Penerapan Teknologi BERATON Cellular Lightweight Concrete Berbasis Limbah Jerami dan Abu Sekam Padi bagi Pengrajin Bata Desa Pakistaji Banyuwangi
DOI:
https://doi.org/10.70609/icom.v6i3.11317Kata Kunci:
Abu Sekam Padi, BERATON-CLC, Jerami Padi, Pemberdayaan Pengrajin, Transfer TeknologiAbstrak
Desa Pakistaji, Kabupaten Banyuwangi, memiliki aktivitas produksi bata yang masih mengandalkan proses konvensional berbasis tanah liat dan pembakaran, sehingga memunculkan persoalan efisiensi produksi, kualitas produk yang tidak seragam, serta isu lingkungan akibat konsumsi energi dan emisi. Di sisi lain, limbah jerami padi di wilayah sekitar masih belum termanfaatkan optimal dan sering dibakar terbuka, yang berdampak pada kualitas udara dan kehilangan potensi nilai tambah. Kegiatan pengabdian ini bertujuan menerapkan teknologi BERATON–Cellular Lightweight Concrete (BERATON-CLC) berbasis jerami dan abu sekam padi serta mengevaluasi efektivitas transfer teknologi kepada pengrajin bata Desa Pakistaji, Banyuwangi. Kegiatan dilakukan melalui sosialisasi, demonstrasi, praktik produksi, pengendalian mutu sederhana, dan evaluasi pre-test–post-test terhadap 11 peserta. Skor rata-rata meningkat dari 51,18 menjadi 86,18; paired sample t-test menghasilkan t(10)=10,606 dan p<0,001 dengan Cohen’s dz=3,20. Rata-rata N-Gain individual sebesar 0,6989 termasuk kategori sedang dan mendekati tinggi, sedangkan keterampilan produksi (0,7867) dan pengetahuan produk (0,7516) berkategori tinggi. Kajian mutu menunjukkan formula tanpa ASP memiliki estimasi kuat tekan tertinggi 1,39 MPa, sedangkan ASP 10% memiliki resapan terendah 7%. Panel BERATON-CLC dengan jerami 8% mencapai kapasitas transversal 19,61 kN pada umur 14 hari. Program meningkatkan kapasitas mitra, sedangkan optimasi formula dan pengujian kuat tekan unit berbasis jerami masih diperlukan.
Referensi
Ali, T., Saand, A., Bangwar, D. K., Buller, A. S., & Ahmed, Z. (2021). Mechanical and durability properties of aerated concrete incorporating rice husk ash (RHA) as partial replacement of cement. Crystals, 11, 604. https://doi.org/10.3390/cryst11060604 DOI: https://doi.org/10.3390/cryst11060604
Amran, Y. H. M., Farzadnia, N., & Ali, A. A. A. (2015). Properties and applications of foamed concrete: A review. Construction and Building Materials, 101, 990–1005. https://doi.org/10.1016/j.conbuildmat.2015.10.112 DOI: https://doi.org/10.1016/j.conbuildmat.2015.10.112
ASTM International. (2019). ASTM C1717-19: Standard test methods for conducting strength tests of masonry wall panels. ASTM International. https://doi.org/10.1520/C1717-19 DOI: https://doi.org/10.1520/C1717-19
ASTM International. (2025). ASTM E72-25: Standard test methods of conducting strength tests of panels for building construction. ASTM International. https://doi.org/10.1520/E0072-25 DOI: https://doi.org/10.1520/E0072-25
Ataie, F. (2018). Influence of rice straw fibers on concrete strength and drying shrinkage. Sustainability, 10(7), 2445. https://doi.org/10.3390/su10072445 DOI: https://doi.org/10.3390/su10072445
Badan Standardisasi Nasional. (2018). SNI 8640:2018: Spesifikasi bata ringan untuk pasangan dinding. BSN.
