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Li, Yuan.
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Study on the interface interaction between volatile organic pollutants and soils and thermal remediation evaluation
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Study on the interface interaction between volatile organic pollutants and soils and thermal remediation evaluation/ by Yuan Li.
作者:
Li, Yuan.
出版者:
Singapore :Springer Nature Singapore : : 2025.,
面頁冊數:
xiii, 253 p. :ill. (chiefly color), digital ;24 cm.
附註:
"Doctoral thesis accepted by University of the Chinese Academy of Sciences, Beijing, China."
內容註:
Introduction -- Materials & Methods -- Study On Adsorption Behavior And Desorption Mechanism Of Contaminated Soils In Thermal Environment -- Electrochemical Response And Interface Interaction Mechanism Of Contaminated Soils In Thermal Environment -- Experimental Investigation On Steam Injection Remediation Processes Using Self-Developed Laboratory Models Changes In Engineering And Biological Properties Of Remediated Soils And Evaluation Of Reuse Value -- Overall Discussion & Concluding Remarks.
Contained By:
Springer Nature eBook
標題:
Soil pollution. -
電子資源:
https://doi.org/10.1007/978-981-96-7324-7
ISBN:
9789819673247
Study on the interface interaction between volatile organic pollutants and soils and thermal remediation evaluation
Li, Yuan.
Study on the interface interaction between volatile organic pollutants and soils and thermal remediation evaluation
[electronic resource] /by Yuan Li. - Singapore :Springer Nature Singapore :2025. - xiii, 253 p. :ill. (chiefly color), digital ;24 cm. - Springer theses,2190-5061. - Springer theses..
"Doctoral thesis accepted by University of the Chinese Academy of Sciences, Beijing, China."
Introduction -- Materials & Methods -- Study On Adsorption Behavior And Desorption Mechanism Of Contaminated Soils In Thermal Environment -- Electrochemical Response And Interface Interaction Mechanism Of Contaminated Soils In Thermal Environment -- Experimental Investigation On Steam Injection Remediation Processes Using Self-Developed Laboratory Models Changes In Engineering And Biological Properties Of Remediated Soils And Evaluation Of Reuse Value -- Overall Discussion & Concluding Remarks.
From a microperspective, this book investigates the interface interaction between organic pollutants and soil skeleton, as well as the electrochemical response and the interface mechanical mechanism of contaminated soil in thermal environments. Considering interface behaviors and mechanisms, a one-dimensional soil column and a large-scale three-dimensional laboratory model using steam injection technology were self-developed for the first time to discuss the removal pathways and effectiveness of pollutants under heat-moisture conditions in a simulated in-situ soil stress. In addition, this book also focuses on the mechanical performance and biological resilience of the thermally remediated soil to expand the reuse scenarios of these wastes. This study effectively integrates interdisciplinary knowledge such as soil mechanics, fluid flow in porous medium, and environmental chemistry and innovatively conducts systematic research using theoretical, experimental, and numerical simulation methods to fill the gap in current research on the interaction behaviors, fate mechanisms, remediation pathways, and reuse potential of organic contaminated soils. The methodology established in this book provides a good foundation for the characterization, efficient remediation, and reutilization of organic contaminated soils, filling the gap of a single discipline in solving the issue of contaminated sites and broadening the research perspective and depth for geo-environmental engineering.
ISBN: 9789819673247
Standard No.: 10.1007/978-981-96-7324-7doiSubjects--Topical Terms:
540479
Soil pollution.
LC Class. No.: TD878
Dewey Class. No.: 628.55
Study on the interface interaction between volatile organic pollutants and soils and thermal remediation evaluation
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From a microperspective, this book investigates the interface interaction between organic pollutants and soil skeleton, as well as the electrochemical response and the interface mechanical mechanism of contaminated soil in thermal environments. Considering interface behaviors and mechanisms, a one-dimensional soil column and a large-scale three-dimensional laboratory model using steam injection technology were self-developed for the first time to discuss the removal pathways and effectiveness of pollutants under heat-moisture conditions in a simulated in-situ soil stress. In addition, this book also focuses on the mechanical performance and biological resilience of the thermally remediated soil to expand the reuse scenarios of these wastes. This study effectively integrates interdisciplinary knowledge such as soil mechanics, fluid flow in porous medium, and environmental chemistry and innovatively conducts systematic research using theoretical, experimental, and numerical simulation methods to fill the gap in current research on the interaction behaviors, fate mechanisms, remediation pathways, and reuse potential of organic contaminated soils. The methodology established in this book provides a good foundation for the characterization, efficient remediation, and reutilization of organic contaminated soils, filling the gap of a single discipline in solving the issue of contaminated sites and broadening the research perspective and depth for geo-environmental engineering.
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