Overview of interfacial interaction mechanisms of bubble-mineral systems at the nanoscale

Zhoujie Wang, Yan Xiang, Jingyi Wang, Zhiyong Gao, Wei Sun, Lei Xie
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Abstract

Understanding the interfacial interaction mechanisms of bubble-mineral systems is of paramount importance in the fields of fundamental science and engineering. Over the past few decades, researchers have employed the techniques such as atomic force microscope colloidal or bubble probe to quantitatively measure the bubble-mineral and bubble-bubble interactions at the nanoscale. However, accurately quantifying the interactions involving deformable bubbles has proven challenging due to the complexity of both theoretical analysis and experimental verification. To improve the understanding of interfacial mechanisms involved in the bubble and mineral systems, an overview of recent nanomechanical advancements in bubble-mineral interaction is required. In this review, we provide a comprehensive review of recent advancements in the nanomechanical understanding of interactions of bubble-mineral particles or surfaces and the interactions of bubble-bubble in mineral systems during various interfacial processes. Furthermore, we highlight the potential challenges for future research in this area. By shedding light on the underlying mechanisms governing interfacial interactions in bubble-mineral systems, this review offers valuable insights and paves the way for the development of effective strategies to manipulate and control these interactions in both environmental and engineering applications.
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纳米尺度气泡-矿物系统界面相互作用机制概览
了解气泡-矿物系统的界面相互作用机制在基础科学和工程学领域至关重要。在过去几十年中,研究人员采用了原子力显微镜胶体或气泡探针等技术来定量测量纳米尺度的气泡-矿物和气泡-气泡相互作用。然而,由于理论分析和实验验证的复杂性,准确量化涉及可变形气泡的相互作用具有挑战性。为了更好地理解气泡与矿物系统中涉及的界面机制,需要对气泡与矿物相互作用的最新纳米力学进展进行综述。在这篇综述中,我们全面回顾了对气泡-矿物颗粒或表面相互作用以及各种界面过程中矿物系统中气泡-气泡相互作用的纳米力学理解的最新进展。此外,我们还强调了该领域未来研究的潜在挑战。通过阐明气泡-矿物系统界面相互作用的基本机制,本综述提供了宝贵的见解,并为在环境和工程应用中开发操纵和控制这些相互作用的有效策略铺平了道路。
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