Save Soil By Managing Soil Nutrient Losses Agronomic Practices And Crop Microbial Interaction World Soil Day 2022


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‘Save Soil’ by Managing Soil Nutrient Losses, Agronomic Practices and Crop-Microbial Interaction: World Soil Day 2022


‘Save Soil’ by Managing Soil Nutrient Losses, Agronomic Practices and Crop-Microbial Interaction: World Soil Day 2022

Author: Arnab Majumdar

language: en

Publisher: Frontiers Media SA

Release Date: 2024-02-07


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Soil is not only a fundamental source for all living organisms but also impacts non-living factors (water, air, minerals, etc.) making it an invaluable and finite resource. The importance of soil expands from agronomy through to industrialization, thus, it is crucial to understand the impact of human activity on soil quality. To address several global issues related to pollution, food security, and health, the United Nations promotes the Sustainable Development Goals (SDGs) with targets to ‘save soil’ by minimizing nutrient loss and pollution load from the soil. Due to increasing anthropogenic pollution load, many soil pollution control measures are failing, therefore, new technologies and eco-friendly solutions are needed to balance and restore soil health. Soil-crop interactions are essential considering the crop yield and productivity under different soil statuses. These processes, including nutrient release or soi detoxification, are mediated by soil-inhabiting microbes. In fact, the intrinsic role of soil parameters, including the different classes of soil, control soil microbiota which in turn modulate soil nutrient contents and makes these bioavailable. Different crops, especially cereals, are constantly interacting with these soil microbes, thus the relationship between soil, crops, and microbes is complex.

Rhizomicrobiome in Sustainable Agriculture and Environment


Rhizomicrobiome in Sustainable Agriculture and Environment

Author: Joginder Singh Panwar

language: en

Publisher: Elsevier

Release Date: 2024-10-18


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Rhizomicrobiome: Current Status and Future Prospects for Agriculture and Environment explores the important potential of biocontrol agents in the reduction of overexploitation of synthetic pesticides, enhancing crop production, and maintaining the natural texture and health of agricultural soils. As concerns about sustainable production challenge current practices, this book presents opportunities for utilizing biological systems as part of the solution. Rhizomicrobiome is a significant part of plant biological system which impacts the plant growth and survival in different physiological conditions. Its composition includes different microbial networks whose presence is mainly impacted by the root exudates. Archaea, bacteria, protozoa, fungi, oomycetes, nematodes, microarthropods etc. are the significant parts of the rhizomicrobiome. Rhizomicrobiome could be that novel ecosystem housing the bioinoculants that can help create sustainable, productive growth environments. Written by a team of global experts Rhizomicrobiome explores the full range of rhizomicrobiome topics including sustainable agriculture, food security, and environmental management and will be a valuable resource for researchers, academics and advanced students. - Introduces the latest advancement in the sustainable agricultural practices, microbial biocontrol, and environmental management - Presents the prospects of, wide applications of, traditional uses of, and modern practices of harnessing the potential of rhizomicrobiome - Includes informative illustrations of recent trends of phyto and soil microbiome

Sustainable Remediation for Pollution and Climate Resilience


Sustainable Remediation for Pollution and Climate Resilience

Author: Arafat Abdel Hamed Abdel Latef

language: en

Publisher: Springer Nature

Release Date: 2025-06-29


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This book offers a comprehensive exploration of strategies to combat pressing environmental challenges, focusing on pollution remediation and climate change mitigation. It presents innovative recycling models and advanced tertiary water treatment methods as viable solutions to these global issues. As humanity faces the consequences of pollution, from plastic waste to industrial contamination, this book highlights the need for sustainable practices that ensure environmental and biological continuity. It addresses the critical question of how to remediate plastic pollution, a major environmental crisis affecting marine life, terrestrial ecosystems, and human health. The chapters cover a wide range of topics, including the comparison of bioremediation and nanomaterials, phytoremediation of domestic wastewater, and the integration of mine rehabilitation practices in the context of climate change. Readers will discover the ecological importance of bacteria and fungi in bioremediation, the role of microbes in environmental restoration, and the potential of phycoremediation algae in mitigating climate change. The book also examines the impact of viral and fungal remediation in creating a healthy environment and the role of biofertilizers in soil remediation. This volume is essential for researchers, environmental scientists, and policymakers seeking to understand and implement effective pollution remediation strategies. It offers valuable insights into the intersection of technology and ecology, making it a must-read for anyone committed to preserving our planet for future generations.