402
12. de Sherbinin, A. 2002. Land-Use and Land-Cover Change. In A CIESIN Thematic Guide.
Palisades, NY: Center for International Earth Science Information Network of Columbia
University.
13. Canadell, J. G. et al. Contributions to accelerating atmospheric CO2 growth from economic
activity, carbon intensity, and efficiency of natural sinks. Proc. Natl. Acad. Sci. U.S.A. 104,
18866–18870 (2007).
14. Dlugokencky, E. & Tans, P. Trends in atmospheric carbon dioxide. National Oceanic &
Atmospheric Administration, Earth System Research Laboratory (NOAA/ESRL) http://www.
esrl.noaa.gov/gmd/ccgg/trends/global.
15. Maitima, J.M., Robin Reid, L.N. Gachimbi, A. Majule, H. Lyaruu, D. Pomery, S. Mugatha,
S. Mathai, and S. Mugisha. 2004. A methodological guide on how to identify trends and linkages between changes in land use, biodiversity and land degradation. Nairobi: International
Livestock Research Institute.
16. McAvoy, D.C., Schatowitz, B., Jacob, M., Hauk, A., Eckhoff, W.S., 2002. Measurement of
triclosan in wastewater treatment systems. Environ. Toxicol. Chem. 21, 1323-1329.
17. Ciais, P. & Sabine, C. Chapter 6: Carbon and other biogeochemical cycles in Climate Change
2013 The Physical Science Basis (eds T. Stocker, D. Qin. & G.K. Platner) (Cambridge
University Press, 2013).
18. Petrie, Bruce, Ruth Barden, and Barbara Kasprzyk-Hordern. “A review on emerging contaminants in wastewaters and the environment: Current knowledge, understudied areas and recommendations for future monitoring”, Water Research, 2015.
19. Hossain, Md. Faruque (2016). Theory of Global Cooling. Energy, Sustainability, and Society.
6:24. (Springer).
20. Le Quéré, C. et al. Global carbon budget 2016. Earth Syst. Sci. Data 8, 605–649 (2016).
21. Hongyan Bao, Jutta Niggemann, Li Luo, Thorsten Dittmar, Shuh-Ji Kao. “Aerosols as a source
of dissolved black carbon to the ocean”, Nature Communications, 2017.
22. Chevallier, F. On the statistical optimality of CO2 atmospheric inversions assimilating CO2
column retrievals. Atmos. Chem. Phys. 15, 11133–11145 (2015).
23. Conroy, Michael J. 1996. Mapping of Species Richness for Conservation of Biological
Diversity: Conceptual and Methodological Issues. Ecological Applications 6 (3):763-773.
24. Corinne Le Quéré, Robbie M. Andrew, Pierre Friedlingstein, Stephen Sitch et al. “Global
Carbon Budget 2017”, Earth System Science Data Discussions, 2017.
25. Dietzenbacher, E., Pei, J. & Yang, C. Trade, production fragmentation, and China’s carbon
dioxide emissions. J. Environ. Econ. Manage. 64, 88–101 (2012).
26. Denman, K. L. et al. Couplings Between Changes in the Climate System and Biogeochemistry
(Cambridge University Press, 2007).
27. Hossain, Md. Faruque (2018). Green Science: Advanced Building Design Technology to
Mitigate Energy and Environment. Renewable and Sustainable Energy Reviews. 81 (2), 30513060. (Elsevier).
28. Hossain, Md. Faruque (2016). Production of Clean Energy from Cyanobacterial Biochemical
Products. Strategic Planning for Energy and the Environment. 3; 6-23 (Taylor and Francis).
29. Hossain, Md. Faruque, and Mukai, Hiroshi (2000). Importance of Nutrients (N, P, and
NO3+NO2) in Growth of the Surfgrass, Phyllospadix iwatensis Makino.
30. Ballantyne, A. P., Alden, C. B., Miller, J. B., Tans, P. P. & White, J. W. C. Increase in observed
net carbon dioxide uptake by land and oceans during the past 50 years. Nature 488, 70–72
(2012).
31. Bebbington, A.J., and S.P.J. Batterbury. 2001. Transnational livelihoods and landscapes: political ecologies of globalization. Ecumene 8 (4):369-380.
32. Box, P. 2002. Spatial Units as Agents: Making the Landscape an Equal Player in Agent-Based
Simulations. In Integrating Geographic Information Systems and Agent-Based Modeling
Techniques for Simulating Social and Ecological Processes, edited by R. H. Gimblett.
New York: Methuen.
