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1

P., C. Sarkar, Prasad N., and Nandy Sonia. "A novel synthesis of Z-(9)-hexadecenal in improved yields, from aleuritic acid." Journal Of Indian Chemical Society Vol. 82, May 2005 (2005): 475–76. https://doi.org/10.5281/zenodo.5830397.

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LP &amp; PO Division, Indian Lac Research Institute (ICAR). Namkum. Ranchi-834 010. India <em>E-mail</em> : rch_sarkar2d@sancharnet.in Fax : 91-651-2260202 <em>Manuscript received 14 June 2004, revised 5 October 2004. accepted 30 January&nbsp;2005</em> Z-(9)-Hexadecenal, an important pheromonal component, was synthesised from aleuritic acid, using novel procedure, resulting in improved yields. Microwave-assisted technique was also applied in the esterification of aleuritic acid, leading to shorter reaction limes and 98% yield of methyl aleuritate.
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2

P., C. SARKAR, and K. SHRIVASTAVA A. "FT-IR Spectroscopic Studies on Aleuritic Acid." Journal of Indian Chemical Society Vol. 75, May 1998 (1998): 326–27. https://doi.org/10.5281/zenodo.5945432.

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Chemistry Department. Ranchi College, Ranchi University, Ranchi-834 008 <em>Manuscript received 30 April 1996, revised 21 April 1997, accepted 12 August 1997</em> FT-IR spectra of different forms of aleuritic acid have been studied in the region 400-4000 cm<sup>-1</sup>. Difference spectra in the case of <em>threo</em>-aleuritic acid indicate that the purity of the acid depends on the solvent used for crystallization.
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3

M., Zahurul Haque, Omar Faruq M., and Umar Ali M. "Synthesis of some new thiocarbamides from a constituent of lac and studies on their antimicrobial activities." Journal of Indian Chemical Society Vol. 79, Oct 2002 (2002): 841–42. https://doi.org/10.5281/zenodo.5847960.

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BCSIR Laboratories, Rajshahi, Bangladesh <em>E-mail :&nbsp;</em>bcsirraj @librabd.net Department of Chemistry, Rajshahi University, Rajshahi, Bangladesh <em>Manuscript received 21 May 2001, revised 14 February 2002, accepted 24 April 2002</em> Some new thiocarbamides have been synthesized by the reaction of aleurityl hydrazide (prepared from aleuritic acid isolated from Bangladeshi lac) with different isothiocyanates. Antibacterial activities of the compounds have been determined and most of them are found highly active.
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4

Zhang, Di, Bingjian Zhang, and Longguan Zhu. "A new method for shellac binder detection in ancient building mortars." New Journal of Chemistry 46, no. 16 (2022): 7563–68. http://dx.doi.org/10.1039/d2nj00016d.

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5

R.N., Majee. "Simple and facile synthesis of (E)-9-hexadecen-1,16-olide (isoambrettolide) and dimethyl (E)-2-undecen-1,11-dioate, a juvenile hormone." Journal of Indian Chemical Society Vol. 89, Oct 2012 (2012): 1439–41. https://doi.org/10.5281/zenodo.5771416.

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Lac Processing and Product Development Division, Indian Institute of Natural Resins and Gums, Namkum, Ranchi-834 010, Jharkhand, India <em>E-mail </em>: r.n.majee@gmail.com <em>Manuscript received 22 March 2010, revised 24 February 2011, accepted 11 January 2012</em> (<em>E</em>)-9-Hexadecen-1,16-olide (isoambrettolide) possessing musk-like odour is used as fixative in perfumery formulations. It has been synthesized from threo-aleuritic acid (9,10,16-trihydroxyhexadecanoic acid) by simple procedure. The compound showed antibacterial activity. Synthesis of dimethyl (<em>E</em>)-2-undecen-1,11-d
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6

R., N. MAJEE, and RAMANI R. "Syntheses of (Z)-7-Tetradecen-l-yl Acetate, (Z)-9-Tetradecen-l-ol and its Acetate from Aleuritic Acid." Journal of Indian Chemical Society Vol. 74, Sep 1997 (1997): 727–28. https://doi.org/10.5281/zenodo.5896336.

