PEMBERDAYAAN MASYARAKAT PESISIR MELALUI PELATIHAN PRODUKSI PAVING BLOCK BERBASIS MATERIAL LOKAL DAN SNI DI LINGKUNGAN LEPPE, KABUPATEN MAJENE

Amry Dasar, Nur Okviyani, Akbar Indrawan Saudi, Dahlia Patah

Abstract


Kegiatan pengabdian kepada masyarakat ini bertujuan untuk meningkatkan keterampilan teknis dan pemberdayaan ekonomi masyarakat pesisir melalui pelatihan produksi paving block berbasis bahan lokal yang sesuai dengan SNI 03-0691-1996. Kegiatan dilaksanakan di Lingkungan Leppe, Kecamatan Banggae, Kabupaten Majene, dengan melibatkan 20 peserta dari kalangan usia produktif. Metode yang digunakan adalah pendekatan partisipatif melalui tiga tahapan utama yaitu sosialisasi, pelatihan teknis, dan evaluasi. Materi pelatihan mencakup teori dan praktik pembuatan paving block menggunakan campuran semen, pasir lokal, air laut, dan substitusi sebagian semen dengan abu cangkang sawit (POFA). Selama pelatihan, peserta mempraktikkan langsung proses pencampuran, pencetakan, dan perawatan paving block menggunakan peralatan sederhana. Hasil evaluasi menunjukkan peningkatan pengetahuan peserta sebesar 42% berdasarkan skor pre-test dan post-test. Selain itu, peserta berhasil memproduksi lebih dari 20 unit paving block dengan mutu Grade C hingga B. Program ini berhasil mentransfer hasil riset dosen ke masyarakat dan membuka peluang terbentuknya kelompok usaha berbasis teknologi tepat guna. Kegiatan ini menunjukkan bahwa penerapan inovasi material lokal dapat menjadi solusi praktis dan berkelanjutan untuk pembangunan infrastruktur desa.

Keywords


Paving block; POFA; Air Laut; SNI; Pengabdian Masyarakat

References


Badan Standardisasi Nasional. (1996). SNI 03-0691-1996: Bata Beton (Paving Block). Jakarta: BSN.

Dasar, A., Patah, D., & Okviyani, N. (2025). Impact of incorporating nano-palm oil fuel ash on the mechanical properties and durability of paving blocks prepared with seawater and sea sand for sustainable construction. Construction and Building Materials, 481, 141539.

Dasar, A., Patah, D., Caronge, M. A., Mahmuddin, F., & Apriansyah, A. (2024). Strength and Durability of Paving Block with Seawater and POFA (Palm Oil Fuel Ash). Key Engineering Materials, 1000, 11-22.

Dasar, A., Patah, D., Hamada, H., Sagawa, Y., & Yamamoto, D. (2020). Applicability of seawater as a mixing and curing agent in 4-year-old concrete. Construction and Building Materials, 259, 119692. https://doi.org/10.1016/j.conbuildmat.2020.119692

El-Hassan, H., El-Maaddawy, T., Al-Sallamin, A., & Al-Saidy, A. (2017). Performance evaluation and microstructural characterization of GFRP bars in seawater-contaminated concrete. Construction and Building Materials, 147, 66–78. https://doi.org/10.1016/j.conbuildmat.2017.04.135

El-Hassan, H., El-Maaddawy, T., Al-Sallamin, A., & Al-Saidy, A. (2018). Durability of glass fiber-reinforced polymer bars conditioned in moist seawater-contaminated concrete under sustained load. Construction and Building Materials, 175, 1–13. https://doi.org/10.1016/j.conbuildmat.2018.04.107

Etxeberria, M., Gonzalez-Corominas, A., & Pardo, P. (2016). Influence of seawater and blast furnace cement employment on recycled aggregate concretes’ properties. Construction and Building Materials, 115, 496–505. https://doi.org/10.1016/j.conbuildmat.2016.04.064

Kaushik, S. K., & Islam, S. (1995). Suitability of sea water for mixing structural concrete exposed to a marine environment. Cement and Concrete Composites, 17(3), 177–185. https://doi.org/10.1016/0958-9465(95)00015-5

Miller, S., Shemer, H., & Semiat, R. (2015). Energy and environmental issues in desalination. Desalination, 366, 2–8. https://doi.org/10.1016/j.desal.2014.11.034

Mohammed, T. U., Hamada, H., & Yamaji, T. (2004). Performance of seawater-mixed concrete in the tidal environment. Cement and Concrete Research, 34(4), 593–601. https://doi.org/10.1016/j.cemconres.2003.09.020

Nirwana, H., Patah, D., Ridhayani, I., Dasar, A., & Yusman, Y. (2023). Sosialisasi dan implementasi bata beton untuk pemberdayaan masyarakat di Desa Tammerodo Utara, Kec. Tammerodo Sendana, Majene. Minda Baharu, 7(2), 199–210. https://doi.org/10.33373/jmb.v7i2.5735

Patah, D., Dasar, A., & Nurdin, A. Sustainable concrete using seawater, sea-sand, and ultrafine palm oil fuel ash: Mechanical properties and durability. Case Stud Constr Mater. 2025; 22: e04129.

Patah, D., Dasar, A., Apriansyah, A., & Caronge, M. A. (2023, July). Strength Development of Seawater Mixed and Cured Concrete with Various Replacement Ratios of Fly Ash. Materials Science Forum, 1091, 111–118. https://doi.org/10.4028/p-1ckry6

Robert, M., & Benmokrane, B. (2013). Combined effects of saline solution and moist concrete on long-term durability of GFRP reinforcing bars. Construction and Building Materials, 38, 274–284. https://doi.org/10.1016/j.conbuildmat.2012.08.021

Shi, Z., Shui, Z., Li, Q., & Geng, H. (2015). Combined effect of metakaolin and sea water on performance and microstructures of concrete. Construction and Building Materials, 74, 57–64. https://doi.org/10.1016/j.conbuildmat.2014.10.023

Stefvany, S., Afdhal, V. E., & Wiraseptya, T. (2022). Pelatihan digital marketing sebagai strategi promosi dan publikasi kampung adat Rimbo Tarok. Minda Baharu, 6(2), 163–170. https://doi.org/10.33373/jmb.v6i2.4422

Teng, J. G., Xiang, Y., Yu, T., & Fang, Z. (2019). Development and mechanical behaviour of ultra-high-performance seawater sea-sand concrete. Advances in Structural Engineering, 22(14), 3100–3120. https://doi.org/10.1177/1369433219858291

Xiao, J., Qiang, C., Nanni, A., & Zhang, K. (2017). Use of sea-sand and seawater in concrete construction: Current status and future opportunities. Construction and Building Materials, 155, 1101–1111. https://doi.org/10.1016/j.conbuildmat.2017.08.130

Younis, A., Ebead, U., & Judd, S. (2018). Life cycle cost analysis of structural concrete using seawater, recycled concrete aggregate, and GFRP reinforcement. Construction and Building Materials, 175, 152–160.




DOI: https://doi.org/10.33373/jmb.v9i2.8202

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