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可再溶海藻酸钠/活性炭/羧甲基纤维素水凝胶珠用于从水溶液中吸附布洛芬。

Reswellable alginate/activated carbon/carboxymethyl cellulose hydrogel beads for ibuprofen adsorption from aqueous solutions.

机构信息

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

Department of Biological Engineering, Konkuk University, Seoul 05029, Republic of Korea; R&D Team, ChoiLab Inc., Seoul 01811, Republic of Korea.

出版信息

Int J Biol Macromol. 2023 Sep 30;249:126053. doi: 10.1016/j.ijbiomac.2023.126053. Epub 2023 Jul 28.

DOI:10.1016/j.ijbiomac.2023.126053
PMID:37517753
Abstract

In this study, alginate (Alg) composite beads were prepared by blending with activated carbon (AC) to enhance adsorption capacity for ibuprofen and carboxymethyl cellulose (CMC) to create a reswellable hydrogel. The dried Alg/AC/CMC composite beads could be recovered to sizes and morphologies similar to the initial hydrogel states via a simple reswelling process; however, the dried Alg/AC composite beads without CMC could not be recovered to the initial hydrogel state. Following the reswelling process, the dried Alg/AC/CMC beads demonstrated an 86 % recovery (q = 34.0 mg/g) in the adsorption capacity for ibuprofen compared to the initial hydrogel beads (q = 39.6). In contrast, the reswelled Alg/AC beads exhibited only 18 % (q = 8.6) of the initial adsorption capacity (q = 48.1). We elucidated the effects of the substitution degree of CMC, AC content, and solution pH on the reswelling property and ibuprofen adsorption capacity of the Alg/AC/CMC composite beads. The adsorption kinetics and isotherms of the prepared composite beads in the hydrogel and reswelled states fit the pseudo-second-order and Langmuir models, respectively. Furthermore, the reswelled Alg composite beads exhibited high adsorption capacity (>93 %) after 10 cycles. Taken together, our findings indicate that the Alg/AC/CMC composite beads can be used as adsorbents without a considerable decrease in adsorption performance by reswelling the beads with distilled water after long-term storage in a dry state.

摘要

在这项研究中,通过与活性炭 (AC) 混合制备藻酸盐 (Alg) 复合珠粒,以提高对布洛芬的吸附能力,并与羧甲基纤维素 (CMC) 混合以形成可再溶胀水凝胶。通过简单的再溶胀过程,干燥的 Alg/AC/CMC 复合珠粒可以恢复到与初始水凝胶状态相似的大小和形态;然而,没有 CMC 的干燥 Alg/AC 复合珠粒不能恢复到初始水凝胶状态。再溶胀过程后,与初始水凝胶珠粒 (q = 39.6) 相比,干燥的 Alg/AC/CMC 珠粒对布洛芬的吸附能力恢复了 86%(q = 34.0 mg/g)。相比之下,再溶胀的 Alg/AC 珠粒仅表现出初始吸附能力的 18%(q = 8.6)(q = 48.1)。我们阐明了 CMC 的取代度、AC 含量和溶液 pH 对 Alg/AC/CMC 复合珠粒的再溶胀性能和布洛芬吸附能力的影响。制备的复合珠粒在水凝胶和再溶胀状态下的吸附动力学和吸附等温线分别符合准二级和朗缪尔模型。此外,再溶胀的 Alg 复合珠粒在 10 次循环后表现出高吸附能力(>93%)。综上所述,我们的研究结果表明,Alg/AC/CMC 复合珠粒可以用作吸附剂,在长期干燥状态下储存后,通过用蒸馏水再溶胀珠粒,吸附性能不会有明显下降。

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