Evaluation of Urban Plant Vegetation on the Effects of Flight Noise Around the Airport Area

Evaluation of Urban Plant Vegetation on the Effects of Flight Noise Around the Airport Area

Authors

  • Dimas Endrawan Putra Banyuwangi Aviation Academy, Banyuwangi, Indonesia
  • Daniel Dewantoro R Banyuwangi Aviation Academy, Banyuwangi, Indonesia
  • Hadi Prayitno Banyuwangi Aviation Academy, Banyuwangi, Indonesia
  • Gatut Rubiono PGRI Banyuwangi University, Mechanical Engineering Department, Banyuwangi, Indonesia
  • Kuncoro Wisnu Universitas PGRI Banyuwangi

DOI:

https://doi.org/10.55299/ijoss.v1i2.14

Keywords:

Noise, airports, urban plants, noise barriers, hearing health, environment

Abstract

In urban and industrial regions, noise pollution is becoming a bigger environmental issue, particularly around airports. Excessive noise can have a number of detrimental effects on people's physical and mental well-being. The World Health Organization (WHO) states that extended exposure to noise can raise blood pressure, cause sleep disruptions, cause hearing loss, and increase the risk of cardiovascular disease. The fast expansion of air travel and heightened airport operations in Indonesia have made the noise issue worse. A lot of study has been done on how to lessen airport noise. More environmentally friendly natural solutions, such as the use of plants as noise barriers, have attracted attention as effective and sustainable alternatives. It is hoped that this research can provide practical and effective solutions that not only reduce noise but also support environmental sustainability. Thus, the results of this research will provide long-term benefits for the community around the airport and educational institutions such as the Indonesian Aviation Academy Banyuwangi. With an average noise reduction percentage of 46.79%, the study's results demonstrate the most notable decrease in noise levels. With a noise reduction of 29.54%, Tunas Merah comes in second. With a noise reduction of 23.94%, the TFan spruce comes in third. Noise is only decreased by 17.77% in the absence of barrier plants.

Downloads

Download data is not yet available.

References

Agustin, R. E., & Hamidah. (2019). Absorption of lead (Pb) by Codiaeum variegatum plants in different Surabaya protocol roads: a preliminary research. IOP Conference Series: Earth and Environmental Science, 259(1), 012006. https://doi.org/10.1088/1755-1315/259/1/012006

Bai, J., Niu, Z., Gao, S., Bi, K., Wang, J., Huang, Y., & Sun, G. (2023). An exploration, analysis, and correction of the distance effect on terrestrial hyperspectral LiDAR data. ISPRS Journal of Photogrammetry and Remote Sensing, 198, 60–83. https://doi.org/10.1016/J.ISPRSJPRS.2023.03.001

Baudin, C., Lefèvre, M., Champelovier, P., Lambert, J., Laumon, B., & Evrard, A. S. (2021). Self-rated health status in relation to aircraft noise exposure, noise annoyance or noise sensitivity: the results of a cross-sectional study in France. BMC Public Health, 21(1), 1–11. https://doi.org/10.1186/S12889-020-10138-0/TABLES/3

Chen, K. H., Su, S. Bin, & Chen, K. T. (2020). An overview of occupational noise-induced hearing loss among workers: epidemiology, pathogenesis, and preventive measures. Environmental Health and Preventive Medicine 2020 25:1, 25(1), 1–10. https://doi.org/10.1186/S12199-020-00906-0

Dalby, S. (2021). Unsustainable Borders: Globalization in a Climate-Disrupted World. Borders in Globalization Review, 2(2), 26–37. https://doi.org/10.18357/BIGR22202120051

Ekici, F., Orhan, G., Gümüş, Ö., & Bahce, A. B. (2022). A policy on the externality problem and solution suggestions in air transportation: The environment and sustainability. Energy, 258, 124827. https://doi.org/10.1016/J.ENERGY.2022.124827

Farooqi, Z. U. R., Ahmad, I., Ditta, A., Ilic, P., Amin, M., Naveed, A. B., & Gulzar, A. (2022). Types, sources, socioeconomic impacts, and control strategies of environmental noise: a review. Environmental Science and Pollution Research 2022 29:54, 29(54), 81087–81111. https://doi.org/10.1007/S11356-022-23328-7

Kalu, C. U., & Attamah, N. (2021). Globalization, Democracy, and Inequality. 498–507. https://doi.org/10.1007/978-3-319-95867-5_116

Kuzmina, T. I., Pavlova, E. Y., & Gurieva, A. (2024). Container plant potential of thuja occidentalis for the introduction of explants into in vitro culture during growth attenuation. BIO Web of Conferences, 103, 00051. https://doi.org/10.1051/BIOCONF/202410300051

Mfotie Njoya, E., Weber, C., Hernandez-Cuevas, N. A., Hon, C. C., Janin, Y., Kamini, M. F. G., Moundipa, P. F., & Guillén, N. (2014). Bioassay-Guided Fractionation of Extracts from Codiaeum variegatum against Entamoeba histolytica Discovers Compounds That Modify Expression of Ceramide Biosynthesis Related Genes. PLOS Neglected Tropical Diseases, 8(1), e2607. https://doi.org/10.1371/JOURNAL.PNTD.0002607

Mudiana, D., & Ariyanti, E. E. (2021). Syzygium myrtifolium Walp. flowering stages and its visitor insects. Biodiversitas Journal of Biological Diversity, 22(8), 3489–3496. https://doi.org/10.13057/BIODIV/D220848

Ojha, A., & Kumar, V. (2022). Image Classification of Ornamental Plants Leaf using Machine Learning Algorithms. 4th International Conference on Inventive Research in Computing Applications, ICIRCA 2022 - Proceedings, 834–840. https://doi.org/10.1109/ICIRCA54612.2022.9985604

Ovdiienko, O., Hryhorak, M., Marchuk, V., & Bugayko, D. (2021). An assessment of the aviation industry’s impact on air pollution from its emissions: Worldwide and the Ukraine. Environmental and Socio-Economic Studies, 9(2), 1–10. https://doi.org/10.2478/ENVIRON-2021-0006

Roşca, S., Şimonca, V., Bilaşco, Ş., Vescan, I., Fodorean, I., & Petrea, D. (2019). The Assessment of Favourability and Spatio-Temporal Dynamics of Pinus Mugo in the Romanian Carpathians Using GIS Technology and Landsat Images. Sustainability 2019, Vol. 11, Page 3678, 11(13), 3678. https://doi.org/10.3390/SU11133678

Sarant, J., Lemke, U., Giroud, N., Scherpiet, S., & Weinstein, B. (2023). Promoting hearing and cognitive health in audiologic rehabilitation for the well-being of older adults. International Journal of Audiology. https://doi.org/10.1080/14992027.2023.2260099

Stephens, J. M. C. (2006). The factors responsible for the varying levels of UMF® in mānuka (Leptospermum scoparium) honey. https://hdl.handle.net/10289/2655

Downloads

Published

2024-12-02

How to Cite

Putra, D. E., Dewantoro R, D., Prayitno, H., Rubiono, G., & Wisnu, K. (2024). Evaluation of Urban Plant Vegetation on the Effects of Flight Noise Around the Airport Area . International Journal of Natural Science Studies and Development (IJOSS), 1(2), 50–55. https://doi.org/10.55299/ijoss.v1i2.14

Issue

Section

Articles
Loading...