Pemanfaatan Abu Batu Hasil Proses Pemecah Batu Sebagai Material Pengganti Lapis Drainase Pada Pondasi Perkerasan Jalan Beton: A Systematic Literature Review
Abstract
Abstrak
Limbah Konstruksi dihasilkan adanya pembangunan infrastruktur yang memberikan dampak negatif terhadap lingkungan. Pesatnya pembangunan infrastruktur di Indonesia tentunya hal ini juga akan menghasilkan limbah konstruksi yang jumlahnya banyak dan cepat penambahannya. Sumber limbah konstruksi bisa dalam bentuk padat, cair, gas atau kombinasi dari semua bentuk tersebut. Proyek konstruksi merupakan penghasil limbah padat yang sangat besar. Manajemen pengelolaan dan pemanfaatan limbah konstruksi perlu dilaksanakan secara seksama, Indonesia merupakan negara berkembang yang laju pembangunan infrastrukturnya sangat pesat sekarang ini tetap mendukung pencapaian SDGs Agenda 2030, salah satu SDGs adalah Zero Waste Project dengan melaksanakan prinsip “The 6 Rs of sustainability”. Beberapa penelitian sebelumya terkait pemanfaatan abu batu digunakan sebagai penganti agregat halus campuran pembuat beton. Mengacu penelitiaan sebelumnya terkait pemanfaatan abu batu belum terdapat pemanfaatan abu batu digunakan sebagai material pengganti lapis drainase pada pondasi pekerasan jalan beton, sehingga masih terdapat gap pada penelitian sebelumnya yang akan dilakukan penelitian ini.
Kata Kunci: Limbah Konstruksi, Abu Batu, Lapis Drainase, Perkerasan Beton
Abstract
Construction waste is generated by infrastructure development that has a negative impact on the environment. The rapid development of infrastructure in Indonesia will certainly also produce construction waste in large quantities and increasing rapidly. Sources of construction waste can be in the form of solid, liquid, gas or a combination of all these forms. Construction projects are very large producers of solid waste. Management of construction waste management and utilization needs to be carried out carefully, Indonesia is a developing country with a very rapid rate of infrastructure development currently still supporting the achievement of the SDGs Agenda 2030, one of the SDGs is the Zero Waste Project by implementing the principle of "The 6 Rs of sustainability". Several previous studies related to the utilization of stone ash were used as a substitute for fine aggregate in concrete mixtures. Referring to previous studies related to the utilization of stone ash, there has been no use of stone ash as a substitute material for drainage layers on concrete road pavement foundations, so there is still a gap in previous research that will be carried out in this study.
Keyword: Construction waste, Stone Ash, Drainage Layer, Concrete Pavement
Keywords
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Afif, A., Akbar Bale, H., 2019. Pengaruh Abu Batu Sebagai Subtitusi Agregat Halus dan Penambahan Superplasticizer Terhadap Karakteristik Beton Mutu Tinggi.
American Association of State Highway Officials, 2004. Standard specifications for Transportation materials and Methods of Sampling and Testing. USA.
Badan Standarisasi Nasional Indonesia, 2012. Panduan pengujian CBR laboratorium. Jakarta.
Badan Standarisasi Nasional Indonesia, 2002. Tata Cara Perhitungan Struktur Beton Untuk Bangunan Gedung. Standar Nasional Indonesia, Bandung.
Bai, Y., Li, Y., Zhang, R., Zhao, N. & Zeng, X, 2019. Comprehensive Performance Evaluation System based on Environmental and Economic Benefits for Optimal Allocation of LID Facilities.
Bossink, B.A.G., Brouwers, H.J.H., 1996. Construction Waste: Quantification and Source Evaluation. J. Constr. Eng. Manag. 122, 55–60. https://doi.org/10.1061/(asce)0733-9364(1996)122:1(55)
Cetin, A. Kaya, Z. Cetin, Aydilek, 2014. Influence of laboratory compaction method on mechanical and hydraulic characteristics of unbound granular base materials. Road Mater. Pavement Des. 15:1, 220–235.
Choi, YJ., Nguyen, TH., &. Ahn, J., 2018. Assessment of Field Compaction of Aggregate Base Materials for Permeable Pavement Based on Plate Load Test.
Chu, X., Campos-Guereta, I., Dawson, A., Thom, N., 2023. Sustainable pavement drainage systems: Subgrade moisture, subsurface drainage methods and drainage effectiveness. Constr. Build. Mater. 364. https://doi.org/10.1016/j.conbuildmat.2022.129950
D. K. Phillips, 1984. Drainage of Highway Pavement. U.S. Department of Transportation, Virginia.
Ekanayake, L.L., Ofori, G., 2000. Construction Material Waste Source Evaluation.
Fahriansyah Anugrah Lubis, AhmadRafii, FitriyahPatriotika, 2022. Analisa Penggunaan Drainage Layer di Jalan Tol Prabumulih – Muara Enim. Statika 5, 119–126.
Fitria Handayani, 2019. Manfaat Limbah Abu Batu Sebagai Tambahan Material Bahan Bangunan. Semin. Nas. Tah. VI.
