Production of activated carbon from agave residues and its synergistic application in a hybrid adsorption-AOPs system for effective removal of sulfamethazine from aqueous solutions

IF 7.7 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
Juan Carlos Serna-Carrizales , Ana I. Zárate Guzmán , Angélica Forgionny , Nancy Acelas , Sebastián Pérez , Juan Muñoz-Saldaña , Raúl Ocampo-Perez
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引用次数: 0

Abstract

Tequila production in Mexico generates large quantities of agave bagasse (AB), a waste that could be used more efficiently. AB has a high cellulose, hemicellulose, and lignin content, which allows its use as a precursor for synthesizing carbonaceous materials. In the present work, the synthesis of activated carbon impregnated with Fe2+ (AG-Fe-II) and Fe3+ (AG-Fe-III) was carried out and evaluated in a hybrid adsorption-AOP (advanced oxidation process) methodology for sulfamethazine removal (SMT). The materials were characterized before and after the process to determine their morphological, textural, and physicochemical properties. Subsequently, the effect of the main operational variables (pH, initial SMT concentration, mass, and activator dosage) on the hybrid adsorption-degradation process was studied. The Fenton-like reaction was selected as the AOP for the degradation step, and potassium persulfate (K2S2O8) was used as an activating agent. The main iron crystallographic phases in AG-Fe-II were FeS, with a uniform distribution of iron particles over the material's surface. The main crystallographic phase for AG-Fe-III was Fe3O4. The hybrid process achieved 61% and 78% removal efficiency using AG-Fe-II and AG-Fe-III samples, respectively. The pH and initial SMT concentration were the most critical factors for removing SMT from an aqueous phase. Finally, the material was successfully tested in repeated adsorption-degradation cycles.

利用龙舌兰残渣生产活性炭,并将其协同应用于混合吸附-Aops 系统,以有效去除水溶液中的磺胺二甲嘧啶。
墨西哥的龙舌兰酒生产会产生大量龙舌兰蔗渣(AB),这种废物可以得到更有效的利用。龙舌兰蔗渣的纤维素、半纤维素和木质素含量较高,因此可用作合成碳质材料的前体。在本研究中,采用混合吸附-AOP(高级氧化工艺)方法合成了浸渍有 Fe2+(AG-Fe-II)和 Fe3+(AG-Fe-III)的活性炭,并对其进行了评估,以去除磺胺二甲嘧啶(SMT)。在工艺前后对材料进行了表征,以确定其形态、质地和理化性质。随后,研究了主要操作变量(pH 值、SMT 初始浓度、质量和活化剂用量)对混合吸附降解过程的影响。研究选择芬顿反应作为降解步骤的 AOP,并使用过硫酸钾(K2S2O8)作为活化剂。AG-Fe-II 的主要铁晶相是 FeS,铁颗粒在材料表面均匀分布。AG-Fe-III 的主要晶相为 Fe3O4。使用 AG-Fe-II 和 AG-Fe-III 样品,混合工艺的去除效率分别达到 61% 和 78%。pH 值和初始 SMT 浓度是从水相中去除 SMT 的最关键因素。最后,该材料在反复的吸附-降解循环中成功地进行了测试。
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来源期刊
Environmental Research
Environmental Research 环境科学-公共卫生、环境卫生与职业卫生
CiteScore
12.60
自引率
8.40%
发文量
2480
审稿时长
4.7 months
期刊介绍: The Environmental Research journal presents a broad range of interdisciplinary research, focused on addressing worldwide environmental concerns and featuring innovative findings. Our publication strives to explore relevant anthropogenic issues across various environmental sectors, showcasing practical applications in real-life settings.
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