Non-destructive Evaluation of Oil Content and Carotene in Oil Palm Fresh Fruit Bunches Based on Optical Properties Using Partial Least Square (PLS)

Authors

  • Suaidah Rahmi Universitas Andalas
  • Dinah Cherie Andalas University
  • Ifmalinda Ifmalinda Andalas University
  • Muhammad Makky Andalas University

DOI:

https://doi.org/10.23960/jtep-l.v13i3.720-729

Abstract

Crude palm oil (CPO) is a raw material for making cooking oil that comes from palm oil, which is greatly influenced by the quality of oil palm fresh fruit bunches (FFB). Oil and carotene content in the FFB influence the quality of palm oil. The oil content is usually determined using a chemical method (Soxhlet extraction) which is time consuming and destructive. This research aimed to predict the oil and carotene content contained in oil palm FFB using partial least square (PLS). In this research, the sample used was the Tenera variety with a maturity of 140-160 day after anthesis (DAA) and 200-220 DAA. The nondestructive method involves recording images using an optical camera, which produces RGB and L*a*b* values. Results showed that PLS predicts the relationship between optical properties and oil and carotene content in palm oil. Non-destructive prediction results using PLS provided consistently correlation of L*a*b* values with estimated oil and carotene content in the FFB.

 

Keywords: Non-destructive, Optical properties, Fresh fruit bunch, Oil palm.

Author Biographies

  • Suaidah Rahmi, Universitas Andalas
    Study Program of Agricultural Engineering and Biosystem, Department of Agricultural Technology 
  • Dinah Cherie, Andalas University
    Study Program of Agricultural Engineering and Biosystem, Department of Agricultural Technology
  • Ifmalinda Ifmalinda, Andalas University
    Study Program of Agricultural Engineering and Biosystem, Department of Agricultural Technology
  • Muhammad Makky, Andalas University
    Study Program of Agricultural Engineering and Biosystem, Department of Agricultural Technology

References

Abrantes, G., Almeida, V., Maia, A.J., Nascimento, R., Nascimento, C., Silva, Y., Silva, Y., & Veras, G. (2023). Comparison between variable-selection algorithms in PLS regression with near-infrared spectroscopy to predict selected metals in soil. Molecules, 28(19), 6959. https://doi.org/10.3390/molecules28196959

Cen, H., & He, Y. (2007). Theory and application of near infrared reflectance spectroscopy in determination of food quality. Trends in Food Science & Technology, 18(2), 72–83. https://doi.org/10.1016/j.tifs.2006.09.003

Cherie, D., Herodian, S., Ahmad, U., Mandang, T., & Makky, M. (2015). Optical characteristics of oil palm fresh fruits bunch (FFB) under three spectrum regions influence for harvest decision. International Journal on Advanced Science, Engineering and Information Technology, 5(3), 255–263. https://doi.org/10.18517/ijaseit.5.3.534

Cherie, D., Rini, R., & Makky, M. (2020). Optical properties of oil palm fresh fruits bunch (FFB) for optimum harvest-window prediction. Journal of Physics: Conference Series, 1469, 012105. https://doi.org/10.1088/1742-6596/1469/1/012105

Chin W.W. (1998). The partial least squares approach to structural formula modeling. In G.A. Marcoulides (Ed.), Modern Methods For Business Research, Lawrence Erlbaum Associates Publishers: 295–336.

Dewi, E.K., Mardawati, E., & S.Nurhasanah. (2023). Evaluasi perubahan warna dalam tahapan pengolahan minyak mentah sawit menjadi minyak sawit merah dan minyak goreng sawit sebagai indikator kandungan β-karoten minyak. Biomass, Biorefinery, and Bioeconomy, 1(1), 25–29.

Harahap, I.S., Wahyuningsih. P., & Amri, Y. (2020). Analisa kandungan beta karoten pada CPO (crude palm oil) di Pusat Penelitian Kelapa Sawit (PPKS) Medan menggunakan spektrofotometri UV-Vis. QUIMICA: Jurnal Kimia Sains dan Terapan, 2(1), 9–13. https://doi.org/10.33059/jq.v2i1.2616

Hasibuan, H., Afriana, L., & Tamba, D. (2017). Pengaruh dosis bleaching earth dan waktu pemucatan crude palm oilyang bervariasi deterioration of bleachability index (DOBI) terhadap mutu produk. Jurnal Teknologi Industri Pertanian, 27(1), 69–75. https://doi.org/10.24961/j.tek.ind.pert.2017.27.1.69

Hastawan, A.F., Septiana, R., & Windarto, Y.E. (2019). Perbaikan hasil segmentasi HSV pada citra digital menggunakan metode segmentasi RGB grayscale. Edu Komputika Journal, 6(1), 32–37. https://doi.org/10.15294/edukomputika.v6i1.23025

Ibáñez, G., Cebolla-Cornejo, J., Martí, R., Roselló, S., & Valcárcel, M. (2019). Non-destructive determination of taste-related compounds in tomato using NIR spectra. Journal of Food Engineering, 263, 237–242. https://doi.org/10.1016/j.jfoodeng. 2019.07.004

Iqbal, Z., Herodian, S., & Widodo, S. (2014). Pendugaan kadar air dan total karoten tandan buah segar (TBS) kelapa sawit menggunakan NIR spektroskopi. Jurnal Keteknikan Pertanian, 2(2), 112–116.

