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International Journal of Academic Research in Business and Social Sciences

Open Access Journal

ISSN: 2222-6990

Eradication of Oil Wastes Using Chempedak Stone Powder as Natural Adsorbent: Study on Adsorbent Dosage and Type of Water Sources Effect

Mohammad Abdullah, Muhammad Akid Md Brahim, Mohd Zaki Sukor, Ahmad Rozaimee Mustaffa, Arbanah Muhammad, Ainaa Maya Munira Ismail, Soo Kum Yoke

http://dx.doi.org/10.6007/IJARBSS/v12-i12/16053

Open access

Oil pollution has become a water pollution problem in the world. An eco-friendly adsorbent need to be produced to resolve this problem. This study focuses on removing oil waste using Chempedak Stone (CS) powder as a natural adsorbent. The purpose of the study is to observe the effects of adsorbent dosage and the effects of several type of water sources on adsorbing different types of oils (vegetable oil, lubricant oil and diesel oil). Different adsorbent dosage (treated and untreated) of 0.2g, 0.4g, 0.6g, 0.8g and 1.0g was examined in different types of water which are tap water, sea water and lake water. The treated adsorbent was introduced to 0.5M NaOH and 0.5M nitric acid (HNO3). The CS was collected from a local market and went through several processes to become a powder such as rinsing, drying, crushing and sieving. The results show that the increasing adsorbent dosage decreased the percentage of oil removal. It was proven that the effectiveness of treated and untreated adsorbent depended on the type of oil and the type of water. The highest percentage of oil removal was found using untreated CS powder on vegetable while treated CS powder was effective for adsorbing lubricant oil at the dosage of 0.2g. The results thus showed that untreated CS powder has the most effective adsorbent to adsorb various types of oils on various types of water compared to treated CS powder.

Prasad, D. R. G., & Anuprakash, M. M. V. V. S. (2016) .Pollution Due to Oil Spills in Marine Environment And Control Measures. IOSR J. Environ. Sci. Toxicol. Food Technol., 10(9),01–08.
Adeyi, A. A., Jamil, S. N. A. M., Abdullah, L. C., Choong, T. S. Y., Lau, K. L. & Abdullah, M. (2019). Adsorptive removal of methylene blue from aquatic environments using thiourea-modified poly(acrylonitrile-co-acrylic acid). Materials, 12, 1734.
Li, J., Li, D., Yang, Y., Li, J., Zha, F., & Lei, Z. (2016). A prewetting induced underwater superoleophobic or underoil (super) hydrophobic waste potato residue-coated mesh for selective efficient oil/water separation. Green Chem., 18(2), 541–549.
Abdullah, M., Sukor, M. Z., Roslan, A., & Tumar, M. (2016). Preliminary Study of Adsorption Copper (II) Ions from Aqueous Solution Using Aromatic Green Dwarf Waste as an Biosorbent. J. Appl. Environ. Biol. Sci., 6(7S):58-62.
Schulz, M., Fleet, D. M., Camphuysen, K. C. J., Schulze-Dieckhoff, M., & Laursen, K. (2017). Oil pollution and seabirds. In: Wadden Sea Quality Status Report. Eds.: Kloepper S. et al., Common Wadden Sea Secretariat, Wilhelmshaven, Germany. Last updated 01.03.2018. Downloaded DD.MM.YYYY. qsr.waddensea-worldheritage.org/reports/oil-pollution-and-seabirds.
Hasan, R., Razifuddin, A. M., Wahyuny, N., Jusoh, C., Jusoh, R., & Setiabudi H. D. (2018). Artocarpus integer peel as a highly effective low-cost adsorbent for methylene blue removal: Kinetics, isotherm, thermodynamic and pelletized studies. Malaysian J. Fundam. Appl. Sci., 14(1) 25–31.
Dahri, M. K., Chieng, H. I., Lim, L. B. L., Priyantha, N., & Mei, C. C. (2015). Cempedak durian (artocarpus sp.) peel as a biosorbent for the removal of toxic methyl violet 2B from aqueous solution. Korean Chem. Eng. Res., 53 (5) 576–583.
Abdullah, M., Azmi, A. N. F., MuzakharAzahar, M. Z. M., Amri, M. F. N., Kadiran, K. A., Che Lat, D., Abu Kasim, H., & Khalid, A. H. (2021). Application of CasuarinaEquisetifolia needle for the removal of heavy andlight oil waste. AIP Conference Proceedings 2339, 020156 (2021); https://doi.org/10.1063/5.0044212.
Othmah, N. Q., Abdullah, M., Muhammad, A., Ismail, A. M. M., & Mustam, M. M. (2020). Preliminary Study of Chemically Modified Parkia speciosa as an adsorbent for oil treatment. Malaysian Journal of Industrial Technology, 4 (1) 1-5.
Chaidir, Z., Zein, R., Sagita, D. T., & Munaf, E. (2015). Bioremoval of methyl orange dye using durian fruit ( Durio zibethinus ) Murr seeds as biosorbent. J. Chem. Pharm. Res., 7(1) 589–599.
Abdullah, M., Shah, N. A. F. N., Saadun, M. A., Kadiran, K. A., Zaiton, S. N., Azman, H. A., Othman, Z. S., & Osman, M. S. (2019). Comparative Study of Acid-Treated and Alkali-Treated Carbonised Kapok–Fibres for Oil/Water Absorption System. J. Phys. Conf. Ser., 1349, 012104.
Wang, J., Zheng, Y., & Wang, A. (2012). Effect of kapok fiber treated with various solvents on oil absorbency. Ind. Crops Prod., 40 (1) 178–184.
Jopery, M. N. S. A., Abdullah, M., KumYoke S., & Mustaffa, A. R. (2020) The preliminary study of oilremoval using lemon peel waste. Malaysian Journal of Chemical Engineering and Technology (MJCET), 3 (1) 56-61.
Abdullah, M., Roger, S. L., & Michael, D. D. (2017). Preliminary Study of Response Surface Methodology for Optimization of Oil Removal by Adsorbent-based Pineapple Peel Waste. Malaysian Journal of Industrial Technology, 2, (1) 1-5.

In-Text Citation: (Abdullah et al., 2022)
To Cite this Article: Abdullah, M., Brahim, M. A. M., Sukor, M. Z., Ahmad Rozaimee Mustaffa, A. M., Ismail, A. M. M., & Yoke, S. K. (2022). Eradication of Oil Wastes Using Chempedak Stone Powder as Natural Adsorbent: Study on Adsorbent Dosage and Type of Water Sources Effect. International Journal of Academic Research in Business and Social Sciences, 12(12), 2590 – 2601.