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Indian Lac Research Institute, Ranchi-834 010 <em>Manuscript received 9 August 1995, revised 5 August /996, accepted 7 August 1996</em> Syntheses of (Z)-7-Tetradecen-l-yl Acetate, (Z)-9-Tetradecen-l-ol and its Acetate from Aleuritic Acid.
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7

V., K. Rao, Majee R.N., K. Saha S., and Agarwal S.C. "Synthesis of 9,11-dodecadien-l-yl acetate from aleuritic acid." Journal of Indian Chemical Society Vol. 76, Oct 1999 (1999): 503–4. https://doi.org/10.5281/zenodo.5861156.

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Indian Lac Research Institute, Namkum, Ranchi-834 010, India <em>Manuscript received 30 March 1999, accepted 3 June 1999</em> 9,11-Dodecadien-1-yl acetate (7), the sex pheromone of <em>Diparopsis castanea</em> (red bollworm moth) has been synthesised from aleuritic acid (1).
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8

R.N., MAJEE, RAJENDRAN I., and AGARWAL S.C. "Simple Synthesis of 1,4-Dioxa-2,3-dioxocyclopentadec-6-ene from Aleuritic Acid." Journal of Indian Chemical Society Vol. 75, Sep 1998 (1998): 522–23. https://doi.org/10.5281/zenodo.5925619.

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Indian Lac Research Institute, Namkum, Ranchi-834 010 <em>Manuscript received 23 June 1997, revised 27 February 1998, accepted 6 May 1998</em> Synthesis of 1,4-dioxa-2,3-dioxocyclopentadec-6-ene has been achieved from <em>threo</em>-aleuritic acid (9,10,16-trihydroxyhexadecanoic acid). &nbsp;
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9

Heredia-Guerrero, José Alejandro, Miguel Angel San-Miguel, Mark S. P. Sansom, Antonio Heredia, and José Jesús Benítez. "Aleuritic (9,10,16-trihydroxypalmitic) acid self-assembly on mica." Physical Chemistry Chemical Physics 12, no. 35 (2010): 10423. http://dx.doi.org/10.1039/c0cp00163e.

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10

P., C. SARKAR, and AGARWAL S.C. "Functional Transformation of (±)-threo-Aleuritic Acid : Synthesis of 5-Methyltetrazoles." Journal of Indian Chemical Society Vol. 74, Aug 1997 (1997): 646–47. https://doi.org/10.5281/zenodo.5891991.

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Lac Processing &amp; Product Development Division, Indian Lac Research Institute (I.C.A.R.), Namkum, Ranchi-834 010 <em>Manuscript received 2 February 1995, revised 12 April 1996, accepted 10 July 1996</em> Functional Transformation of (&plusmn;)-threo-Aleuritic Acid : Synthesis of 5-Methyltetrazoles.
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11

Badhani, Gaurav, Shruti Yadav, Elen Reji, and Subbarayappa Adimurthy. "Recovery of Lac Resin from the Aqueous Effluent of Shellac Industry." Sustainable Chemistry 4, no. 1 (2022): 1–7. http://dx.doi.org/10.3390/suschem4010001.

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Shellac and aleuritic acid manufacturing industries generate a lot of alkaline aqueous effluent during the process of manufacture of shellac and aleuritic acid from the seedlac/sticklac. The generated effluent contains lac resin, lac wax, lac dye and other water-soluble organic acids. Shellac industries in India face problems with the disposal of aqueous effluent due to the presence of considerable amounts of natural organic molecules and the dark colour solution. To address these problems, we have developed a novel method for the selective recovery of the lac resin from the alkaline aqueous e
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12

R.N., Majee, Mitra Mazumder Papiya, Mazumder A., and Mazumder R. "Synthesis and biological activity of hydrazide, thiocarbamate, thiadiazole and oxadiazole of (E)-2-undecen-1,11-dioic acid obtained from aleuritic acid of shellac." Journal of Indian Chemical Society Vol. 90, Jan 2013 (2013): 111–14. https://doi.org/10.5281/zenodo.5764268.

