Removal of amprolium from water by roots and seeds ash of Salvadora persica
Amprolium is one of the veterinary pharmaceuticals that has been widely used as antibacterial agents and as a growth promoter in livestock, it can produce chronic adverse actions that could affect many organisms and humans. In this study, Salvadora persica stem ash and roots were used as biosorbent...
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Published in: | Journal of Taibah University for Science Vol. 14; no. 1; pp. 1604 - 1612 |
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01-01-2020
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Abstract | Amprolium is one of the veterinary pharmaceuticals that has been widely used as antibacterial agents and as a growth promoter in livestock, it can produce chronic adverse actions that could affect many organisms and humans. In this study, Salvadora persica stem ash and roots were used as biosorbent for the removal of Amprolium hydrochloride (AMP) from aqueous systems. The effect of different parameters such as the initial concentration of AMP, pH, contact time, and adsorbent dosage were investigated. Maximum removal efficiency reached 98% and 96% for S. persica roots and seeds ash, respectively at pH = 7 and contact time of 40 min. Isothermal studies indicated that the AMP removal correlates more with the Freundlich isotherm model. S. persica roots exhibit better removal efficiency than S. persica seeds ash under all the studied parameters. This study shows that S. persica is efficient in removing AMP from water. |
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AbstractList | Amprolium is one of the veterinary pharmaceuticals that has been widely used as antibacterial agents and as a growth promoter in livestock, it can produce chronic adverse actions that could affect many organisms and humans. In this study, Salvadora persica stem ash and roots were used as biosorbent for the removal of Amprolium hydrochloride (AMP) from aqueous systems. The effect of different parameters such as the initial concentration of AMP, pH, contact time, and adsorbent dosage were investigated. Maximum removal efficiency reached 98% and 96% for S. persica roots and seeds ash, respectively at pH = 7 and contact time of 40 min. Isothermal studies indicated that the AMP removal correlates more with the Freundlich isotherm model. S. persica roots exhibit better removal efficiency than S. persica seeds ash under all the studied parameters. This study shows that S. persica is efficient in removing AMP from water. |
Author | Abdelhalim, Abeer Ali, Samah |
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References | Adewole S. (CIT0003) 2012; 2 CIT0030 CIT0031 CIT0034 CIT0033 CIT0036 CIT0037 Ali S (CIT0032) 2020 CIT0041 CIT0040 CIT0043 CIT0042 CIT0001 CIT0045 CIT0044 Liu F (CIT0029) 2020; 19 Ileri O (CIT0038) 2014; 8 Ahmad H (CIT0035) 2013; 2 CIT0047 CIT0002 Alattar A. (CIT0024) 2018; 5 CIT0046 CIT0005 CIT0049 CIT0004 CIT0048 CIT0006 CIT0009 CIT0008 CIT0050 CIT0051 CIT0010 CIT0012 CIT0011 Ali MM (CIT0020) 2017; 2 Rao YH (CIT0039) 2017; 10 CIT0014 CIT0013 CIT0016 CIT0015 CIT0018 CIT0017 Duszynski DW (CIT0007) 2013 CIT0019 CIT0021 CIT0023 CIT0022 Balarak D (CIT0028) 2017; 77 CIT0027 Fink DW (CIT0025) 2004; 87 CIT0026 |
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Title | Removal of amprolium from water by roots and seeds ash of Salvadora persica |
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