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1

Kolo, La, Firdaus Firdaus, Paulina Taba, Muhammad Zakir, and Nunuk Hariani Soekamto. "Selectivity of the New Catalyst ZnO-MCM-48-CaO in Esterification of Calophyllum inophyllum Oil." Automotive Experiences 5, no. 2 (2022): 217–29. http://dx.doi.org/10.31603/ae.6711.

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The synthesis of MCM-48 containing surfactants (CTAB and Triton X-100), ZnO, and CaO aimed to find a potential heterogeneous catalyst in the esterification of Calophyllum inophyllum oil to biodiesel. This research is important in the production of biodiesel from vegetable oils with more than 2% free fatty acids (FFA), such as Calophyllum inophyllum oil using heterogeneous catalysts. Synthesis of heterogeneous catalysts, MCM-48 and ZnO-MCM-48-CaO (ZMC), using the hydrothermal method at various calcination temperatures was conducted to find the optimum calcination temperature for the reaction. T
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2

Gunawan, Setiyo, Brilian Pamungkas, Claudia Shantika Primaswari, Safrina Hapsari, and Hakun Wirawasista Aparamarta. "Calophyllolide Separation from Calophyllum inophyllum Oil by Silica Gel Adsorption." Materials Science Forum 988 (April 2020): 101–7. http://dx.doi.org/10.4028/www.scientific.net/msf.988.101.

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Nyamplung (Calophylluminophyllum), widely spreads in Indonesia archipelago, is known to have many advantages. It has various benefits that can be utilized from its root, stem, leaf, and seed. C inophyllum’s seed contains bioactive compounds called calophyllolide. However, the utilization of C. inphyllum’s seed is limited because it contains harmful toxins. Therefore, C. inophyllum’s seed is generally used and investigated as a raw material of biodiesel. This research aimed to find the best condition to isolate calophyllolide, to know the yield of isolated calophyllolide and to know its purity
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Damanik, Ong, Mofijur, et al. "The Performance and Exhaust Emissions of a Diesel Engine Fuelled with Calophyllum inophyllum—Palm Biodiesel." Processes 7, no. 9 (2019): 597. http://dx.doi.org/10.3390/pr7090597.

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Nowadays, increased interest among the scientific community to explore the Calophyllum inophyllum as alternative fuels for diesel engines is observed. This research is about using mixed Calophyllum inophyllum-palm oil biodiesel production and evaluation that biodiesel in a diesel engine. The Calophyllum inophyllum–palm oil methyl ester (CPME) is processed using the following procedure: (1) the crude Calophyllum inophyllum and palm oils are mixed at the same ratio of 50:50 volume %, (2) degumming, (3) acid-catalysed esterification, (4) purification, and (5) alkaline-catalysed transesterificatio
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4

Pramana, Yanatra budi. "BIODIESEL FROM NYAMPLUNG (CALOPHYLLUM INOPHYLLUM) SEED OIL WITH A TRANSESTERIFICATION PROCESS USING A CONTINOUS FLOW SYSTEM IN THE REACTOR." Tibuana 2, no. 02 (2019): 36–39. http://dx.doi.org/10.36456/tibuana.2.02.1931.36-39.

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Biodiesel production from calophyllum inophyllum be obtained via esterification and transesterification, using two continuous reactors with catalyst NaOH at a concentration (0.4 ;0.6,0.8; 1) wt%, calophyllum inophyllum seed oil and reaction temperature (40, 50,60)oC. This research was to determine the effect of catalyst amount and reaction temperature on transesterification of calophyllum inophyllum seed toward yield Fatty Acid Methyl Ester . The last step is analysis yield of Fatty Acid Methyl Ester with Gas Chromatography (GC). The highest yield is obtained on the amount of 1% NaOH catalyst
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5

Anggarani, Riesta, Cahyo S. Wibowo, and Maymuchar Maymuchar. "Performance Test Of Calophyllum Inophyllum Biodiesel On a Small Mono-Cylinder 5 Kva Diesel Generator." Scientific Contributions Oil and Gas 36, no. 2 (2022): 57–63. http://dx.doi.org/10.29017/scog.36.2.662.

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Demand of diesel fuel for villagers in rural area of Indonesia is getting higher recently. Electricity and diesel fuel shortage are forcing them to find alternative energy sources for their activities. One of the promising energy sources is Calophyllum inophyllum, which commonly grow in low-land and coastal region. In present work, methyl ester obtained from Calophyllum inophyllum were used on a 5 kVA diesel generator, pure and in 50% blend with commercial diesel fuel which also used pure as reference. A performance test cycle for each fuel was conducted with the aim of taking data of cold and
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6

Liviya Gaikwad and Aparna Saraf. "Integrated Morphological and Phytochemical Analysis of Mesua ferrea L. and Calophyllum inophyllum L.: Implications for Authenticity in Herbal Practices." International Journal of Scientific Research in Science, Engineering and Technology 12, no. 3 (2025): 1341–55. https://doi.org/10.32628/ijsrset2512179.

