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Hubungan Jarak Rumah dari Tempat Penampungan Sementara dengan Gangguan Bau yang di Rasakan Masyarakat Lorong Tekukur Siti Rabbani Karimuna; Riska Riska; Rezki Aulia; Zahratun Nisa; Ramlia Wati
Jurnal Kesehatan Amanah Vol. 10 No. 1 (2026): Mei: Jurnal Kesehatan Amanah
Publisher : Universitas Muhammadiyah Manado

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.57214/jka.v10i1.1165

Abstract

In the waste management system, a Temporary Waste Storage Site (TPS) functions as an intermediate facility for transferring waste from collection points to transportation vehicles before reaching the final disposal site and may also serve as a waste sorting location. This study aimed to analyze the relationship between the distance of residential houses from the Temporary Waste Storage Site and odor disturbances perceived by residents of Lorong Tekukur. A quantitative method with an observational analytic design and cross-sectional approach was employed. The study involved 30 respondents selected through total sampling. Data were collected through face-to-face interviews using structured questionnaires and analyzed using univariate and bivariate analyses with the chi-square test. The results showed that most respondents had good knowledge, with 20 respondents (66.7%) categorized as having good knowledge, 6 respondents (20.0%) moderate knowledge, and 4 respondents (13.3%) poor knowledge. Regarding compliance with the recommended distance between residential houses and the Temporary Waste Storage Site related to odor disturbances, 28 respondents (93.3%) were categorized as good, while 2 respondents (6.7%) were categorized as poor. The chi-square test showed a significant relationship between community knowledge and compliance with the recommended distance from the Temporary Waste Storage Site (p = 0.006; p < 0.05). Strengthening community education and environmental management practices is needed to reduce odor impacts and improve waste management effectiveness.
Health Implications of Domestic Wastewater Treatment Through Biofilter Technology: A Review Rezki Aulia; Nur Indriyani; Melna puspita Sari; Zahratun Nisa
Journal of Health Science and Pharmacy Vol. 3 No. 2 (2026): May - August
Publisher : Yayasan Cipta Anak Bangsa (YCAB) Publisher

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36685/jhsp.v3i2.1736

Abstract

Background: Domestic wastewater management plays a crucial role in environmental conservation and improving public health. In areas with limited access to centralized treatment networks, biofilter technology can be an effective, affordable, and sustainable solution for managing household wastewater. Objectives: The purpose of this literature review is to examine and combine the latest findings related to the application, level of effectiveness, and various determining factors of the performance of biofilter technology in treating domestic wastewater. Method: This study uses a systematic literature review method by analyzing 25 related national and international journals from Google Scholar published between 2020-2025. Results: Based on the analysis results, biofilter technology, especially the anaerobic-aerobic system and the Moving Bed Biofilm Reactor (MBBR), has been proven to be able to reduce the concentration of major pollutant parameters with high consistency. Data shows the efficiency of reducing Biochemical Oxygen Demand (BOD) reaching 89%, Chemical Oxygen Demand (COD) 87% and Total Suspended Solids (TSS) up to 96%. The performance of this system is increasingly optimal when combined with supporting technologies such as filtration and phytoremediation (hybrid systems). Several determining factors for successful implementation include the type of filter media used, operational conditions (pH, temperature, and flow rate), and active community involvement. Conclusion: Wastewater treatment, both from households and industries, is rapidly evolving with the use of technologies such as anaerobic-aerobic biofilters, combining AOP with biological processes, vermifiltration, and the reuse of treated water for irrigation and green spaces. These technologies can meet environmental standards and support sustainability, cost efficiency, and resource conservation. While challenges remain, continued innovation in this area points to a brighter and more environmentally friendly future in wastewater management. Keywords: Biofilms, biological oxygen, bioreactors, oxygen, hidrogen-ion concentration