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Indian Institute of Natural Resins and Gums, Namkum, Ranchi-834 010, Jharkhand, India <em>E-mail</em> : lppd@ilri. ernet. in Fax : 91-651-2260202 Department of Pharmaceutical Sciences, Birla Institute of Technology, Mesra, Ranchi-835 215, Jharkhand, India <em>Manuscript received 08 October 2010, revised 06 February 2012, accepted 02 April 2012</em> New derivatives such as hydrazide, thiocarbamate, thiadiazole and oxadiazole of (<em>E)</em>-2-undecen-1,11-dioic acid obtained from aleuritic acid of shellac were synthesized and their biological activities such as anthelmintic, antimicrobial and a
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13

R., N. Majee, and K. S. Yadav S. "Studies on desulphurisation of epithio derivatives of isomeric aleuritic acid and their corresponding dihydroxy dioic acids." Journal of Indian Chemical Society Vol. 81, Mar 2004 (2004): 261–63. https://doi.org/10.5281/zenodo.5830653.

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Division of Lac Processing and Product Development, Indian Lac Research Institute, Namkum, Ranchi-834 010, India <em>E-mail</em>: lac@ilri.bih.nic.in&nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp;<em> Fax</em> : 91-651-2260202 <em>Manuscript received 3 April 2003, accepted 4 September 2003</em> (<em>Z</em>) and (<em>E</em>)-Epithio derhatives of isomeric aleuritic acids (9,10,16-trihydroxyhexadecanoic) and 9,10-dihydroxyhexadecane-1,16-dioic acids have been synthesised. Their desulphurisation with iodine yielded corresponding unsaturated acids without any change in configuration.
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14

R., N. Majee, N. Chatterjea J., C. Sengupta S., and C. Agarwal S. "Facile synthesis of (E)-7-hexadecen-1,16-olide (ambrettolide)." Journal of Indian Chemical Society Vol. 83, Nov 2006 (2006): 1179–80. https://doi.org/10.5281/zenodo.5833025.

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Lac Processing &amp; Product Development Division, Indian Lac Research Institute, Namkum, Ranchi-834 010, Jharkhand, India E-mail : lppd@ilri.ernet.in Fax : 91-0651-2260202 <em>Manuscript received 17 February 2006, revised 13 July 2006, accepted 25 August 2006</em> (<em>E</em>)-7-Hexadecen-1,16-olide (ambrettolide), having musk-like odour being used as a fixative in perfumery industry. It was synthesized from <em>\(threo\)</em>-aleuritic acid (9,10,16-trihydroxyhexadecanoic acid) by simple procedure.
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15

R.N., Majee, Bhattacharya A., K. Jaiswal A., R. Bhattacharya D., and Prakash Anil. "Syntheses of 1,9-nonanedioldiacetate and 1, 7-heptanedioldiacetate mosquito repellants from aleuritic acid of lac resin." Journal of Indian Chemical Society Vol. 90, Jan 2013 (2013): 109–10. https://doi.org/10.5281/zenodo.5764244.

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lndian Institute of Natural Resins and Gums, Ranchi-834 010, Jharkhand, India <em>E-mail</em> : lppd@ilri.ernet.in Fax : 91-651-2260202 Regional Medical Research Centre, N. E. Region, Dibrugarh-786 001, Assam, India <em>Manuscript received 08 October 2010, revised 06 February 2012, accepted 02 April 2012</em> 1,9-Nonanedioldiacetate and 1,7-heptanedioldiacetate were synthesized from aleuritic acid (9,10,16- trihydroxyhexadecanoic acid), for the first time adopting simple procedure. Both the compounds showed mosquito repellant activity.
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16

R.N., Majee. "Simple syntheses of (Z)-7-dodecen-1-ol, (Z)-7-tetradecen-1-yl acetate, (Z)-9-tetradecenal and (Z)-9-hexadecen-1-yl acetate from aleuritic acid." Journal of Indian Chemical Society Vol. 89, Oct 2012 (2012): 1435–38. https://doi.org/10.5281/zenodo.5771350.

