Biodiversity and ecosystem services on post-industrial land / (Record no. 95802)

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005 - DATE AND TIME OF LATEST TRANSACTION
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007 - PHYSICAL DESCRIPTION FIXED FIELD--GENERAL INFORMATION
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008 - FIXED-LENGTH DATA ELEMENTS--GENERAL INFORMATION
fixed length control field 260626t20252025njua ob 001 0 eng
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
International Standard Book Number 9781394187386
Qualifying information hardcover
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
International Standard Book Number 1394187408
Qualifying information electronic book
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
International Standard Book Number 9781394187393
Qualifying information electronic book
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
International Standard Book Number 1394187394
Qualifying information electronic book
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
International Standard Book Number 9781394187416
Qualifying information electronic book
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
International Standard Book Number 1394187416
Qualifying information electronic book
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
International Standard Book Number 9781394187409
Qualifying information (electronic bk.)
035 #9 - SYSTEM CONTROL NUMBER
System control number (OCLCCM-Owned)1451802744
041 ## - LANGUAGE CODE
Language code of text/sound track or separate title eng
082 00 - DEWEY DECIMAL CLASSIFICATION NUMBER
Edition number 23
Classification number 333.73/153
245 00 - TITLE STATEMENT
Title Biodiversity and ecosystem services on post-industrial land /
Statement of responsibility, etc edited by Vimal Chandra Pandey.
264 #1 - PUBLICATION, DISTRIBUTION, ETC. (IMPRINT)
Place of publication, distribution, etc Hoboken, NJ :
Name of publisher, distributor, etc John Wiley & Sons, Inc.,
Date of publication, distribution, etc 2024.
264 #4 - PUBLICATION, DISTRIBUTION, ETC. (IMPRINT)
Date of publication, distribution, etc ©2024
300 ## - PHYSICAL DESCRIPTION
Extent 1 online resource (xxvii, 385 pages) :
Other physical details illustrations (chiefly color)
336 ## - CONTENT TYPE
Content type term text
Content type code txt
Source rdacontent
337 ## - MEDIA TYPE
Media type term computer
Media type code c
Source rdamedia
338 ## - CARRIER TYPE
Carrier type term online resource
Carrier type code cr
Source rdacarrier
504 ## - BIBLIOGRAPHY, ETC. NOTE
Bibliography, etc Includes bibliographical references and index.
505 0# - CONTENTS
Formatted contents note Table of Contents<br/>List of Contributors xv<br/><br/>About the Editor xxi<br/><br/>Foreword xxiii<br/><br/>Preface xxv<br/><br/>Acknowledgments xxvii<br/><br/>1 Mining Sustainability: A Reality in Arid Zones 1<br/>Elizabeth J. Lam, Italo L. Montofré, and Fernando A. Alvarez<br/><br/>1.1 Introduction 1<br/><br/>1.2 Mining in Chile 3<br/><br/>1.3 Chile: Arid Zone Mining 6<br/><br/>1.4 Circular Mining and Arid Zone Sustainability 13<br/><br/>1.5 Conclusions 17<br/><br/>References 18<br/><br/>2 Restoring Biodiversity and Ecosystem Services on Post-Industrial Land: Challenges and Opportunities 25<br/>Sameer Shekhar, Shubham Abhishek, Bhanu Pandey, and Siddharth Singh<br/><br/>2.1 Introduction 25<br/><br/>2.2 Post-Industrial Landscapes: A Brief Overview 26<br/><br/>2.3 Biodiversity on Post-Industrial Land 28<br/><br/>2.4 Ecosystem Services on Post-Industrial Land 30<br/><br/>2.5 Restoring Biodiversity and Ecosystem Services on Post-Industrial Land 34<br/><br/>2.6 Policy and Management for Post-Industrial Landscapes 37<br/><br/>2.7 Key Findings and Implications 41<br/><br/>2.8 Challenges and Future Research Directions 41<br/><br/>2.9 Conclusion 43<br/><br/>References 