Irwan, I., & Adam, K. (2015). Metode partial least square (PLS) dan terapannya (Studi kasus: Analisis kepuasan pelanggan terhadap layanan PDAM Unit Camming Kab. Bone). Teknosains: Media Informasi Sains dan Teknologi, 9(1), 53–68.

Ishak, H., Shiddiq, M., Fitra, R.H., & Yasmin, N.Z. (2019). Ripeness level classification of oil palm fresh fruit bunch using laser induced fluorescence imaging. Journal of Aceh Physics Society, 8(3), 84–89. https://doi.org/10.24815/jacps.v8i3.14139

Ishak, W.I.W., & Hudzari, R.M. (2010). Image based modeling for oil palm fruit maturity prediction. Journal of Food, Agriculture and Environment, 8(2), 469–476.

Masdar, M., Munawar, A.A., & Zulfahrizal, Z. (2016). Komparasi metode koreksi spektrum NIRS (de-trending dan derivatif ke-2) untuk penentuan kadar air bubuk biji kakao. Jurnal Ilmiah Mahasiswa Pertanian, 1(1), 1059–1068.

Mulyadi, M., Rasyad, A., & Isnaini, I. (2017). Perkembangan morfologi dan sifat fisik buah pada tanaman kelapa sawit (Elaeis guineensis Jacq.). Jurnal Online Mahasiswa FAPERTA, 4(1), 1–14.

Ng, M.H., & Choo, Y.M. (2016). Improved method for the qualitative analyses of palm oil carotenes using UPLC. Journal of Chromatographic Science, 54(4), 633–638. https://doi.org/10.1093/chromsci/bmv241

Nicolaï, B.M., Beullens, K., Bobelyn, E., Peirs, A., Saeys, W., Theron, K.I., & Lammertyn, J. (2007). Nondestructive measurement of fruit and vegetable quality by means of NIR spectroscopy: A review. Postharvest Biology and Technology, 46(2), 99–118. https://doi.org/10.1016/j.postharvbio.2007.06.024

Nokkaew, R., & Punsuvon, V. (2016). Microwave drying combined with magnetic stirring for quick analysis of oil content of fresh palm bunch. ScienceAsia, 42(3), 207–212. https://doi.org/10.2306/scienceasia1513-1874.2016.42.207

Novianty, I., Seminar, K.B., Irzaman, & Budiastra, I.W. (2020). Improving the accuracy of near-infrared (NIR) spectroscopy method to predict the oil content of oil palm fresh fruits. IOP Conference Series: Earth and Environmental Science, 460, 012004. https://doi.org/10.1088/1755-1315/460/1/012004

Okoye, M.N., Okwuagwu, C.O., & Uguru, M.I. (2009). Population improvement for fresh fruit bunch yield and yield components in oil palm (Elaeis guineensis Jacq.). Journal of Scientific Research, 4(2), 59–63.

Priatni, A., Fauziati, F., & Adingsih, Y. (2017). Ekstraksi karotenoid dari minyak sawit mentah (CPO) dengan pelarut dietil eter dan aceton. Jurnal Riset Teknologi Industri, 11(2), 91–99. https://doi.org/10.26578/jrti.v11i2.3014

Rahmi, M., Munawar, A.G., & Devianti, D. (2021). Prediksi kehilangan hara pada tanah tererosi menggunakan near infrared reflectance spectroscopy (NIRS). Jurnal Ilmiah Mahasiswa Pertanian, 6(4), 613–626.

Rifin, A. (2017). Efisiensi perusahaan crude palm oil (CPO) di Indonesia. Jurnal Manajemen dan Agribisnis, 14(2), 103–108. https://doi.org/10.17358/jma.14.2.103

Rulaningtyas, R., Suksmono, A., Mengko, T.R., & Saptawati, G.A. (2015). Segmentasi citra berwarna dengan menggunakan metode clustering berbasis patch untuk identifikasi mycobacterium tuberculosis. Jurnal Biosains Pascasarjana, 17(1), 19. https://doi.org/10.20473/jbp.v17i1.2015.19-25

Sari, M., Nasution, I.S., & Zulfahrizal, Z. (2019). Prediksi kadar air gabah menggunakan near infrared reflectance spectroscopy dengan metode principal component regression (pre-treatment multiplicative scatter correction, second derivative dan de-trending). Jurnal Ilmiah Mahasiswa Pertanian, 4(1), 568–577.

Sarip, M.S.M., Morad, N.A., Nawi, M.A.H.M., Aziz, M.K.T.A., & Jaapar, S.Z. (2023). β-carotene enrichment in crude palm oil using subcritical water extraction and its relationship with the solubility. Food-Chemistry-Advances, 2, 100245. https://doi.org/10.1016/j.focha.2023.100245

Yulianto, Y. (2020). Analisis quality control mutu minyak kelapa sawit di PT. Perkebunan Lembah Bhakti Aceh Singkil. Amina, 1(2), 72–78. https://doi.org/10.22373/amina.v1i2.36

Yuwita, F., Ifmalinda, I., & Makky, M. (2023). Prediction of caffeine and protein of arabica coffee beans using near infrared spectroscopy (NIRS). Jurnal Teknik Pertanian Lampung, 12(4), 852-862. https://doi.org/10.23960/jtep-l.v12i4.852-862

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Published

2024-07-30