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This study evaluates the suitability of Calophyllum inophyllum L. buds as a substitute for Mesua ferrea L. stamens (Nagkesar), a valued botanical in Indian traditional medicine. Economic pressures and regional availability often lead to unverified substitutions, raising concerns about therapeutic consistency. To address this, both samples were subjected to comprehensive analyses using Field Emission Gun Scanning Electron Microscopy (FEGSEM), Fourier Transform Infrared Spectroscopy (FTIR), Gas Chromatography–Mass Spectrometry (GC–MS), High-Performance Liquid Chromatography (HPLC), and High-Reso
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7

Zainuddin, Nasrullah, Dina Naemah, and Yusanto Nugroho. "ANALISIS KERUSAKAN SEMAI NYAMPLUNG (Callophyllum inophyllum) PADA PERSEMAIAN BALAI PERHUTANAN SOSIAL DAN KEMITRAAN LINGKUNGAN (BPSKL) BANJARBARU KALIMANTAN SELATAN." Jurnal Sylva Scienteae 3, no. 6 (2022): 1048. http://dx.doi.org/10.20527/jss.v3i6.4721.

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This study aims to analyze the intensity of damge seedling calophyllum inophyllum based on the criteria of making the score, methods used in this study is the method for making the score. The analysis damage seedling calophylum inophyllum seedbed forestry on the social and environmental partnership (BPSKL) Banjarbaru south Kalimantan the intensity damage seedling calophylum inophyllum on BPSKL of 98,79 %, The greatest damage is curly leaves or clot about 438 seedlings, Curly leaves caused by the pests like a caterpillar which connects the two sides of the leaves so roll up like a long tube.Pen
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8

Venkatesan, Hariram, John Johnrose, Saravanan Arumugam, et al. "Optimized biodiesel production from C. innophyllum bio-oil using Kriging and Ann predicitive models." Thermal Science, no. 00 (2022): 32. http://dx.doi.org/10.2298/tsci211127032v.

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This work aimed at optimizing the two-stage transesterification efficiency of the production of Calophyllum inophyllum biodiesel using Artificial Neural Network and Kriging predictive models. Response Surface Methodology was used to develop the central rotatable composite design of twenty-seven trial experimental runs with variations in the input process parameters like methanol to oil molar ratio, potassium hydroxide catalyst loading, and reaction time. A multi-layered non-linear regressive Artificial Neural Network model with feed-forward propagation and a numerical surrogate Kriging model w
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9

Goh, S. H., and Ibrahim Jantan. "A xanthone from Calophyllum inophyllum." Phytochemistry 30, no. 1 (1991): 366–67. http://dx.doi.org/10.1016/0031-9422(91)84160-t.

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10

Gogate, P., A. Rane, Rajesh Gunaga, A. Mirgal, and S. Bhave. "Note on inter-grafting of Mesua Ferrea scion on root stock of Calophyllum Inophyllum." Indian Journal of Forestry 33, no. 3 (2010): 343–44. http://dx.doi.org/10.54207/bsmps1000-2010-3d8w1v.

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The present study was taken to study the interspecies grafting of Mesua ferra scion on root stock of Calophyllum inophyllum, Garcinia indica and Mamea suriga. Result showed the C. inophyllum produced successful grafts of Mesua ferra with survival percentage of 100.
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11

SHAKILA, K. "Flavonoids of Calophyllum inophyllum Linnaeus. C. von." Journal of Chemistry, Environmental Sciences and its Applications 2, no. 2 (2016): 135–44. http://dx.doi.org/10.15415/jce.2016.22008.

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12

Raju, P., V. Nandanan, and Sunil K. N. Kutty. "Calophyllum Inophyllum Oil as Plasticizer in Natural Rubber Compounds." Progress in Rubber, Plastics and Recycling Technology 25, no. 2 (2009): 113–28. http://dx.doi.org/10.1177/147776060902500203.

