Environmental issues in India

An experimental analysis

Authors

  • D. E. Gangadhar Rao Associate Professor of Zoology, Government First Grade College, Kolar, India

Keywords:

air pollution, environmental, experimental analysis, human health, pollutant gas

Abstract

Now from recent period, air pollution is responsible for undesirable matter such as smoke, particular matters & aromatic hydrocarbons in air which causes harmful effect on Human health, agriculture and environment. Air pollution causes due to exhaust mostly by Automobiles, industries etc. Air pollution is also responsible for global warming and the increases the climatic temperature at a rate of 0.13±0.03 °C per decade. In urban heavy traffic, the toxicity of smoke, particular matters & aromatic hydrocarbons can be minimized but the technology is time consuming and it is not cost effective. So India is lagging behind as compared to other countries. Pollutant gas absorbing duct system consists of which act as casing, suction fan, circulating pumps, different filters and absorber. The present our research restricts itself to minimization of smoke, particular matters & aromatic hydrocarbons. This system is cost effective and reduces the maximum possible percentage of pollutant gas.

References

Agrawal, M., Singh, B., Rajput, M., Marshall, F., & Bell, J. N. B. (2003). Effect of air pollution on peri-urban agriculture: a case study. Environmental Pollution, 126(3), 323-329. https://doi.org/10.1016/S0269-7491(03)00245-8

Aleixandre, M., Sayago, I., Horrillo, M. C., Fernández, M. J., Arés, L., Garcıa, M., ... & Gutiérrez, J. (2004). Analysis of neural networks and analysis of feature selection with genetic algorithm to discriminate among pollutant gas. Sensors and Actuators B: Chemical, 103(1-2), 122-128. https://doi.org/10.1016/j.snb.2004.04.044

Archana, .-., Datta, C., & Tiwari, P. (2016). Impact of environmental degradation on human health. International Research Journal of Management, IT and Social Sciences, 3(1), 1-6. Retrieved from https://sloap.org/journals/index.php/irjmis/article/view/341

Argyle, M., & Kendon, A. (1967). The experimental analysis of social performance. In Advances in experimental social psychology (Vol. 3, pp. 55-98). Academic Press. https://doi.org/10.1016/S0065-2601(08)60342-1

Bologa, A., Paur, H. R., Seifert, H., Wäscher, T., & Woletz, K. (2009). Novel wet electrostatic precipitator for collection of fine aerosol. Journal of Electrostatics, 67(2-3), 150-153.

Cashmore, M., & Richardson, T. (2013). Power and environmental assessment: Introduction to the special issue. Environmental Impact Assessment Review, 39, 1-4. https://doi.org/10.1016/j.eiar.2012.08.002

Corsmeier, U., Imhof, D., Kohler, M., Kühlwein, J., Kurtenbach, R., Petrea, M., ... & Vogt, U. (2005). Comparison of measured and model-calculated real-world traffic emissions. Atmospheric Environment, 39(31), 5760-5775.

Giler, J. J. G., & Cedeño, C. N. P. (2020). Elaboration of bovine manure biodigester for biogas transformation to electric power. International Research Journal of Management, IT and Social Sciences, 7(5), 32-37. https://doi.org/10.21744/irjmis.v7n5.967

Gokhale, S., & Khare, M. (2007). Statistical behavior of carbon monoxide from vehicular exhausts in urban environments. Environmental Modelling & Software, 22(4), 526-535.

Jay, S., Jones, C., Slinn, P., & Wood, C. (2007). Environmental impact assessment: Retrospect and prospect. Environmental impact assessment review, 27(4), 287-300. https://doi.org/10.1016/j.eiar.2006.12.001

Kampa, M., & Castanas, E. (2008). Human health effects of air pollution. Environmental pollution, 151(2), 362-367. https://doi.org/10.1016/j.envpol.2007.06.012

Kampa, M., & Castanas, E. (2008). Human health effects of air pollution. Environmental pollution, 151(2), 362-367. https://doi.org/10.1016/j.envpol.2007.06.012

McMichael, A. J., Woodruff, R. E., & Hales, S. (2006). Climate change and human health: present and future risks. The Lancet, 367(9513), 859-869. https://doi.org/10.1016/S0140-6736(06)68079-3

Nagendra, S. M. S., & Khare, M. (2002). Line source emission modelling. Atmospheric Environment, 36(13), 2083-2098.

Nagendra, S. S., & Khare, M. (2004). Artificial neural network based line source models for vehicular exhaust emission predictions of an urban roadway. Transportation Research Part D: Transport and Environment, 9(3), 199-208.

Saiyasitpanich, P., Keener, T. C., Khang, S. J., & Lu, M. (2007). Removal of diesel particulate matter (DPM) in a tubular wet electrostatic precipitator. Journal of Electrostatics, 65(10-11), 618-624.

Široký, J., Oldewurtel, F., Cigler, J., & Prívara, S. (2011). Experimental analysis of model predictive control for an energy efficient building heating system. Applied energy, 88(9), 3079-3087. https://doi.org/10.1016/j.apenergy.2011.03.009

Thee, H., Smith, K. H., da Silva, G., Kentish, S. E., & Stevens, G. W. (2012). Carbon dioxide absorption into unpromoted and borate-catalyzed potassium carbonate solutions. Chemical Engineering Journal, 181, 694-701.

Tsujita, W., Yoshino, A., Ishida, H., & Moriizumi, T. (2005). Gas sensor network for air-pollution monitoring. Sensors and Actuators B: Chemical, 110(2), 304-311. https://doi.org/10.1016/j.snb.2005.02.008

Published

2008-11-28

How to Cite

Rao, D. E. G. (2008). Environmental issues in India: An experimental analysis. International Journal of Economic Perspectives, 2(1), 16–25. Retrieved from http://ijeponline.org/index.php/journal/article/view/52

Issue

Section

Peer Review Articles