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一种由低温热解脆柿皮制备的新型低成本生物吸附剂,用于吸附有机染料。

A Novel Low-Cost Bio-Sorbent Prepared from Crisp Persimmon Peel by Low-Temperature Pyrolysis for Adsorption of Organic Dyes.

机构信息

College of Chemistry and Chemical Engineering, Central South University, Changsha 410083, China.

出版信息

Molecules. 2022 Aug 12;27(16):5160. doi: 10.3390/molecules27165160.

Abstract

In order to properly reuse food waste and remove various contaminants from wastewater, the development of green, sustainable and clean technologies has demonstrated potential in the efficient inhibition of secondary pollution to the environment. In this study, an economical and green method was used to prepare biochar from crisp persimmon peel (CPP) using flash-vacuum pyrolysis at different temperatures (200-700 °C; referred to as CPP200-CPP700). CPP200 has high polarity, low aromaticity and high oxygen-containing functional groups that exhibit superior MB adsorption capabilities. CPP200 that was prepared at a relatively low temperature of 200 °C exhibited a high adsorption capacity of 59.72 mg/g toward methylene blue (MB), which was relatively higher than that for alizarin yellow R (4.05 mg/g) and neutral red (39.08 mg/g), indicating that CPP200 possesses a higher adsorption selectivity for cationic dyes. Kinetics investigation revealed that the kinetic data of CPP200 for the adsorption of MB was better fitted by a linear pseudo-second-order model. Isothermal studies indicated that the linear Langmuir model was more suitable for describing the adsorption process. The adsorption thermodynamics illustrated that the adsorption of MB onto CPP200 was spontaneous and endothermic. EDS and IR analyses of CPP200 for both pre- and post-adsorption of MB showed that electrostatic interactions between oxygen-containing groups on biochar and target MB dominated the adsorption procedure, in addition to hydrogen bonding interactions. Reusability tests confirmed the excellent regeneration characteristics of CPP200, indicating that CPP200 may be used as a green, sustainable, highly efficient and recyclable adsorbent for the selective removal of cationic organic dyes.

摘要

为了合理利用食物垃圾并去除废水中的各种污染物,开发绿色、可持续和清洁技术已显示出在有效抑制环境二次污染方面的潜力。在这项研究中,使用闪速真空热解法在不同温度(200-700°C;分别称为 CPP200-CPP700)下从脆柿皮(CPP)中制备生物炭。CPP200 具有高极性、低芳香性和高含氧官能团,表现出卓越的 MB 吸附能力。在相对较低的 200°C 下制备的 CPP200 对亚甲基蓝(MB)的吸附容量高达 59.72mg/g,相对高于茜素黄 R(4.05mg/g)和中性红(39.08mg/g),表明 CPP200 对阳离子染料具有更高的吸附选择性。动力学研究表明,CPP200 吸附 MB 的动力学数据更符合线性拟二级模型。等温研究表明,线性朗缪尔模型更适合描述吸附过程。吸附热力学表明,MB 吸附到 CPP200 上是自发和吸热的。CPP200 吸附前后的 EDS 和 IR 分析表明,生物炭上含氧基团与目标 MB 之间的静电相互作用以及氢键相互作用主导了吸附过程。可重复使用性测试证实了 CPP200 的优异再生特性,表明 CPP200 可用作一种绿色、可持续、高效和可回收的吸附剂,用于选择性去除阳离子有机染料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b6d/9416227/653890c780be/molecules-27-05160-g001.jpg

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