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Mechanical properties and the thermal degradation characteristics of natural rubber compounds with calophyllum inophyllum oil were compared to that of the control compound containing naphthenic oil. The compounds containing calophyllum inophyllum oil showed improved tensile strength, tear strength, modulus, compression set, abrasion resistance and resilience. Cure time was higher than the naphthenic oil mixes. Thermal studies showed an increase of 8 °C in the temperature of initiation of degradation and an increase of 6 °C in temperature at which the peak rate of degradation occurred. The peak
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13

Mufidah, Nabilah Amirothul, Anggun Dwi Cahyani, Nunung Prabaningrum, and Kusnanto. "Acid Value Reduction of Calophyllum inophyllum Oil by Oilseeds In situ Esterification Using Sulfuric Acid Catalyzed Methanol and Isopropyl Alcohol Mixture." IOP Conference Series: Earth and Environmental Science 927, no. 1 (2021): 012010. http://dx.doi.org/10.1088/1755-1315/927/1/012010.

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Abstract Non-edible oilseed can be used in biodiesel preparation as a low-cost feedstock. However, it contains a high free fatty acid or a high acid value, which causes a problematic biodiesel reaction. The investigation of acid value reduction of Calophyllum inophyllum oilseed by in situ esterification using sulfuric acid-catalyzed methanol and isopropyl alcohol has been conducted. Calophyllum inophyllum oil was extracted by n-hexane in the Soxhlet apparatus to determine the oil content. In situ esterification using methanol-isopropyl alcohol and the sulfuric acid as a catalyst was carried ou
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14

Islam, Quazi Sufia, Md Hossain Sohrab, Suraiya Sharmin, and Choudhury Mahmood Hasan. "Phytochemical Investigation of Calophyllum inophyllum L." Dhaka University Journal of Pharmaceutical Sciences 18, no. 2 (2019): 179–82. http://dx.doi.org/10.3329/dujps.v18i2.43260.

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Repeated chromatographic separation and purification of the dichloromethane-methanol (1:1) extract of the stem bark of Calophyllum inophyllum led to the isolation of four secondary metabolites which were identified as β-friedelin (1), α-friedelan-3-ol (2), 4-hydroxyxanthone (3) and stigmast-5-en-3-one (4) by analysis of their NMR data and comparison with published values
 Dhaka Univ. J. Pharm. Sci. 18(2): 179-182, 2019 (December)
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15

Hathurusingha, Subhash, and Nanjappa Ashwath. "Calophyllum inophyllum: recalcitrant or intermediate seed?" Journal of Forestry Research 23, no. 1 (2012): 103–7. http://dx.doi.org/10.1007/s11676-012-0222-z.

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16

Xiao, Qi, Yan-Bo Zeng, Wen-Li Mei, You-Xing Zhao, Yuan-Yuan Deng, and Hao-Fu Dai. "Cytotoxic prenylated xanthones from Calophyllum inophyllum." Journal of Asian Natural Products Research 10, no. 10 (2008): 993–97. http://dx.doi.org/10.1080/10519990802240387.

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17

Sikder, Md Al Amin, Razib Saha, Md Rokibuzzaman, et al. "Preliminary Biological Investigations of Lophopetalum fimbriatum and Calophyllum inophyllum." Bangladesh Pharmaceutical Journal 16, no. 2 (2015): 205–9. http://dx.doi.org/10.3329/bpj.v16i2.22305.

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The crude methanol extracts of the leaf of Lophopetalum fimbriatum (non Wight) F. Vill. and Calophyllum inophyllum L. as well as their pet-ether, carbon tetrachloride, chloroform and aqueous soluble fractions were evaluated for antioxidant, cytotoxic, thrombolytic, membrane stabilizing and antimicrobial activities. The antioxidant potential was evaluated by DPPH and Folin-Ciocalteau reagent using butylated hydroxytolune (BHT) and ascorbic acid as standards, respectively. Among the extractives of L. fimbriatum and C. inophyllum, the chloroform soluble fraction and methanolic crude extract demon
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18

Le Coz, Christophe-J. "Allergic contact dermatitis from tamanu oil (Calophyllum inophyllum, Calophyllum tacamahaca)." Contact Dermatitis 51, no. 4 (2004): 216–17. http://dx.doi.org/10.1111/j.0105-1873.2004.0424h.x.

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19

Cuesta-Rubio, Osmany, Ahmad Oubada, Adonis Bello, Louis Maes, Paul Cos, and Lianet Monzote. "Antimicrobial Assessment of Resins from Calophyllum Antillanum and Calophyllum Inophyllum." Phytotherapy Research 29, no. 12 (2015): 1991–94. http://dx.doi.org/10.1002/ptr.5506.

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20

Jankiprasad, Gunaganti Naresh, Jyoti Gupta, et al. "Antifilarial Activity of Constituents of Calophyllum inophyllum and their Derivatives." Natural Product Communications 8, no. 6 (2013): 1934578X1300800. http://dx.doi.org/10.1177/1934578x1300800630.

