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Role of intercrops in the absorption of CO2 emitted from the combustion of fossil fuels

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Intercrops can play important role in the absorption of CO2 emitted during the combustion of fossil fuels. They allow us to grow additional biomass on agricultural land what leads to the absorption of carbon dioxide in the photosynthesis process. Biomass produced could be used for the production of syngas and biogas. Thus intercrops grown in Poland sequestrate from 1.14 to 1.84 t C/ha globally they sequestrate about 1.9 million t C/year and provide the raw material for the production of 739 million m3 of syngas/year.
Rocznik
Strony
103--108
Opis fizyczny
Bibliogr. 18 poz., tab.
Twórcy
  • Faculty of Environmental Engineering, Lublin University of Technology, Lublin, Poland
  • Faculty of Environmental Engineering, Lublin University of Technology, Lublin, Poland
  • Faculty of Environmental Engineering, Lublin University of Technology, Lublin, Poland
  • Department of Herbology and Plant Cultivation Techniques, University of Life Science, Lublin, Poland
  • Department of Herbology and Plant Cultivation Techniques, University of Life Science, Lublin, Poland
Bibliografia
  • [1] CHEN S., LIU K., DING D., YUE Z., BO Z., TANG Y., The effect of Green R&D Activities on China’s SO2 emissions. Evidence from a Panel Threshold Model. Problems of Sustainable Development, 2021, 16 (2), 147–151. DOI: 10.35784/pe.2021.2.15.
  • [2] CIAIS P., GASSER T., PARIS J.D., CALDEIRA K., RAUPACH M.R., CANADELL J.G., PATWARDHAN A., FRIEDLINGSEIN P., PIAO S.L., GITZ V., Attributing the increase in atmospheric CO2 to emitters and absorbers, Nat. Clim. Change, 2013, 3, 926–931. DOI: 10.1038/nclimate1942.
  • [3] CIAIS P., SABINE C., Climate Change 2013. The Physical Science Basis, Chapter 6. Carbon and other biogeochemical cycles, Working Group I, Contribution to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change, Cabridge University Press, 2013, 465–570.
  • [4] CZEKAŁA W., TARKOWSKI F., POCHWATKA P., Social Aspects of Energy Production from Renewable Sorces, Probl. Sust. Dev., 2021, 16 (1), 61–66. DOI: 10.35784/pe.2021.1.04.
  • [5] FARGIONE J., HILL J., TILMAN D., POLASKY S., HAWTHORNE P., Land clearing and the biofuel carbon debt, Science, 2008, 319, 1235–1238. DOI: 10.1126/science.1152747.
  • [6] FRIEDLINGSTEIN P. et al., Global Carbon Budget 2020, Earth Syst. Sci. Data, 2020, 12, 3269–3340. DOI: 10.5194/essd-12-3269-2020.
  • [7] IPCC 2013. Fifth IPCC Report Climate Change 2013.
  • [8] IPCC, 2014 Fifth Assessment Report AR5, Climate Change.
  • [9] IPCC, 2021 Sixth Assessment Report AR6, Climate Change.
  • [10] LE QUÉRÉ C. et al., Global carbon budget, Earth Syst. Sci. Data, 2018, 10, 2141–2194. DOI: 10.5194/essd-10-2141-2018.
  • [11] PAWŁOWSKI A., The sustainable revolution, Probl. Sust. Dev., 2009, 4 (1), 65–76.
  • [12] UDO V., PAWŁOWSKI A., Human progress towards equitable sustainable development. A philosophical exploration, Probl. Ekorozw./Probl. Sust. Dev., 2009, 4 (2), 23–44.
  • [13] PAWŁOWSKI L., PAWŁOWSKA M., CEL W., WANG L., LI C., MEI T., Characteristic of carbon dioxide absorption by cereals in Poland and China, Min. Res. Manage., 2019, 35 (1),165–176. DOI: 10.24425/gsm.2019.128205.
  • [14] PAWŁOWSKI L., ZHOU G., LITWIŃCZUK Z., The Role of Agriculture in Climate Change Mitigation, CRC Press, London 2020. DOI: 10.1201/9781003002734.
  • [15] RITCHIE H., ROSER M., CO2 and Greenhouse Gas Emissions, Our World in Data, 2020.
  • [16] SEARCHINGERT., HEIMLICH R., HOUGHTON R.A., DONG F., ELOBEID A., FABIOSA J., TOKGOZ S., HAYES D., YU T.H., Use of U.S. croplands for biofuels increases greenhouse gases through emissions from land-use change, Science, 2008, 319, 1238–1240. DOI: 10.1126/science.1151861.
  • [17] SZTUMSKI W., Reflection on the human living environment in connection with sustainable development, Probl. Ekorozw./Probl. Sust. Dev., 2021, 16 (1), 39–44. DOI: 10.35784/pe.2021.1.04.
  • [18] ŻUKOWSKA G., MYSZURA M., ZDEB M., PAWŁOWSKA M., Carbon sequestration in soil as a sustainable way of greenhouse effect mitigation, Probl. Ekorozw./Probl. Sust. Dev., 2020, 15 (2), 195–205. DOI: 10.35784/pe.2020.2.19.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-8a945f7d-4860-4465-b4be-8c2b0ce2e883
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