43<br/><br/>3 Spontaneous Flora on Post-industrial Metalliferous Sites 53<br/>Ksenija Jakovljević, Tomica Mišljenović, and Dragana Ranđelović<br/><br/>3.1 Introduction 53<br/><br/>3.2 Definition and Types of Post-industrial Sites 54<br/><br/>3.3 Spontaneous Flora: Characteristics and Benefits 63<br/><br/>3.4 Spontaneous Flora in Post-industrial Sites: Current Findings 65<br/><br/>3.5 Ecosystem Services of Spontaneous Flora on Post-industrial Metalliferous Sites 76<br/><br/>3.6 Conclusions 82<br/><br/>Acknowledgments 83<br/><br/>References 83<br/><br/>4 Restoration Ecosystem Toward Spontaneous Succession on Reclaimed Mining Sites 97<br/>Marcin Pietrzykowski, Bartłomiej Woś, Justyna Likus-Cieślik, Marek Pająk, Edyta Sierka, and Barbara Stalmachová<br/><br/>4.1 Introduction 97<br/><br/>4.2 Biodiversity of Succession Communities on Mine Sites 98<br/><br/>4.3 Mine Soil Development Under Reclamation and Successional Communities 104<br/><br/>4.4 Biomass and Wood Productivity Potential of Reclaimed and Successional Plant Communities 106<br/><br/>4.5 Plant Communities from Succession as Indicators of Site Conditions 107<br/><br/>4.6 Managed Succession on Post-Mine Sites 109<br/><br/>4.7 Example of a Reclamation by Using Vegetation Communities from Succession 110<br/><br/>4.8 Conclusion 111<br/><br/>Acknowledgments 112<br/><br/>References 112<br/><br/>5 Plant Diversity on Post-Industrial Land: Resilience and Restoration 119<br/>Shivali Sharma, Jonnada Likhita, Sunny Sharma, Gaurav Sharma, Amit Kumar, Rupesh Kumar, and Vimal Chandra Pandey<br/><br/>5.1 Introduction 119<br/><br/>5.2 Numerous Elements that Promote Industrialization 121<br/><br/>5.3 Industrial Impact on Plant Communities 122<br/><br/>5.4 Effects of Toxins Released by Various Industries 125<br/><br/>5.5 Mechanisms of Plant Resilience 125<br/><br/>5.6 Case Studies 138<br/><br/>5.7 Challenges and Failures 141<br/><br/>5.8 Ecological Restoration 143<br/><br/>5.9 Introduction of Important Species 146<br/><br/>5.10 Success Stories in Restoration 147<br/><br/>5.11 Policy Implications 155<br/><br/>5.12 Conclusion and Ways Forward 157<br/><br/>References 159<br/><br/>6 Plantation Forestry for Ecorestoration: A Working Premises 171<br/>Manoj Kumar Jhariya, Abhishek Raj, Arnab Banerjee, Surendra Singh Bargali, and Kiran Bargali<br/><br/>6.1 Introduction 171<br/><br/>6.2 Plantation Forestry: Global Area Context 173<br/><br/>6.3 Expansion of Plantation Forestry to Industrial Forest Plantation 173<br/><br/>6.4 Species Grown in Forest Plantations 175<br/><br/>6.5 Ecosystem Services Through Plantation Forestry 175<br/><br/>6.6 Plantation Forestry Through a Reforestation Approach 178<br/><br/>6.7 Ecological Restoration and Sustainability 179<br/><br/>6.8 Forest Restoration 180<br/><br/>6.9 Plantation Forestry for Climate Change Mitigation 180<br/><br/>6.10 Socioeconomic Perspective of Restoration 181<br/><br/>6.11 Future Perspective 182<br/><br/>6.12 Conclusion 183<br/><br/>References 183<br/><br/>7 Soil Biodiversity and Plant-Microbes Interactions on Post-Industrial Land 189<br/>Aneta Kowalska and Anna Grobelak<br/><br/>7.1 Loss of Soil Biodiversity on Post-Industrial Land 189<br/><br/>7.2 Biodiversity as an Opportunity for Sustainable Transformation of Mining Regions 190<br/><br/>7.3 Treatments Increasing the Biodiversity of Post-Industrial Soil 191<br/><br/>7.4 Post-Industrial Areas as a Refuge of Biodiversity 192<br/><br/>7.5 Plant-Growth-Promoting Microbes and Their Feasibility for Recultivation of Post-Industrial Lands 193<br/><br/>7.6 Summary and Conclusions 194<br/><br/>Acknowledgments 195<br/><br/>References 195<br/><br/>8 Afforestation of Former Asbestos Mines in Quebec, Canada: An Efficient Nature-Based Climate Solution that also Leads to Gains in Biodiversity 199<br/>Nicolas Bélanger, Laurence Grimond, Rim Khlifa, Simon Bilodeau-Gauthier, and David