通过可逆生物多电解质自组装,让湿纸巾在冲水时变成厕纸碎片

IF 4.7 2区 化学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Kunal Choudhuri, Reece C. Kendall, Michael D. Griffin, Umberto A. Kober, Barry Orr, Darko Joksimovic, Youngwoo Seo and Yakov Lapitsky*, 
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引用次数: 0

摘要

湿巾广泛用于清洁和个人卫生用途。然而,湿纸巾中经常含有会造成微塑料污染的塑料成分,即使在市场上被宣传为可冲洗的湿纸巾,在许多测试产品中也被发现会结块并堵塞废水收集和处理系统中的管道和水泵。为此,我们提出了一种利用注入了生物聚合物凝胶的卫生纸制造湿巾的方法,这种凝胶在过量水中会分解。通过在卫生纸中注入海藻酸盐或κ-卡拉胶溶液,然后进行凝胶化,我们生产出的湿纸巾的拉伸强度与商业可冲洗湿纸巾的拉伸强度相当(湿纸巾宽度≳100 N/m),并且可以通过改变生物聚合物和盐的浓度以及卫生纸的层数来定制。利用这种方法,可以生产酒精湿巾(通过海藻酸溶液在乙醇中的凝胶化形成)和水性湿巾(通过κ-卡拉胶溶液在室温氯化钾水溶液中的凝胶化形成)。在模拟冲水时(即把湿巾浸入过量水中,使乙醇或氯化钾扩散出来),凝胶网络会在几分钟内破裂,拉伸强度会降低到湿卫生纸的强度,厕所/排水管道间隙和公共可用规范 3 (PAS3) Slosh Box 测试证实了湿巾在冲水时的有效分散性。对分散湿巾如何影响废水生物反应器性能的分析表明,按照废水处理中的预期浓度,这些湿巾的降解产物不会破坏城市废水处理过程。总之,我们的研究结果表明,这些卫生纸和生物聚合物湿巾可以防止废水管道和水泵堵塞,减少有害塑料在环境中的积累。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Toward Wet Wipes That Turn into Toilet Paper Debris When Flushed Through Reversible Biopolyelectrolyte Self-Assembly

Toward Wet Wipes That Turn into Toilet Paper Debris When Flushed Through Reversible Biopolyelectrolyte Self-Assembly

Wet wipes are widely used in cleaning and personal hygiene applications. However, they frequently contain plastic components that cause microplastic pollution and, even when marketed as flushable, have, in the case of many tested products, been found to agglomerate and clog pipes and pumps in wastewater collection and treatment systems. To this end, we present a method to create wet wipes using toilet paper infused with biopolymer gels that disintegrate in excess water. By infusing toilet paper with alginate or κ-carrageenan solutions followed by gelation, we generate wet wipes with tensile strengths that are comparable to those reported for commercial flushable wipes (≳100 N/m wipe width) and can be tailored by varying biopolymer and salt concentrations and numbers of base toilet paper layers. Using this approach, both alcohol wipes (formed through the gelation of alginate solutions in ethanol) and aqueous wet wipes (formed by gelling κ-carrageenan solutions in room-temperature, aqueous KCl) can be produced. Upon simulated flushing (i.e., immersion of the wipes in excess water, which causes the ethanol or KCl to diffuse out), the gel networks break down within minutes, reducing the tensile strength to that of wet toilet paper, and toilet/drain line clearance and Publicly Available Specification 3 (PAS3) Slosh Box testing confirms their effective dispersion upon flushing. Analyses of how the dispersed wipes affect the performance of wastewater bioreactors indicate that the degradation products from these wipes, at concentrations expected in wastewater treatment, should not disrupt municipal wastewater treatment processes. Collectively, our findings suggest that these toilet paper and biopolymer-based wet wipes could prevent clogging in wastewater pipes and pumps and reduce the accumulation of harmful plastics in the environment.

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来源期刊
CiteScore
7.20
自引率
6.00%
发文量
810
期刊介绍: ACS Applied Polymer Materials is an interdisciplinary journal publishing original research covering all aspects of engineering, chemistry, physics, and biology relevant to applications of polymers. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrates fundamental knowledge in the areas of materials, engineering, physics, bioscience, polymer science and chemistry into important polymer applications. The journal is specifically interested in work that addresses relationships among structure, processing, morphology, chemistry, properties, and function as well as work that provide insights into mechanisms critical to the performance of the polymer for applications.
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