The Relationship of Hot Work Climate on Physiological Response in Traditional Clover Leaf Oil Refining Workers
Abstract
In the clove leaf oil refining process which uses steam, it produces a hot temperature residue which affects clove leaf oil refinery workers. Exposure to a hot working climate can have an impact on human physiological responses such as an increase in body temperature, pulse rate, blood pressure and weight loss. as a result of producing quite a lot of sweat fluid. This research aims to investigate the physiological responses of clove leaf oil refinery workers to exposure to a hot working climate. In the clove leaf oil refining process, which utilizes steam, the production of hot temperature residue affects the workers. Exposure to such conditions can lead to various physiological responses, including increased body temperature, pulse rate, blood pressure, and weight loss due to significant sweating. Employing a quantitative research design with a cross-sectional analytical approach, data were collected from all 22 workers using a total sampling technique. The primary data collected were subjected to analysis using paired simple t-tests and the Pearson correlation test to explore relationships between variables. The findings reveal significant increases in physiological responses post-work, including elevated body temperature, pulse rate, systolic and diastolic blood pressure, and a reduction in body weight. The obtained p-values for all variables were <0.05, indicating statistically significant differences between pre-work and post-work conditions. Furthermore, the Pearson correlation test analysis between heat stress data and post-work physiological responses, including body temperature, pulse rate, systolic and diastolic blood pressure, as well as body weight, revealed moderate to strong correlations (r). These results underscore the detrimental impact of hot working climates on the physiological well-being of clove leaf oil refinery workers. Such findings highlight the urgent need for implementing appropriate measures to mitigate heat-related health risks in occupational settings, safeguarding the health and safety of workers.
References
Adinda Pitaloka, Yuliaty, & Mansur Sididi. (2021). Hubungan Iklim dengan Kinerja Pekerja di PT. Pelabuhan Indonesia (Persero) Terminal Peti Kemas Makassar. Window of Public Health Journal, 2(5), 816–826. https://doi.org/10.33096/woph.v2i5.298
Adiningsih, R. (2014). Faktor yang Mempengaruhi Kejadian “Heat Strain” pada Tenaga Kerja yang Terpapar Panas di PT. Aneka Boga Makmur. The Indonesian Journal of Occupational Safety and Health, 2(2), 145–153.
Affifah, F. N., Lutfi, M., & Kadarisman, D. (2016). Studi Fasilitas Penyulingan Minyak Daun Cengkeh ( Syzygium aromaticum L ) : Studi kasus UKM di Malang Study Distillation Facility Clove Leaf Oil ( Syzygium aromaticum L .): Case Study of UKM in Malang. Jurnal Keteknikan Pertanian Dan Biosistem, 4(1), 20–26.
Astuti, N. P. T., Bayu, W. I., & Destriana, D. (2022). Indeks massa tubuh, pola makan, dan aktivitas fisik: apakah saling berhubungan? Jurnal Olahraga Pendidikan Indonesia (JOPI), 1(2), 154–167. https://doi.org/10.54284/jopi.v1i2.99
Asyik, H. (2018). Hubungan Tekanan Panas Terhadap Tekanan Darah Karyawan PT. Philips Seafood Indonesia. Departemen Keselamatan Dan Kesehatan Kerja, 11(1), 15–20. https://doi.org/10.12777/jati.11.1.15-20
Dewi, S. N., & Ramdhan, D. H. (2022). Hubungan Tekanan Panas Dengan Tekanan Darah Pekerja Sektor Konstruksi. PREPOTIF : Jurnal Kesehatan Masyarakat, 6(1), 524–532. https://doi.org/10.31004/prepotif.v6i1.3172
Fajrin, N. (2014). TEKANAN PANAS PADA PEKERJA INSTALASI LAUNDRY Nurul Fajrin , Furqaan Naiem , Rum Rahim Bagian Kesehatan dan Keselamatan Kerja , FKM Universitas Hasanuddin PENDAHULUAN Tempat kerja adalah tiap ruangan atau lapangan , terbuka , tertutup , bergerak ataupaun t. 1–11.
Gunawan, R. (2020). Rantai Nilai Minyak Atsiri Indonesia. Arsip Perpustakaan Dan Penyebaran Teknologi Pertanian Dan Dewan Atsiri Indonesia, 1–10.
Hidayatullah. (2016). Perbedaan Tingkat Dehindrasi, Tekanan Darah Dan Gangguan Kesehatan Pada Pekerja Terpapar Iklim Kerja Panas di Atas dan di Bawah NAB Pada Bagian Kontruksi Surakarta. Media Konservasi, 2(1), 11–40. http://dx.doi.org/10.1016/j.ecoenv.2017.03.002%0Ahttp://www.forda-mof.org/files/Sistem_Agroforestri_di_Kawasan_Karst_Kabupaten_Gunungkudul_Untuk_Pengelolaan_Telaga_Sebagai_Sumber_Air_Berkelanjutan.pdf%0Ahttps://extension.msstate.edu/sites/default/files/pu
ILO. (2016). Occupational safety and health management systems:An Applied and Training Guide for medium and large companies. In Occupational Safety and Health Management System: An Applied and Training Guide for medium and large companies. http://www.ingentaselect.com/rpsv/cgi-bin/cgi?ini=xref&body=linker&reqdoi=10.5848/ILO.978-9-221249-71-9_6
Jaya, G. W., Sutanto, H., Hidayanto, E., & Saraswati, G. P. (2020). Pengaruh Iklim Kerja Panas Terhadap Respon Fisiologis Pekerja dalam Ruang Preparasi Di Pt-X. Progressive Physics Journal, 1(2017), 15–19.