Rivest<br/><br/>8.1 Introduction 199<br/><br/>8.2 Historical Background of Asbestos Mining in Canada 201<br/><br/>8.3 Typical Ecological Restoration 204<br/><br/>8.4 Afforestation 209<br/><br/>8.5 Carbon Sequestration 220<br/><br/>8.6 Gains in Plant and Faunal Diversity Following Afforestation 224<br/><br/>8.7 Conclusion 230<br/><br/>Acknowledgments 231<br/><br/>References 231<br/><br/>9 Bauxite Mine Restoration and Management 241<br/>Shailesh Kumar Yadav, Arnab Banerjee, Manoj Kumar Jhariya, Abhishek Raj, Surendra Singh Bargali, and Vimal Chandra Pandey<br/><br/>9.1 Introduction 241<br/><br/>9.2 Impact of Bauxite Mining 241<br/><br/>9.3 Approaches Toward Management of the Impact of Bauxite Mining 245<br/><br/>9.4 Restoration Targets and Objectives 246<br/><br/>9.5 Stages of Restoration Planning and Implementation 247<br/><br/>9.6 Restoration Implementation 248<br/><br/>9.7 Sustainable Bauxite Mining 254<br/><br/>9.8 Rehabilitation and Restoration in Surguja – A Case Study from Chhattisgarh, India 254<br/><br/>9.9 Conclusion 256<br/><br/>9.10 Future Directives 256<br/><br/>References 258<br/><br/>10 Role of the Local Government in Re-Use of Post-Industrial Sites in Poland 263<br/>Katarzyna Sadowy<br/><br/>10.1 Introduction 263<br/><br/>10.2 Post-Industrial Sites in Poland 266<br/><br/>10.3 Role of the Voivodeships and Municipalities in the Management of Post-Industrial Areas 272<br/><br/>10.4 Conclusions 281<br/><br/>Acknowledgement 282<br/><br/>References 282<br/><br/>11 Restoration of Ecosystem Services of Endangered Wetlands in Post Oil and Gas Exploration Era in the Niger Delta, Nigeria 285<br/>Aroloye O. Numbere, Victoria C. Obinna, Eberechukwu M. Maduike, and Austin E. Abah<br/><br/>11.1 Introduction 285<br/><br/>11.2 Characterization of Wetlands in the Niger Delta 287<br/><br/>11.3 Impact of Oil and Gas Exploration on Wetlands of the Niger Delta 289<br/><br/>11.4 Sedimentary Environment of the Niger Delta 295<br/><br/>11.5 Causes of Wetland Degradation 297<br/><br/>11.6 Ecosystem Services in a Restored Wetland 300<br/><br/>11.7 Sustainable Management of the Wetland in the Niger Delta 301<br/><br/>11.8 Policy Development of Wetlands in the Niger Delta 302<br/><br/>11.9 Conclusion and Recommendations 304<br/><br/>References 304<br/><br/>12 Carbon Sequestration in Revegetated Coal Mine Soil: A Chronosequence Study in the Gevra Opencast Project, Chhattisgarh, India 307<br/>Preeti Singh, Amlan Kumar Ghosh, Ebhin Masto, Santosh Kumar, and Chandini Pradhan<br/><br/>12.1 Introduction 307<br/><br/>12.2 Analysis and Classification of Organic Residue/Plant Materials: Impacts on Carbon Sequestration in Soil 308<br/><br/>12.3 Litterfall Dynamics, Seasonal Variations, and Implications for Soil Organic Carbon Sequestration 309<br/><br/>12.4 Impact of Plant Litter Quality on Decomposition Rate and Soil Health in Restored Coal Mine Areas of Chhattisgarh, India 309<br/><br/>12.5 Role of Plant-Microbe Interactions in Soil Carbon Sequestration: Insights from Microbial Biomass Carbon Dynamics 310<br/><br/>12.6 Different Pools of Soil Organic Carbon in Restored Mine Soil 312<br/><br/>12.7 Total Organic Carbon, C Stock, and C Sequestration in Reclaimed Mine Soil 313<br/><br/>12.8 Insights from Spectroscopic Analysis on Soil Organic Carbon Characteristics in Restored Mine Soils 317<br/><br/>12.9 Conclusion 322<br/><br/>References 324<br/><br/>13 Ecosystem Services from Rehabilitated Waste Dumpsites 329<br/>ml Dotaniya, CK Dotaniya, Kuldeep Kumar, RK Yadav, RK Doutaniya, HM Meena, DK Yadav, Saurabh Shukla, AO Shirale, and Manju Lata<br/><br/>13.1 Introduction 329<br/><br/>13.2 Different Types of Pollution 332<br/><br/>13.3 Risk Assessment of Metal Pollution 336<br/><br/>13.4 Source of Contamination and Its Identification 337<br/><br/>13.5 Effect on Ecological Services 338<br/><br/>13.6 Important Rehabilitated Waste