Atmospheric dispersion of methane emissions from sugarcane burning in Mexico

被引:8
|
作者
Flores-Jimenez, David E. [1 ]
Carbajal, Noel [2 ]
Algara-Siller, Marcos [3 ]
Aguilar-Rivera, Noe [4 ]
Alvarez-Fuentes, Gregorio [5 ]
Avila-Galarza, Alfredo [3 ]
Garcia, Agustin R. [6 ]
机构
[1] Univ Autonoma Baja California, Inst Engn, Autonomous Univ Baja California, Blvd Benito Juarez & Calle Normal S-N, Mexicali 21280, Baja California, Mexico
[2] Inst Potosino Invest Cient & Tecnol AC, Potosin Inst Sci & Technol Res, Appl Geosci Dept, Div Geociencias Aplicadas, Camino Presa San Jose 2055,Col Lomas 4 Secc, San Luis Potosi 78216, Slp, Mexico
[3] Univ Autonoma San Luis Potosi, Autonomous Univ San Luis Potosi, Ctr Postgrad Res & Studies, Engn Dept,Fac Ingn,Ctr Invest & Estudios Posgrad, San Luis Potosi 78290, Slp, Mexico
[4] Univ Veracruzana, Univ Veracruz, Biol Agr & Livestock Sci Dept, Fac Ciencias Biol & Agr, Km 1 Carretera Penuela Amatlan de los Reyes S-N, Veracruz 94945, Ver, Mexico
[5] Univ Autonoma San Luis Potosi, Autonomous Univ San Luis Potosi, Desert Res Inst, Inst Invest Zonas Desert, Altair 200, San Luis Potosi 78377, Slp, Mexico
[6] Univ Nacl Autonoma Mexico, Natl Autonomous Univ Mexico, Ctr Atmospher Sci, Circuito Exterior S-N Ciudad Univ, Mexico City 04510, DF, Mexico
关键词
Methane emissions; Methane dispersion; Sugarcane burning; WRF model; SOIL ORGANIC-CARBON; WRF; MODEL; CHEMISTRY; IMPACT;
D O I
10.1016/j.envpol.2019.04.025
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Methane is a potent greenhouse gas whose atmospheric dispersion may have different implications at distinct scales. One significant contributor to methane emissions is sugarcane farming in tropical areas like in Mexico, which has the sixth highest production level in the world. A consequence of the industrial use of this resource is that sugarcane preharvest burning emits large quantities of methane and other pollutants. The objective of this research is to estimate the methane emissions by sugarcane burning and to analyze their atmospheric dispersion under the influence of meteorological parameters, according to different concentration scenarios generated during a period. The methane emissions were investigated using the methodology of Seiler and Crutzen, based on the stage production during the harvest periods of 2011/2012, 2012/2013 and 2013/2014. Average of total emissions (1.4 x 10(3)Mg) at the national level was comparable in magnitude to those of other relevant sugarcane-producing countries such as India and Brazil. Satellite images and statistical methods were used to validate the spatial distribution of methane, which was obtained with the WRF model. The results show a dominant wind circulation pattern toward the east in the San Luis Potosi area, to the west in Jalisco, and the north in Tabasco. In the first two areas, wind convergence at a certain height causes a downward flow, preventing methane dispersion. The concentrations in these areas varied from 9.22 x 10(-5) to 1.22 x 10(2) ppmv and 32 x 10(-5) to 2.36 x 10(2) ppmv, respectively. Wind conditions in Tabasco contributed to high dispersion and low concentrations of methane, varying from 8.74 x 10(5) to 0.33 x 10(2) ppmv. Methane is a potent greenhouse gas for which it is essential to study and understand their dispersion at different geographic locations and atmospheric conditions. (C) 2019 Elsevier Ltd. All rights reserved.
