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An efficient method for tylosin removal from an aqueous solution by goethite modified straw mass

机译:针铁矿改性秸秆从水溶液中去除泰乐菌素的有效方法

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摘要

Renewable agricultural residues are produced in large quantities as waste, and their storage and management create environmental problems. Similarly, antibiotics could cause harm to the ecosystem and to the growth of plants and animals. As one of the widely used antibiotics in the world, the environmental risks of tylosin (TYL) are receiving increasing attention. In order to find a clean and effective method for TYL removal from an aqueous solution, maize straw (MS) is modified by goethite and the sorption capacity of the natural and modified forms (MSF) is determined for TYL removal. The characterisations of MS and MSF were carried out by XRD, FTIR, XPS and SEM-EDS. The characteristics of the sorption behavior of TYL on MS and MSF are systematically investigated. The results indicate that the sorption capacity of TYL on MSF is significantly higher than MS, and the sorption kinetics data of TYL on MS and MSF well fits the pseudo-second-order kinetics model and the sorption isotherms data well fits the linear model. Moreover, the sorption thermodynamics of TYL on MSF and MS indicate that a high temperature could favor the sorption of TYL on MS and MSF. In addition, the sorption of TYL on MS and MSF can be affected by pH and ionic strength of the solution. The sorption mechanisms of TYL on MS mainly involve electrostatic interactions and hydrophobic interactions, whereas electrostatic interactions, H bonding, hydrophobic interactions and surface complexation play a primal role in the sorption of TYL on MSF.
机译:可再生的农业残留物大量地作为废物产生,其存储和管理带来了环境问题。同样,抗生素也可能对生态系统以及动植物的生长造成伤害。作为世界上广泛使用的抗生素之一,泰乐菌素(TYL)的环境风险日益受到关注。为了找到一种清洁有效的从水溶液中去除TYL的方法,用针铁矿对玉米秸秆(MS)进行了改性,并确定了天然和改性形式(MSF)的TYL去除能力。 MS和MSF的表征通过XRD,FTIR,XPS和SEM-EDS进行。系统地研究了TYL在MS和MSF上的吸附行为。结果表明,TYL在MSF上的吸附能力明显高于MS,TYL在MS和MSF上的吸附动力学数据很好地拟合了拟二级动力学模型,吸附等温线数据很好地拟合了线性模型。此外,TYL在MSF和MS上的吸附热力学表明,高温可能有利于TYL在MS和MSF上的吸附。此外,溶液中的pH和离子强度会影响TYL在MS和MSF上的吸附。 TYL在MS上的吸附机理主要涉及静电相互作用和疏水相互作用,而静电相互作用,H键,疏水相互作用和表面络合在TYL在MSF的吸附中起主要作用。

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