Doostkami, H., Hernández-Figueirido, D., Albero, V., Piquer, A., Serna, P., & Roig-Flores, M. (2025). Experimental study on the valorization of rice straw as fiber for concrete. Fibers, 13(3), 28. https://doi.org/10.3390/fib13030028 DOI: https://doi.org/10.3390/fib13030028
Endale, S. A., Taffese, W. Z., Vo, D. H., & Yehualaw, M. D. (2023). Rice husk ash in concrete. Sustainability, 15, 137. https://doi.org/10.3390/su15010137 DOI: https://doi.org/10.3390/su15010137
Erwanto, Z., Pranowo, D. D., Holik, A., Amin, M. S., & Darmawan, F. (2020). The innovation of interlock bricks with a mixture of bagasse ash without combustion. IOP Conference Series: Materials Science and Engineering, 854, 012002. https://doi.org/10.1088/1757-899X/854/1/012002 DOI: https://doi.org/10.1088/1757-899X/854/1/012002
Erwanto, Z., Lusi, N., & Suwardiyanto, D. (2022). Penerapan teknologi mesin press batu bata lego sebagai inovasi dan promosi usaha batu bata guna meningkatkan ekonomi masyarakat di Desa Pakistaji. Panrita Abdi: Jurnal Pengabdian pada Masyarakat, 6(3), 610–619. https://doi.org/10.20956/pa.v6i3.17760
Fuadi, R., Sumarni, S., & Sukatiman. (2018). Analisis pengaruh jerami padi sebagai bahan pengisi batako dengan perekat lem kayu jenis PVAC ditinjau dari berat isi, kuat tekan dan daya serap air. Indonesian Journal of Civil Engineering Education, 4(2), 60–69. https://doi.org/10.20961/ijcee.v4i2.27772 DOI: https://doi.org/10.20961/ijcee.v4i2.27772
Hake, R. R. (1998). Interactive-engagement versus traditional methods: A six-thousand-student survey of mechanics test data for introductory physics courses. American Journal of Physics, 66, 64–74. https://doi.org/10.1119/1.18809 DOI: https://doi.org/10.1119/1.18809
Hardiyanti, S. A., Erwanto, Z., Catraweda, I. G. N. B., & Rusadi, T. M. (2024). Penerapan mesin cetak bata lego ekspos pada kelompok pengusaha batu bata konvensional di Desa Kembiritan. Diseminasi: Jurnal Pengabdian kepada Masyarakat, 6(1), 133–140. DOI: https://doi.org/10.33830/diseminasiabdimas.v6i1.7636
Kabdiyono, E. A., Komarudin, K., Jayanti, K., Ardhiansyah, N., & Madjid, A. R. (2025). Penyuluhan kepada warga Bekasi tentang pemanfaatan limbah abu sekam padi sebagai bahan campuran batu bata. Jurnal Pengabdian Masyarakat Bhinneka, 3(4), 885–891. https://doi.org/10.58266/jpmb.v3i4.228 DOI: https://doi.org/10.58266/jpmb.v3i4.228
Kasinikota, P., & Tripura, D. D. (2022). Flexural behavior of hollow interlocking compressed stabilized earth-block masonry walls under out-of-plane loading. Journal of Building Engineering, 57, 104895. https://doi.org/10.1016/j.jobe.2022.104895 DOI: https://doi.org/10.1016/j.jobe.2022.104895
Kurnianingtyas, C. D. (2023). Program potensi desa dan pengolahan limbah jerami Desa Jambidan. Jurnal Atma Inovasia, 3, 238–242. https://doi.org/10.24002/jai.v3i3.5246 DOI: https://doi.org/10.24002/jai.v3i3.5246
Lei, M., Liu, Z., & Wang, F. (2024). Review of lightweight cellular concrete: Towards low-carbon, high-performance and sustainable development. Construction and Building Materials, 429, 136324. https://doi.org/10.1016/j.conbuildmat.2024.136324 DOI: https://doi.org/10.1016/j.conbuildmat.2024.136324
Manubothula, S., & Gorre, M. (2022). Influence of rice husk ash on compressive strength of an aerated concrete. Materials Today: Proceedings, 65, 1982–1986. https://doi.org/10.1016/j.matpr.2022.05.320 DOI: https://doi.org/10.1016/j.matpr.2022.05.320
Nunnally, J. C. (1978). Psychometric theory (2nd ed.). McGraw-Hill.
Othman, R., Jaya, R. P., Muthusamy, K., Sulaiman, M., Duraisamy, Y., Abdullah, M. M. A. B., et al. (2021). Relation between density and compressive strength of foamed concrete. Materials, 14(11), 2967. https://doi.org/10.3390/ma14112967 DOI: https://doi.org/10.3390/ma14112967
Pachla, E. C., Silva, D. B., Stein, K. J., Marangon, E., & Chong, W. (2021). Sustainable application of rice husk and rice straw in cellular concrete composites. Construction and Building Materials, 283, 122770. https://doi.org/10.1016/j.conbuildmat.2021.122770 DOI: https://doi.org/10.1016/j.conbuildmat.2021.122770
Rahmawati, A., & Saputro, I. N. (2015). Penambahan abu jerami dan abu sekam padi pada campuran batu bata untuk meningkatkan kualitas dan efisiensi produksi industri batu bata tradisional. Eco Rekayasa: Jurnal Teknik Sipil, 11, 16–22.
