001438643 000__ 06787cam\a2200517\a\4500 001438643 001__ 1438643 001438643 003__ OCoLC 001438643 005__ 20230309004346.0 001438643 006__ m\\\\\o\\d\\\\\\\\ 001438643 007__ cr\un\nnnunnun 001438643 008__ 210802s2021\\\\si\\\\\\o\\\\\000\0\eng\d 001438643 019__ $$a1263027606 001438643 020__ $$a9789811609176$$q(electronic bk.) 001438643 020__ $$a9811609179$$q(electronic bk.) 001438643 020__ $$z9811609160 001438643 020__ $$z9789811609169 001438643 0247_ $$a10.1007/978-981-16-0917-6$$2doi 001438643 035__ $$aSP(OCoLC)1262554110 001438643 040__ $$aYDX$$beng$$epn$$cYDX$$dGW5XE$$dEBLCP$$dOCLCO$$dN$T$$dOCLCF$$dUKAHL$$dCOM$$dOCLCQ$$dOCLCO$$dOCLCQ 001438643 049__ $$aISEA 001438643 050_4 $$aS591 001438643 08204 $$a631.4$$223 001438643 24500 $$aSoil science :$$bfundamentals to recent advances /$$cAmitava Rakshit, S.K Singh, P.C. Abhilash, Asim Biswas, editors. 001438643 260__ $$aSingapore :$$bSpringer,$$c2021. 001438643 300__ $$a1 online resource 001438643 336__ $$atext$$btxt$$2rdacontent 001438643 337__ $$acomputer$$bc$$2rdamedia 001438643 338__ $$aonline resource$$bcr$$2rdacarrier 001438643 5050_ $$aChapter 1. Managing Soil Resources for Human Health and Environmental Sustainability -- Chapter 2. Soil Organic Carbon Dynamics, Stabilization and Environmental Implication -- Chapter 3. Soil Organic Carbon: Past, Present and Future Research -- Chapter 4. Below-ground carbon storage and dynamics -- Chapter 5. Soil Biodiversity and Community Composition for Ecosystem Services -- Chapter 6. Rhizodeposition: an Unseen Teaser of Nature and its Prospects in Nutrients Dynamics -- Chapter 7. Soil Indicators and Management Strategies for Agro-environmental Sustainability -- Chapter 8. Conservation agriculture in reshaping below ground microbial diversity -- Chapter 9. Saline and Sodic Ecosystems in the Changing World -- Chapter 10. Approaches in Advanced Soil Elemental Extractability: Catapulting Future Soil-Plant Nutrition Research -- Chapter 11. Liquid Biofertilizer: A Potential Tool Towards Sustainable Agriculture -- Chapter 12. Biochar Role in Mitigation of Greenhouse Gas Emissions from Agricultural Soils -- Chapter 13. Nanotechnology is an Art for Native Nutrient Mobilization and Enhanced Use Efficiency -- Chapter 14. Nanotechnology in Environmental Soil Science -- Chapter 15. Importance of Soil Heterogeneity in Variety Testing Programs -- Chapter 16. Environmental and societal implications of soil response to increasing agricultural demands,- Chapter 17. Soil centric approaches towards climate resilient agriculture -- Chapter 18. Functional Diversity Management through Microbial Integrity for Sustainability -- Chapter 19. The Effect of Crops and Farming Systems on Soil Quality: A Case study -- Chapter 20. Role of Biochar on Greenhouse Gas Emissions and Carbon Sequestration in Soil: Opportunities for Mitigating Climate change -- Chapter 21. Employment of seed priming as a salt-stress mitigating approach in agriculture: challenges and opportunities -- Chapter 22. Microbial Approaches for Bio-Amelioration and Management of Salt Affected Soils -- Chapter 23. Role of zeolites in improving nutrient and water storage capacity of soil and their impact on overall soil quality and crop performance -- Chapter 24 Sulfur in Soil: Abiotic Stress Signaling, Transmission and Induced Physiological Responses in Plants -- Chapter 25. Reducing methane emission from lowland rice ecosystem -- Chapter 26. Potential and Risk of Nanotechnology Application in Agriculture vis-à-vis Nano micronutrient Fertilizers -- Chapter 27. Introduction to drone technology for natural resource management in agriculture -- Chapter 28. High-throughput estimation of soil nutrient and residue cover: a step towards precision agriculture -- Chapter 29. Global development in Soil Science Research: Agriculture Sensors and Technologies -- Chapter 30. Soil science research and development in Latin America and the Caribbean -- Chapter 31. The frontiers in soil science research: An African perspective -- Chapter 32. Improvement of Soil quality by solid waste recycling: A Global Perspective. Chapter 33. Nutrient Sufficiency Range of Soils and Plants in Singapore -- Chapter 34. Calcareous Oolitic Limestone Rockland Soils of the Bahamas: Some Physical, Chemical and Fertility Characteristics. Chapter 35. Consequences of anthropogenic disturbance on variation of soil properties and food security: An Asian story -- Chapter 36. Natural Resource Management and Conservation for Smallholder farming in India: Strategies and Challenges -- Chapter 37. Soil and Water Management in India: Challenges and Opportunities -- Chapter 38. Indian Fertiliser Policy: Retrospect and Prospect -- Chapter 39. Long Term Fertilizer Experiments in India: Achievements and Issues for Future Research -- Chapter 40. Micronutrient deficiency stress in soils of India: tackling it to alleviate hidden hunger -- Chapter 41. Pesticides pollution in soils and sediment in India: Status, impact and countermeasures -- Chapter 42. Climate-Smart Soil Management: Prospect and Challenges in Indian Scenario. 001438643 506__ $$aAccess limited to authorized users. 001438643 520__ $$aThis compilation has been designed to provide a comprehensive source of theoretical and practical update for scientists working in the broad field of soil science. The book explores all possible mechanisms and means to improve nutrient use efficiencies involving developing and testing of nanofertilizers, developing consortia based microbial formulations for mobilization of soil nutrients, and engineering of nutrient efficient crops using molecular biology and biotechnological tools. This is an all-inclusive collection of information about soil science. This book is of interest to teachers, researchers, soil scientists, capacity builders and policymakers. Also the book serves as additional reading material for undergraduate and graduate students of soil science, quantitative ecology, earth sciences, GIS and geodetic sciences, as well as geologists, geomorphologists, hydrologists and landscape ecology. National and international agriculture and soil scientists, policy makers will also find this to be a useful read. 001438643 588__ $$aOnline resource; title from PDF title page (SpringerLink, viewed August 16, 2021). 001438643 650_0 $$aSoil science. 001438643 650_6 $$aPédologie. 001438643 655_0 $$aElectronic books. 001438643 7001_ $$aRakshit, Amitava,$$eeditor. 001438643 7001_ $$aSingh, S. K.$$c(Professor of Soil science),$$eeditor. 001438643 7001_ $$aAbhilash, P. C.,$$eeditor. 001438643 7001_ $$aBiswas, Asim,$$eeditor. 001438643 77608 $$iPrint version:$$z9811609160$$z9789811609169$$w(OCoLC)1237396424 001438643 852__ $$bebk 001438643 85640 $$3Springer Nature$$uhttps://univsouthin.idm.oclc.org/login?url=https://link.springer.com/10.1007/978-981-16-0917-6$$zOnline Access$$91397441.1 001438643 909CO $$ooai:library.usi.edu:1438643$$pGLOBAL_SET 001438643 980__ $$aBIB 001438643 980__ $$aEBOOK 001438643 982__ $$aEbook 001438643 983__ $$aOnline 001438643 994__ $$a92$$bISE