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Elephantiasis is a classic sign of late-stage lymphatic filariasis. Although the infection can be treated with drugs, the chronic conditions may not be curable by currently available antifilarial drugs. In continuation of our drug discovery program, we identified potent antifilarial activity in a calophyllic acid and isocalophllic acid mixture, which was isolated from the leaves of Calophyllum inophyllum. The mixture inhibited the motility of adult Brugia malayi worms and microfilariae stage parasites at a concentration of 15.6 μg/mL with an IC50 of 2.1 and 5.5 μg/mL, respectively, in in vitro
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21

Farida, Sofa, Riris Istighfari Jenie, and Nanang Fakhrudin. "Calophyllum inophyllum: A Comprehensive Analysis of its Ethnobotanical, Phytochemical, and Pharmacological Properties." Majalah Obat Tradisional 29, no. 2 (2024): 121. http://dx.doi.org/10.22146/mot.87488.

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Nyamplung (Calophyllum inophyllum L.) is reported to have ethnomedicinal benefits in traditional medicine systems. Leaves, fruit, seeds, flowers, stems, roots and essential oils are the parts that are often used. Previous scientific studies revealed that this plant part is a valuable resource of secondary metabolites and exhibits a wide range of biological activities. The purpose of this review is to deliver thorough and detailed insights into the traditional uses, chemical ingredients, biology, and pharmacological studies as scientific evidence about the useful efficacy of C. inophyllum in th
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22

Aminudin, Nurul Iman, Farediah Ahmad, Muhammad Taher та Razauden Mohamed Zulkifli. "α-Glucosidase and 15-Lipoxygenase Inhibitory Activities of Phytochemicals from Calophyllum symingtonianum". Natural Product Communications 10, № 9 (2015): 1934578X1501000. http://dx.doi.org/10.1177/1934578x1501000925.

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A phytochemical investigation of the crude extracts of the bark and leaves of Calophyllum symingtonianum has resulted in the isolation of inophyllum D, inophyllum H, calanone, isocordato-oblongic acid, amentoflavone, carpachromene and lupenone. Their chemical structures were elucidated and confirmed by spectroscopic analysis. All flavonoids and coumarins showed significant α-glucosidase inhibitory activity, while amentoflavone gave a positive result against 15-lipoxygenase inhibition.
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23

Saechan, Charinrat, Jasadee Kaewsrichan, Nattawut Leelakanok, and Arpa Petchsomrit. "Antioxidant in cosmeceutical products containing Calophyllum inophyllum oil." OCL 28 (2021): 28. http://dx.doi.org/10.1051/ocl/2021015.

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Every part of Calophyllum inophyllum L. has been used in various traditional remedies, especially the oil from its nut was mostly used to treat skin diseases. This study aimed to investigate the composition and antioxidant activity of C. inophyllum nut oil and formulate the oil as a cosmeceutical product. The chemical composition and the amount of total phenolic compounds (TPC) were demonstrated by Gas Chromatograph-Mass Spectrometer (GC-MS) and Folin–Ciocalteu method, respectively. Additionally, the antioxidant activity was tested using the DPPH method. Calophyllolide (4.35%) was a major comp
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Le, Giang Hoang, Yen Nguyen Tram Chau, and Trinh Thi Ngoc Huynh. "INVESTIGATION OF THE TEMPERATURE-SENSITIVE CHARACTERISTIC OF GRAFTED GELATIN-PLURONIC HYDROGEL WITH INCORPORATION CALOPHYLLUM INOPHYLLUM OIL EXTRACT APPLIED FOR WOUND HEALING." Scientific Journal of Tra Vinh University 1, no. 35 (2020): 62–68. http://dx.doi.org/10.35382/18594816.1.35.2019.204.

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Temperature-sensitive hydrogels were synthesized from gelatin-pluronic F127 with Calophyllum inophyllum oil extract incorporated as the the active ingredient by ultrasonic waves to increase the healing effect of wound treatments. The temperaturesensitive nature of the hydrogels were determined using the inversion tube method along with rheological property measurements. The sol-gel state of the hydrogels were found to change with temperature, at low-temperatures hydrogel gelatin - pluronic F127 is found to be in a liquid state, and when the temperature raised due to body temperature the hydrog
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25

Christy K. Jose, Francis Mathew, and Santhosh M. Mathews. "Exploring in vitro anti-inflammatory activity by COX inhibition of flavone isolated from the Calophyllum inophyllum Linn leaves in lipo-polysaccharide stimulated RAW264.7 macrophage cell line." World Journal of Advanced Research and Reviews 26, no. 1 (2025): 3328–32. https://doi.org/10.30574/wjarr.2025.26.1.0837.

