Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Visualisation of Multi-Scale Desorption Dynamics in Clay-Coated Microfluidic Channels: Optimising Recovery Strategies for Valuable Contaminants

View through CrossRef
Recovering valuable water contaminants is a cornerstone of sustainable water management, addressing environmental challenges, and resource scarcity, and promoting sustainable resource management and circular economy principles. Among various techniques for contaminant sequestration and recovery, sorption-desorption methods stand out for their operational simplicity, cost-effectiveness, and high efficiency, while minimising harmful by-products during both removal and recovery processes. While sorption processes have been extensively studied, desorption dynamics remain underexplored despite their importance in recovering and recycling commercially valuable substances. Traditionally, dynamic sorption-desorption processes are studied using column experiments with effluent and solid surface analysis, nevertheless, these methods fail to spot pore-scale solid-fluid interactions. Moreover, studying pore-scale interfacial processes in soil is challenging due to the opacity and heterogeneity of soil environments. Overcoming these challenges demands innovative, multidisciplinary approaches to visualize and analyse these processes.To advance the understanding of pore-scale desorption dynamics, this study introduces an innovative microfluidic approach for investigating contaminant desorption in clay-rich porous media. Polydimethylsiloxane (PDMS) microfluidic channels were functionalised with transparent clay coatings to replicate the physicochemical properties of natural clay-rich soil environments. These clay-coated channels represent the complex, multi-scale, tortuous pore networks characteristic of heterogeneous clay-rich systems. However, creating stable coatings that endure flow conditions, replicate geomaterial properties, and enable pore-scale visualisation remains challenging. To address this, we proposed a solvent-free powder coating method combined with plasma and heat treatments, followed by the injection of a water-based solution to form a porous network of clay aggregates. This coating strategy supports the direct visualisation of fluid-solid interactions at pore scale under varying flow conditions, providing unique insights into contaminant recovery dynamics.The proposed coating protocol effectively creates stable clay coatings on PDMS substrates under various flow conditions, ensuring reliable and reproducible observations for dynamic flow experiments. Flow and tracer experiments were conducted across a range of pore geometries and flow rates, which reveal the influence of the microscale flow attributes on desorption processes across various flow dynamics and porous geometries. The results demonstrate that desorption behaviour is intricately influenced by the interplay of flow dynamics and pore geometry. Higher flow rates were found to accelerate contaminant desorption, significantly reducing the time required for recovery, but often leaving higher residual contaminant concentrations. Therefore, increasing the flow rates does not always enhance recovery efficiency, as residual contaminant concentrations often remain higher under high flow rate conditions. Conversely, lower flow rates, though slower in achieving complete desorption, were found to result in a lower residual contaminant mass. These findings highlight a critical trade-off between recovery speed and total contaminant removal, thus indicating the importance of optimising flow conditions to balance recovery process efficiency and environmental footprint.The insights gained hold significant potential for designing reactive porous filters with precise flow control, enabling more effective and sustainable remediation strategies, particularly for emerging contaminants like pharmaceuticals, heavy metals, and persistent pollutants. By optimising flow conditions and understanding the role of porous media characteristics, this research advances efficient contaminant recovery systems aligned with sustainable management and circular economy goals, promoting resource recovery and reuse from contaminated water.
Copernicus GmbH
Title: Visualisation of Multi-Scale Desorption Dynamics in Clay-Coated Microfluidic Channels: Optimising Recovery Strategies for Valuable Contaminants
Description:
Recovering valuable water contaminants is a cornerstone of sustainable water management, addressing environmental challenges, and resource scarcity, and promoting sustainable resource management and circular economy principles.
Among various techniques for contaminant sequestration and recovery, sorption-desorption methods stand out for their operational simplicity, cost-effectiveness, and high efficiency, while minimising harmful by-products during both removal and recovery processes.
While sorption processes have been extensively studied, desorption dynamics remain underexplored despite their importance in recovering and recycling commercially valuable substances.
Traditionally, dynamic sorption-desorption processes are studied using column experiments with effluent and solid surface analysis, nevertheless, these methods fail to spot pore-scale solid-fluid interactions.
Moreover, studying pore-scale interfacial processes in soil is challenging due to the opacity and heterogeneity of soil environments.
Overcoming these challenges demands innovative, multidisciplinary approaches to visualize and analyse these processes.
To advance the understanding of pore-scale desorption dynamics, this study introduces an innovative microfluidic approach for investigating contaminant desorption in clay-rich porous media.
Polydimethylsiloxane (PDMS) microfluidic channels were functionalised with transparent clay coatings to replicate the physicochemical properties of natural clay-rich soil environments.
These clay-coated channels represent the complex, multi-scale, tortuous pore networks characteristic of heterogeneous clay-rich systems.
However, creating stable coatings that endure flow conditions, replicate geomaterial properties, and enable pore-scale visualisation remains challenging.
To address this, we proposed a solvent-free powder coating method combined with plasma and heat treatments, followed by the injection of a water-based solution to form a porous network of clay aggregates.
This coating strategy supports the direct visualisation of fluid-solid interactions at pore scale under varying flow conditions, providing unique insights into contaminant recovery dynamics.
The proposed coating protocol effectively creates stable clay coatings on PDMS substrates under various flow conditions, ensuring reliable and reproducible observations for dynamic flow experiments.
Flow and tracer experiments were conducted across a range of pore geometries and flow rates, which reveal the influence of the microscale flow attributes on desorption processes across various flow dynamics and porous geometries.
The results demonstrate that desorption behaviour is intricately influenced by the interplay of flow dynamics and pore geometry.
Higher flow rates were found to accelerate contaminant desorption, significantly reducing the time required for recovery, but often leaving higher residual contaminant concentrations.
Therefore, increasing the flow rates does not always enhance recovery efficiency, as residual contaminant concentrations often remain higher under high flow rate conditions.
Conversely, lower flow rates, though slower in achieving complete desorption, were found to result in a lower residual contaminant mass.
These findings highlight a critical trade-off between recovery speed and total contaminant removal, thus indicating the importance of optimising flow conditions to balance recovery process efficiency and environmental footprint.
The insights gained hold significant potential for designing reactive porous filters with precise flow control, enabling more effective and sustainable remediation strategies, particularly for emerging contaminants like pharmaceuticals, heavy metals, and persistent pollutants.
By optimising flow conditions and understanding the role of porous media characteristics, this research advances efficient contaminant recovery systems aligned with sustainable management and circular economy goals, promoting resource recovery and reuse from contaminated water.

