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首页> 外文期刊>RSC Advances >In situ fabrication of hierarchical biomass carbon-supported Cu@CuO-Al2O3 composite materials: synthesis, properties and adsorption applications
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In situ fabrication of hierarchical biomass carbon-supported Cu@CuO-Al2O3 composite materials: synthesis, properties and adsorption applications

机译:原位制造层级生物质碳载Cu @ CuO-Al2O3复合材料:合成,性能和吸附应用

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Hierarchical Cu-Al2O3/biomass-activated carbon composites were successfully prepared by entrapping a biomass-activated carbon powder derived from green algae in the Cu-Al2O3 frame (H-Cu-Al/BC) for the removal of ammonium nitrogen (NH4+-N) from aqueous solutions. The as-synthesized samples were characterized via XRD, SEM, BET and FTIR spectroscopy. The BET specific surface area of the synthesized H-Cu-Al/BC increased from 175.4 m(2) g(-1) to 302.3 m(2) g(-1) upon the incorporation of the Cu-Al oxide nanoparticles in the BC surface channels. The experimental data indicated that the adsorption isotherms were well described by the Langmuir equilibrium isotherm equation and the adsorption kinetics of NH4+-N obeyed the pseudo-second-order kinetic model. The static maximum adsorption capacity of NH4+-N on H-Cu-Al/BC was 81.54 mg g(-1), which was significantly higher than those of raw BC and H-Al/BC. In addition, the presence of K+, Na+, Ca2+, and Mg2+ ions had no significant impact on the NH4+-N adsorption, but the presence of Al3+ and humic acid (NOM) obviously affected and inhibited the NH4+-N adsorption. The thermodynamic analyses indicated that the adsorption process was endothermic and spontaneous in nature. H-Cu-Al/BC exhibited removal efficiency of more than 80% even after five consecutive cycles according to the recycle studies. These findings suggest that H-Cu-Al/BC can serve as a promising adsorbent for the removal of NH4+-N from aqueous solutions.
机译:通过捕获来自Cu-Al 2 O 3框架(H-Cu-Al / BC)中的绿藻(H-Al-Al / Bc)中衍生的生物质活性炭粉末成功制备了等级Cu-Al 2 O 3 /生物质活性炭复合材料以除去氮铵(NH4 + -N )来自水溶液。通过XRD,SEM,BET和FTIR光谱表征了AS合成的样品。合成的H-CU-Al / BC的BET比表面积在掺入Cu-Al氧化物纳米颗粒时从175.4m(2)g(-1)至302.3m(2)g(-1)增加到BC表面通道。实验数据表明,Langmuir平衡等温线方程很好地描述了吸附等温,NH4 + -N的吸附动力学遵守了伪二阶动力学模型。 H-Cu-Al / Bc上NH 4 + -N的静态最大吸附容量为81.54mg g(-1),其显着高于原料BC和H-Al / BC。另外,K +,Na +,Ca2 +和Mg2 +离子的存在对NH 4 + -N吸附没有显着影响,但Al3 +和腐殖酸(NOM)的存在明显影响并抑制NH4 + -N吸附。热力学分析表明吸附过程在自然中吸热和自发性。即使根据再循环研究,H-Cu-Al / BC也表现出超过80%的去除效率。这些发现表明H-Cu-Al / BC可以用作从水溶液中除去NH 4 + -N的有希望的吸附剂。

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    《RSC Advances》 |2019年第57期|共10页
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  • 正文语种 eng
  • 中图分类 化学;
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