Juariah, L., Mauliku, N. E., & Saepudin, W. (2018). Faktor-Faktor Yang Mempengaruhi Status Tekanan Darah Pada Pekerja Di Job Pertamina Talisman Jambi Merang Tahun 2017. Prosiding Pertemuan Ilmiah Nasional Penelitian & Pengabdian Masyarakat (Pinlitamas I), 1(1), 305–315.
Maudy, C. K., Ruliati, L. P., & Doke, S. (2021). Keluhan Musculoskeletal Disorders dan Kelelahan Kerja pada Tenaga Kerja Bongkar Muat di Pelabuhan Tenau. Media Kesehatan Masyarakat, 3(3), 312–321. https://doi.org/10.35508/mkm.v4i3.3392
NIOSH. (2016). Criteria for a Recommended. United States of Disease Control and Prevention. Federal Register, 77(124), 41190. http://search.ebscohost.com/login.aspx?direct=true&db=bth&AN=78039950&site=ehost-live%5Cnhttp://search.ebscohost.com/login.aspx?direct=true&db=bth&AN=77666062&site=ehost-live
Permana, R. A., Asnifatima, A., & Listyandini, R. (2019). Fisiologis Pekerja Di Home Industry Pembuatan Sandal Rw 04 Kelurahan Pamoyanan Kecamatan Bogor Selatan Kota Bogor Tahun 2019. Promotor:Jurnal Mahasiswa Kesehatan Masyarakat, 2(5), 422–428.
Pradana, T. D., Rochmawati, Sumiati, & . (2016). Di Lingkungan Kerja Panas. II(1), 49–54.
Pusparini, D. A., Setiani, O., & Hanani, Y. (2016). Hubungan Masa Kerja dan Lama Kerja dengan Kadar Timbal dalam darah. Jurnal Kesehatan Masyarakat, 4, 1–23. http://ejournal-s1.undip.ac.id/index.php/jkm
Rahadian, R. R. (2018). Hubungan tekanan Panas Dengan Denyut Nadi Pekerja Pada Area Kerja BRF Di PT X. Jurnal Ilmiah Kesehatan Media Husada, 6(2), 285–294. https://doi.org/10.33475/jikmh.v6i2.47
Rahma Shintyar, A., Lubis, H. S., Salmah, U., Keselamatan, M. D., Kerja, K., Usu, F., & Keselamatan, D. D. (2015). Hubungan Tekanan panas dengan tekanan darah pada pekerja perparkiran kendaraan bermotor di basement plaza point medan tahun2015. Jurnal Kesehatan , 2015.
Saputra, I. K. D. A., Diah, & Gde, C. (2023). Faktor-Faktor Yang Berhubungan Dengan Musculoskeletal Disorders dan Kelelahan Kerja Pekerja Pembuat Serbuk Kopi. 12(2), 925–934.
Saputra, I. K. D. A., Purnawati, S., Swamardika, I. B. A., Sri Handari Adiputra, L. M. I., Priambadi, I. G. N., & Dinata, I. M. K. (2020). Kursi Lantai dan Penataan Layout Meningkatkan Work Engagement dan Produktivitas Pekerja Pembuatan Atap Alang-Alang. Jurnal Ergonomi Indonesia (The Indonesian Journal of Ergonomic), 6(1), 1. https://doi.org/10.24843/jei.2020.v06.i01.p01
Sunaryo, M., & Nourma, M. (2020). Gambaran dan Pengendalian Iklim Kerja Dan Keluhan. MTPH Journal, 4(2), 171–180.
Wulandari, J., & Ernawati, M. (2018). Efek Iklim Kerja Panas Pada Respon Fisiologis Tenaga Kerja Di Ruang Terbatas. The Indonesian Journal of Occupational Safety and Health, 6(2), 207. https://doi.org/10.20473/ijosh.v6i2.2017.207-215
Yusuf M, Putra, N. A., & Tirtayasa, K. (2016). Analisis Beban Kerja Petani Pada Pengolahan Stroberi di Kabupaten Tabanan. Journal Ergonomi Indonesia, 1(1). https://doi.org/10.28932/sentekmi2021.v1i1.71
Copyright (c) 2024 Lucia Ni Luh Yuniarti, I Kadek Dwi Arta Saputra, Cokorde Gde Putra Pemayun, I Ketut Sudiarta

This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.



