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Surface nano-engineered wheat straw for portable and adjustable water purification

机译:表面纳米工程麦秸,用于便携式和可调净水

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摘要

Wheat straw (WS), as a cheap and abundant agricultural waste, is usually burned directly in farmland and causes severe air pollution. Therefore, biochar derived from waste WS is prepared and modified by nanoscaled zinc oxide through a facile in-situ surface-modification process. For ease of use, a 3D printed finger-sized unit (FSU) loaded with the above as-prepared WS is designed and implemented. Each unit weighs only 4 g, and could simultaneously reduce three major water contaminants: bacteria, organic dyes, and heavy metal ions. Moreover, it is interesting to note that fresh wheat straw is a flexible material and has excellent electrical conductivity after carbonization. These two properties (flexibility and conductivity) could further adjust water purification performance. The subsequent cellular and animal tests confirmed the biosafety of the water purified with FSU alone. (C) 2018 Elsevier B.V. All rights reserved.
机译:小麦秸秆(WS),一种廉价且丰富的农业废弃物,通常直接在农田中燃烧,造成严重的空气污染。因此,制备了源自废物WS的生物炭并通过纳米级氧化锌通过简便的原位表面改性工艺对其进行了改性。为了便于使用,设计并实现了装有上述准备好的WS的3D打印手指大小的单元(FSU)。每个单元仅重4克,可以同时减少三种主要的水污染物:细菌,有机染料和重金属离子。此外,有趣的是,新鲜的小麦秸秆是一种柔性材料,碳化后具有出色的导电性。这两个特性(柔韧性和导电性)可以进一步调节水的净化性能。随后的细胞和动物试验证实了仅用FSU净化的水的生物安全性。 (C)2018 Elsevier B.V.保留所有权利。

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