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Study on the influence of surface potential on the nitrate adsorption capacity of metal modified biochar

机译:表面电位对金属改性生物炭硝态氮吸附能力的影响研究

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Carbon materials, as effective adsorbents to numerous aqueous cationic contaminants, have been hardly applied to remove anions in wastewater. In this work, different modifying agents were used to modify corncob biochars (CC) and the surface potentials of these modified biochars were determined. Based on the findings, modification principle was determined to reveal the relationship between surface potentials of the biochars and their nitrate adsorption capacities. The surface potential was dominated by the metal cations and multivalent cations led to even positive zeta potential. The formation of metal oxide not only led to the augment in surface area but also increase the surface charge. FeCl3-modified biochar (Fe-CC) with the highest positive surface charge was utilized to remove anions (nitrate) from aqueous solutions. Characterization results confirm that Fe2O3 structure were successfully formed on biochar surface. This led to the formation of iron nitrate hydrate (Fe(NO3)(3) 9H(2)O), which enabled higher nitrate adsorption performance than that of pristine biochar. Batch experiments showed that nitrate adsorption on the Fe-CC was stable and almost independent of experimental pH and temperature. Based on the Langmuir model results, the maximum nitrate adsorption capacity of Fe-CC was 32.33mg/g. Coexisting anions had negative influence on the adsorption performance. Findings of this work suggest that the modified biochar can be used in wastewater treatment to remove anions such as nitrate.
机译:作为有效的阳离子污染物的有效吸附剂,碳材料几乎没有应用于除去废水中的阴离子。在这项工作中,使用不同的改性剂来修饰玉米板Biochars(CC),并且确定这些改性生物谱的表面电位。基于调查结果,确定修改原理揭示了生物肢表面电位与其硝酸盐吸附能力之间的关系。表面电位由金属阳离子和多价阳离子引导至均匀的ζ电位。金属氧化物的形成不仅导致了表面积中的增强,而且增加了表面电荷。使用具有最高正面电荷的FECL3改性的生物炭(Fe-CC)用于从水溶液中除去阴离子(硝酸盐)。表征结果证实,在生物炭表面上成功形成了Fe2O3结构。这导致了硝酸铁水合物的形成(Fe(NO3)(3)9H(2)O),其使硝酸盐的吸附性能高于原始Biochar的硝酸盐。批量实验表明,硝酸盐对Fe-CC的吸附是稳定的,几乎与实验性pH和温度无关。基于Langmuir模型的结果,Fe-CC的最大硝酸盐吸附能力为32.33mg / g。共存阴离子对吸附性能产生负面影响。该工作的调查结果表明,改性的生物炭可用于废水处理中以除去硝酸盐等阴离子。

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