Nitrogen Dioxide, Carbon Monoxide, Natural and Anthropomorphic Effects, and Earth’s Changing Climate
- 1 Flint Hill School, NASA/Virginia Earth System Science Scholars, Oakton, USA
Abstract
This study will both compare and contrast the characteristics and roles of two pollutants: nitrogen dioxide and carbon monoxide. It will begin by tracing each gas’ negative contributions to the Earth’s spheres, as well as relate any negative links that each plays concerning human activity, health, and interaction with the environment. It will include an in-depth analysis of what the proliferation of such toxic gases indicates about human production and causality, plus reflect on any current attempts being made to improve the effects of these pollutants on the environment. This examination will also inspect three NASA missions, i.e. , MOPITT/Terra, AIRS/Aqua, and OMI/Aura, the aim of which, among many other tasks, is to detect pollutants within the Earth’s various spheres, as well as analyze weather anomalies, improve prediction methodology, and chronicle meteorological patterns for future study. It will also cover some of the goals, engineering breakthroughs, and in one case, the limitations, of these three satellite missions. Finally, it should be noted that in all stages of this discussion, the author’s main aim will be to focus on the positives that need to be implemented in order to improve the current situations that both anthropogenic and natural disasters have created for the planet.
- Greenwood, N.N. and Earnshaw, A. (1997) Chemistry of the Elements. 2nd Edition, Elsevier, Amsterdam. https://www.elsevier.com/books/chemistry-of-the-elements/greenwood/978-0-7506-3365-9
- Finlayson-Pitts, B.J., Wingen, L.M., Sumner, A.L., Syomin, D. and Ramazan, K.A. (2002) The Heterogeneous Hydrolysis of No2 in Laboratory Systems and in Outdoor and Indoor Atmospheres: An Integrated Mechanism. Physical Chemistry Chemical Physics, 5, 223-242. https://pubs.rsc.org/en/content/articlelanding/2003/cp/b208564j#
- Zellner, R., Seinfeld, J.H. and Pandis, S.N. (2000) Atmospheric Chemistry and Physics, from Air Pollution to Climate Change. Journal of Atmospheric Chemistry, 37, 212-214. https://link.springer.com/article/10.1023/A:1006483708571
- Weinstock, B. and Niki, H. (1972) Carbon Monoxide Balance in Nature. Science, 176, 290-292. https://doi.org/10.1126/science.176.4032.290
- Foresti, R.M., Motterlini, R. and Gasier, H.G. (2017) Biological Signaling by Carbon Monoxide and Carbon Monoxide-Releasing Molecules. American Journal of Physiology-Cell Physiology, 312, C302-C313. https://doi.org/10.1152/ajpcell.00360.2016
- Piantadosi, C.A. (1990) Carbon Monoxide Intoxication. Springer, Berlin. https://link.springer.com/chapter/10.1007/978-3-642-84125-5_48
- Roberts, G.P., Youn, H. and Kerby, R.L. (2004) Co-Sensing Mechanisms. Microbiology and Molecular Biology Reviews, 68, 453-473. https://doi.org/10.1128/MMBR.68.3.453-473.2004
- Blumenthal, I. (2001, June) Carbon Monoxide Poisoning. Journal of the Royal Society of Medicine, 94, 270-272. https://pubmed.ncbi.nlm.nih.gov/11387414
- White, J.C. (1989, December 31) Global Climate Change Linkages: Acid Rain, Air Quality, and Stratospheric Ozone. https://books.google.com/books/about/Global_Climate_Change_Linkages.html?id=gnaNHeU4rgQC
- Martinie, R.J., Bultema, J.J., Vander Wal, M.N., Burkhart, B.J., Vander Griend, D.A. and DeKock, R.L. (2011, July 31) Bond Order and Chemical Properties of Bf, CO, and N2. Journal of Chemical Education, 88, 1094-1097. https://eric.ed.gov/?id=EJ941015
- UCAR (n.d.) Overview: Atmospheric Chemistry Observations & Modeling (ACOM). Atmospheric Chemistry Observations & Modeling. https://www2.acom.ucar.edu/mopitt/overview
- Canadian Space Agency (2017, December 5) Measuring Atmospheric Pollutants. https://www.asc-csa.gc.ca/eng/satellites/mopitt.asp