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首页> 外文期刊>Journal of Analytical Methods in Chemistry >Synthesis of Iron Oxide Nanoparticle Functionalized Activated Carbon and Its Applications in Arsenic Adsorption
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Synthesis of Iron Oxide Nanoparticle Functionalized Activated Carbon and Its Applications in Arsenic Adsorption

机译:氧化铁纳米粒子官能化活性炭的合成及其在砷吸附中的应用

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摘要

This work reveals the As(V) adsorption behaviors onto iron oxide (Fe3O4) nanoparticles modified activated carbon (AC), originally developed from biochar (BC), as a green adsorbent denoted by FAC. Since FAC has abundant surface functional groups and a desired porous structure that is favorable for the removal of As(V) in contaminated water, FAC has greatly enhanced the As(V) adsorption capacity of the original BC. Various methods were employed to characterize the FAC characteristics and adsorption mechanism, including pH pzc determination, BET specific surface area, elemental analysis (EA), and scanning electron microscopy (SEM). Results show that the AC surface was successfully modified by iron oxide nanoparticles, enhancing the porosity and specific surface area of original adsorbent. Batch adsorption tests indicated a well-fitted Langmuir model and pseudo-second-order model for As(V) adsorption. Additionally, the highest adsorption capacity ( Q max ?=?32.57?mg/g) by FAC was higher than previously reported literature reviews. Until now, no article was conducted to research the effect of carbon surface chemistry and texture on As removal from waters. It is required to obtain a rational view of optimal conditions to remove As from contaminated water.
机译:该作品将AS(V)吸附行为揭示到氧化铁(Fe3O4)纳米颗粒上修饰的活性炭(AC),原始从生物炭(BC),作为由FAC表示的绿色吸附剂。由于FAC具有丰富的表面官能团和所需的多孔结构,这些多孔结构有利于在污染的水中移除AS(V),因此FAC大大提高了原始BC的AS(V)吸附能力。使用各种方法来表征FAC特性和吸附机制,包括pH PZC测定,BET比表面积,元素分析(EA)和扫描电子显微镜(SEM)。结果表明,氧化铁纳米颗粒成功改性AC表面,增强了原始吸附剂的孔隙率和比表面积。批量吸附试验表明,良好的Langmuir模型和伪二阶模型,适用于(v)吸附。此外,BEC的最高吸附容量(Q最大?= 32.57?mg / g)高于先前报告的文献评论。到目前为止,没有进行任何文章来研究碳表面化学和质地的影响,从水中取出。需要获得最佳条件的理性视图,以从受污染的水中除去。

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