吸附
水溶液中的金属离子
材料科学
蜂群(蜜蜂)
污染物
纳米材料
纳米技术
人体净化
金属
化学工程
环境修复
多孔性
重金属
离子
纳米复合材料
环境化学
污染
化学
有机化学
废物管理
复合材料
冶金
工程类
生物
植物
生态学
作者
Yabin Zhang,Kai Yan,Fengtong Ji,Li Zhang
标识
DOI:10.1002/adfm.201806340
摘要
Abstract The increasing accumulation of heavy metal ions in our surroundings is posing a serious threat to living systems. Adsorption means based on a variety of micro/nanomaterials and micro/nanomanipulation are being employed for fast and highly efficient removal of various pollutants. Here, a kind of biohybrid adsorbents is developed through in situ growing magnetic Fe 3 O 4 nanoparticles on hydrothermally‐treated fungi spores. Such organic/inorganic porous spore@Fe 3 O 4 biohybrid adsorbents (PSFBAs) can effectively adsorb and remove heavy metal ions due to porous structuring and high‐adsorbing components. Once combined with a magnetically‐driven microrobotic technique, magnetic PSFBAs in controllably collective motion show enhanced adsorption capacity and shorter removal time for multiple heavy metal ions compared to nonmotile counterparts. The corresponding magnetic actuation of collective PSFBAs swarming into a narrow fluidic channel is demonstrated. When utilizing these adsorbents together with magnetically‐propelled swarming microrobotic technique, lead ions in contaminated water are rapidly removed from 5 ppm down to 0.9 ppm, superior to untreated and static counterparts. Furthermore, such magnetically‐propelled PSFBAs can be reused after facile separation and post‐treatment, which is demonstrated by four consecutive cycles. The combination of biological entities and swarming microrobotic techniques would provide a promising avenue for the decontamination of pollutants in environmental remediation.
科研通智能强力驱动
Strongly Powered by AbleSci AI