Management of the Work Environment to Reduce Blood Lead (BLL) Levels in the Assay Laboratory
Isi Artikel Utama
Abstrak
Rincian Artikel

Artikel ini berlisensiCreative Commons Attribution-ShareAlike 4.0 International License.
Penulis yang mempublikasikan artikel di Jurnal Kesehatan Lingkungan menyetujui ketentuan sebagai berikut:
- Penulis tetap memegang hak cipta dan memberikan kepada jurnal hak untuk melakukan publikasi pertama.
- Karya dilisensikan di bawah Creative Commons Attribution-ShareAlike 4.0 International License, yang mengizinkan pihak lain untuk membagikan (menyalin dan mendistribusikan ulang materi dalam media atau format apa pun) serta mengadaptasi (mengubah, mengembangkan, dan membuat karya turunan) untuk tujuan apa pun, termasuk tujuan komersial, dengan ketentuan bahwa atribusi yang tepat diberikan kepada penulis asli dan sumber, tautan ke lisensi disertakan, serta setiap perubahan yang dilakukan harus dinyatakan.
Setiap adaptasi, modifikasi, atau karya turunan wajib didistribusikan dengan lisensi yang sama (CC BY-SA 4.0), dan tidak diperkenankan menambahkan pembatasan tambahan yang dapat mengurangi hak-hak yang diberikan oleh lisensi ini. - Penulis diperkenankan untuk membuat perjanjian tambahan secara terpisah terkait distribusi non-eksklusif atas versi karya yang telah dipublikasikan oleh jurnal (misalnya, mengunggahnya ke repositori institusi atau memasukkannya ke dalam buku), dengan tetap mencantumkan bahwa karya tersebut pertama kali dipublikasikan di jurnal ini.
Referensi
British Columbia. A Guideline to Reducing Inorganic Lead Exposure in Fire Assay Laboratories [Internet]. Office of the Chief Inspector of Mines. 2016, 19 p. Available from: https://www2.gov.bc.ca/assets/gov/farming-natural-resources-and-industry/mineral-exploration-mining/documents/health-and-safety/lead_exposure_fire_assay_labs2016.pdf
Youakim S. New inorganic lead-monitoring guidelines. BC Medical Journal [Internet]. 2016;58(5):275-287. Available from: https://bcmj.org/worksafebc/new-inorganic-lead-monitoring-guidelines
Agency for Toxic Substances and Disease Registry. Case studies in environmental medicine, lead toxicity [Internet]. 2016. Available from: www.atsdr.cdc.gov/csem/lead/docs/lead.pdf
Engwa G.A., Ferdinand P.U., Nwalo F.N., Unachukwu M.N. Mechanism and Health Effects of Heavy Metal Toxicity in Humans [Internet]. Poisoning in the Modern World. 2019. Available from: https://www.intechopen.com/chapters/64762
Sanders T, Liu Y, Buchner V, Tchounwou PB. Neurotoxic effects and biomarkers of lead exposure: a review. Reviews on Environmental Health [Internet]. 2009;24(1):15-45. Available from: https://doi.org/10.1515/REVEH.2009.24.1.15
Collin M.S., Venkataraman S.K., Vijayakumar N., Naveensubramaniam., Kanimozhi V., Arbaaz S.M., Stacey R.G.S., Anusha J., Choudhary R., Lvov V., Tovar G.I., Senatov F., Gabriel Senatov F, Koppala S., Swamiappan S. Bioaccumulation of Lead (Pb) and Its Effects on Human: A Review. Journal of Hazardous Materials Advances [Internet]. 2022;7:100094. Available from: https://doi.org/10.1016/j.hazadv.2022.100094
Ahmed M., Siddiqui M.K.J. Low Level Lead Exposure and Oxidative Stress: Current Opinions. Clinica Chimica Acta [Internet]. 2007;383(1–2):57–64. Available from: https://doi.org/10.1016/j.cca.2007.04.024
Kementerian Ketenagakerjaan Republik Indonesia. Peraturan Menteri Ketenagakerjaan Republik Indonesia Nomor 5 Tahun 2018 Tentang Keselamatan dan Kesehatan Kerja Lingkungan Kerja. 2018, 567.