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Cell lines are being used in vaccine production, testing drug metabolism and cytotoxicity, antibody production, study of gene function, generation of artificial tissues and synthesis of biological compounds, thus, the field of scientific research is being revolutionized by cell lines. Inflammation is an inherent natural process of the immune system. When inflammation persists for a long period, various chronic diseases are triggered. Recent studies have reported the identification of novel natural compounds with anti-inflammatory properties and these compounds offer the potential to decrease e
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26

Kristianti, A. A. E., F. G. Dwiyanti, R. Pratama, and Iskandar Z. Siregar. "Characterization of the chloroplast genome sequence of Calophyllum inophyllum, a bioenergy tree species, using Oxford Nanopore Technologies." IOP Conference Series: Earth and Environmental Science 1315, no. 1 (2024): 012077. http://dx.doi.org/10.1088/1755-1315/1315/1/012077.

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Abstract Calophyllum inophyllum is a forest tree species that offers significant renewable energy benefits. However, the genetic information of these bioenergy tree species for the study of tree improvement is still limited. This study aimed to assemble the draft chloroplast genome using MinION Oxford Nanopore Technologies (ONT) and analyze the genetic relationship based on molecular markers for C. inophyllum. The study involved several steps: DNA extraction and isolation using the CTAB method, DNA library preparation, DNA sequencing using MinION Oxford Nanopore Technologies (ONT), and phyloge
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27

Marutani, Mari, Juan Andres Soria, and Mario A. Martinez. "Characterization of Crude and Biodiesel Oils of Jatropha curcas and Calophyllum inophyllum in Guam." Micronesica 2018, no. 1 (2018): 1–15. https://doi.org/10.5281/zenodo.12117914.

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Marutani, Mari, Soria, Juan Andres, Martinez, Mario A. (2018): Characterization of Crude and Biodiesel Oils of Jatropha curcas and Calophyllum inophyllum in Guam. Micronesica 2018 (1): 1-15, DOI: 10.5281/zenodo.12117914
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Zahorka, Herwig. "Calophyllum inophyllum, eine wenig bekannte Öl-Pflanze." Der Palmengarten 75, no. 2 (2011): 111–12. http://dx.doi.org/10.21248/palmengarten.123.

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Indonesien begann im März 2010 mit einem Bio-Diesel Pilotprojekt auf der Insel Madura. Auf 10 000 ha wird der dort an den Küsten heimische Baum Calophyllum inophyllum (indon. Nyamplung) angebaut. Die Samen enthalten 50-74% Öl, das zu Bio-Diesel verarbeitetwerden kann. Probefahrten mit diesem Treibstoff über einige 1000 km verliefen erfolgreich. Die Erzeugerkosten wurden bisher mit 4000 RP (etwa 30 Cent) je Liter berechnet. Der Baum und seine Nutzungsmöglichkeiten werden vorgestellt.
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29

Rezki, Rezki, Rustam Musta, and Aceng Haetami. "Minyak Biji Nyamplung (Calophyllum inophyllum) Dengan Etanol." Indo. J. Chem. Res. 4, no. 2 (2017): 406–12. http://dx.doi.org/10.30598//ijcr.2017.4-rez.

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A study has been conducted on the transesterification of Calophyllum innophyllum seed oil with ethanol. The purpose of this research is to determine the comparison of concentration of phosphoric acid used to remove the gum on the oil, ester content is produced in the process of transesterification with ethanol, the ester yield obtained after the final stage of the transesterification process, the viscosity of the biodiesel produced, moisture content of biodiesel is produced, and density of biodiesel was produced. This research is taken based on consideration production biodiesel by direct tran
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30

Prabhakar, R., R. Vijayan, A. Murugesan, and N. Buvaneswari. "Quantitative Analysis of Degummed Calophyllum Inophyllum Oil." International Journal of u- and e- Service, Science and Technology 9, no. 12 (2016): 11–18. http://dx.doi.org/10.14257/ijunesst.2016.9.12.02.

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31

Rezki, Rezki, Rustam Musta, and Aceng Haetami. "Minyak Biji Nyamplung (Calophyllum inophyllum) Dengan Etanol." Indonesian Journal of Chemical Research 4, no. 2 (2017): 406–12. http://dx.doi.org/10.30598/ijcr.2017.4-rez.

