Suppr超能文献

具有氨基酸官能团的纤维素基聚氨酯:设计、合成、计算研究及其在废水净化中的应用。

Cellulose based polyurethane with amino acid functionality: Design, synthesis, computational study and application in wastewater purification.

机构信息

Chemistry Department, Faculty of Science, An-Najah National University, P.O. Box 7, Nablus, Palestine.

Istiqlal University, Jericho, Palestine.

出版信息

Int J Biol Macromol. 2023 Jun 1;239:124328. doi: 10.1016/j.ijbiomac.2023.124328. Epub 2023 Apr 3.

Abstract

Contamination in water is due to various environmental pollutants from natural and anthropogen activities. To remove toxic metals from contaminated water, we developed a novel adsorbent in foam form based on an olive industry waste material. The foam synthesis involved oxidation of cellulose extracted from the waste to dialdehyde, functionalization of the cellulose dialdehyde with an amino acid group, reacting the functionalized cellulose with hexamethylene diisocyanate and p-phenylene diisocyanate to produce the target polyurethanes Cell-F-HMDIC and Cell-F-PDIC, respectively. The optimum condition for lead(II) adsorption by Cell-F-HMDIC and Cell-F-PDIC were determined. The foams show the ability to quantitatively remove most of metal ions present in a real sample of sewage. The kinetic and thermodynamic studies confirmed a spontaneous metal ion binding to the foams with a second pseudo-order adsorption rate. The adsorption study revealed it obeys the Langmuir isotherm model. The experimental Qe values of both foams Cell-F-PDIC and Cell-F-HMDIC were 2.1929 and 2.0345 mg/g, respectively. Monte Carlo (MC) and Dynamic (MD) and simulations showed excellent affinity of both foams for lead ions with high adsorption negative energy value indicating vigorous interactions of Pb(II) with the adsorbent surface. The results indicate the usefulness of the developed foam in commercial applications. ENVIRONMENTAL IMPLICATION: Elimination of metal ions from contaminated environments is important for a number of reasons. They are toxic to humans via interaction with biomolecules, resulting in disruption of the metabolism and biological activities of many proteins. They are toxic to plants. Industrial effluents and/or wastewater discharged from production processes, contain a considerable amount of metal ions. In this work, the use of naturally produced materials, such as olive waste biomass, as adsorbents for environmental remediation has received great attention. This biomass represents unused resources and presents serious disposal problems. We demonstrated that such materials are capable of selectively adsorbing metal ions.

摘要

水中的污染是由于自然和人为活动产生的各种环境污染物造成的。为了从受污染的水中去除有毒金属,我们开发了一种基于橄榄工业废料的新型泡沫状吸附剂。泡沫的合成涉及从废物中提取的纤维素的氧化作用,使其成为二醛,将纤维素二醛与氨基酸基团进行功能化,将功能化的纤维素与己二异氰酸酯和对苯二异氰酸酯反应,分别生成目标聚氨酯 Cell-F-HMDIC 和 Cell-F-PDIC。确定了 Cell-F-HMDIC 和 Cell-F-PDIC 吸附铅(II)的最佳条件。这些泡沫表现出定量去除污水中存在的大部分金属离子的能力。动力学和热力学研究证实了金属离子与泡沫的自发结合,具有第二拟一级吸附速率。吸附研究表明它遵循 Langmuir 等温线模型。两种泡沫 Cell-F-PDIC 和 Cell-F-HMDIC 的实验 Qe 值分别为 2.1929 和 2.0345mg/g。蒙特卡罗(MC)和动态(MD)模拟表明,两种泡沫对铅离子都具有极好的亲和力,吸附负能值高,表明 Pb(II)与吸附剂表面的强烈相互作用。结果表明,所开发的泡沫在商业应用中具有实用性。环境影响:从受污染的环境中消除金属离子很重要,原因有几个。它们通过与生物分子相互作用对人类有毒,导致许多蛋白质的代谢和生物活性受到干扰。它们对植物有毒。工业废水和/或生产过程排放的废水含有相当数量的金属离子。在这项工作中,天然产生的材料(如橄榄废物生物质)作为环境修复的吸附剂已受到广泛关注。这种生物质代表了未使用的资源,并带来了严重的处理问题。我们证明了这些材料能够选择性地吸附金属离子。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验