首页> 外文期刊>Journal of Dispersion Science and Technology >Preparation of magnetic biochar obtained from one-step pyrolysis of salix mongolica and investigation into adsorption behavior of sulfadimidine sodium and norfloxacin in aqueous solution
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Preparation of magnetic biochar obtained from one-step pyrolysis of salix mongolica and investigation into adsorption behavior of sulfadimidine sodium and norfloxacin in aqueous solution

机译:从Salix Mongolica的一步热解中获得的磁性生物炭的制备及其在水溶液中磺胺酰胺钠和诺氟沙星的吸附行为

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In this work, salix mongolica, pretreated by FeCl3 and ZnCl2, was applied as a precursor to prepare the magnetic biochar (MBC, containing gamma-Fe2O3) with the method of one-step pyrolysis. According to the characterization results of MBC (SEM, XPS, XRD, FTIR, VSM, BET), the features of biochar and the magnetic properties of iron oxides were combined in a composite of MBC. The magnetic biochar can be used as adsorbent for sulfadimidine sodium (SMS) and norfloxacin (NOR) removal from aqueous solution and subsequently removed from the medium by a simple magnetic process. The adsorption characteristics of SMS and NOR from aqueous solution by MBC have been investigated. The adsorption kinetics was best described by Elovich model. The equilibrium data was best fitted by the Freundlich isotherm and Koble-Corrigan model implying the adsorption process mainly was multilayer adsorption on heterogeneous surfaces. The maximum adsorption capacity for SMS and NOR was 251 mg/g and 210 mg/g at 308 K, respectively. The values of thermodynamic parameters were calculated indicating the process of adsorption was an endothermic and spontaneous process. The adsorption mechanism may be attributed to the pi-pi dispersion, the hydrophobic interaction, hydrogen bonding or the electrostatic interaction between the MBC and the molecule of NOR or SMS.
机译:在这项工作中,FECL3和ZnCl2预处理的Salix Mongolica作为前体施用,用一步热解的方法制备磁性生物炭(MBC,含γ-Fe2O3)。根据MBC的表征结果(SEM,XPS,XRD,FTIR,VSM,BET),在MBC的复合材料中组合了生物炭的特征和氧化铁的磁性。磁性生物炭可用作磺酰咪啶钠(SMS)和诺氟沙星(也不)从水溶液中除去并随后通过简单的磁法从培养基中除去的吸附剂。研究了SMS和MBC水溶液的吸附特性。 Elovich模型最好地描述了吸附动力学。平衡数据最适合由Freundlich等温线和Koble-Colrigan模型暗示吸附过程主要是在异质表面上的多层吸附。 SMS的最大吸附容量和251mg / g分别为251mg / g,分别为308 k。计算热力学参数的值表明吸附过程是吸热和自发过程。吸附机制可归因于PI-PI分散,疏水性相互作用,氢键或MBC与MBC和OR或SMS分子之间的静电相互作用。

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