引用
收藏
页码:922 / 933
页数:12
相关论文
共 50 条
  • [1] Emissions of PAHs derived from sugarcane burning and processing in Chiapas and Morelos Mexico
    Mugica-Alvarez, Violeta
    Santiago-de la Rosa, Naxieli
    Figueroa-Lara, Jess
    Flores-Rodriguez, Julio
    Torres-Rodriguez, Miguel
    Magana-Reyes, Miguel
    SCIENCE OF THE TOTAL ENVIRONMENT, 2015, 527 : 474 - 482
  • [2] Reduction in Crop Yield in Mexico Due to Ozone Associated with Emissions from Biomass Burning
    Rios, Blanca
    Estrada, Francisco
    WATER AIR AND SOIL POLLUTION, 2022, 233 (10)
  • [3] Sugarcane burning emissions: Characterization and emission factors
    Mugica-Alvarez, Violeta
    Hernandez-Rosas, Francisco
    Magana-Reyes, Miguel
    Herrera-Murillo, Jorge
    Santiago-De La Rosa, Naxieli
    Gutierrez-Arzaluz, Mirella
    de Jesus Figueroa-Lara, Jose
    Gonzalez-Cardoso, Griselda
    ATMOSPHERIC ENVIRONMENT, 2018, 193 : 262 - 272
  • [4] Methane emissions from wildfires in Siberia caused by the atmospheric blocking in the summertime
    Antokhina, Olga Yu.
    Antokhin, Pavel N.
    Martynova, Yuliya V.
    25TH INTERNATIONAL SYMPOSIUM ON ATMOSPHERIC AND OCEAN OPTICS: ATMOSPHERIC PHYSICS, 2019, 11208
  • [5] Estimating methane emissions from underground natural gas pipelines using an atmospheric dispersion-based method
    Tian, Shanru
    Smits, Kathleen M.
    Cho, Younki
    Riddick, Stuart N.
    Zimmerle, Daniel J.
    Duggan, Aidan
    ELEMENTA-SCIENCE OF THE ANTHROPOCENE, 2022, 10 (01):
  • [6] Atmospheric inverse estimates of methane emissions from Central California
    Zhao, Chuanfeng
    Andrews, Arlyn E.
    Bianco, Laura
    Eluszkiewicz, Janusz
    Hirsch, Adam
    MacDonald, Clinton
    Nehrkorn, Thomas
    Fischer, Marc L.
    JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2009, 114
  • [7] Atmospheric constraints on the methane emissions from the East Siberian Shelf
    Berchet, Antoine
    Bousquet, Philippe
    Pison, Isabelle
    Locatelli, Robin
    Chevallier, Frederic
    Paris, Jean-Daniel
    Dlugokencky, Ed J.
    Laurila, Tuomas
    Hatakka, Juha
    Viisanen, Yrjo
    Worthy, Doug E. J.
    Nisbet, Euan
    Fisher, Rebecca
    France, James
    Lowry, David
    Ivakhov, Viktor
    Hermansen, Ove
    ATMOSPHERIC CHEMISTRY AND PHYSICS, 2016, 16 (06) : 4147 - 4157
  • [8] Qualitative Study on the Observations of Emissions, Transport, and the Influence of Climatic Factors from Sugarcane Burning: A South African Perspective
    Shikwambana, Lerato
    Ncipha, Xolile
    Sangeetha, Sivakumar Kandasami
    Sivakumar, Venkataraman
    Mhangara, Paidamwoyo
    INTERNATIONAL JOURNAL OF ENVIRONMENTAL RESEARCH AND PUBLIC HEALTH, 2021, 18 (14)
  • [9] Atmospheric emissions from maritime activities in Altamira, Gulf of Mexico
    Duran, R. E. Antonio
    Echeverria, R. Sosa
    Garcia, G. Fuentes
    Valdez, E. Cesar
    Cortez-Huerta, M.
    Kahl, J. D. W.
    INTERNATIONAL JOURNAL OF ENVIRONMENTAL SCIENCE AND TECHNOLOGY, 2025,
  • [10] Methane emissions from stabilization ponds for municipal wastewater treatment in Mexico
    Paredes, M. G.
    Gueereca, L. P.
    Molina, L. T.
    Noyola, A.
    JOURNAL OF INTEGRATIVE ENVIRONMENTAL SCIENCES, 2015, 12 : 139 - 153