声化学的演变:从开始到新应用
Alicia Rosales Pérez1, Karen Esquivel Escalante2
1Centro de Investigación en Química para la Economía Circular, CIQEC, Facultad de Química, Universidad Autónoma de Querétaro Centro Universitario, Santiago de Querétaro, 76010, Mexico.
ChemPlusChem
|February 18, 2024
概括
声化学使用超声波来创建声波化,提供了一个环保的"绿色化学"替代方案. 这种多功能技术提高了各种应用的效率和产品质量,从清洁到医药.
科学领域:
- 绿色化学 绿色化学
- 物理化学 物理化学
- 材料科学 材料科学 材料科学
背景情况:
- 声化学利用水性介质中的超声波来诱导声学化.
- 最初是一种清洁技术,它已经扩展到各种化学,物理和生物应用.
- 被公认为一种可持续且具有成本效益的生产方式.
- 绿色化学 是一种绿色化学.
- 由于减少了能源,有毒试剂和废物.
研究的目的:
- 审查声化学的演变和多种应用.
- 为了阐明声洞化在各种领域的物理化学效应.
- 突出声化学在开发更高效的产品和工艺方面的潜力.
主要方法:
- 超声波照射 (USI) 是主要的方法.
- 对音响化现象的分析.
- 对清洁,环境修复,微流体学,生物学和医学领域的应用进行审查.
主要成果:
- 电磁化学提供了非破坏性的优势,如快速的工艺和提高效率.
- 观察到产品质量的提高和特性保留.
- 对食品工业,材料技术,环境修复和生物研究做出了重大贡献.
结论:
- 声化学是一种多功能,可持续和具有成本效益的技术.
- 它为传统工业方法提供了一个环保的替代方案.
- 声化学是一种具有广泛和不断增长的应用潜力的自适应系统.
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