Performance of CPHMA Incorporating Vegetable Oil as Asbuton Solution

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The increasing demand for roads has an impact on the supply of raw materials, especially asphalt. Asphalt oil as conventional asphalt whose quantity is decreasing so that in the end it cannot meet the needs of road construction. Asphalt Buton (Asbuton) offers an opportunity as an alternative natural resource that will be able to supply asphalt needs. Asbuton is still not popularly used due to several shortcomings, including the need for material as an asbuton modifier. Asbuton needs for this material because asbuton has been exposed to the open air for hundreds of years so that the liquid fraction of maltene is reduced because bitumen is trapped in asbuton minerals. This study aimed to evaluate the addition of materials such as vegetable oil with 13 types with which has the potential to serve as a solvent to dissolve bitumen from asbuton in order to improve CPHMA performance. The evaluation conducted using the Liquid-Liquid Extraction (LLE) and the Marshall tests and the results of the LLE test showed the dissolution of bitumen by vegetable oil produced a high extraction efficiency (E) while Marshall test stability value had a stability value below the allowable standard for CPHMA and this means vegetable oil is not suitable as the solvent. It was, therefore, recommended that other treatments or materials are added to the vegetable oil to increase its ability to dissolve asbuton bitumen towards improving CPHMA performance.

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March 2022

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[1] Layuk, M. P., AC-WC Mixed Performance Study Using BGA-Asbuton as Binder,, 2014 (in Indonesian).

Google Scholar

[2] Hudianti, M., Modifier Variation of Processing Method in Cold Mix Lasbutag for High Quality Pavement,, 2007 (in Indonesian).

Google Scholar

[3] Minister For Public Works and Human Settlements, Operating Procedure Cold Paving Hot mix Asbuton (CPHMA),, 2015 (in Indonesian).

Google Scholar

[4] Djakfar, L., Bowoputro, H., Akbariawan, R., Fadiansyah, R., The effect of limestone and reheating temperature on cold paving hot mix asphalt,, Int. J. GEOMATE, vol. 12, no. 29, p.212–219, 2017,.

DOI: 10.21660/2017.29.77503

Google Scholar

[5] Minister For Public Works and Human Settlements, Permen PUPR No. 18/PRT/M/2018. 2018 (in Indonesian).

Google Scholar

[6] Djakfar, L., Bowoputro, H., Wicaksono, A., Soenar, G., The Effect of Rejuvenating Used Oil and Diesel Against Marshall Pavement Characteristics Recycled With Asbuton,, J. Rekayasa Sipil, vol. 2, no. 8, p.146–151, 2014,.

DOI: 10.1017/CBO9781107415324.004

Google Scholar

[7] Djakfar, L., Bowoputro, H., Akbariawan, R., Fadiansyah, R., Use of Madura Material to CPHMA (Cold Paving Hot Mix Asbuton) Mixed Performance,, J. Rekayasa Sipil, 2015 (in Indonesian).

DOI: 10.3850/978-981-11-0449-7-063-cd

Google Scholar

[8] Djakfar, L., Bowoputro, H., Firstyan, F., Bagus, G., Effect of Compaction Temperature on Marshall Performance in CPHMA Mixtures using LGA and 60/70 Penetration Oil Asphalt,, J. Mhs. Jur. Tek. Sipil, vol. 1, no. 3, 2015 (in Indonesian).

DOI: 10.3850/978-981-11-0449-7-063-cd

Google Scholar

[9] Budiamin, Tjaronge, M. W., Aly, S. H., Djamaluddin, R., Mechanical Characteristics of Hotmix Cold Laid Containing Buton Granular Asphat (BGA) and Flux Oil as Wearing Course,, ARPN J. Eng. Appl. Sci., vol. 10, no. 12, p.5200–5205, 2015 (in Indonesian).

Google Scholar

[10] Djakfar, L., Bowoputro, H., Wiyanta, Y. K., Baisha, H. L., Effect of Chalk as Filler in CPHMA (Cold Paving Hot Mix Asbuton) Mixture with Variation of Levels of LGA on Marshall Characteristics,, J. Rekayasa Sipil, 2016 (in Indonesian).