Ghavami, M.S.M., Hosseini, M.S., Zavattieri, P.D., Haddock, J.E., 2019. Investigating the Need for Drainage Layers in Flexible Pavements. Joint Transportation Research Program, West Lafayette, IN. https://doi.org/10.5703/1288284316881
J. Glynn Henry, Gary W. Heinke, 1996. Introducing the Environment Environmental Science and Engineering. Environ. Sci. Eng. 47, 258–259. https://doi.org/10.2307/1313082
Kalore, S.A., Sivakumar Babu, G.L., 2023. Hydraulic design of granular and geocomposite drainage layers in pavements based on demand-capacity modeling. Geotext. Geomembr. 51, 131–143. https://doi.org/10.1016/j.geotexmem.2023.06.001
Kusumaningrum, E., Faizah, R., Nurul Chotimah, dan, 2023. Sifat Fisik dan Mekanik Mortar dengan Campuran Limbah Abu Batu Batuan Vulkanik Sebagai Pengganti Pasir. J. Ris. Rekayasa Sipil Vol. 6 No. 2, 138–146.
Liu, Y., Hao, W., He, W., Meng, X., Shen, Y., Du, T., Wang, H., 2022. Influence of Dolomite Rock Powder and Iron Tailings Powder on the Electrical Resistivity, Strength and Microstructure of Cement Pastes and Concrete. Coatings 12. https://doi.org/10.3390/coatings12010095
Ma, H., Sun, Z., Ma, G., 2022. Research on Compressive Strength of Manufactured Sand Concrete Based on Response Surface Methodology (RSM). Appl. Sci. Switz. 12. https://doi.org/10.3390/app12073506
Madrazo-Uribeetxebarria, E., Garmendia Antín, M., Alberro Eguilegor, G., Andrés-Doménech, I., 2023. Analysis of the hydraulic performance of permeable pavements on a layer-by-layer basis. Constr. Build. Mater. 387. https://doi.org/10.1016/j.conbuildmat.2023.131587
Mantri, L.R., Ram, V.V., Raju, S., 2023. Effect of compaction on the hydraulic conductivity of granular subbase layers in road pavements. Innov. Infrastruct. Solut. 8. https://doi.org/10.1007/s41062-023-01196-5
Menteri Pekerjaan Umum dan Perumahan Rakyat, 2015. Pedoman Perencanaan Teknis Drainase Bawah Permukaan Dengan Menggunakan Filter Geotekstil. Kementerian Pekerjaan Umum dan Perumahan Rakyat, Jakarta.
Muhammad Malik Ibrahim, Priyanto Saelan, 2019. Studi Perancangan Campuran Beton Menggunakan Abu Batu Sebagai Agregat Halus. J. Online Inst. Teknol. Nas.
Oktariza, H., Gofar, N., 2023. Evaluasi Agregat Lokal Sebagai Lapisan Base Perkerasan Permeabel. Cantilever J. Penelit. Dan Kaji. Bid. Tek. Sipil 12, 1–8. https://doi.org/10.35139/cantilever.v12i1.201
Patil, H., Dwivedi, A., Bidkar, K., 2022. Prediction of upgraded properties of the concrete with the wash sand waste. J. Build. Pathol. Rehabil. 7. https://doi.org/10.1007/s41024-022-00171-4
Princeton, N.J.;, Research Council, T., Washing-Ton, D.C., 1962. Characteristics of Base and Subgrade Drainage of Pavements, Journal of Transportation Engineering. ASCE.
Raditya Pradhipta, 2022. Analisis Pengaruh Penggunaan Abu Batu Sebagai Substitusi Parsial Agregat Halus Terhadap Karakteristik Beton Pada Mutu 30 MPa. UNIVERSITAS ISLAM INDONESIA, Yogyakarta.
Suresh Babu, T., Venkata, M., Surya, S., Chowdary, P., 2018b. Effect on Concrete by Metakaolin and Manufacturing Sand as Alternatives. Int. J. Res. Rev. Wwwijrrjournalcom 5, 208.
Suresh Babu, T., Venkata, M., Surya, S., Chowdary, P., 2018a. Effect on Concrete by Metakaolin and Manufacturing Sand as Alternatives. Int. J. Res. Rev. Wwwijrrjournalcom 5, 208.
Tajudin, A.N., Luh, N., Shinta, P., Setyarini, E., Khalik, J., Devy, D., Darmawati, S., 2018. Pengaruh Kekuatan Tanah Dasar Dan Koefisien Drainase Lapisan Terhadap Tebal Perkerasan Lentur. J. Muara Sains Teknol. Kedokt. Dan Ilmu Kesehat. Vol. 2, No. 1, 312–321.
Thang, V.L., Cung, L., Nguyen, D.S., 2022. An Application of Artificial Neural Network to Predict the Compressive Strength of Concrete using Fly Ash and Stone Powder Waste Products in Central Vietnam. Int. J. Eng. Trans. B Appl. 35, 967–976. https://doi.org/10.5829/ije.2022.35.05b.12
Zamzam Nurjaman, B., Walujodjati, E., Konstruksi Sekolah Tinggi Teknologi Garut Jl Mayor Syamsu No, J., 2021. Pengaruh Penggunaan Agregat Abu Batu Sebagai Pengganti Agregat Halus Alami Terhadap Sifat-Sifat Beton. J. Konstr. Vol. 19, No. 1, 31–42.
DOI: http://dx.doi.org/10.29103/tj.v14i2.1182
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