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An Optimization Model for Utilizing Green Road Corridors and Urban Parks to Enhance Tree Absorption of Motor Vehicle CO2 emissions in Pekanbaru City, Indonesia | ||
Pollution | ||
دوره 10، شماره 3، شهریور 2024، صفحه 985-996 اصل مقاله (1.48 M) | ||
نوع مقاله: Original Research Paper | ||
شناسه دیجیتال (DOI): 10.22059/poll.2024.372985.2268 | ||
نویسندگان | ||
Zulanda Zulanda* 1؛ Sukendi Sukendi1؛ Yusni Ikhwan Siregar1؛ Imam Suprayogi2؛ Ice Irawati3 | ||
1Department of Environmental Science, Riau University, Indonesia | ||
2Department of Civil Engineering, Faculty of Engineering, Riau University, Indonesia | ||
3Department of Occupational Safety And Health, Faculty of Health Sciences, Ibnu Sina University, Batam, Indonesia | ||
چکیده | ||
The surge in CO2 emissions from vehicles has precipitated a rise in global temperatures, instigating the greenhouse effect. This study draws on case studies from prominent Indonesian cities, including Jakarta, Surabaya, and Manado, highlighting a notable dissonance between the capacity of plants to absorb carbon and the volume emitted. Green Road Corridors and Urban Forests assume multifaceted roles in urban ecosystems, functioning as barriers, filters, absorbers, and producers, contributing to air quality, noise reduction, and environmental preservation. Employing linear programming as a mathematical programming branch, this research integrates diverse factors into decision-making models. It strives to achieve optimal solutions pertaining to the selection and quantity of trees for maximizing CO2 absorption resulting from motor vehicle activities in Pekanbaru City, specifically along Subrantas Street and Harapan Raya Street. Land cover classifications in Pekanbaru City encompass green spaces, buildings, open areas, undergrowth, water bodies, and non-private zones. The optimization model, targeting 10% utilization of the Jalan Subrantas urban park area, demonstrates a significant CO2 absorption of 827,976 tons/ha and an O2 surplus of 176,207.72 tons/ha. Conversely, full utilization of the Jalan Sudirman Urban Park area yields a CO2 absorption of 206,982 tons/ha and an O2 surplus of 9036.63 tons/ha. These optimized outcomes lay a foundation for potential carbon tax development within the urban transportation sector of Pekanbaru, with envisaged implementation by the year 2040. | ||
کلیدواژهها | ||
CO2 emissions؛ Green road corridors؛ Urban parks؛ Tree absorption | ||
مراجع | ||
Anguluri, R., & Narayanan, P. (2017). Role of green space in urban planning: Outlook towards smart cities. Urban Forestry and Urban Greening, 25, 58–65. https://doi.org/10.1016/j.ufug.2017.04.007 Ariluoma, M., Ottelin, J., Hautamäki, R., Tuhkanen, E. M., & Mänttäri, M. (2021). Carbon sequestration and storage potential of urban green in residential yards: A case study from Helsinki. Urban Forestry and Urban Greening, 57. https://doi.org/10.1016/j.ufug.2020.126939 Balogun, H. A., Rantala, A. K., Antikainen, H., Siddika, N., Amegah, A. K., Ryti, N. R. I., Kukkonen, J., Sofiev, M., Jaakkola, M. S., & Jaakkola, J. J. K. (2020). Effects of air pollution on the risk of low birth weight in a cold climate. Applied Sciences (Switzerland), 10(18), 1–18. https://doi.org/10.3390/app10186399 Betancourt, C., Hagemeier, B., Schröder, S., & Schultz, M. G. (2021). Context aware benchmarking and tuning of a TByte-scale air quality database and web service. Earth Science Informatics, 14(3), 1597–1607. https://doi.org/10.1007/s12145-021-00631-4 