Dumpsites 340<br/><br/>13.7 Ecosystem Services from Rehabilitated Waste Dumpsites 342<br/><br/>13.8 Improvement in Ecological Services by Improving the Waste Discharge Process 342<br/><br/>13.9 Strategies for Improving Ecological Services 344<br/><br/>13.10 Challenges Faced During Rehabilitation 346<br/><br/>13.11 Conclusions 346<br/><br/>References 347<br/><br/>14 Harnessing Aromatic Plants for Phytoremediation: A Scented Solution for Ecology and Economy 357<br/>Vimal Chandra Pandey, Valeria Ancona, D. D. Tewari, and Sanat Kumar Dwibedi<br/><br/>14.1 Introduction 357<br/><br/>14.2 Aromatic Grasses 358<br/><br/>14.3 Aromatic Grasses and Their Phytoremediation Potential 360<br/><br/>14.4 Manifold Usages of Aromatic Grasses 367<br/><br/>14.5 Aromatic Grasses Rooted in UN-SDGs 368<br/><br/>14.6 Conclusion and Prospects 369<br/><br/>References 372<br/><br/>Index 381
520 ## - SUMMARY, ETC.
Summary, etc "Mining, especially in open pits, as well as other industrial activities claim large land areas and leave them in a barren and contaminated state once the operation is completed. Decontaminating such post-industrial sites and restoring them with a functioning ecosystem has become a prime challenge for countries world-wide, in particular those with limited arable soil and forest resources. Ecological engineering helps this process along, by managing the microbiology and plant cover for a speedy recovery of essential ecosystem services"--
Assigning source Provided by publisher.
545 0# - BIOGRAPHICAL OR HISTORICAL DATA
Biographical or historical note About the Author<br/>Dr. Vimal Chandra Pandey is a leading researcher in the field of phytomanagement of polluted sites. He is listed in the World’s Top 2% Scientists, announced by Stanford ­University and Elsevier BV. He serves as Editor, Advisory Board and Editorial Board Member for various journals, including Land Degradation and Development; Restoration ­Ecology; Environment, Development and Sustainability; Ambio; Clean−Soil Air Water; ­Discover Sustainability; Environmental Management; and Bulletin of Environmental Contamination and Toxicology.
588 ## - SOURCE OF DESCRIPTION NOTE
Source of description note Description based on online resource; title from digital title page (viewed on October 31, 2024).
650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name as entry element Restoration ecology.
Authority record control number http://id.loc.gov/authorities/subjects/sh87004578
650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name as entry element Abandoned mined lands reclamation.
Authority record control number http://id.loc.gov/authorities/subjects/sh95006199
650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name as entry element Biodiversity.
Authority record control number http://id.loc.gov/authorities/subjects/sh87005569
650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name as entry element Soil remediation.
Authority record control number http://id.loc.gov/authorities/subjects/sh93000049
655 #4 - INDEX TERM--GENRE/FORM
Genre/form data or focus term Electronic books.
700 1# - ADDED ENTRY--PERSONAL NAME
Personal name Pandey, Vimal Chandra,
Relator term editor.
Real World Object URI https://id.oclc.org/worldcat/entity/E39PCjFkwwy96DH6GvrRgJQtqP
Authority record control number http://id.loc.gov/authorities/names/no2019054787
856 40 - ELECTRONIC LOCATION AND ACCESS
Uniform Resource Identifier https://onlinelibrary.wiley.com/doi/book/10.1002/9781394187416
Link text Full text is available at Wiley Online Library. Click here to view.
942 ## - ADDED ENTRY ELEMENTS
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Item type EBOOK
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          COLLEGE LIBRARY COLLEGE LIBRARY 2026-06-27 333.73153 B5204 2024 2026-06-27 2026-06-27 EBOOK

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