Unravelling interfacial dynamics at the plasma-liquid boundary
Unravelling interfacial dynamics at the plasma-liquid boundary
批准号:
EP/T000104/1
负责人:
Mohammad Hasan
金额:
$28.83万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2019
资助国家:
英国
项目状态:
已结题
起止时间:
2019 至 --
中文摘要
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英文摘要
Plasma-Treated-Liquids (PTL) have emerged as promising solutions for many global societal challenges. Preliminary studies showed remarkable success of PTL in treating antimicrobial infections, which costs the UK economy approximately £3 billion annually. In addition, PTL-based technologies in the food industry showed an ability to extend the shelf-life of many products by several days, which could potentially save UK consumers £6 billion per year by reducing food waste. Despite these exciting preliminary results, there are major challenges impeding the widespread adoption of such PTL technology. One of which is understanding the interaction between the plasma and the treated liquid. This interaction occurs through a plasma-liquid interface which is difficult to study experimentally due to the very small scales in space and time of the interaction. Another challenge is the multi-physics aspect of this interaction, where the plasma interacts with the treated liquid mechanically, chemically, electrically, and thermally. The different aspects of the plasma-liquid interaction are not independent, for example the mechanical interaction affects the chemical interaction, and the electrical interaction affects the mechanical interaction. This multi-physics coupling makes understanding the plasma-liquid interactions even more challenging.The aim of this project is to build an advanced numerical model describing plasma-liquid interfaces, linking the plasma conditions to the properties of the treated liquid, and to compare the model's results to measurable parameters to benchmark it experimentally. The proposed model will implement a novel mathematical approach to resolve the small scales in space and time of the interaction. In addition to combining state-of-the-art numerical methods from multiple disciplines to resolve the strong multi-physics coupling of the problem. Then to use the developed model to understand the complex interactions at plasma-liquid interfaces, encountered in many of the devices under development for tackling the previously mentioned societal challenges, thus accelerating the translation of PTL technology.
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Mutual interaction among multiple surface barrier discharges
多个表面势垒放电之间的相互作用
DOI:
10.1002/ppap.202100181
发表时间:
2022
期刊:
Plasma Processes and Polymers
影响因子:
3.5
作者:
[Gilbart B]
通讯作者:
Gilbart B
DOI:
10.1371/journal.pone.0247589
发表时间:
2021
期刊:
PloS one
影响因子:
3.7
作者:
[Salgado BAB, Fabbri S, Dickenson A, Hasan MI, Walsh JL]
通讯作者:
Walsh JL
DOI:
10.1080/00268976.2021.1998689
发表时间:
2021-11
期刊:
Molecular Physics
影响因子:
1.7
作者:
[Satyanarayana Bonakala;M. Hasan]
通讯作者:
Satyanarayana Bonakala;M. Hasan
Investigations into penetration depth profiles of hydrogenic species in beryllium plasma-facing components via molecular dynamics simulations
通过分子动力学模拟研究面向铍等离子体的组件中氢物质的穿透深度分布
DOI:
10.1088/1361-6587/ad20f9
发表时间:
2024
期刊:
Plasma Physics and Controlled Fusion
影响因子:
2.2
作者:
[Liptak A]
通讯作者:
Liptak A
DOI:
10.1088/1361-6463/abdff4
发表时间:
2021-04-29
期刊:
JOURNAL OF PHYSICS D-APPLIED PHYSICS
影响因子:
3.4
作者:
[Gilbart, B., Dickenson, A., Hasan, M., I]
通讯作者:
Hasan, M., I
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