Bikis, A. (2023). Urban Air Pollution and Greenness in Relation to Public Health. Journal of Environmental and Public Health, 2023(X), 1–18. https://doi.org/10.1155/2023/8516622 Birim, S., Kazancoglu, I., Mangla, S. K., Kahraman, A., & Kazancoglu, Y. (2022). The derived demand for advertising expenses and implications on sustainability: a comparative study using deep learning and traditional machine learning methods. Annals of Operations Research. https://doi.org/10.1007/s10479-021-04429-x Brauer, M., Hoek, G., Smit, H. A., Jongste, J. C. De, Gerritsen, J., Postma, D. S., Kerkhof, M., & Brunekreef, B. (2007). Air pollution and development of asthma, allergy and infections in a birth cohort. 29(5), 879–888. https://doi.org/10.1183/09031936.00083406 Carmichael, G. R., Sandu, A., Chai, T., Daescu, D. N., Constantinescu, E. M., & Tang, Y. (2008). Predicting air quality: Improvements through advanced methods to integrate models and measurements. Journal of Computational Physics, 227(7), 3540–3571. https://doi.org/10.1016/j.jcp.2007.02.024 Cheng, Y., Zhang, J., Wei, W., & Zhao, B. (2021). Effects of urban parks on residents’ expressed happiness before and during the COVID-19 pandemic. Landscape and Urban Planning, 212(December 2020), 104118. https://doi.org/10.1016/j.landurbplan.2021.104118 Fan, M., Gu, Z., Li, W., Zhou, D., & Yu, C. W. (2022). Integration of a large green corridor with an underground complex – a low carbon building solution for urban climate revival. Indoor and Built Environment, 31(4), 872–877. https://doi.org/10.1177/1420326X211067607 Fodha, M., & Zaghdoud, O. (2010). Economic growth and pollutant emissions in Tunisia: An empirical analysis of the environmental Kuznets curve. Energy Policy, 38(2), 1150–1156. https://doi.org/10.1016/j.enpol.2009.11.002 Hossain, S. (2012). An econometric analysis for CO 2 emissions, energy consumption, economic growth, foreign trade and urbanization of Japan. DOI:10.4236/lce.2012.323013. Jay Heizer, B. R. (2014). EDITION O P E R AT I O N S Sustainability and Supply Chain Management. Liang, C., Chen, Y., Wu, M., Wang, K., Zhang, W., Gan, Y., Huang, H., Chen, J., Xia, Y., Zhang, J., Zheng, S., & Pan, H. (2021). Green synthesis of graphite from CO2 without graphitization process of amorphous carbon. Nature Communications, 12(1), 1–9. https://doi.org/10.1038/s41467-020-20380-0 Liu, Z., Lin, Y., De Meulder, B., & Wang, S. (2020). Heterogeneous landscapes of urban greenways in Shenzhen: Traffic impact, corridor width and land use. Urban Forestry and Urban Greening, 55(October 2019), 126785. https://doi.org/10.1016/j.ufug.2020.126785 McConnell, R., Berhane, K., Yao, L., Jerrett, M., Lurmann, F., Gilliland, F., Künzli, N., Gauderman, J., Avol, E., Thomas, D., & Peters, J. (2006). Traffic, susceptibility, and childhood asthma. Environmental Health Perspectives, 114(5), 766–772. https://doi.org/10.1289/ehp.8594 Morgenstern, V., Zutavern, A., Cyrys, J., Brockow, I., Koletzko, S., Krämer, U., Behrendt, H., Herbarth, O., Von Berg, A., Bauer, C. P., Wichmann, H. E., Heinrich, J., Bolte, G., Belcredi, P., Jacob, B., Schoetzau, A., Mosetter, M., Schindler, J., Höhnke, A., … Schäfer, T. (2008). Atopic diseases, allergic sensitization, and exposure to traffic-related air pollution in children. American Journal of Respiratory and Critical Care Medicine, 177(12), 1331–1337. https://doi.org/10.1164/rccm.200701-036OC Morley, D. W., & Gulliver, J. (2018). A land use regression variable generation, modelling and prediction tool for air pollution exposure