新型PFAS吸附剂如何适应当前的工程范式?

IF 7.4 Q1 ENGINEERING, ENVIRONMENTAL
Jonathan Burkhardt*, Thomas F. Speth, Stanley Gorzelnik, Alexander S. Gorzalski, Orlando Coronell, Ahmed Rachid El-Khattabi and Mohamed Ateia*, 
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引用次数: 0

摘要

由于新型吸附剂的出现为处理全氟烷基和多氟烷基物质(PFAS)带来了新的可能性,饮用水和废水公用事业公司在选择有效的、面向未来的技术方面面临着关键决策。然而,随着解决PFAS污染的监管压力不断增加,许多公用事业公司可能无法充分评估这些新型吸附剂的潜力,而是准备采用现有的成熟技术,如颗粒活性炭(GAC)和离子交换(IX)树脂。考虑到任何选择系统的预期长寿命,重要的是要考虑所有的选择,包括未来的治疗创新。该观点通过在现有技术的更广泛背景下探索新型吸附剂的现状,提供了对其潜在优势和挑战的见解。新型吸附剂带来了巨大的优势,包括对不同PFAS化学物质的选择性增强、快速动力学和灵活性,特别是在废水等具有挑战性的基质中。尽管这些材料具有优势,但为了大规模应用,还有大量的工作要做,包括解决可扩展性、成本效益、抗结垢性和监管认证障碍。通过检查公用事业和新型吸附剂开发商的关键因素,本观点旨在指导明智的决策,以平衡当前的法规遵从性和长期适应性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

How Do Novel PFAS Sorbents Fit into Current Engineering Paradigm?

How Do Novel PFAS Sorbents Fit into Current Engineering Paradigm?

As the emergence of novel sorbents brings new possibilities for treatment of per- and polyfluoroalkyl substances (PFAS), drinking water and wastewater utilities face critical decisions in selecting effective, future-ready technologies. With regulatory pressures to address PFAS contamination mounting, however, many utilities may not be in a position to fully evaluate the potential of these novel sorbents and are instead preparing to adopt established technologies that are currently available, such as granular activated carbon (GAC) and ion exchange (IX) resins. Given the expected long life spans of any chosen system, it is important to consider all options, including future treatment innovations. This perspective provides insights into their potential advantages and challenges by exploring the current state of novel sorbents within the broader context of existing technologies. Novel sorbents bring promising benefits, including enhanced selectivity, rapid kinetics, and flexibility for different PFAS chemistries, particularly in challenging matrices such as wastewater. Despite their advantages, significant work remains to refine these materials for large-scale application, including addressing scalability, cost-effectiveness, fouling resistance, and regulatory certification hurdles. By examining key factors for both utilities and novel sorbent developers, this perspective aims to guide informed decisions that balance immediate regulatory compliance with long-term adaptability.

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来源期刊
ACS ES&T engineering
ACS ES&T engineering ENGINEERING, ENVIRONMENTAL-
CiteScore
8.50
自引率
0.00%
发文量
0
期刊介绍: ACS ES&T Engineering publishes impactful research and review articles across all realms of environmental technology and engineering, employing a rigorous peer-review process. As a specialized journal, it aims to provide an international platform for research and innovation, inviting contributions on materials technologies, processes, data analytics, and engineering systems that can effectively manage, protect, and remediate air, water, and soil quality, as well as treat wastes and recover resources. The journal encourages research that supports informed decision-making within complex engineered systems and is grounded in mechanistic science and analytics, describing intricate environmental engineering systems. It considers papers presenting novel advancements, spanning from laboratory discovery to field-based application. However, case or demonstration studies lacking significant scientific advancements and technological innovations are not within its scope. Contributions containing experimental and/or theoretical methods, rooted in engineering principles and integrated with knowledge from other disciplines, are welcomed.
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