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首页> 外文期刊>Chemosphere >Competitive adsorption of tylosin, sulfamethoxazole and Cu(Ⅱ) on nano-hydroxyapatitemodified biochar in water
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Competitive adsorption of tylosin, sulfamethoxazole and Cu(Ⅱ) on nano-hydroxyapatitemodified biochar in water

机译:泰乐菌素,磺胺甲恶唑和铜(Ⅱ)在水中纳米羟基磷灰石改性生物炭上的竞争吸附

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Antibiotics and heavy metals are frequently detected simultaneously in water environment. In this study, the competitive adsorption behavior of tylosin (TYL) and sulfamethoxazole (SMX) on nano-hydroxyapatite modified biochar (nHAP@biochar) in accordance with Cu(II) in single, binary and ternary systems was investigated. The specific surface area of nHAP@biochar was 566.056 m(2)/g. The adsorption of TYL on nHAP@biochar reduced by 13.36%-41.04% or 9.92%-38.69% with Cu(II) and SMX in the solution, respectively. The suppression of SMX was stronger than Cu(II) on the adsorption of TYL when the SMX or Cu(II) was constant. The adsorption of SMX increased by 2.01-3.56 times in the present of Cu(II), while suppressed by TYL up to 42.30%. Due to the bridging of TYL or SMX between the nHAP@biochar and Cu(II) and destroying of bound water surrounded, the adsorption of Cu(II) increased to a greater extent. Electrostatic interaction and H-bond were the two main interactions between TYL, SMX and Cu(II) and nHAP@biochar. pi-pi interactions was also interaction between the SMX and nHAP@biochar. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在水环境中经常同时检测到抗生素和重金属。在这项研究中,研究了泰乐菌素(TYL)和磺胺甲恶唑(SMX)在单,二元和三元系统中根据Cu(II)在纳米羟基磷灰石改性生物炭(nHAP @ biochar)上的竞争吸附行为。 nHAP @ biochar的比表面积为566.056 m(2)/ g。溶液中的Cu(II)和SMX分别在nHAP @ biochar上吸附TYL减少了13.36%-41.04%或9.92%-38.69%。当SMX或Cu(II)保持恒定时,对SYL的吸附抑制作用强于Cu(II)。在Cu(II)存在下,SMX的吸附量增加了2.01-3.56倍,而被TYL抑制的吸附量高达42.30%。由于在nHAP @ biochar和Cu(II)之间TYL或SMX的桥接和周围结合水的破坏,对Cu(II)的吸附程度更大。静电相互作用和氢键是TYL,SMX和Cu(II)和nHAP @ biochar之间的两个主要相互作用。 pi-pi交互也是SMX与nHAP @ biochar之间的交互。 (C)2019 Elsevier Ltd.保留所有权利。

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