Model Pengembangan Pelet Biomassa dari Sampah Daun dan Ranting untuk Mendukung Transisi Energi dan Pengelolaan Sampah Berkelanjutan di Cilacap

Author


Nur Indah Wardani(1Mail), Dewi Hestyani(2), Andika Prastya(3), Dian Prabowo(4), Ahmad Restian(5), Adi Nugroho(6),
(1) Prodi Teknik Pengendalian Pencemaran Lingkungan, Politeknik Negeri Cilacap 2,3PT.SBI Cilacap 4,5,6Prodi Teknik Mesin Politeknik Negeri Cilacap Email: , dewi.hestyani@sig.id2, andika.prastya@sig.id3,
(2) ,
(3) ,
(4) ,
(5) ,
(6) ,

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Available online: 2025-08-29  |  Published : 2025-08-29
Copyright (c) 2025 Nur Indah Wardani, Dewi Hestyani, Andika Prastya, Dian Prabowo, Ahmad Restian, Adi Nugroho
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Abstract


Indonesia faces dual challenges in the form of high dependence on coal and increased volumes of leaf and ranting organic waste. This study studied the development of biomass pellets from leaf litter and ranting as renewable energy (EBT) initiated by PT Building Solutions Indonesia (SBI) Cilacap together with Cilacap State Polytechnic. Analysis includes technical concepts, environmental impacts through a life cycle approach, as well as implementation potentials and challenges. Results show the use of biomass pellets can decrease net greenhouse gas and methane gas emissions from leaf burning and ranting by the community, as well as supporting the circular economy model. The main challenges include production energy consumption and particulate emission control. The concept is technically and ecologically feasible with optimization and policy support as a prerequisite for commercialization.

Keywords


leaf litter and ranting, biomass pellets, circular economy, renewable energy

References


IEA. Indonesia Energy Profile 2023 2023 [Laporan resmi dari International Energy Agency yang memuat data dan profil energi Indonesia tahun 2023]. Available from: https://www.iea.org/countries/indonesia.

BPS. Statistik Energi Indonesia 2023 [Available from: https://www.bps.go.id/subject/10/energi.html.

Golomb D. Fossil Fuel Combustion: Air pollution and global warming. Managing Air Quality and Energy Systems: CRC Press; 2020. p. 177-90.

Hannun RM, Razzaq AHA, editors. Air pollution resulted from coal, oil and gas firing in thermal power plants and treatment: A review. IOP Conference Series: Earth and Environmental Science; 2022: IOP Publishing.

Prasetyo MH, Baderan DWK, Hamidu MS. Dampak Kerusakan Lingkungan Akibat Eksploitasi Sumber Daya Mineral dari Kegiatan Pertambangan. Hidroponik: Jurnal Ilmu Pertanian Dan Teknologi Dalam Ilmu Tanaman. 2025;2(2):01-11.

Kehutanan KLHd. Statistik Persampahan Indonesia 2024 Jakarta: KLHK; 2024 [

Wahyudi J. Emisi Gas Rumah Kaca (GRK) dari pembakaran terbuka sampah rumah tangga menggunakan model IPCC. Jurnal Litbang: Media Informasi Penelitian, Pengembangan Dan IPTEK. 2019;15(1):65-76.

Silva TAL, Varo LHR, Pasquini D. Lignocellulosic Biomass. In: Thomas S, Hosur M, Pasquini D, Jose Chirayil C, editors. Handbook of Biomass. Singapore: Springer Nature Singapore; 2023. p. 1-39.

Chandra R, Yadav S, Kumar V. Microbial Degradation of Lignocellulosic Waste and Its Metabolic Products. Environmental Waste Management2016. p. 249-98.

Kuncara J, Jamilatun S, Febriani AV, Idris M, Setyawan M. Potensi dan Tantangan Pemanfaatan Refuse Derived Fuel dalam Co-Firing PLTU di Indonesia: A Review.

Wahditiya AA, Semet MM, Nantan Y, Istoto EH, Purnamasari R, Maulana AP, et al. Energi dari Limbah dan Sampah: Teknologi, Kebijakan, dan Implementasi: Yayasan Tri Edukasi Ilmiah; 2025.

Rachman RM, Rustan FR, Rahayu DE, Ampangallo BA, Aryadi A, Safar A, et al. Optimalisasi Sistem Pengelolaan Sampah Perkotaan (Strategi dan Implementasi): Tohar Media; 2024.

Lina SE. Perancangan Mesin Cetak Pelet Berbasis Teknologi Hybrid: Universitas Medan Area; 2024.

Bajwa DS, Peterson T, Sharma N, Shojaeiarani J, Bajwa SG. A review of densified solid biomass for energy production. Renewable and Sustainable Energy Reviews. 2018;96:296-305.

Velzquez Mart B. Aprovechamiento de la biomasa para uso energtico: Editorial Universitat Politcnica de Valncia; 2018.

Artemio CP, Maginot NH, Serafn CU, Rahim FP, Jos Guadalupe RQ, Fermn CM. Physical, mechanical and energy characterization of wood pellets obtained from three common tropical species. PeerJ. 2018;6:e5504.

Carrillo-Parra A, Rutiaga-Quiones JG, Ros-Saucedo JC, Ruiz-Garca VM, Ngangyo-Heya M, Nava-Berumen CA, et al. Quality of Pellet Made from Agricultural and Forestry Waste in Mexico. BioEnergy Research. 2022;15(2):977-86.

Kougioumtzis MA, Kanaveli IP, Karampinis E, Grammelis P, Kakaras E. Combustion of olive tree pruning pellets versus sunflower husk pellets at industrial boiler. Monitoring of emissions and combustion efficiency. Renewable Energy. 2021;171:516-25.

Vassilev SV, Baxter D, Andersen LK, Vassileva CG. An overview of the chemical composition of biomass. Fuel. 2010;89(5):913-33.

Hossain T, Jones DS, Godfrey E, Saloni D, Sharara M, Hartley DS. Characterizing value-added pellets obtained from blends of miscanthus, corn stover, and switchgrass. Renewable Energy. 2024;227:120494.

Terzopoulou P, Kamperidou V, Lykidis C. Cypress Wood and Bark Residues Chemical Characterization and Utilization as Fuel Pellets Feedstock. Forests [Internet]. 2022; 13(8).

Hisham HN, Hale M, Norasikin AL. EQUILIBRIUM MOISTURE CONTENT AND MOISTURE EXCLUSION EFFICIENCY OF ACETYLATED RATTAN (CALAMUS MANAN). Journal of Tropical Forest Science. 2014;26(1):32-40.

Kawiarso K, Nuryoto N, Irawan A. Pengaruh Biomassa Terhadap Efisiensi Boiler Pada Pembangkit CFB Batubara Dalam Sistem Co-firing. Jurnal Ilmiah Wahana Pendidikan. 2023;9(3):281-96.

Rahman R. Optimasi Kinerja, Ekologi dan Ekonomi Pada Biobriket Campuran Batubara dan Arang Kayu Bakau: Universitas Hasanuddin; 2023.


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