Centers of Disease Control and Prevention (CDC). Lead Toxicity, What Are U.S Standards for Lead Levels [Internet]. 2023. Available from: https://www.atsdr.cdc.gov/csem/leadtoxicity/safety_standards.html
WorkSafeBC. Lead Containing Paints and Coatings: Preventing Exposure in the Construction Industry [Internet]. 2011. Available from: https://buyandsell.gc.ca/cds/public/2017/08/11/998df726c96a62a7f557f52fc786f59b/fp802-170130_preventing_exposure_in_the_construction_industry_-_bc_guidelines.pdf
Tozun M., Unsal A., Sirmagul B. The Lead Exposure among Lead Workers: An Epidemiological Study from West Turkey. Iranian Journal of Public Health [Internet]. 2009;38(2):65-78. Available from: https://ijph.tums.ac.ir/index.php/ijph/article/view/3191
Yassin A.S., Martonik J.F., Davidson J.L. Blood Lead Levels in U.S. Workers, 1988-1994. Journal of Occupational and Environmental Medicine [Internet]. 2004;46(7):720-728. Available from: http://www.jstor.org/stable/44997357
Barry V., Steenland K. Lead Exposure and Mortality among U.S. Workers in a Surveillance Program: Results from 10 Additional Years of Follow-up. Environmental Research [Internet]. 2019;177:108625. Available from: https://doi.org/10.1016/j.envres.2019.108625
Allaouat S., Reddy V.K., Räsänen K., Khan S., Lumens M.E. Educational interventions for preventing lead poisoning in workers. The Cochrane Database of Systematic Reviews [Internet]. 2020;28(8):CD013097. Available from: https://doi.org/ 10.1002/14651858.CD013097.pub2.
Handayani G.L., Abbasiah. Hubungan Perilaku Kebersihan Perorangan dan Lingkungan Serta Status Gizi dengan Kejadian Infeksi pada Anak Usia Sekolah di Sekolah Dasar Kota Jambi. Jurnal Ilmiah Universitas Batanghari Jambi [Internet]. 2020;20(1):232-236. Available from: https://doi.org/ 10.33087/jiubj.v20i1.878
Porter K.A., Kirk C., Fearey D., Castrodale L.J., Verbrugge D., McLaughlin J. Elevated Blood Lead Levels among Fire Assay Workers and Their Children in Alaska, 2010-2011. Public Health Reports [Internet]. 2015;130(5):440-446. Available from: https://doi.org/10.1177/0033354915130005
Mitchell C.S., Zhang J.J., Sigsgaard T., Jantunen M., Lioy P.J., Samson R., Karol M.H. Current state of the science: health effects and indoor environmental quality. Environmental Health Perspectives [Internet]. 2007;115(6):958-964. Available from: https://doi.org/10.1289/ehp.8987
The National Institute for Occupational Safety and Health (NIOSH). Engineering Control Database, Mine Assay Laboratories [Internet]. Center of Disease Control and Prevention. 2018. Available from: https://www.cdc.gov/niosh/engcontrols/ecd/detail27.html
American Conference of Governmental Industrial Hygienists (ACGIH). Industrial Ventilation: A Manual of Recommended Practice for Design (30th Ed.). 2019.
McDermott H.J. Handbook of Ventilation for Contaminant Control (2nd Ed.) 1985.
Tharr D. Case Studies: Lead Exposures in Gold Fire Assay Laboratories. Journal of Applied Occupation and Environmental Hygiene [Internet]. 2011;6(4):252-254, Available from: https://doi.org/10.1080/1047322X.1991.10387872
Esswein E.J., Boeniger M.F., Ashley K. Handwipe method for removing lead from skin. Surface and Dermal Sampling. Brisson M, Ashley K, eds., West Conshohocken PA: ASTM International, STP 1533, 2011;pp. 67-81.
Esswein E.J., Boeniger M.F., Ashley K. Handwipe method for removing lead from skin. J ASTM International. 2011;8(5):JAI103527
Virji M.A., Woskie S.R., Pepper L.D. Skin and Surface Lead Contamination, Hygiene Programs and Work Practices of Bridge Surface Preparation and Painting Contractors. Journal of Occupational and Environmental Hygiene [Internet]. 2008;6(2):131-142. Available from https://doi.org/10.1080/15459620802656636
Sun C., Wong T., Hwang Y., Chao K., Jee S., Wang J. Percutaneous Absorption of Inorganic Lead Compounds. American Industrial Hygiene Association Journal [Internet]. 2002;63(5):641-646. Available from: https://doi.org/10.1080/15428110208984751