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A study has been conducted on the transesterification of Calophyllum innophyllum seed oil with ethanol. The purpose of this research is to determine the comparison of concentration of phosphoric acid used to remove the gum on the oil, ester content is produced in the process of transesterification with ethanol, the ester yield obtained after the final stage of the transesterification process, the viscosity of the biodiesel produced, moisture content of biodiesel is produced, and density of biodiesel was produced. This research is taken based on consideration production biodiesel by direct tran
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32

Yimdjo, Marie C., Anatole G. Azebaze, Augustin E. Nkengfack, A. Michele Meyer, Bernard Bodo, and Zacharias T. Fomum. "Antimicrobial and cytotoxic agents from Calophyllum inophyllum." Phytochemistry 65, no. 20 (2004): 2789–95. http://dx.doi.org/10.1016/j.phytochem.2004.08.024.

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33

Ali, Muhammad Shaiq, Shaukat Mahmud, Shaista Perveen, Viqar Uddin Ahmad, and Ghazala Hafeez Rizwani. "Epimers from the leaves of Calophyllum inophyllum." Phytochemistry 50, no. 8 (1999): 1385–89. http://dx.doi.org/10.1016/s0031-9422(98)00480-4.

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34

Iinuma, Munekazu, Hideki Tosa, Toshiyuki Tanaka, and Shigetomo Yonemori. "Two xanthones from roots of Calophyllum inophyllum." Phytochemistry 38, no. 3 (1995): 725–28. http://dx.doi.org/10.1016/0031-9422(94)00733-a.

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35

Khan, Nizam Ud-Din, Nazneen Parveen, Mahendra P. Singh, et al. "Two isomeric benzodipyranone derivatives from Calophyllum inophyllum." Phytochemistry 42, no. 4 (1996): 1181–83. http://dx.doi.org/10.1016/0031-9422(96)00049-0.

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36

Zou, Jian, Jian Wu, Shuang-Zhu Liu, and Wei-Min Zhao. "New Coumarins and Triterpenes from Calophyllum inophyllum." Helvetica Chimica Acta 93, no. 9 (2010): 1812–21. http://dx.doi.org/10.1002/hlca.200900469.

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37

Rahmatullah, Widia. "THE POTENTIAL OF NYAMPLUNG LEAF EXTACT AS A NATURAL ANTICOAGULANT." JURNAL ILMU KESEHATAN BHAKTI SETYA MEDIKA 6, no. 1 (2021): 1–8. http://dx.doi.org/10.56727/bsm.v6i1.53.

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Anti-coagulants are blood clotting inhibitors by inhibiting the factors that can cause blood clotting. Anticoagulants are very useful in the field of hematology by adding anticoagulants to the blood to keep the speciment preserved without affecting the morphology of blood cells, platelet counts, hemoglobin check, leukocyte count and blood group determination. EDTA is anticoagulant that is often used in blood tests. The use of chemical anticoagulants is very expensive. Research is needed to find cheaper alternatives anticoagulants. One of the mangrove plants that can be used as antocoagulant is
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38

Ku, Wen-Jun, Cheng-Jung Lin, and Po-Heng Lin. "UV-Protection Performance of Calophyllum inophyllum Seed Extracts: A Natural Ultraviolet Screening Agent." Natural Product Communications 16, no. 1 (2021): 1934578X2098565. http://dx.doi.org/10.1177/1934578x20985650.

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Demand for sunscreen products has been rising in recent years due to increasing cases of skin damage caused byultraviolet radiation (UVR). Recent studies have proved that some materials in commercial sunscreen products are harmful to the marine ecosystem. Therefore, the development of a photoprotective and environmentally friendly screening agent has been a leading direction for the cosmetic industry. Calophyllum inophyllum is a seaside plant found in the Pacific Rim, regarded as a potential source of biodiesel feedstock given the high oil content of its seeds. Due to the harsh environment of
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Purwantoro, Andika Indra, Afghani Jayuska, and In'am Ilmiawan. "UJI AKTIVITAS ANTIOKSIDAN DARI HASIL FRAKSINASI DAUN NYAMPLUNG (CALOPHYLLUM INOPHYLLUM) DENGAN METODEDPPH (1,1-DIFENIL-2-PIKRILHIDRAZIL)." Jurnal Kedokteran Ibnu Nafis 10, no. 2 (2021): 128–38. http://dx.doi.org/10.30743/jkin.v10i2.188.