Related Results

ANALISIS PERTIMBANGAN MAHKAMAH AGUNG DALAM MENGABULKAN KASASI TERDAKWA (STUDI PUTUSAN NOMOR 2959/K/PID.SUS/2022)
ANALISIS PERTIMBANGAN MAHKAMAH AGUNG DALAM MENGABULKAN KASASI TERDAKWA (STUDI PUTUSAN NOMOR 2959/K/PID.SUS/2022)
<p><em><span class="markedContent"><span style="left: calc(var(--scale-factor)*195.53px); top: calc(var(--scale-factor)*496.87px); font-size: calc(var(--scale-...
Situated Visualization in Motion
Situated Visualization in Motion
Visualisation localisée en mouvement Dans ma thèse, je définis ce qu'est la visualisation en mouvement et j'apporte plusieurs contributions sur la manière de visual...
Laboratory studies on Temperature-Programmed Desorption analyzes of prebiotic molecules in space
Laboratory studies on Temperature-Programmed Desorption analyzes of prebiotic molecules in space
Through laboratory analyses it is possible to study the physical and chemical processes involving prebiotic molecules, the building blocks of life. Today thanks to the advent of ne...
KEDUDUKAN AHLI BAHASA DALAM PEMBUKTIAN PERKARA PENCEMARAN NAMA BAIK (STUDI PUTUSAN NOMOR: 47/PID.SUS/2019/PN. MGT)
KEDUDUKAN AHLI BAHASA DALAM PEMBUKTIAN PERKARA PENCEMARAN NAMA BAIK (STUDI PUTUSAN NOMOR: 47/PID.SUS/2019/PN. MGT)
<em><span id="page3R_mcid52" class="markedContent"><span style="left: calc(var(--scale-factor)*125.30px); top: calc(var(--scale-factor)*539.11px); font-size: calc(va...
The role of earthworms and water infiltration in clay mixing in peat meadows
The role of earthworms and water infiltration in clay mixing in peat meadows
Peat meadows in the Netherlands emit around 3% of the country&#8217;s total CO2 emissions. Measures to reduce the CO2 emissions in agricultural peat areas are mostly based on w...
Current therapeutic strategies for erectile function recovery after radical prostatectomy – literature review and meta-analysis
Current therapeutic strategies for erectile function recovery after radical prostatectomy – literature review and meta-analysis
Radical prostatectomy is the most commonly performed treatment option for localised prostate cancer. In the last decades the surgical technique has been improved and modified in or...
Factors Affecting Clay Formation
Factors Affecting Clay Formation
AbstractBarshad’s method of calculating clay formation from the chemical analyses of the whole soil, the clay fraction, the nonelay fraction, and the mechanical analysis was applie...
Physical and tangible information visualization
Physical and tangible information visualization
Visualisation physique et tangible de l'information Les visualisations, dans le sens général de représentations externes et physiques de données, sont plus ancienne...

Back to Top