DOI: 10.3850/978-981-11-0449-7-063-cd

Google Scholar

[11] Thanaya I. N. A., Sparsa, A. A. A., Comparison of the Characteristics of Cold Paving Hot Mix Asbuton (CPHMA) Mixture which is Cold and Hot Compacted,, J. Tek. Sipil ITB, vol. 24, no. 3, p.247–256, 2017,.

DOI: 10.5614/jts.2017.24.3.8

Google Scholar

[12] Asidin, Effect of Aggregate Gradation on Marshall Characteristics in CPHMA (Cold Paving Hot Mix Asbuton) Mixture,, J. Media Inov. Tek. Sipil, vol. 8, no. 1, 2019, [Online]. Available: https://ejournal.unidayan.ac.id/index.php/JMI/article/view/351/0 (in Indonesian).

DOI: 10.55340/jmi.v8i1.631

Google Scholar

[13] Djakfar, L., Wisnumurti, Santjojo, D. J. D. H., Khamelda, L. CPHMA Mixture Performance Study using Surfactant and Formic Acid Modifier,, Malang, 2019 (in Indonesian).

Google Scholar

[14] Lv, S., Fan, X., Yao, H., You, L., You, Z., Fan, G., Analysis of performance and mechanism of Buton rock asphalt modified asphalt,, J. Appl. Polym. Sci., vol. 136, no. 1, p.1–8, 2019,.

DOI: 10.1002/app.46903

Google Scholar

[15] Affandi, F., Characteristics of Bitumen Asbuton Granules For Hot Asphalt Mixtures,, J. Jalan-Jembatan, vol. 25, no. 3, p.350–368, 2008 (in Indonesian).

Google Scholar

[16] Minister For Public Works and Human Settlements, Minister of Public Works Circular No. 10 / SE / M / 2013 regarding Technical Specification Guidelines for Asphalt Mixture with Asbuton. 2013 (in Indonesian).

Google Scholar

[17] Alamsyah, A. A., The use of Pertamax as a Modifier for Cold Mixed Lasbutag for Road Pavement,, Media Tek. Sipil, vol. 9, no. 1, 2011 (in Indonesian).

Google Scholar

[18] Devianto, I. M., Asphalt Production From Asbuton Rocks By Extraction Using Formic Acid,, Universitas Indonesia, 2012 (in Indonesian).

Google Scholar

[19] Magesa, S. A., Extraction of Asbuton using the Asbuton Emulsion Method in terms of Emulsifier Concentration and Extraction Time using Cocamide DEA Emulgator,, Universitas Sebelas Maret, 2012 (in Indonesian).

Google Scholar

[20] Sidiq, M., Rachmadani, S., Altway, A., Nurkhamidah, S., Study of the Separation of Bitumen from Asbuton with Hot Water Process Using Kerosene Solvent and Surfacta Solutionn,, J. Tek. Pomits, vol. 2, no. 2, p.303–305, 2013 (in Indonesian).

Google Scholar

[21] Sarwono, D., Darendra, R. S., Asbuton Emulsion Against Asphalt Levels With A Texapon Emulgator Using A Type MB 60 Grinder,, p.560–565, 2017 (in Indonesian).

Google Scholar

[22] Annas, L., Sarwono, D., Djumari, Extraction of Granular Asbuton by Emulsion Asbuton Method using Texapon Emulsifier in terms of water concentration and extraction time,, e-Jurnal MATRIKS Tek. SIPIL, vol. 1, no. 4, p.440–445, 2013 (in Indonesian).

Google Scholar

[23] Sanam, M., Litelnoni, R. F., Punuf, Y. M., Suraji, A., Use of Asbuton Lawele with Used Vehicle Oil Additives to Increase The Stability of Asphalt Concrete,, Widya Tek., vol. 21, no. 2, p.32–39, 2013 (in Indonesian).

Google Scholar

[24] Yuniarti, R., Performance of Bio-Flux Oil As Modifier of Buton Granular Asphalt in Asphalt Concrete-Wearing Course,, J. JSCE, vol. 3, no. 1, p.33–44, 2015,.

DOI: 10.2208/journalofjsce.3.1_33

Google Scholar

[25] Sastrohamidjojo, H., Basic Chemistry. Yogyakarta: Gadjah Mada University Press, 2018 (in Indonesian).

