Evolution mechanism on structural characteristics of lead-contaminated soil in the solidification/stabilization process /
General Material Designation
[Book]
First Statement of Responsibility
Jiang-shan Li.
.PUBLICATION, DISTRIBUTION, ETC
Place of Publication, Distribution, etc.
Singapore :
Name of Publisher, Distributor, etc.
Springer,
Date of Publication, Distribution, etc.
[2019].
PHYSICAL DESCRIPTION
Specific Material Designation and Extent of Item
1 online resource.
SERIES
Series Title
Springer theses
GENERAL NOTES
Text of Note
"Doctoral thesis accepted by Institute of Rock and Soil Mechanics, Chinese Academy of Sciences, Wuhan, China."
INTERNAL BIBLIOGRAPHIES/INDEXES NOTE
Text of Note
Includes bibliographical references.
CONTENTS NOTE
Text of Note
Introduction -- Interfacial Mechanical Effect and Micro-mechanism of Pb-Soil Interaction -- Study on Mechanism of Phosphate-based Cementing Material for S/S of Pb Contaminated Soil -- Evolution on Engineering and Micro structural Characteristic of S/S Treated Pb Contaminated Soil -- Environmental Prediction Model for Leaching Process of S/S treated Pb-contaminated Soil -- Long-term monitoring and analysis evaluation of S/S remediation of Pb-contaminated Soil -- Conclusions and Prospects.
0
SUMMARY OR ABSTRACT
Text of Note
This book highlights the use of Solidification/Stabilization (S/S) to treat lead-contaminated soils, which are widely present in China. It reveals the evolutionary mechanism of the structural characteristics of Pb contaminated soil during the S/S process. In addition, the book systematically analyzes laws influencing the S/S process and its internal mechanisms, and develops new models for the strength prediction and Pb leaching prediction of S/S monolith. The results can provide essential theoretical guidance and parameter-related support for the design of Pb-contaminated soil S/S remediation and recycling solutions.