Fikriyah, Aida Khafidlotul (2025) Sistem Monitoring GAS CO,NO2, PM2.5 Dan PM10 Pada Insinerator Sampah Berbasis Website. Other thesis, Institut Teknologi Sepuluh Nopember.
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Abstract
Pembakaran sampah dari proses insinerasi akan menghasilkan flue gas yang berisi berbagai macam polutan. Berbagai polutan dalam gas buang tersebut harus direduksi supaya memenuhi Baku Mutu Emisi dan tidak mencemari lingkungan. Inovasi insinerator sampah yang dilengkapi dengan filter udara zeolit bertujuan untuk mereduksi gas beracun dari gas buang insinerator sampah. Sistem ini dirancang untuk mengukur konsentrasi polutan udara, khususnya Karbon Monoksida (CO), Nitrogen Dioksida (NO2), Partikel Materi halus (PM2.5), dan Partikel Materi kasar (PM10) baik sebelum maupun setelah melewati filter zeolit. Data polutan diambil secara real-time menggunakan sensor yang terhubung dengan platform berbasis website, sehingga memungkinkan pemantauan secara terus-menerus dan analisis optimalisasi filter zeolit dalam mengurangi polutan. Pengujian dilakukan menggunakan sampel kayu, kertas, dan plastik. Delay website yang didapatkan setelah pengujian sistem rata-rata sekitar 1 detik. Filter zeolit mampu mereduksi sekitar 72% emisi gas CO, 48% emisi gas NO2, 86% polutan PM2.5 dan pada 85% pada polutan PM10. Hasil pengujian dapat menunjukkan bahwa filter zeolit mampu menurunkan konsentrasi CO, NO2, PM2.5, dan PM10 secara signifikan.
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he combustion of waste from the incineration process produces flue gas containing various pollutants. The various pollutants in the flue gas must be reduced so that they meet the Emission Quality Standards and do not pollute the environment. The innovation of a waste incinerator equipped with a zeolite air filter aims to reduce toxic gases from the waste incinerator exhaust gas. The system is designed to measure the concentration of air pollutants, specifically Carbon Monoxide (CO), Nitrogen Dioxide (NO2), Fine Particle Matter (PM2.5), and Coarse Particle Matter (PM10) both before and after passing through the zeolite filter. Pollutant data was captured in real-time using sensors connected to a web-based platform, enabling continuous monitoring and analysis of the optimisation of the zeolite filter in reducing pollutants. Tests were conducted using wood, paper, and plastic sample. The website delay obtained after system testing averaged around 1 second. The zeolite filter was able to reduce about 72% of CO gas emissions, 48% of NO2 gas emissions, 86% of PM2.5 pollutants and at 85% on PM10 pollutants. The test results can show that the zeolite filter is able to significantly reduce the concentration of CO, NO2, PM2.5, and PM10
Item Type: | Thesis (Other) |
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Uncontrolled Keywords: | Insinerator, Filter Udara, Zeolit, Website, Polutan. |
Subjects: | T Technology > T Technology (General) T Technology > T Technology (General) > T11 Technical writing. Scientific Writing |
Divisions: | Faculty of Vocational > Instrumentation Engineering |
Depositing User: | Aida Khafidlotul Fikriyah |
Date Deposited: | 29 Jul 2025 08:36 |
Last Modified: | 29 Jul 2025 08:36 |
URI: | http://repository.its.ac.id/id/eprint/122879 |
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