PEMANFAATAN LIMBAH PERTANIAN ABU BONGGOL JAGUNG UNTUK MENINGKATKAN KINERJA BETON SELF-COMPECTING CONCRETE (SCC) TERHADAP KUAT TEKAN DAN FLOWABILITY DI DISTRIK MUARA TAMI KOTA JAYAPURA
DOI:
https://doi.org/10.33541/cen.v6i2.7404Keywords:
Self-compacting concrete (SCC), Corncob Ash, Slum Flow, Flowability, Compressive StrengthAbstract
Utilization of agricultural waste corn cob ash as an admixture or partial cement substitute in self-compecting concrete (SCC) concrete mixtures. Burned corn cobs produce ash with silica content that has the potential as a pozzolan material. This waste is widely produced by farmers in Muara Tami District, Jayapura City, but has not been optimally utilized. This study aims to evaluate the effect of corn cob ash on two main aspects of SCC concrete, namely compressive strength and flowability. The methodology used includes making concrete mixtures with varying levels of corn cob ash of 0%, 5%, 10%, 15%, 20% as a partial cement substitute, followed by laboratory tests on the mechanical properties and workability of the concrete. Based on the test results, it can be concluded that the SCC concrete mixture with the addition of corn stalk ash (ABJ) up to 15% is still classified as normal SCC concrete based on the slump flow test, while the 20% ABJ mixture shows rather stiff properties and is less ideal for use as SCC concrete. The T500 flowability test shows that all mixtures, from 0% ABJ to 20% ABJ, have a spread time that is still within the normal range, namely between 2.5 and 4.9 seconds, thus meeting the flowability criteria for SCC concrete. In terms of compressive strength, the 5% ABJ mixture gives the best results, namely 36.6 MPa at 7 days and 48.9 MPa at 28 days, making it the most recommended mixture for use in SCC concrete structures. Conversely, the 20% ABJ mixture shows a significant decrease in compressive strength, making it less suitable for structural applications.
Keywords: Self-compacting concrete (SCC); Corncob Ash; Slum Flow; Flowability; Compressive Strength
References
Abood Habeeb, G. and bin Mahmud, H. (2010) “Study on Properties of Rice Husk Ash and Its Use as Cement Replacement Material,” Materials Research, 13(2), pp. 185–190.
Bakri (2009) “Komponen Kimia Dan Fisik Abu Sekam Padi Sebagai SCM Untuk Pembuatan Komposit Semen,”Perennial, 5(1), p.9. doi: 10.24259/perennial.v5i1.184.
Dewan Standar Nasional, SNI 03-0691-1996, “Bata beton (paving block)”,1996.
Djamaluddin, A.R. et al. (2020) “Evaluation of sustainable concrete paving blocks incorporating processed waste tea ash,” Case Studies in Construction Materials, (Desember), pp. 7 – 11.
European Federation of National Associations Respresenting for Concrete (EFNARC), The European Guildelines for Self-CoMPacting Concrete “Specification, Production, and Use”, 2002.
European Federation of National Associations Respresenting for Concrete (EFNARC), The European Guildelines for Self-CoMPacting Concrete “Specification, Production, and Use”, 2002.
Guan, Y. et al. (2018) “Flexural properties of ECC-concrete composite beam,” Advances in Civil Engineering, 2018(March). doi: 10.1155/2018/3138759.
H Ndruru et al 2021 IOP Conf. Ser.: Earth Environ. Sci. 878 012052DOI 10.1088/1755-1315/878/1/012052
Hutabarat, L. E., Simanjuntak, P., & Tampubolon, S. P. (2019). Peningkatan kesadaran masyarakat terhadap kerusakan bangunan dan lingkungan pasca gempa, tsunami dan likuifaksi di Palu Sulawesi Tengah. Jurnal Comunita Servizio, 1(2), 208-222.
Laia, Y., Hutabarat, L. E., & Tampubolon, S. P. (2023). Compressive strength characteristic of fly ash light concrete mixture using artificial light weight aggregate (ALWA). TOWARD ADAPTIVE RESEARCH AND TECHNOLOGY DEVELOPMENT FOR FUTURE LIFE, 2689(1), 040006.
R A Siregar et al 2021 IOP Conf. Ser.: Earth Environ. Sci. 878 012047DOI 10.1088/1755-1315/878/1/012047
Simanjuntak, I. V., & Tampubolon, S. P. (2022). Pengaruh variasi agregat kasar penyusun beton porous terhadap kuat tekan dan porositas beton. Jurnal Rekayasa Teknik Sipil dan Lingkungan, 3(1), 1-10.
Simanjuntak, I. V., Tampubolon, S. P., & Simanjuntak, P. (2025). Optimalisasi Konduktivitas Termal Beton Berpori Melalui Inovasi Material Berbasis Abu Sekam Padi Dan Serat Kelapa Sebagai Bahan Tambah Ramah Lingkungan. Emitor: Jurnal Rekayasa Teknik Sipil Dan Lingkungan, 6(1), 47-57.
Tampubolon, S. P. (2022). Struktur Beton I.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2025 Harsan Ingot Hasudungan Harsan

This work is licensed under a Creative Commons Attribution 4.0 International License.
Hak Cipta atas Tulisan Karya Ilmiah
Bersama dengan ini saya sebagai penulis utama menyatakan bahwa paper yang saya kirimkan untuk dipublikasikan melalu Jurnal Rekayasa Teknik Sipil dan Lingkungan adalah benar merupakan hasil orisinil Tulisan Karya Ilmiah yang merupakan hasil penelitian/kajian yang saya lakukan dan belum pernah dipublikasikan pada penerbit Jurnal ilmiah lain di Indonesia.
Jika di kemudian hari ternyata ditemukan bukti adanya hal-hal yang tidak sesuai dari pernyataan diatas maka saya bersedia menerima konsekuensi yang diberikan oleh Dewan Redaksi Jurnal Rekayasa Teknik Sipil dan Lingkungan serta paper yang telah diterbitkan akan DIBATALKAN dan dinyatakan sebagai hasil karya PLAGIASI.