assessment. Environmental Modelling and Software, 105, 17–23. https://doi.org/10.1016/j.envsoft.2018.03.030 Nocito, F., & Dibenedetto, A. (2020). Atmospheric CO2 mitigation technologies: carbon capture utilization and storage. Current Opinion in Green and Sustainable Chemistry, 21, 34–43. https://doi.org/10.1016/j.cogsc.2019.10.002 Nugroho, H. Y. S. H., Nurfatriani, F., Indrajaya, Y., Yuwati, T. W., Ekawati, S., Salminah, M., Gunawan, H., Subarudi, S., Sallata, M. K., Allo, M. K., Muin, N., Isnan, W., Putri, I. A. S. L. P., Prayudyaningsih, R., Ansari, F., Siarudin, M., Setiawan, O., & Baral, H. (2022). Mainstreaming Ecosystem Services from Indonesia’s Remaining Forests. Sustainability (Switzerland), 14(19). https://doi.org/10.3390/su141912124 Olorunfemi, I. E., Olufayo, A. A., Fasinmirin, J. T., & Komolafe, A. A. (2022). Dynamics of land use land cover and its impact on carbon stocks in Sub-Saharan Africa: an overview. In Environment, Development and Sustainability (Vol. 24, Issue 1). https://doi.org/10.1007/s10668-021-01484-z Olvera-García, M. Á., Carbajal-Hernández, J. J., Sánchez-Fernández, L. P., & Hernández-Bautista, I. (2016). Air quality assessment using a weighted Fuzzy Inference System. Ecological Informatics, 33, 57–74. https://doi.org/10.1016/j.ecoinf.2016.04.005 Reames, T. G., & Bravo, M. A. (2019). People, place and pollution: Investigating relationships between air quality perceptions, health concerns, exposure, and individual- and area-level characteristics. Environment International, 122(November), 244–255. https://doi.org/10.1016/j.envint.2018.11.013 Relkar, R. R. (2022). Prediction of Air Quality Index Using Supervised Machine Learning. International Journal for Research in Applied Science and Engineering Technology, 10(6), 1371–1382. https://doi.org/10.22214/ijraset.2022.43993 Sunyer, J., Dadvand, P., Foraster, M., Gilliland, F., & Nawrot, T. (2021). Environment and the COVID-19 pandemic. Environmental Research, 195, 2020–2022. https://doi.org/10.1016/j.envres.2021.110819 Tuśnio, N., Fichna, J., Nowakowski, P., & Tofiło, P. (2020). Air pollution associates with cancer incidences in Poland. Applied Sciences (Switzerland), 10(21), 1–13. https://doi.org/10.3390/app10217489 van der Heijden, K. (2021). Capacity decisions and production planning in batch production environment with setup decisions. Wang, Q., & Huang, R. (2021). The impact of COVID-19 pandemic on sustainable development goals – A survey. Environmental Research, 202(April), 111637. https://doi.org/10.1016/j.envres.2021.111637 Wang, Q., Li, S., Li, R., & Jiang, F. (2022). Underestimated impact of the COVID-19 on carbon emission reduction in developing countries – A novel assessment based on scenario analysis. Environmental Research, 204(August 2021). https://doi.org/10.1016/j.envres.2021.111990 Wang, Q., & Su, M. (2020). A preliminary assessment of the impact of COVID-19 on environment – A case study of China. Science of the Total Environment, 728, 138915. https://doi.org/10.1016/j.scitotenv.2020.138915 Xie, J., Luo, S., Furuya, K., & Sun, D. (2020). Urban parks as green buffers during the COVID-19 pandemic. Sustainability (Switzerland), 12(17), 1–17. https://doi.org/10.3390/SU12176751 Xing, H., Zhu, L., Chen, B., Niu, J., Li, X., Feng, Y., & Fang, W. (2022). Spatial and temporal changes analysis of air quality before and after the COVID-19 in Shandong Province, China. Earth Science Informatics, 15(2), 863–876. https://doi.org/10.1007/s12145-021-00739-7 | ||
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