Synthesis, Optical Characterization, and Adsorption of Novel Hexavalent Chromium and Total Chromium Sorbent: A Fabrication of Mulberry Stem Biochar/Mn-Fe Binary Oxide Composite via Response Surface Methodology

Shuiping Xu, M. Liang, Yanmei Ding, Dunqiu Wang, Yinian Zhu, Linbo Han
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引用次数: 3

Abstract

In this study, a new generation chromium sorbent, mulberry stem biochar/Mn-Fe binary oxide composite (MBC-MFC), was fabricated by chemical precipitation on carbonized mulberry stem according to response surface methodology (RSM) results. RSM was more convenient to figure out the optimized preparation condition of MBC-MFC theoretically for achieving a maximum removal efficiency of Cr(VI) and total chromium (TCr), compared to labor-intensive orthogonal experiments. The RSM results showed that Fe/Mn concentration (CFe; CMn), MBC activation temperature after soaking in KOH solution (T), and pH during precipitation of Fe-Mn oxide were three main factors to significantly affect the efficiency of MBC-MFC (p < 0.05) in Cr(VI) and TCr removal. With the selected condition (C Fe = 0.28 mol/L; C Mn = 0.14 mol/L; T = 790°C; pH = 9.0), MBC-MFC was synthesized with a large surface area (318.53 m2/g), and the point of zero charge values of MBC-MFC was 5.64. The fabricated MBC-MFC showed excellent adsorption performance of Cr(VI) and TCr in an aqueous solution. The maximum Cr(VI) and TCr removal capacity of MBC-MFC was 56.18 and 54.97 mg/g (T = 25°C, pH = 3.0, t = 48 h, and dosage = 0.10 g/50 ml), respectively, and the maximum Cr(VI) adsorption of MBC-MFC was 4.16 times that of bare MBC, suggesting the synergistic effects of Fe/Mn oxides and MB on the performance of MBC-MFC in Cr(VI) and TCr removal. The adsorption mechanism of MBC-MFC on chromium was mainly contributed by surface complexation and electrostatic attraction. Our study offers valuable outlooks to develop high-performance biochar-based sorbents for heavy metal removal and sustainable environmental remediation.
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新型六价铬和总铬吸附剂的合成、光学表征和吸附:响应面法制备桑茎生物炭/锰铁二元氧化物复合材料
根据响应面法(RSM)的研究结果,采用化学沉淀法在炭化桑树茎上制备了新一代铬吸附剂桑树茎生物炭/锰铁二元氧化物复合材料(MBC-MFC)。相对于劳动强度较大的正交实验,RSM法更便于从理论上确定最佳的MBC-MFC制备条件,以达到最大的Cr(VI)和总铬(TCr)的去除率。RSM结果表明:Fe/Mn浓度(CFe;CMn)、KOH溶液浸泡后的MBC活化温度(T)和Fe-Mn氧化物沉淀时的pH是影响MBC- mfc去除Cr(VI)和TCr效率的三个主要因素(p < 0.05)。在选定条件下(C - Fe = 0.28 mol/L;C Mn = 0.14 mol/L;T = 790℃;pH = 9.0),合成的MBC-MFC具有较大的比表面积(318.53 m2/g),其零电荷点值为5.64。制备的MBC-MFC在水溶液中对Cr(VI)和TCr具有良好的吸附性能。在温度为25℃,pH = 3.0,时间为48 h,投加量为0.10 g/50 ml的条件下,MBC- mfc对Cr(VI)和TCr的最大去除率分别为56.18和54.97 mg/g,对Cr(VI)的最大吸附量是裸MBC的4.16倍,说明Fe/Mn氧化物和MB对MBC- mfc对Cr(VI)和TCr的去除有协同作用。MBC-MFC对铬的吸附机理主要是表面络合作用和静电吸引作用。本研究为开发高性能的生物炭基吸附剂去除重金属和可持续环境修复提供了有价值的前景。
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