Rhofita, E. I., & Chana AW, L. (2019). Pemanfaatan limbah jerami padi di Desa Garon Kecamatan Balerejo, Kabupaten Madiun. JIPEMAS: Jurnal Inovasi Hasil Pengabdian Masyarakat, 2, 120. https://doi.org/10.33474/jipemas.v2i2.2915 DOI: https://doi.org/10.33474/jipemas.v2i2.2915
Saand, A., Ali, T., Keerio, M. A., & Bangwar, D. K. (2019). Experimental study on the use of rice husk ash as partial cement replacement in aerated concrete. Engineering, Technology & Applied Science Research, 9, 4534–4537. DOI: https://doi.org/10.48084/etasr.2903
Sandi, D. M. N., Erwanto, Z., Santoso, C. B., & Bachtiar, R. R. (2024). Pemanfaatan limbah jerami padi menjadi Interlock Concrete Straw Blocks di Desa Labanasem Banyuwangi. Seminar Nasional Terapan Riset Inovatif, 10(3), 25–32.
Sandi, D. M. N., Erwanto, Z., Santoso, C. B., Bachtiar, R. R., Nabilah, S., & Salsabila, F. F. (2025). Studi kelayakan material maju green economy blok jerami beton interlock (BERATON). I-Com: Indonesian Community Journal, 5(2), 786–795. https://doi.org/10.70609/icom.v5i2.7032 DOI: https://doi.org/10.70609/icom.v5i2.7032
Sandi, D. M. N., Erwanto, Z., & Alfiyah, N. (2026). Kelayakan finansial dan mitigasi risiko pengembangan BERATON-CLC berbasis limbah jerami padi di Kabupaten Banyuwangi. AGREGAT.
Shi, T., Zhang, X., Hao, H., & Chen, C. (2021). Experimental and numerical investigation on the compressive properties of interlocking blocks. Engineering Structures, 228, 111561. https://doi.org/10.1016/j.engstruct.2020.111561 DOI: https://doi.org/10.1016/j.engstruct.2020.111561
Suryaningsih Taufieq, N. A., Ahmad, I. A., & Pertiwi, N. (2024). Water absorption of cellular lightweight concrete using rice husk ash as additive material. IOSR Journal of Mechanical and Civil Engineering, 21(3), 13–19. https://doi.org/10.9790/1684-2103021319
Suryanita, R., Putra, A. M., & Maizir, H. (2024). Studi eksperimental sifat mekanis bata ringan CLC dengan penambahan fly ash. SIKLUS: Jurnal Teknik Sipil, 10(2), 215–227. https://doi.org/10.31849/siklus.v10i2.21182 DOI: https://doi.org/10.31849/siklus.v10i2.21182
Taswing, H., Hamka, & Hamsyah. (2025). Pengaruh campuran abu sekam padi dan fly ash terhadap kualitas bata merah ditinjau dari nilai kuat tekan dan penyerapan air. Jurnal TESLINK: Teknik Sipil dan Lingkungan, 7(1), 131–143. DOI: https://doi.org/10.52005/teslink.v7i1.496
Tentama, F., Mulasari, S. A., & Kusuma, D. R. (2017). Pemberdayaan masyarakat melalui pemanfaatan limbah jerami dan sekam padi menjadi superkarbon di Kecamatan Moyudan, Sleman. Jurnal Pengabdian pada Masyarakat, 2, 119–126. https://doi.org/10.30653/002.201722.19 DOI: https://doi.org/10.30653/002.201722.19
Zhao, R., Feng, B., Fu, J., & Gao, W. (2024). Study on improving physical–mechanical properties and frost resistance of straw–mortar composite wall materials by pretreatment. Sustainability, 16(13), 5608. https://doi.org/10.3390/su16135608 DOI: https://doi.org/10.3390/su16135608
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Hak Cipta (c) 2026 Dora Melati Nurita Sandi, Zulis Erwanto, Nurul Alfiyah, Mia Amelia Puspita Sari, Devani Echa Olifia, Narendra Satria Kesuma Bagus, Mochammad Abdurrouf

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