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多孔纤维状细菌纤维素/La(OH)膜用于从水中去除优异的磷酸盐。

Porous fibrous bacterial cellulose/La(OH) membrane for superior phosphate removal from water.

机构信息

Shandong Provincial Key Laboratory of Microbial Engineering, Department of Bioengineering, Qilu University of Technology, Shandong Academy of Sciences, Jinan 250353, China; Guangxi Key Laboratory of Clean Pulp & Papermaking and Pollution Control, College of Light Industry and Food Engineering, Guangxi University, Nanning 530004, China.

Shandong Provincial Key Laboratory of Microbial Engineering, Department of Bioengineering, Qilu University of Technology, Shandong Academy of Sciences, Jinan 250353, China.

出版信息

Carbohydr Polym. 2022 Dec 15;298:120135. doi: 10.1016/j.carbpol.2022.120135. Epub 2022 Sep 21.

Abstract

Lanthanum (La)-based nanoparticles (NPs) are promising candidates for phosphate removal owing to their inherently high affinity towards phosphate. However, significant challenges remain to be addressed before their practical deployment, especially the problems associated with their aggregation. Herein, we fabricated a high-efficient sorbent for phosphate removal through in-situ synthesizing La(OH) NPs on a natural support, bacterial cellulose (BC), which is pre-modified with polyethyleneimine. The resultant La(OH) NPs-immobilized BC with different La contents (BPLa-X) exhibited a highly fibrous porous structure, in which BPLa-3 was selected for further phosphate adsorption studies. BPLa-3 demonstrated a high adsorption capacity of 125.5 mg P g, and high adsorption selectivity due to the large surface area and abundant exposed active adsorption sites for phosphate. Additionally, BPLa-3 also displayed high reusability and still possessed high adsorption capacity after four consecutive cycles of adsorption-desorption. Therefore, the present adsorbent is believed to be a promising candidate for practical phosphate removal.

摘要

镧基纳米颗粒(NPs)由于其对磷酸盐固有的高亲和力,是一种很有前途的磷酸盐去除候选材料。然而,在实际应用之前,仍有许多重大挑战需要解决,特别是与聚集相关的问题。在此,我们通过在天然载体细菌纤维素(BC)上原位合成 La(OH)NPs 制备了一种高效的磷酸盐去除吸附剂,BC 之前已用聚乙烯亚胺进行预修饰。具有不同 La 含量的所得 La(OH)NPs 固定化 BC(BPLa-X)具有高度纤维状多孔结构,其中选择 BPLa-3 进行进一步的磷酸盐吸附研究。BPLa-3 表现出 125.5 mg P g 的高吸附容量和高吸附选择性,这是由于其大的表面积和丰富的暴露的活性吸附位点用于磷酸盐吸附。此外,BPLa-3 还表现出较高的可重复使用性,在经过四次吸附-解吸循环后仍具有高的吸附容量。因此,该吸附剂被认为是一种很有前途的实际磷酸盐去除候选材料。

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