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相关概念视频

Filtration00:53

Filtration

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Filtration is a physical separation process that involves passing a suspension through a porous medium to separate solids from fluids. During filtration, solids collect on the porous medium while liquids, also collectively known as the filtrate, pass through. The filtration medium is selected based on the filtration purpose, quantity, and nature of the precipitate. The general criteria for a suitable filtering medium are that it is inert, mechanically strong, nonabsorbent toward dissolved...
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Physical Methods for Controlling Microbial Growth: Radiation and Filtration01:26

Physical Methods for Controlling Microbial Growth: Radiation and Filtration

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Radiation and filtration are essential tools for microbial control, targeting microorganisms through distinct mechanisms. Radiation eliminates microbes by damaging their DNA, either killing them or inhibiting their growth. Based on wavelength, radiation is classified into two types: nonionizing and ionizing radiation.Non-ionizing radiation, such as UV radiation (200–400 nm), is absorbed by DNA, causing defects that effectively disinfect surfaces, air, and water, including safety cabinets.
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使用多孔陶基泡泡增强过系统进行高效的空气净化.

Junkai Ren1,2, Ran Gao3,4, Angui Li5,6

  • 1School of Building Services Science and Engineering, Xi'an University of Architecture and Technology, Xi'an, Shaanxi, China.

Communications engineering
|November 29, 2025
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概括

一种基于多孔陶的新型气泡增强过系统 (PCBEFS) 提供了优异的湿去除颗粒物和多个空气净化功能. 这种创新系统克服了现有技术的局限性,以有效地管理室内空气质量.

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科学领域:

  • 材料科学 材料科学 材料科学
  • 环境工程 环境工程
  • 化学工程是化学工程的重要组成部分.

背景情况:

  • 干式过材料的初始效率很高,但再生能力差,功能有限.
  • 基于液体的净化方法提供高捕获潜力,但与材料强度,制造和可扩展性作斗争.
  • 现有的空气净化技术在实现多功能性能和长期可用性方面面临挑战.

研究的目的:

  • 开发一种基于多孔陶的新型气泡增强过系统 (PCBEFS),用于多功能室内空气净化.
  • 调查PCBEFS在去除颗粒物,甲和提供空气加湿和抗菌功能的性能.
  • 建立一个数学模型,阐明结构-活动关系,并在PCBEFS中捕获机制.

主要方法:

  • 制造可调节的多孔陶,在水中充当泡发生器.
  • 将多孔陶集成到气泡增强过系统中,用于空气净化.
  • 开发一种与孔隙结构,泡特性和去除效率相关联的经验数学模型.

主要成果:

  • 在PCBEFS证明了高效的湿去除颗粒物.
  • 该系统同时提供了空气加湿,甲去除和抗菌功能.
  • 已建立的数学模型揭示了结构-活动关系和捕获机制的洞察力.

结论:

  • PCBEFS有效地解决了传统和现有的基于液体的空气净化系统的局限性.
  • 该系统为具有重大工程潜力的多功能室内空气污染控制提供了一个有前途的解决方案.
  • 这些发现有助于更深入地了解空气净化应用中的多孔材料和气液接口.