1. Understanding climate variables and dynamics of the global climate system and greenhouse gas emissions 2. Understanding climate change mitigation by adaptation practices 3. Challenges and opportunities of machine learning for sequestration of Green House Gases 4. Chemical looping mechanisms for sequestration of Green House Gases for biofuel and biomaterials 5. Prospect of biological processes and methods for sequestration of Carbon dioxide for biofuel and by-products 6. Microbiome based biological and technological methods for sequestration of methane for biofuel and biomaterials 7. Prospects and challenges for sequestration of nitrous oxide for nutrient recovery and product formation 8. Evaluation of prospects and challenges due to climate change by Life Cycle Assessment-case study 9. Soil carbon feedbacks evaluation for Green House Gases sequestration to climate change for plant productivity and biomaterials 10. Evaluation of solid waste land fill site for sequestration of Green House Gases for biofuel and biomaterials 11. Carbon-dioxide biofixation and phycoremediation of municipal wastewater for biofuel and biomaterials 12. Prospects and challenges of nitrogen and phosphorus management by GHGs mitigation in cropland soils for productivity of plants 13. Sequestration of greenhouse gas emissions of ruminants through nutritional strategies 14. Climate change, health and vulnerability due to Green House gases and involvement of factors for disease and diagnostics 15. Socio-political and economical processes and relationships evaluation for climate change damage for policy and legal formulations