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Combined Treatment Methods for Removal of Antibiotics from Beef Wastewater

机译:从牛肉废水中去除抗生素的联合处理方法

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摘要

Use of antibiotics is common practice in agriculture; however, they can be released into the environment, potentially causing antimicrobial resistance. Naturally mined diatomaceous earth with bentonite was tested as a remediation material for tylosin, chlortetracycline, and ceftiofur in wastewater from a beef cattle feedlot. Langmuir binding affinity in 10 mM sodium phosphate buffer at pH 6.7 was established prior to testing wastewater to determine binding potential. Chlortetracycline was found to have a binding affinity of 15.2 mM–1 and a binding capacity of 123 mg per g of diatomaceous earth while ceftiofur showed a much lower binding affinity and loading at 7.8 mM–1 and 3 mg per g of diatomaceous earth, respectively. From spiked wastewater, tylosin (50 μg mL–1, pH 8) and chlortetracycline (300 μg mL–1, pH 6) were removed (100 and 80%, respectively) when treated with 20 mg of diatomaceous earth while ceftiofur (300 μg mL–1, pH 8) remained in solution. When the spiked wastewater was flocculated with aluminum sulfate, a change in pH from 8 to 4 was observed, and chlortetracycline was removed from the wastewater; tylosin and ceftiofur remained in solution. When subsequently treated with diatomaceous earth, ceftiofur and tylosin were completely removed by diatomaceous earth from the flocculated wastewater.
机译:使用抗生素是农业的常见做法;但是,它们可能会释放到环境中,从而可能导致抗菌素耐药性。用膨润土自然开采的硅藻土作为肉牛饲养场废水中泰乐菌素、金霉素和头孢噻呋的修复材料进行了测试。在检测废水之前,在 pH 值为 6.7 的 10 mM 磷酸钠缓冲液中建立 Langmuir 结合亲和力,以确定结合电位。发现金霉素的结合亲和力为 15.2 mM–1,结合载量为 123 mg/g 硅藻土,而头孢噻呋在每克硅藻土 7.8 mM–1 和 3 mg 时分别显示出低得多的结合亲和力和负载量。用20 mg硅藻土处理时,从加标废水中去除泰乐菌素(50 μg mL–1,pH 8)和金霉素(300 μg mL–1,pH 6)(分别为100%和80%),而头孢噻呋(300 μg mL–1,pH 8)仍留在溶液中。当加标废水用硫酸铝絮凝时,观察到 pH 值从 8 变为 4,从废水中去除金霉素;泰乐菌素和头孢噻呋仍留在溶液中。当随后用硅藻土处理时,头孢噻呋和泰乐菌素被硅藻土从絮凝废水中完全去除。

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