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Radikal bebas adalah senyawa yang memiliki elektron tidak berpasangan. Radikal bebas yang tinggi dapat mengakibatkan stress oksidatif yang akan memicu munculnya berbagai penyakit. Tubuh membutuhkan antioksidan yang dapat memproteksi tubuh dari radikal bebas. Studi literatur menunjukkan bahwa daun nyamplung (Calophyllum inophyllum) mengandung senyawa metabolit yang memiliki efek sebagai antioksidan. Penelitian ini bertujuan untuk menguji aktivitas antioksidan dari hasil fraksinasi daun nyamplung. Simplisia daun nyamplung dipartisi secara sokletasi bertingkat menggunakan pelarut metanol, n-heksa
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Senthilkumar, P. "Experimental Exploration of Fuel Properties of Calophyllum Inophyllum Biodiesel and Its Blends." Saudi Journal of Engineering and Technology 8, no. 10 (2023): 249–54. http://dx.doi.org/10.36348/sjet.2023.v08i10.003.

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The calophyllum inophyllum is a potential source of non-edible vegetable oil for producing biodiesel because of its ability to grow in a wide range of climate conditions, easy cultivation, high fruit production rate, and the high oil content in the seed. The biodiesel is extracted through transesterification process with methanol and NaOH as catalyst. The biodiesel was blended with diesel by various percentages such as B0, B25, B50, B75 and B100. The blends were prepared on a volume basis. Density, kinematic viscosity, flash point and fire point, these are the four main fuel properties that wer
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H N, Karthik, Chetan Bhanu Rathod, and Aravind B. Rathod. "Characterization of Fruit, Seed Traits and Seedling Growth Performance of Different Seed Sources of Calophyllum inophyllum." Journal of Scientific Research and Reports 30, no. 11 (2024): 646–53. http://dx.doi.org/10.9734/jsrr/2024/v30i112592.

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Calophyllum inophyllum is an oil-bearing tree species with seeds containing 50-70 per cent oil, mainly used for non-edible purposes. Belonging to the Clusiaceae family, it is commonly known as Undi in Kannada. This littoral tropical tree grows above the high-tide mark along coastlines and is frequently found on sandy beaches. Its prominence has increased due to high demand as biofuel and commercialization. The study aimed to examine the fruit and seed traits from various sources and the impact of seed source variation on germination and seedling growth of Calophyllum inophyllum. Experiments we
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Hapsari, Safrina, David Febrilliant Susanto, Hakun Wirawasista Aparamarta, Arief Widjaja, and Setiyo Gunawan. "Separation and Purification of Wax from Nyamplung (Calophyllum inophyllum) Seed Oil." Materials Science Forum 964 (July 2019): 1–6. http://dx.doi.org/10.4028/www.scientific.net/msf.964.1.

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Nyamplung (Calophyllum inophyllum) is a multi-functional plant which is spread widely over the coast of Indonesia. Its seed produces a high content of oil, but its utilization is still limited. It is because C. inophyllum seed oil contains toxic compounds. Therefore, C. inophyllum seed oil has been used as a biodiesel raw material for many years. It was reported that C. inophyllum seed oil contains wax, but its percentage remains unknown. Wax has been used in cosmetics, pharmaceuticals, foods, and coatings industries as oil binder, water repellent, scratch resistance, and dispersion medium. In
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K, Jaikumar, Sheik Noor Mohamed, John Wyson W, et al. "IN SILICO DOCKING ANALYSIS OF BIOACTIVE COMPOUNDS FROM CALOPHYLLUM INOPHYLLUM L. ETHANOL LEAF EXTRACT AGAINST EGFR PROTEIN." Asian Journal of Pharmaceutical and Clinical Research 10, no. 8 (2017): 214. http://dx.doi.org/10.22159/ajpcr.2017.v10i8.18972.

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Objective: The objective of this study was to evaluate the effective new phytocomponents from Calophyllum inophyllum ethanol leaf extract against breast cancer target protein of Epidermal Growth Factor Receptor (EGFR) using in silico docking studies.Materials and Methods: The identification of compounds was done by GC-MS analysis. The in silico docking studies were carried out using Discovery Studio 4.0 software.Results: The GC-MS analysis of ethanol leaf extract revealed the presence of eleven compounds. The docking analysis have exhibited moderate to potent inhibition with a range of dock sc
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Balaji, N., S. Shenbagaraman, and S. Ranjith. "DI-diesel engine fueled with orange peel calophylluminophyllum seed blended biodiesel." Journal of Physics: Conference Series 2484, no. 1 (2023): 012028. http://dx.doi.org/10.1088/1742-6596/2484/1/012028.

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Abstract Engines that run on diesel fuel are very important to the functioning of contemporary society. At the same time, they are a significant contributor to the pollution of the atmosphere. Because both the comfort of the atmosphere and the inter-related, we are unable to cut down on the usage of diesel at this time. This is a very precarious scenario. The number of vehicles that run on diesel continues to grow on a daily basis. We have no choice but to switch to alternate fuels such as biodiesel if we want to prevent this problem. In the current experiment, orange peel oil was combined wit
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Aminah, Aam, NFN Danu, and Yulianti Bramasto. "Growth Diversity of Nyamplung (Calophyllum inophyllum) Seedling from Sumenep, Madura." Jurnal Perbenihan Tanaman Hutan 7, no. 2 (2019): 127–38. http://dx.doi.org/10.20886/bptpth.2019.7.2.127-138.

