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References
46. Chevallier, F: On the statistical optimality of CO 2 atmospheric inversions assimilating CO 2
column retrievals, Atmos, Chem, Phys., 15, 11133-11145, doi: https://doi.org/10.5194/acp-1511133-2015, 2015.
47. Schwietzke, S. et al.: Upward revision of global fossil fuel methane emissions based on isotope
database, Nature, 538, 88-91, 2016.
48. C.S., and Regnier, P.A.G.: The changing carbon cycle of the coastal ocean, Nature, 504, 61-70,
2013.
49. Pierre, R., Ronny Lauerwald, Philippe Ciais. “Carbon Leakage through the Terrestrial-aquatic
Interface: Implications for the Anthropogenic CO 2 Budget”, Procedia Earth and Planetary
Science, 2014.
50. Romero-García, J., Sanchez, A., Rendón-Acosta, G., Martínez-Patiño, J., Ruiz, E., Magaña, G.
and Castro, E. (2016). An Olive Tree Pruning Biorefinery for Co-Producing High Value-Added
Bioproducts and Biofuels: Economic and Energy Efficiency Analysis. BioEnergy Research,
9(4), pp. 1070-1086.
51. Duce, R. A.et al: Impacts of atmospheric anthropogenic nitrogen on the open ocean, Science,
320, 893-897, 2008.
52. Hossain, M. F. (2018). Green Science: Advanced Building Design Technology to Mitigate
Energy and Environment. Renewable and Sustainable Energy Reviews. 81 (2), 3051-3060.
(Elsevier).
53. Liu, Zhu, Dabo Guan et al. “Reduced carbon emission estimates from fossil fuel combustion
and cement production in China”, Nature, 2015.
54. Hossain, M. F. (2017). Green Science: Independent Building Technology to Mitigate Energy,
Environment, and Climate Change. Renewable and Sustainable Energy Reviews. 73; 695-705.
(Elsevier).
55. Ruiz, H., Martínez, A. and Vermerris, W. (2016). Bioenergy Potential, Energy Crops, and
Biofuel Production in Mexico. BioEnergy Research, 9(4), pp. 981-984.
56. Hossain, M. F. (2018). Photon energy amplification for the design of a micro PV panel.
International Journal of Energy Research. https://doi.org/10.1002/er.4118. (Wiley). 2017.
57. Grätzel, M. (2001). Photoelectrochemical cells. Nature, 414(6861), pp. 338-344.
58. P.P., Miller, et al: Audit of the global carbon budget: estimate errors and their impact on uptake
uncertainty, Biogeosciences, 12, 2565-2584, https://doi.org/10.5194/bg-12-2565-2015, 2015.
59. Hossain, M. F. (2016). Solar Energy Integration into Advanced Building Design for Meeting
Energy Demand. International Journal of Energy Research. 40, 1293-1300. (Wiley).
60. S.L. Postel et al., Science 271, 785 (1996).
References
