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Oxygen Reduction Reaction in the Field of Water Environment for Application of Nanomaterials

机译:纳米材料应用氧气环境下的氧气还原反应

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摘要

Water pollution has caused the ecosystem to be in a state of imbalance for a long time. It has become a major global ecological and environmental problem today. Solving the potential hidden dangers of pollutants and avoiding unauthorized access to resources has become the necessary condition and important task to ensure the sustainable development of human society. To solve such problems, this review summarizes the research progress of nanomaterials in the field of water aimed at the treatment of water pollution and the development and utilization of new energy. The paper also tries to seek scientific solutions to environmental degradation and to create better living environmental conditions from previously published cutting edge research. The main content in this review article includes four parts: advanced oxidation, catalytic adsorption, hydrogen, and oxygen production. Among a host of other things, this paper also summarizes the various ways by which composite nanomaterials have been combined for enhancing catalytic efficiency, reducing energy consumption, recycling, and ability to expand their scope of application. Hence, this paper provides a clear roadmap on the status, success, problems, and the way forward for future studies.
机译:水污染使生态系统长期以来处于不平衡状态。它今天已成为全球主要的生态环境问题。解决污染物的潜在隐患,避免未经授权的资源获取已成为确保人类社会可持续发展的必要条件和重要任务。为了解决这些问题,本综述总结了旨在治疗水污染和新能源的开发和利用的水域中纳米材料的研究进展。本文还试图为环境退化寻求科学解决方案,并从前发布的最前沿研究创造更好的生活环境条件。本综述文章的主要内容包括四个部分:晚期氧化,催化吸附,氢气和氧气产生。在其他一系列内容中,本文还总结了复合纳米材料组合以提高催化效率,降低能耗,再循环和扩大应用范围的能力的各种方式。因此,本文提供了关于状态,成功,问题以及未来研究的前进方式的明确路线图。

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