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首页> 外文期刊>Environmental Technology >Removal of amoxicillin and cefuroxime axetil by advanced membranes technology, activated carbon and micelle-clay complex
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Removal of amoxicillin and cefuroxime axetil by advanced membranes technology, activated carbon and micelle-clay complex

机译:先进的膜技术,活性炭和胶束-粘土复合物去除阿莫西林和头孢呋辛酯

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摘要

Two antibacterials, amoxicillin trihydrate and cefuroxime axetil spiked into wastewater were completely removed by sequential wastewater treatment plant's membranes, which included activated sludge, ultrafiltration (hollow fibre and spiral wound membranes with 100 and 20 kDa cut-offs), activated carbon column and reverse osmosis. Adsorption isotherms in synthetic water which employed activated carbon and micelle-clay complex (octadecyltrimethylammonium-montmorillonite) as adsorbents fitted the Langmuir equation. Q(max) of 100 and 90.9 mg g(-1), and K values of 0.158 and 0.229 L mg(-1) were obtained for amoxicillin trihydrate using activated carbon and micelle-clay complex, respectively. Filtration of antibacterials in the ppm range, which yielded variable degrees of removal depending on the volumes passed and flow rates, was simulated and capacities for the ppb range were estimated. Stability study in pure water and wastewater revealed that amoxicillin was totally stable for one month when kept at 37 degrees C, whereas cefuroxime axetil underwent slow hydrolysis to cefuroxime.
机译:依次添加到废水处理厂的膜中,彻底去除了加标到废水中的两种抗菌素三水合阿莫西林和头孢呋辛酯,包括活性污泥,超滤(截留率分别为100和20 kDa的中空纤维和螺旋缠绕膜),活性炭柱和反渗透。合成水中的吸附等温线采用活性炭和胶束-粘土复合物(十八烷基三甲基铵-蒙脱土)作为吸附剂,符合Langmuir方程。使用活性炭和胶束-粘土配合物分别获得三水合阿莫西林的Q(max)为100和90.9 mg g(-1),K值为0.158和0.229 L mg(-1)。对ppm范围内的抗菌剂的过滤过程进行了模拟,该过程可根据通过的体积和流速产生不同程度的去除效果,并估算出ppb范围内的容量。在纯净水和废水中的稳定性研究表明,阿莫西林在37摄氏度下保持一个月完全稳定,而头孢呋辛酯被缓慢水解为头孢呋辛。

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