The Effect of Steam Curing on the Early Compressive Strength of Glass Powder Concrete

Ravelino Hafizh Geovenerdy, Ika Bali, Eddy Triyanto Sudjatmiko

Abstract


Glass bottle waste is non-biodegradable and concerns about its impact on the environment. One alternative is to use recycled glass bottle waste in a form of glass powder as a partial replacement for fine aggregate in concrete. This study compared the glass powder concrete containing 20% glass powder as a partial replacement for fine aggregate treated by steam curing to the normal concrete treated by immersion curing. To obtain a higher early strength, the glass powder concrete will be treated with steam curing method for total duration of 9 hours. The test results showed that glass powder concrete treated with steam curing experienced a significant increase of 40.7% in compressive strength at 1 day of age with a compressive strength of 7.84 MPa compared to normal concrete of 5.56 MPa, an increase of 57.0% at 3 days of age with a compressive strength of 16.88 MPa compared to normal concrete of 10.75 MPa, and an increase of 14.0% at 7 days of age with a compressive strength of 23.86 MPa compared to normal concrete of 20.94 MPa. The results of this study indicated that steam curing has the effect of increasing the early compressive strength of concrete at the age of 1, 3 and 7 days. In addition, the use of 20% glass powder as a partial replacement for fine aggregate can contribute to the utilization of non-biodegradable glass bottle waste.


Keywords


glass powder concrete; steam curing; compressive strength; recycled glass bottle

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References


SIPSN, “Waste Composition in Indonesia,” National Waste Management Information System (SIPSN) of the Ministry of Environment, Indonesia, 2021. https://sipsn.menlhk.go.id/sipsn/public/data/komposisi. [Accessed March 2023]. (In Indonesian)

N. Hanafiah, Pengaruh Penambahan Bubuk Kaca Sebagai Bahan Pengganti Sebagian Semen Dengan Variasi 2%, 4%, 6% dan 8% Terhadap Kuat Tekan dan Nilai Slump, Teknik Sipil, Universitas Muhammadiyah Yogyakarta, Yogyakarta, 2011. (In Indonesian)

Dian, Jenis-Jenis Kaca dan Aplikasinya, Teknik Industri, Universitas Mercu Buana, 2011. (In Indonesian)

H. Du and K. H. Tan, “Properties of High Volume Glass Powder Concrete,” Cement and Concrete Composites, vol. 75, pp. 22–29, 2017.

W. Kushartomo, I. Bali, and B. Sulaiman, “Mechanical Behavior of Reactive Powder Concrete with Glass Powder Substitute,” Procedia Engineering, vol. 125, pp. 617-622, 2015.

I. Bali, W. Kushartomo, and Jonathan, “Effect of In-Situ Curing on Compressive Strength of Reactive Powder Concrete,” MATEC Web of Conferences, vol. 67 (03013), pp. 1-6, 2016.

I. Bali and W. Kurnia, “The Curing Method Influence on Mechanical Behavior of Reactive Powder Concrete,” International Journal on Advanced Science, Engineering and Information Technology, vol. 8, no. 5, pp. 1976-1983, 2018. [Online]. Available: http://dx.doi.org/10.18517/ijaseit.8.5.4197.

B. P. Nugraha, E. T. Sudjatmiko, and I. Bali, “Compressive Strength of Concrete Containing Recycled Glass Powder,” PRESUNIVE Civil Engineering Journal, vol. 1, no. 1, pp. 8-12, April 2023.

E. Rommel, “Pengaruh Pemberian Perawatan Steam Curing Terhadap Kekuatan dan Durabilitas Beton dengan Semen Pozzolan (Effect of Steam Curing on Strength and Durability Concrete with Cement Pozzolan),” Jurnal Media Teknik Sipil, vol. 9, no. 2, January 2013. (In Indonesian)

V. I. Kullit, S. E. Wallah, W. J. Tamboto, and R. Pandaleke, “Pengaruh Variasi Suhu Pada Perawatan Elevated Temperature Terhadap Kuat Tekan dan Kuat Tarik Belah Beton,” Jurnal Sipil Statik, vol. 1, no. 7, pp. 473-478, June 2013. (In Indonesian)

A. M. Zeyad, B. A. Tayeh, A. Adesina, A. R. G. de Azevedo, M. Amin, M. H. Nyarko, and I. S. Agwa, “Review on Effect of Steam Curing on Behavior of Concrete,” Cleaner Materials, vol. 3, 100042, March 2022.

SNI 2847:2013, Persyaratan Beton Struktural untuk Bangunan Gedung, Jakarta: Badan Standardisasi Nasional, 2013. (In Indonesian)

S. Turkel and V. Alabas, "The Effect of Excessive Steam Curing on Portland Composite Cement Concrete,” Cement and Concrete Research, vol. 35, no. 2, pp. 405-411, February 2005.

ASTM C-39, Test Method for Compressive Strength of Cylindrical Concrete Specimens, USA: Annual Books of ASTM, 1993.

SNI 1974:2011, Cara Uji Kuat Tekan Beton dengan Benda Uji Silinder, Jakarta: Badan Standardisasi Nasional, 2011. (In Indonesian)

SNI 03-2834-2000, Tata Cara Pembuatan Rencana Campuran Beton Normal, Jakarta: Badan Standardisasi Nasional, 2000. (In Indonesian)

SK. SNI S-04-1989-F, Spesifikasi Bahan Bangunan Bagian A (Bahan Bangunan Bukan Logam), Bandung: Lembaga Penyelidikan Masalah Bangunan, 1989. (In Indonesian)




DOI: http://dx.doi.org/10.33021/pcej.v1i2.4690

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