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磁性碳纳米管修饰碳点去除水中的卡马西平。

Carbamazepine removal from water by carbon dot-modified magnetic carbon nanotubes.

机构信息

College of Environmental Science and Engineering, Beijing Forestry University, Beijing 100083, PR China.

Korea Biochar Research Center, O-Jeong Eco-Resilience Institute (OJERI) & Division of Environmental Science and Ecological Engineering, Korea University, Seoul 02841, Republic of Korea.

出版信息

Environ Res. 2019 Feb;169:434-444. doi: 10.1016/j.envres.2018.11.035. Epub 2018 Nov 22.

Abstract

Carbon dot- and magnetite-modified magnetic carbon nanotubes (CMNTs) were synthesized and evaluated for carbamazepine removal from water. The adsorbent was characterized by multiple modern surface and microstructure analyzing techniques. CMNTs were composed of three components including carbon dots (CDs), carbon nanotubes (CNTs) and magnetite. CDs and CNTs introduce abundant carboxyl groups onto CMNTs and magnetite allows rapid magnetic separation of the adsorbent realizable after batch adsorption. This adsorbent has a moderately high adsorption capacity of 65 mg-carbamazepine/g-adsorbent at pH 7.0 ± 0.2, which is superior to many reported adsorbents. Carbamazepine was uptaken well in a wide pH range, regardless of the surface charging of CMNTs. Its adsorption on CMNTs was quite fast and reached 80% of removal during the initial 3 h. The mass transfer within CMNTs and the time-dependent utilization, exhaustion and depletion of the adsorption capacity were successfully described using a simplified homogeneous surface diffusion model (HSDM). The surface diffusion coefficients (D) rose with increasing initial carbamazepine concentrations. After six regeneration and recycle experiments, the capacity loss of CMNTs was less than 2.2% at the conditions tested. FTIR spectra showed the characteristics of the components. Raman spectra implied a π-π electron donor-acceptor (EDA) interaction during adsorption. This work proposed a method of combining π-bond-rich materials (CNTs and CDs) and magnetite to make separable composite adsorbents with high affinity interactions between carbamazepine and carbon materials. The prepared adsorbent is attractive for carbamazepine removal due to its good performance, moderate cost, ease of separation, and ability to regenerate.

摘要

碳点和磁铁矿修饰的磁性碳纳米管(CMNTs)被合成并评估用于从水中去除卡马西平。该吸附剂通过多种现代表面和微观结构分析技术进行了表征。CMNTs 由包括碳点(CDs)、碳纳米管(CNTs)和磁铁矿在内的三个成分组成。CDs 和 CNTs 在 CMNTs 上引入了丰富的羧基,而磁铁矿允许在批量吸附后实现吸附剂的快速磁分离。该吸附剂在 pH 7.0±0.2 时具有适中的高吸附容量为 65mg-卡马西平/g-吸附剂,优于许多报道的吸附剂。卡马西平在很宽的 pH 范围内被很好地吸收,与 CMNTs 的表面电荷无关。其在 CMNTs 上的吸附非常快,在最初的 3 小时内达到 80%的去除率。使用简化的均相表面扩散模型(HSDM)成功描述了 CMNTs 内的质量传递以及吸附容量的时间依赖性利用、耗尽和枯竭。表面扩散系数(D)随初始卡马西平浓度的增加而升高。经过六次再生和循环实验,在测试条件下,CMNTs 的容量损失小于 2.2%。FTIR 光谱显示了各组分的特征。拉曼光谱表明吸附过程中存在π-π电子给体-受体(EDA)相互作用。这项工作提出了一种结合π键富材料(CNTs 和 CDs)和磁铁矿的方法,以制备具有高亲和力相互作用的可分离复合材料吸附剂,碳材料和卡马西平之间。由于其良好的性能、适中的成本、易于分离和再生能力,制备的吸附剂对于去除卡马西平具有吸引力。

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