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首页> 外文期刊>Chemical engineering journal >Copper removal from aqueous solutions using nano-scale diboron trioxide/titanium dioxide (B2O3/TiO2) adsorbent
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Copper removal from aqueous solutions using nano-scale diboron trioxide/titanium dioxide (B2O3/TiO2) adsorbent

机译:使用纳米级三氧化二硼/二氧化钛(B2O3 / TiO2)吸附剂从水溶液中去除铜

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摘要

Diboron trioxide/titanium dioxide (B2O3/TiO2) was synthesised at the nano-size and used to remove Cu(II) from water by adsorption. The material was characterised using a number of techniques including XRD, SEM, TEM, and BET surface area. Sizes of the material were below 50 nm, which fall within the range of that of nanoparticles. The BET surface area was 222.4 ±6.8 m~2/g. B2O3/TiO2 was effective in removing copper and the maximum adsorption capacity was 82.0 mg/g. The equilibrium adsorption data were best fitted to Freundlich model and the adsorption kinetics was well explained by pseudo-second-order kinetic model, which suggests that the copper uptake is due to a chemisorption process. An intraparticle diffusion based Weber-Morris model was applied to evaluate the rate-limiting steps, and the results suggested that pore diffusion controlled the overall sorption process.
机译:合成了纳米级的三氧化二硼/二氧化钛(B2O3 / TiO2),并用于通过吸附从水中去除Cu(II)。使用多种技术对材料进行表征,包括XRD,SEM,TEM和BET表面积。材料的尺寸低于50nm,其落在纳米颗粒的范围内。 BET表面积为222.4±6.8m 2 / g。 B2O3 / TiO2可有效去除铜,最大吸附量为82.0 mg / g。平衡吸附数据最适合Freundlich模型,并且吸附动力学可以通过拟二级动力学模型很好地解释,这表明铜的吸收是由于化学吸附过程引起的。基于粒子内扩散的Weber-Morris模型用于评估限速步骤,结果表明孔扩散控制了整个吸附过程。

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