日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Ultrasound-enhanced advanced oxidation processes: mechanisms and applications for treating emerging organic contaminants in water

超声增强高级氧化工艺:处理水中新兴有机污染物的机理及应用

Pang, Xinzhu; Sarvothaman, Varaha P; Roberts, William L; Ranade, Vivek V; Wu, Xu; Lu, Yan

Ultrasonically-enhanced leaching: correlating acoustic spectra and solid particle properties in NMC cathode extraction

超声增强浸出:NMC阴极萃取中声谱与固体颗粒性质的相关性

Canciani, Chiara; Sarvothaman, Varaha P; Viciconte, Gianmaria; Colleoni, Elia; Guida, Paolo; Roberts, William L

Oxidation of Sulphur pollutants in model and real fuels using hydrodynamic cavitation

利用水力空化技术氧化模型燃料和实际燃料中的硫污染物

Delaney, Peter; Sarvothaman, Varaha P; Nagarajan, Sanjay; Rooney, David; Robertson, Peter K J; Ranade, Vivek V

Is cavitation a truly sensible choice for intensifying photocatalytic oxidation processes? - Implications on phenol degradation using ZnO photocatalysts

空化作用真的是强化光催化氧化过程的明智之选吗?——以氧化锌光催化剂降解苯酚为例

Sarvothaman, Varaha P; Velisoju, Vijay K; Subburaj, Janardhanraj; Panithasan, Mebin S; Kulkarni, Shekhar R; Castaño, Pedro; Turner, James; Guida, Paolo; Roberts, William L; Nagarajan, Sanjay

Removal of single and dual ring thiophene's from dodecane using cavitation based processes

使用基于空化的工艺从十二烷中除去单环和双环噻吩

Peter Delaney, Varaha P Sarvothaman, Ronan Colgan, Sanjay Nagarajan, Gunjan Deshmukh, David Rooney, Peter K J Robertson, Vivek V Ranade

Estimation of chemical and physical effects of cavitation by analysis of cavitating single bubble dynamics

通过分析空化单气泡动力学来估算空化作用的化学和物理效应

Pandit, Ajinkya V; Sarvothaman, Varaha P; Ranade, Vivek V