Pengurusan pencemaran bandar: Satu analisis bibliometrik
List of Authors
  • Khairul Hafezad Abdullah

Keyword
  • pencemaran bandar, bibliometrik, Scopus, Web of Science

Abstract
  • Pencemaran yang tidak terkawal hasil daripada kegiatan aktif di kawasan bandar seperti pelepasan asap kenderaan dan aktiviti perindustrian berupaya menimbulkan pencemaran alam sekitar yang ketara. Kajian ini bertujuan menganalisis maklumat penyelidikan dan kadar pertumbuhan penerbitan pengurusan pencemaran bandar dalam pangkalan data Scopus dan Web of Science (WoS). Maklumat bibliometrik berkaitan kadar penerbitan, negara, institusi, dan kata kunci dianalisis menggunakan perisian ScientoPy dan VOSviewer. Analisis ini mendedahkan trend penerbitan pengurusan pencemaran bandar adalah bersifat fluktuasi (turun naik) dalam kedua-dua pangkalan data. Namun, bilangan penerbitan dalam pangkalan data Scopus meningkat secara signifikan selepas tahun 2008. Dalam kajian ini, “Environmental Science and Ecology” bertindak sebagai bidang penyelidikan yang paling penting. Manakala, penyelidik dari China didapati memonopoli bilangan penerbitan tertinggi serta membina rangkaian kerjasama yang baik dengan negara Amerika Syarikat, United Kingdom dan Australia. Kata kunci “urban pollution”, “air pollution”, dan “pollution” disenaraikan sebagai tiga kata kunci utama dalam penerbitan pengurusan pencemaran bandar. Kajian ini mempunyai beberapa batasan antaranya analisis penerbitan hanya berfokus kepada pangkalan data Scopus dan WoS. Justeru, kualiti data bergantung sepenuhnya kepada dua pangkalan data tersebut. Secara keseluruhan, kajian ini mempersembahkan intipati utama penyelidikan dan corak penerbitan pengurusan pencemaran bandar yang dapat dijadikan sumber rujukan tuntas kepada pembaca, penyelidik, dan penggubal dasar. Maklumat berkaitan skop dan agenda pengurusan pencemaran bandar yang diperoleh dalam analisis ini dapat mengisi jurang penyelidikan serta meningkatkan strategi pengurusan pencemaran bandar dengan cekap dan berkesan.

Reference
  • 1. Abdullah, K. H., Abd Aziz, F. S., & Isa, M. F. M. (2021). Thematic evolution of municipal solid waste management research. Indonesian Journal of Environmental Management and Sustainability, 5(1), 5-12.

    2. Arsovski, S., Kwiatkowski, M., Lewandowska, A., Peshevska, D. J., Sofeska, E., & Dymitrow, M. (2018). Can urban environmental problems be overcome? The case of Skopje—world’s most polluted city. Bulletin of Geography. Socio-economic Series, 40(40), 17-39.

    3. Barwise, Y., & Kumar, P. (2020). Designing vegetation barriers for urban air pollution abatement: A practical review for appropriate plant species selection. NPJ Climate and Atmospheric Science, 3(1), 1-19.

    4. Chaudhry, F. N., & Malik, M. F. (2017). Factors affecting water pollution: A review. Journal of Ecosystem & Ecography, 7(225), 1-3.

    5. Donthu, N., Kumar, S., Mukherjee, D., Pandey, N., & Lim, W. M. (2021). How to conduct a bibliometric analysis: An overview and guidelines. Journal of Business Research, 133, 285-296.

    6. Dontu, A. I., Gaiginschi, L., & Barsanescu, P. D. (2019, August). Reducing the urban pollution by integrating weigh-in-motion sensors into intelligent transportation systems. State of the art and future trends. In IOP Conference Series: Materials Science and Engineering (Vol. 591, No. 1, p. 012087). IOP Publishing.

    7. Farid, S., Baloch, M. K., & Ahmad, S. A. (2012). Water pollution: Major issue in urban areas. International Journal of Water Resources and Environmental Engineering, 4(3), 55-65.

    8. Gautam, M., & Agrawal, M. (2021). Greenhouse gas emissions from municipal solid waste management: A review of global scenario. Carbon Footprint Case Studies, 123-160.

    9. Goi, C. L. (2017). The impact of technological innovation on building a sustainable city. International Journal of Quality Innovation, 3(1), 1-13.

    10. Haseena, M., Malik, M. F., Javed, A., Arshad, S., Asif, N., Zulfiqar, S., & Hanif, J. (2017). Water pollution and human health. Environmental Risk Assessment and Remediation, 1(3), 19-19.