19 Water
12. de Sherbinin, A. 2002. Land-Use and Land-Cover Change. In A CIESIN Thematic Guide.
Palisades, NY: Center for International Earth Science Information Network of Columbia
University.
13. Canadell, J. G. et al. Contributions to accelerating atmospheric CO2 growth from economic
activity, carbon intensity, and efficiency of natural sinks. Proc. Natl. Acad. Sci. U.S.A. 104,
18866–18870 (2007).
14. Dlugokencky, E. & Tans, P. Trends in atmospheric carbon dioxide. National Oceanic &
Atmospheric Administration, Earth System Research Laboratory (NOAA/ESRL) http://www.
esrl.noaa.gov/gmd/ccgg/trends/global.
15. Maitima, J.M., Robin Reid, L.N. Gachimbi, A. Majule, H. Lyaruu, D. Pomery, S. Mugatha,
S. Mathai, and S. Mugisha. 2004. A methodological guide on how to identify trends and linkages between changes in land use, biodiversity and land degradation. Nairobi: International
Livestock Research Institute.
16. McAvoy, D.C., Schatowitz, B., Jacob, M., Hauk, A., Eckhoff, W.S., 2002. Measurement of
triclosan in wastewater treatment systems. Environ. Toxicol. Chem. 21, 1323-1329.
17. Ciais, P. & Sabine, C. Chapter 6: Carbon and other biogeochemical cycles in Climate Change
2013 The Physical Science Basis (eds T. Stocker, D. Qin. & G.K. Platner) (Cambridge
University Press, 2013).
18. Petrie, Bruce, Ruth Barden, and Barbara Kasprzyk-Hordern. “A review on emerging contaminants in wastewaters and the environment: Current knowledge, understudied areas and recommendations for future monitoring”, Water Research, 2015.
19. Hossain, Md. Faruque (2016). Theory of Global Cooling. Energy, Sustainability, and Society.
6:24. (Springer).
20. Le Quéré, C. et al. Global carbon budget 2016. Earth Syst. Sci. Data 8, 605–649 (2016).
21. Hongyan Bao, Jutta Niggemann, Li Luo, Thorsten Dittmar, Shuh-Ji Kao. “Aerosols as a source
of dissolved black carbon to the ocean”, Nature Communications, 2017.
22. Chevallier, F. On the statistical optimality of CO2 atmospheric inversions assimilating CO2
column retrievals. Atmos. Chem. Phys. 15, 11133–11145 (2015).
23. Conroy, Michael J. 1996. Mapping of Species Richness for Conservation of Biological
Diversity: Conceptual and Methodological Issues. Ecological Applications 6 (3):763-773.
24. Corinne Le Quéré, Robbie M. Andrew, Pierre Friedlingstein, Stephen Sitch et al. “Global
Carbon Budget 2017”, Earth System Science Data Discussions, 2017.
25. Dietzenbacher, E., Pei, J. & Yang, C. Trade, production fragmentation, and China’s carbon
dioxide emissions. J. Environ. Econ. Manage. 64, 88–101 (2012).
26. Denman, K. L. et al. Couplings Between Changes in the Climate System and Biogeochemistry
(Cambridge University Press, 2007).
27. Hossain, Md. Faruque (2018). Green Science: Advanced Building Design Technology to
Mitigate Energy and Environment. Renewable and Sustainable Energy Reviews. 81 (2), 30513060. (Elsevier).
28. Hossain, Md. Faruque (2016). Production of Clean Energy from Cyanobacterial Biochemical
Products. Strategic Planning for Energy and the Environment. 3; 6-23 (Taylor and Francis).
29. Hossain, Md. Faruque, and Mukai, Hiroshi (2000). Importance of Nutrients (N, P, and
NO3+NO2) in Growth of the Surfgrass, Phyllospadix iwatensis Makino.
30. Ballantyne, A. P., Alden, C. B., Miller, J. B., Tans, P. P. & White, J. W. C. Increase in observed
net carbon dioxide uptake by land and oceans during the past 50 years. Nature 488, 70–72
(2012).
31. Bebbington, A.J., and S.P.J. Batterbury. 2001. Transnational livelihoods and landscapes: political ecologies of globalization. Ecumene 8 (4):369-380.
32. Box, P. 2002. Spatial Units as Agents: Making the Landscape an Equal Player in Agent-Based
Simulations. In Integrating Geographic Information Systems and Agent-Based Modeling
Techniques for Simulating Social and Ecological Processes, edited by R. H. Gimblett.
New York: Methuen.
19 Water