Google Scholar

[26] Speight, J. G., Handbook of Petroleum Product Analysis: Second Edition, vol. 182. (2015).

Google Scholar

[27] Djakfar, L., Wisnumurti, Khamelda, L., Methods of Making Laboratory Scale CPHMA Specimens,, Int. J. Eng. Trends Technol., no. Special Issue, 2020, [Online]. Available: https://ijettjournal.org/special-issues/ijett-aiic102.

Google Scholar

[28] Soerawidjaja, T. H., The Strategic Role of Biohydrocarbon Fuels for the Future of the Republic of Indonesia,, 2018 (in Indonesian).

Google Scholar

[29] Directorate General of Highways, CPHMA Special Specifications 2016. Jakarta, 2016 (in Indonesian).

Google Scholar

[30] Minister For Public Works and Human Settlements, Regulation of the Minister of Public Works and Public Housing of the Republic of Indonesia Number 18 / Prt / M / 2018 concerning the Use of Buton Asphalt for Road Development and Preservation. 2018 (in Indonesian).

Google Scholar

[31] BBPJN VIII, Bitumen Asbuton Test Results 2020 PT. KAN,, 2020 (in Indonesian).

Google Scholar

[32] Orsavova, J., Misurcova, L., Ambrozova, J. V., R. Vicha, Mlcek J., Fatty Acids Composition Of Vegetable Oils And Its Contribution to Dietary Energy Intake and Dependence Of Cardiovascular Mortality On Dietary Intake Of Fatty Acids,, Int. J. Mol. Sci., vol. 16, no. 6, p.12871–12890, 2015,.

DOI: 10.3390/ijms160612871

Google Scholar

[33] Ivanišová, E., Dráb, Š., Krajčovič, T., Tokár, M., Mareček, J., Musilová, J., Composition Of Fatty Acids in Selected Vegetable Oils,, Potravinarstvo, vol. 9, no. 1, p.538–542, 2015,.

DOI: 10.5219/556

Google Scholar

[34] Mawatari, T., Fukuda, R., Mori, H., Mia, S., Ohno, N., High Pressure Rheology of Environmentally Friendly Vegetable Oil,, Tribol. Lett., vol. 51, no. 2, p.273–280, 2013,.

DOI: 10.1007/s11249-013-0180-4

Google Scholar

[35] Boateng, L., Ansong, R., Owusu, W. B., Steiner, M., Coconut oil and palm oil's role in nutrition, health and national development: A review,, Ghana Med. J., vol. 50, no. 3, p.189–196, 2016, [Online]. Available: https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5044790/#:~:text=Coconut oil is composed of,-18%3A2 linoleic acid.

DOI: 10.4314/gmj.v50i3.11

Google Scholar

[36] Moir, A. M. B., Park, B. S., Zammit, V. A., Quantification in Vivo of The Effects of Different Types ff Dietary Fat nn The Loci Of Control Involved in Hepatic Triacylglycerol Secretion,, Biochem. J., vol. 308, no. 2, p.537–542, 1995,.

DOI: 10.1042/bj3080537

Google Scholar

[37] Batista, A.C.F., Vieira, A.T., Rodrigues, H.S., Silva, T.A., Assunção, R.M.N., Beluomini, M.A., Rezende, H.P., Hernandez-Terrones, M.G., Production and Physicochemical Characterization of Methylic and Ethylic Biodiesel From Canola Oil / Obtenção E Caracterização Do Biodiesel De Canola Pelas Rotas Metílica E Etílica,, Rev. Bras. Eng. Biossistemas, vol. 8, no. 4, p.289, 2014,.

DOI: 10.18011/bioeng2014v8n4p289-298

Google Scholar

[38] SNI, Method of testing the asphalt content of the asphalt mixture by centrifuge 1.,, p.1–6, 2002. (in Indonesian).

Google Scholar

[39] Bendebane, F., Bouziane, L., Ismail, F., Liquid-liquid extraction of naphthalene. Application of a mixture design and optimization,, Energy Procedia, vol. 36, no. 213, p.1241–1248, 2013,.

DOI: 10.1016/j.egypro.2013.07.140

Google Scholar

[40] Pusjatan, Marshall Test Results 2020 PT. KAN,, 2020. (in Indonesian).

Google Scholar