    11. He, B., Heal, M. R., & Reis, S. (2018). Land-use regression modelling of intra-urban air pollution variation in China: current status and future needs. Atmosphere, 9(4), 1-19.

    12. Jeričević, A., Gašparac, G., Mikulec, M. M., Kumar, P., & Prtenjak, M. T. (2019). Identification of diverse air pollution sources in a complex urban area of Croatia. Journal of Environmental Management, 243, 67-77.

    13. Ke, S., Cheng, X. Y., Zhang, N., Hu, H. G., Yan, Q., Hou, L. L., ... & Chen, Z. N. (2015). Cadmium contamination of rice from various polluted areas of China and its potential risks to human health. Environmental Monitoring and Assessment, 187(7), 1-11.

    14. Knickmeyer, D. (2020). Social factors influencing household waste separation: A literature review on good practices to improve the recycling performance of urban areas. Journal of Cleaner Production, 245, 1-18.

    15. Kosnik, M. B., Hauschild, M. Z., & Fantke, P. (2022). Toward assessing absolute environmental sustainability of chemical pollution. Environmental Science & Technology, 56(8), 4776-4787.

    16. Liang, L., & Gong, P. (2020). Urban and air pollution: a multi-city study of long-term effects of urban landscape patterns on air quality trends. Scientific Reports, 10(1), 1-13.

    17. Martínez-Bravo, M., & Martínez-del-Río, J. (2020). Urban pollution and emission reduction. Sustainable Cities and Communities, 905-915.

    18. Morillas, J. M. B., Gozalo, G. R., González, D. M., Moraga, P. A., & Vílchez-Gómez, R. (2018). Noise pollution and urban planning. Current Pollution Reports, 4(3), 208-219.

    19. Münzel, T., Sørensen, M., Schmidt, F., Schmidt, E., Steven, S., Kröller-Schön, S., & Daiber, A. (2018). The adverse effects of environmental noise exposure on oxidative stress and cardiovascular risk. Antioxidants and Redox Signaling, 28(9), 873-908.

    20. Rahman, Z. (2020). An overview on heavy metal resistant microorganisms for simultaneous treatment of multiple chemical pollutants at co-contaminated sites, and their multipurpose application. Journal of Hazardous Materials, 396, 1-15.

    21. Ruiz-Rosero, J., Ramírez-González, G., & Viveros-Delgado, J. (2019). Software survey: ScientoPy, a scientometric tool for topics trend analysis in scientific publications. Scientometrics, 121(2), 1165-1188.

    22. Schweitzer, L., & Noblet, J. (2018). Water contamination and pollution. In Green chemistry (pp. 261-290). Elsevier.

    23. Shifaw, E. (2018). Review of heavy metals pollution in China in agricultural and urban soils. Journal of Health and Pollution, 8(18), 1-14.

    24. Sohoo, I., Ritzkowski, M., Heerenklage, J., & Kuchta, K. (2021). Biochemical methane potential assessment of municipal solid waste generated in Asian cities: A case study of Karachi, Pakistan. Renewable and Sustainable Energy Reviews, 135, 1-12.

    25. Ulpiani, G., Duhirwe, P. N., Yun, G. Y., & Lipson, M. J. (2022). Meteorological influence on forecasting urban pollutants: Long-term predictability versus extreme events in a spatially heterogeneous urban ecosystem. Science of the Total Environment, 814, 1-10.

    26. Van Eck, N. J., & Waltman, L. (2017). Citation-based clustering of publications using CitNetExplorer and VOSviewer. Scientometrics, 111(2), 1053-1070.

    27. Williams, G., & Short, A. E. (2022). Effects of noise on anxiety related to the experience of dining in restaurants. Music and Medicine, 14(1), 27-38.

    28. Yang, J., Shi, B., Shi, Y., Marvin, S., Zheng, Y., & Xia, G. (2020). Air pollution dispersal in high density urban areas: Research on the triadic relation of wind, air pollution, and urban form. Sustainable Cities and Society, 54, 101941.

    29. Zhao, X., Zhou, W., & Han, L. (2019). Human activities and urban air pollution in Chinese mega city: An insight of ozone weekend effect in Beijing. Physics and Chemistry of the Earth, Parts A/B/C, 110, 109-116.

    30. Zheng, S., & Kahn, M. E. (2013). Understanding China's urban pollution dynamics. Journal of Economic Literature, 51(3), 731-72.