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利用甘蔗渣和橙皮等废弃生物质制备碳泡沫:在金属离子去除中的应用。

Reutilization of waste biomass from sugarcane bagasse and orange peel to obtain carbon foams: Applications in the metal ions removal.

机构信息

Instituto Politécnico Nacional, CICATA-Altamira, CIAMS. km 14.5 carretera Tampico-Puerto Industrial Altamira, Mexico.

Instituto Politécnico Nacional, UPIIH, Ciudad del conocimiento y la cultura, Carretera Pachuca-Actopan km. 1+500 San Agustin Tlaxiaca, C.P. 42162, Hidalgo, Mexico.

出版信息

Sci Total Environ. 2022 Jul 20;831:154883. doi: 10.1016/j.scitotenv.2022.154883. Epub 2022 Mar 28.

Abstract

The high levels of heavy metals contained in residual water and the pollution generated by a large amount of unexploited agro-industrial waste are a serious problem for the environment and mankind. Therefore, in the present work, with the aim of treating and reducing the pollution caused by heavy metal ions (Pb, Cd, Zn and Cu), activated carbons (ACs) were synthesized from sugarcane bagasse (SCB) and orange peel (OP) by means of physical - chemical activation method in an acid medium (HPO 85 wt%) followed by an activation at high temperature (500 and 700 °C). Thereafter, these materials were used to produce carbon foams (CF) by the replica method and to evaluate their adsorbent capacity for the removal of heavy metals from synthetic water. XRD, FTIR, DLS, BET, Zeta Potential (ζ), SEM-EDS and AAS were used to investigate their structures, surface area, pore size, morphology, and adsorption capacity. The results show that as-prepared CF have a second level mesoporous structure and AC present a micro-mesoporous structure with a pore diameter between 3 and 4 nm. The experimental adsorption capacities of heavy metals showed that the CF from OP present a better elimination of heavy metals compared to the AC; exhibiting a removal capacity of 95.2 ± 3.96% (Pb) and 94.7 ± 4.88% (Cu) at pH = 5. The adsorption values showed that the optimal parameters to reach a high metal removal are pH values above 5. In the best of cases, the minimum remaining concentration of lead and copper were 2.4 and 2.6 mg L, respectively. The experimental data for carbon adsorbents are in accordance with the Langmuir and BET isotherms, with R = 0.99 and the maximum homogenous biosorption capacity for lead and copper was Q = 968.72 and 754.14 mg g, respectively. This study showed that agro-industrial wastes can be effectively retrieved to produce adsorbents materials for wastewater treatment applications.

摘要

残水中所含的重金属含量高,以及大量未开发的农业工业废物造成的污染,对环境和人类来说是一个严重的问题。因此,在目前的工作中,我们旨在通过物理化学活化法(在酸性介质中使用 HPO 85wt%)从甘蔗渣(SCB)和橙皮(OP)中合成活性炭(AC),然后在高温(500 和 700°C)下进行活化,以处理和减少重金属离子(Pb、Cd、Zn 和 Cu)造成的污染。此后,我们使用复制法来生产碳泡沫(CF),并评估它们对从合成水中去除重金属的吸附能力。X 射线衍射(XRD)、傅里叶变换红外光谱(FTIR)、动态光散射(DLS)、BET、Zeta 电位(ζ)、扫描电子显微镜-能谱分析(SEM-EDS)和原子吸收光谱(AAS)用于研究它们的结构、表面积、孔径、形态和吸附能力。结果表明,所制备的 CF 具有二级中孔结构,AC 具有介孔和微孔结构,孔径在 3 至 4nm 之间。重金属的实验吸附容量表明,与 AC 相比,OP 制备的 CF 对重金属的去除效果更好,在 pH=5 时,Pb 的去除率为 95.2±3.96%,Cu 的去除率为 94.7±4.88%。吸附值表明,达到高金属去除率的最佳参数是 pH 值高于 5。在最佳情况下,铅和铜的最小残留浓度分别为 2.4 和 2.6mg/L。实验数据与 Langmuir 和 BET 等温线相符,R=0.99,Pb 和 Cu 的最大同质生物吸附容量分别为 968.72 和 754.14mg/g。本研究表明,农业工业废物可以有效地回收利用,以生产用于废水处理应用的吸附剂材料。

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