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Rustam, E., D. J. Sudrajat, N. Nurhasybi, N. Widyani, and S. Surono. "Possibility of bare-root seedling application for tropical forest and landscape restoration: A study on Gmelina arborea and Calophyllum inophyllum." E3S Web of Conferences 373 (2023): 05005. http://dx.doi.org/10.1051/e3sconf/202337305005.

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Container and bare-root seedlings are the two basic stock types used in reforestation programs in many countries, but in the tropics, bare-root seedlings have never been widely applied. The objective of this research was to assess the possibility of bare-root seedlings for tropical forest and landscape restoration treated by fertilization in the nursery and aquasorb treatment using two forest tree species, i.e., Calophyllum inophyllum and Gmelina arborea. A randomized block design was used to assess the seedling performance in nursery and aquasorb application on bare-root seedlings and contain
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Lestari, Lilla Puji. "Penggunaan Tanaman Nyamplung Calophyllum Inophyllum Sebagai Sumber Bahan Baku Energi Terbaharukan dengan Katalis KOH." Journal of Mandalika Social Science 2, no. 1 (2024): 115–22. https://doi.org/10.59613/jomss.v2i1.91.

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Tanaman nyamplung (Calophyllum inophyllum) memiliki potensi sebagai sumber bahan bakar nabati. Biji nyamplung mengandung minyak dengan kadar tinggi, dan biodiesel dapat diproduksi dari biji nyamplung melalui proses transesterifikasi. Penelitian ini bertujuan untuk mengeksplorasi potensi tanaman nyamplung (Calophyllum inophyllum) sebagai sumber bahan baku energi terbarukan melalui proses transesterifikasi dengan katalis KOH. Minyak nyamplung diekstraksi dari bijinya dan dikonversi menjadi biodiesel menggunakan metanol dan KOH sebagai katalis. Pengaruh variabel proses seperti konsentrasi katalis
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Sukma, Kinanti Wilujeng, Andi Sanata, Gaguk Jatisukamto, Nurkoyim Kustanto, and Mahros Darsin. "Combustion Characteristics of Biodiesel Droplets from Nyamplung Seeds with Eggshell Catalyst Using PLX-DAQ Software." Jurnal Teknologi Informasi dan Pendidikan 18, no. 1 (2025): 773–81. https://doi.org/10.24036/jtip.v18i1.829.

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The purpose of this study was to determine the effect of eggshell catalyst (CaO) on the combustion characteristics of nyamplung oil biodiesel droplets (Calophyllum inophyllum L) on flame visualization, ignition delay, and temperature. At present, Indonesia still uses fossil fuels, namely diesel. However, over time there are alternative fuels using palm oil raw materials. However, palm oil is also used as a source of food so that it will have an impact on the scarcity of palm oil. In this study, we looked for alternative energy using nyamplung seeds (Calophyllum inophyllum L.) with catalyst wei
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Emilda, Emilda. "Tumbuhan Nyamplung (Chalohyllum inophyllum Linn) dan Bioaktifitasnya." SIMBIOSA 8, no. 2 (2019): 136. http://dx.doi.org/10.33373/sim-bio.v8i2.2000.

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Nyamplung (Calophyllum inophyllum L) adalah tumbuhan yang tersebar luas di Indonesia, terutama ditemukan di daerah pantai berpasir. Tumbuhan dengan pohon tinggi sedang ini sudah lama digunakan masyarakat sebagai obat. Keragaman metabolit sekunder yang dikandungnya memiliki potensi untuk dikembangkan sebagai bahan baku obat untuk industri obat. Artikel ini ditulis berdasarkan literatur ilmiah untuk menjelaskan hubungan pemanfaatan Nyamplung (Chalohyllum inophyllum L.) dengan bioaktifitasnya sehingga pemanfaatannya sebagai obat dapat dikembangkan. Berdasarkan sejumlah penelitian tentang metaboli
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Yuniastuti, E., I. Anjani, Nandariyah, and M. N. I. Delfianti. "Morphological characterization of Calophyllum Inophyllum as a biodiesel." IOP Conference Series: Earth and Environmental Science 724, no. 1 (2021): 012026. http://dx.doi.org/10.1088/1755-1315/724/1/012026.

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