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铜和苯在单溶液及二元溶液中对含北美油松基生物炭的海藻酸盐复合水凝胶珠的吸附行为

Adsorptive Behavior of Cu and Benzene in Single and Binary Solutions onto Alginate Composite Hydrogel Beads Containing Pitch Pine-Based Biochar.

作者信息

Park Saerom, Lee Jeong Woo, Kim Ji Eun, Kang Gwangnam, Kim Hyung Joo, Choi Yong-Keun, Lee Sang Hyun

机构信息

Department of Biological Engineering, Konkuk University, Seoul 05029, Korea.

R&D Center, ATE Corporation, Seoul 05029, Korea.

出版信息

Polymers (Basel). 2022 Aug 25;14(17):3468. doi: 10.3390/polym14173468.

Abstract

In this study, we prepared alginate composite hydrogel beads containing various compositions of biochar produced from pitch pine (Pinus rigida) for the removal of Cu2+ and benzene from model pollutant solutions. The properties of the alginate/biochar hydrogel beads were evaluated using scanning electron microscopy, Fourier transform infrared spectroscopy, and Brunauer−Emmet−Teller analyses. Adsorption behavior of alginate/biochar hydrogel beads indicated that the adsorption capacities for Cu2+ (28.6−72.7 mg/g) were enhanced with increasing alginate content, whereas the adsorption capacities for benzene (20.0−52.8 mg/g) were improved with increasing biochar content. The alginate/biochar hydrogel beads exhibited similar adsorption capacities for Cu2+ and benzene in the concurrent system with Cu2+ and benzene compared to those in a single pollutant system. Adsorption kinetics and isotherm studies of the alginate/biochar hydrogel beads followed the pseudo-second-order model (r2 = 0.999 for Cu2+, and r2 = 0.999 for benzene), and Langmuir model (r2 = 0.999 for Cu2+, and r2 = 0.995 for benzene). In addition, alginate/biochar hydrogel beads (containing 1 and 4% biochar) exhibited high reusability (>80%). Therefore, alginate/biochar hydrogel beads can be applied as adsorbents for the removal of multiple pollutants with different properties from wastewater.

摘要

在本研究中,我们制备了含有由北美油松(Pinus rigida)产生的不同生物炭成分的藻酸盐复合水凝胶珠,用于从模拟污染物溶液中去除Cu2+和苯。使用扫描电子显微镜、傅里叶变换红外光谱和布鲁诺尔-埃米特-泰勒分析对藻酸盐/生物炭水凝胶珠的性能进行了评估。藻酸盐/生物炭水凝胶珠的吸附行为表明,随着藻酸盐含量的增加,对Cu2+的吸附容量(28.6−72.7 mg/g)增强,而随着生物炭含量的增加,对苯的吸附容量(20.0−52.8 mg/g)提高。与单一污染物体系相比,藻酸盐/生物炭水凝胶珠在Cu2+和苯共存体系中对Cu2+和苯表现出相似的吸附容量。藻酸盐/生物炭水凝胶珠的吸附动力学和等温线研究遵循准二级模型(Cu2+的r2 = 0.999,苯的r2 = 0.999)和朗缪尔模型(Cu2+的r2 = 0.999,苯的r2 = 0.995)。此外,藻酸盐/生物炭水凝胶珠(含有1%和4%生物炭)表现出高可重复使用性(>80%)。因此,藻酸盐/生物炭水凝胶珠可作为吸附剂用于从废水中去除多种具有不同性质的污染物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe87/9460076/da60d955bde0/polymers-14-03468-g001.jpg

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