | |
| journal volume | 150 | |
| journal issue | 8 | |
| journal title | Journal of Environmental Engineering | |
| identifier doi | 10.1061/JOEEDU.EEENG-7524 | |
| journal fristpage | 04024035-1 | |
| journal lastpage | 04024035-11 | |
| page | 11 | |
| tree | Journal of Environmental Engineering:;2024:;Volume ( 150 ):;issue: 008 | |
| contenttype | Fulltext |