Monitoring Efektivitas Alat Penangkap Karbon Dioksida Berbasis Internet of Things
Keywords:
Carbon Capture, Monitoring, Internet Of Things (IoT)Abstract
The increase of carbon dioxide (CO₂) emissions from the industrial sector is one of the main contributors to global climate change. To address this issue, this research designs a carbon dioxide capture system based on the Internet of Things (IoT), utilizing a combination of PTFE membrane and zeolite adsorbent. The system is equipped with CO₂ sensors (DFRobot MH-Z14A), pressure sensors (Winser WPT-83G), and a servo valve to control gas pressure and flow. An Arduino Uno R3 microcontroller reads sensor data, which is transmitted to the ThingsBoard platform via an ESP32 module for remote monitoring. The test results show a significant reduction in CO₂ concentration between the inlet and outlet, proving the system's effectiveness in capturing carbon dioxide. This system is expected to be an efficient and adaptive early-stage solution for developing Carbon Capture and Storage (CCS) technologies
References
Regina Citra Kurnia Pangestu and Anak Agung Ketut Ayuningsasi, “Pengaruh Konsumsi Energi Sektor Industri, Rumah Tangga, dan Transportasi terhadap Emisi Karbon di Indonesia,” Inisiatif: Jurnal Ekonomi, Akuntansi dan Manajemen, vol. 3, no. 4, pp. 297–311, Aug. 2024, doi: 10.30640/inisiatif.v3i4.3154.
N. P. E. Simarmata, Y. Estefani, B. S. Bahri, and S. S. Sibarani, “Penggunaan Energi Bersih Menggunakan Panel Surya Di India,” Jurnal Energi Baru dan Terbarukan, vol. 4, no. 3, pp. 274–284, Dec. 2023, doi: 10.14710/jebt.2023.21518.
M. Mubashir, Y. F. Yeong, T. L. Chew, and K. K. Lau, “Comparison of Post-Treatment Methods on the Performance of Hollow Fiber Membranes Containing Metal Organic Framework in Gases Separation,” Ind Eng Chem Res, vol. 58, no. 17, pp. 7120–7130, May 2019, doi: 10.1021/acs.iecr.8b05773.
P. Luis, “Use of monoethanolamine (MEA) for CO2 capture in a global scenario: Consequences and alternatives,” Desalination, vol. 380, pp. 93–99, Feb. 2016, doi: 10.1016/J.DESAL.2015.08.004.
L. Farell Zavira, D. Bintang Narariyadi, and M. Ramadianti Musadi, “Simulasi Penangkapan Gas CO2 Dengan Pelarut Monoethanolamine Menggunakan Simulator Aspen Hysys V.11.”
R. Ramezani, L. Di Felice, and F. Gallucci, “A Review on Hollow Fiber Membrane Contactors for Carbon Capture: Recent Advances and Future Challenges,” Oct. 01, 2022, MDPI. doi: 10.3390/pr10102103.
L. Li, G. Ma, Z. Pan, N. Zhang, and Z. Zhang, “Research progress in gas separation using hollow fiber membrane contactors,” Membranes (Basel), vol. 10, no. 12, pp. 1–20, Dec. 2020, doi: 10.3390/membranes10120380.
I. Saraswati, “Zeolite-A Synthesis from Glass,” Jurnal Sains dan Matematika, vol. 23, no. 4, pp. 112–115, 2015.
A. W. Prasetyo and J. Windarta, “Pemanfaatan Teknologi Carbon Capture Storage (CCS) dalam Upaya Mendukung Produksi Energi yang Berkelanjutan,” Jurnal Energi Baru dan Terbarukan, vol. 3, no. 3, pp. 231–238, Nov. 2022, doi: 10.14710/jebt.2022.14509.
E. Kusumawati and D. Nirwantoro Nur, Peningkatan Kualitas Biogas Melalui Proses Adsorpsi Menggunakan Zeolite Alam, vol. Vol. 6. Politeknik Negeri Bandung. doi: https://doi.org/10.35313/irwns.v6i0.230.
M. Henschke, X. Wei, and X. Zhang, “Data Visualization for Wireless Sensor Networks Using ThingsBoard,” 2020. [Online]. Available: www.digi.com
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