Tavassoli, Nahid and noghanibehambari, hamid and noghani, farzaneh and toranji, mostafa (2020): Upswing in Industrial Activity and Infant Mortality during Late 19th Century US. Published in: Journal of Environments , Vol. 6, No. 1 (21 August 2020): pp. 1-13.
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Abstract
This paper aims to assess the effects of industrial pollution on infant mortality between the years 1850-1940 using full count decennial censuses. In this period, US economy experienced a tremendous rise in industrial activity with significant variation among different counties in absorbing manufacturing industries. Since manufacturing industries are shown to be the main source of pollution, we use the share of employment at the county level in this industry to proxy for space-time variation in industrial pollution. Since male embryos are more vulnerable to external stressors like pollution during prenatal development, they will face higher likelihood of fetal death. Therefore, we proxy infant mortality with different measures of gender ratio. We show that the upswing in industrial pollution during late nineteenth century and early twentieth century has led to an increase in infant mortality. The results are consistent and robust across different scenarios, measures for our proxies, and aggregation levels. We find that infants and more specifically male infants had paid the price of pollution during upswing in industrial growth at the dawn of the 20th century. Contemporary datasets are used to verify the validity of the proxies. Some policy implications are discussed.
Item Type: | MPRA Paper |
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Original Title: | Upswing in Industrial Activity and Infant Mortality during Late 19th Century US |
English Title: | Upswing in Industrial Activity and Infant Mortality during Late 19th Century US |
Language: | English |
Keywords: | Pollution, Infant mortality, Gender ratio, 19th Century, Health |
Subjects: | I - Health, Education, and Welfare > I1 - Health > I15 - Health and Economic Development K - Law and Economics > K3 - Other Substantive Areas of Law > K32 - Environmental, Health, and Safety Law Q - Agricultural and Natural Resource Economics ; Environmental and Ecological Economics > Q5 - Environmental Economics > Q51 - Valuation of Environmental Effects Q - Agricultural and Natural Resource Economics ; Environmental and Ecological Economics > Q5 - Environmental Economics > Q53 - Air Pollution ; Water Pollution ; Noise ; Hazardous Waste ; Solid Waste ; Recycling |
Item ID: | 105093 |
Depositing User: | Ms Nahid Tavassoli |
Date Deposited: | 11 Jan 2021 03:03 |
Last Modified: | 11 Jan 2021 03:03 |
References: | Beach, B., & Hanlon, W. W. (2018). Coal smoke and mortality in an early industrial economy. The Economic Journal, 128(615), 2652-2675. Available at: https://doi.org/10.1111/ecoj.12522. Blake, K. (1996). First in the path of the firemen: The fate of the 1890 population census, part 1. Prologue Magazine, 26(1), 1-3. Booksmythe, I., Gerber, N., Ebert, D., & Kokko, H. (2018). Daphnia females adjust sex allocation in response to current sex ratio and density. Ecology Letters, 21(5), 629-637. Available at: https://doi.org/10.1111/ele.12929. Charnov, E. L. (1993). Life history invariants: some explorations of symmetry in evolution- ary ecology (Vol. 6). USA: Oxford University Press. Chay, K. Y., & Greenstone, M. (2003a). Air quality, infant mortality, and the clean air act of 1970. Technical Report, National Bureau of Economic Research. Chay, K. Y., & Greenstone, M. (2003b). The impact of air pollution on infant mortality: evidence from geographic variation in pollution shocks induced by a recession. The Quarterly Journal of Economics, 118(3), 1121-1167. Available at: https://doi.org/10.1162/00335530360698513. Currie, J. (2011). Inequality at birth: Some causes and consequences. American Economic Review, 101(3), 1–22. Dahl, G. B., & Moretti, E. (2008). The demand for sons. The Review of Economic Studies, 75(4), 1085-1120. E. P. A. (2017). Environmental protection agency's air quality system data monitoring [internet database], Environmental Protection Agency. Washigton, D.C., USA: Environmental Protection Agency. Fisher, R. A. (1999). The genetical theory of natural selection: A complete variorum edition: Oxford University Press. Flood, S., King, M., Ruggles, S., & Warren, J. R. (2017). Integrated public use micro- data series, current population survey: Version 5.0. [dataset]. Minneapolis: University of Minnesota. Fogli, A., & Veldkamp, L. (2011). Nature or nurture? Learning and the geography of female labor force participation. Econometrica, 79(4), 1103-1138. Available at: https://doi.org/10.3982/ecta7767. Health Statistics. (2002a). NCHS vital statistics natality birth data 1968-2002. Maryland, USA National Center for Health Statistics. Health Statistics. (2002b). NCHS prenatal mortality data files 1996–2002. Maryland, USA: National Center for Health Statistics. Isen, A., Rossin-Slater, M., & Walker, W. R. (2017). Every breath you take—every dollar you’ll make: The long-term consequences of the clean air act of 1970. Journal of Political Economy, 125(3), 848-902. Manson, S., Schroeder, J., Van Riper, D., & Ruggles, S. (2019). Ipums national historicla geographical information system: Version 14.0 [database]. Ipums. Institute for social research and data innovation. Minneapolis, Minnesota, USA: University of Minnesota. Pike, T. W., & Petrie, M. (2005). Maternal body condition and plasma hormones affect offspring sex ratio in peafowl. Animal Behaviour, 70(4), 745-751. Available at: https://doi.org/10.1016/j.anbehav.2004.12.020. Ransom, M. R., & Pope III, C. A. (1992). Elementary school absences and PM10 pollution in Utah Valley. Environmental Research, 58(1-2), 204-219. Available at: https://doi.org/10.1016/s0013-9351(05)80216-6. Ruggles, S., Genadek, K., Goeken, R., Grover, J., & Sobek, M. (2017). Integrated pub- lic use microdata series: Version 7.0 [dataset]. Minneapolis: University of Minnesota. Sanders, N. J. (2012). What doesn’t kill you makes you weaker prenatal pollution exposure and educational outcomes. Journal of Human Resources, 47(3), 826-850. Available at: https://doi.org/10.1353/jhr.2012.0018. Sanders, N. J., & Stoecker, C. F. (2011). Where have all the young men gone? using gender ratios to measure fetal death rates. Technical Report, National Bureau of Economic Research. Trivers, R. L., & Willard, D. E. (1973). Natural selection of parental ability to vary the sex ratio of offspring. Science, 179(4068), 90-92. Available at: https://doi.org/10.1126/science.179.4068.90. Warner, R. R. (1975). The adaptive significance of sequential hermaphroditism in animals. The American Naturalist, 109(965), 61-82. Available at: https://doi.org/10.1086/282974. Wells, J. C. (2000). Natural selection and sex differences in morbidity and mortality in early life. Journal of Theoretical Biology, 202(1), 65-76. |
URI: | https://mpra.ub.uni-muenchen.de/id/eprint/105093 |