Department of Environmental Sciences, Fatima Jinnah Women University, Old Presidency, The Mall, Rawalpindi, 46000, Pakistan.
Department of Chemistry, College of Science, King Saud University, 11451, Riyadh, Saudi Arabia.
Environ Geochem Health. 2024 Jul 29;46(9):340. doi: 10.1007/s10653-024-02124-x.
Validamycin A (VA) is one of the antibiotics that have been utilized in agriculture in Asia; nevertheless, there haven't been many investigations on what happens to VA in soil. The rate at which pesticides are adsorbed into the soil must be determined, since their usage in agriculture is growing. In order to accomplish this, the current study investigated the sorption and degradation of VA in ten distinct soil samples via batch equilibrium studies while maintaining strict laboratory controls. In thermodynamic analysis with a C-type curve, the negative values of Gibbs free energy (ΔG) are thoroughly evaluated using both linear and Freundlich models. These values vary from - 16.8 to - 22.2 kJ/mol. Impact of temperature (18, 23, and 30 °C) and pH (5, 7, and 9) on the degradation of this antibiotic in soil was also scrutinized. Our findings demonstrated that, as a result of enhanced microbial activity at higher temperatures, VA deteriorated more quickly at 23 °C and 30 °C than at 18 °C. In comparison to lower pH values, the VA removal efficiencies with sample-4 was significantly greater at pH 7.4 (92.9%) and pH 9 (97.4%). Moreover, first order reaction kinetics were followed in the degradation of VA. The results demonstrated that VA bound to the selected soils, resulting in medium to low persistence as demonstrated by degradation values. In summary, this study provides important information regarding the behavior and fate of VA in different types of soil, information that might be useful in developing workable management strategies and environmental risk assessments.
井冈霉素 A(VA)是亚洲农业中使用的抗生素之一;然而,对于 VA 在土壤中的情况,研究并不多。由于农药在农业中的使用量不断增加,必须确定其在土壤中的吸附率。为了实现这一目标,本研究通过批平衡研究在严格的实验室控制下,研究了 VA 在十种不同土壤样品中的吸附和降解情况。在 C 型曲线的热力学分析中,使用线性和 Freundlich 模型对吉布斯自由能(ΔG)的负值进行了全面评估。这些值的范围从-16.8 到-22.2 kJ/mol。还研究了温度(18、23 和 30°C)和 pH 值(5、7 和 9)对土壤中这种抗生素降解的影响。我们的研究结果表明,由于高温下微生物活性增强,VA 在 23°C 和 30°C 下比在 18°C 下降解得更快。与较低的 pH 值相比,在 pH 值为 7.4(92.9%)和 pH 值为 9(97.4%)时,样品-4 的 VA 去除效率显著更高。此外,VA 的降解遵循一级反应动力学。结果表明,VA 与所选土壤结合,导致降解值表明中低持久性。综上所述,本研究提供了关于 VA 在不同类型土壤中的行为和归宿的重要信息,这些信息可能有助于制定可行的管理策略和环境风险评估。