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Lac Processing and Product Development Division, Indian Institute of Natural Resins and Gums, Namkum, Ranchi-834 010, Jharkhand, India <em>E-mail</em> : r.n.majee@gmail.com <em>Manuscript received 09 February 2010, revised 11 March 2011, accepted 11 January 2012</em> Insect sex pheromones are used for monitoring and management of crop pests. Four compounds (Z)-7-dodecen-1-ol, (Z)-7-tetradecen-l-yl acetate, (Z)-9-tetradecenal and (Z)-9-hexadecen-l-yl acetate reported as components of some important agricultural insect pests have been synthesized from <em>threo</em>-aleuritic acid (9,10,16-trihy
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17

SARKAR, P. C., and S. C. AGARWAL. "ChemInform Abstract: Functional Transformation of (.+-.)-threo-Aleuritic Acid: Synthesis of 5-Methyltetrazoles." ChemInform 29, no. 40 (2010): no. http://dx.doi.org/10.1002/chin.199840261.

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18

SUBRAMANIAN, G. B. V., and A. RASTOGI. "ChemInform Abstract: A Facile Synthesis of 1-Triacontanol from threo-Aleuritic Acid." ChemInform 23, no. 17 (2010): no. http://dx.doi.org/10.1002/chin.199217297.

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19

Rao, V. K., R. N. Majee, S. K. Saha, and S. C. Agarwal. "ChemInform Abstract: Synthesis of 9,11-Dodecadien-1-yl Acetate from Aleuritic Acid." ChemInform 31, no. 37 (2000): no. http://dx.doi.org/10.1002/chin.200037243.

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20

Hevesi, L., J. Hontoy, A. Krief, J. Lubochinsky та B. Lubochinsky. "Stereospecific Synthesis of Z and E C16ω-Iodo Δ9 Fatty Acids from Natural Aleuritic Acid". Bulletin des Sociétés Chimiques Belges 84, № 7 (2010): 709–16. http://dx.doi.org/10.1002/bscb.19750840704.

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21

AGARWAL, S. C., and I. RAJENDRAN. "ChemInform Abstract: Reactions of Olefinic Ester Derivatives of Aleuritic Acid with Iodonium Nitrate." ChemInform 24, no. 30 (2010): no. http://dx.doi.org/10.1002/chin.199330130.

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22

Benítez, José Jesús, José Alejandro Heredia-Guerrero, Susana Guzmán-Puyol, Eva Domínguez, and Antonio Heredia. "Long-Chain Polyhydroxyesters from Natural Occurring Aleuritic Acid as Potential Material for Food Packaging." Soft Materials 13, no. 1 (2015): 5–11. http://dx.doi.org/10.1080/1539445x.2014.993476.

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23

Subramanian, G. B. V., and Rajiv Sharma. "Synthesis of (Z)-7-Tetradecenylacetate & Sec. Butyl (Z)-7-Tetradecenoate from Aleuritic Acid." Synthetic Communications 19, no. 7-8 (1989): 1197–202. http://dx.doi.org/10.1080/00397918908054523.

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24

Nagappayya, Shobha K., and Vilas G. Gaikar. "Extraction of Aleuritic Acid from Seedlac and Purification by Reactive Adsorption on Functionalized Polymers." Industrial & Engineering Chemistry Research 49, no. 14 (2010): 6547–53. http://dx.doi.org/10.1021/ie902061e.

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25

Biswas, Suchandra, and Bidhan Chandra Ray. "Preparation of Economically Viable and Environment Friendly Composites from Effluents of Aleuritic Acid Industry." Journal of Polymers and the Environment 21, no. 4 (2013): 1026–31. http://dx.doi.org/10.1007/s10924-013-0606-y.

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26

SUBRAMANIAN, G. B. V., and S. AHUJA. "ChemInform Abstract: Dilithium Tetrachlorocuprate Catalyzed Alkylation of Aleuritic Acid Derivatives and Synthesis of Muscalure." ChemInform 27, no. 40 (2010): no. http://dx.doi.org/10.1002/chin.199640221.

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27

Majee, R. N., I. Rajendran, and S. C. Agarwal. "ChemInform Abstract: Simple Synthesis of 1,4-Dioxa-2,3-dioxocyclopentadec-6-ene from Aleuritic Acid." ChemInform 30, no. 44 (2010): no. http://dx.doi.org/10.1002/chin.199944176.

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28

Benítez, José Jesús, José Alejandro Heredia-Guerrero, María Inmaculada de Vargas-Parody, et al. "Biodegradable polyester films from renewable aleuritic acid: surface modifications induced by melt-polycondensation in air." Journal of Physics D: Applied Physics 49, no. 17 (2016): 175601. http://dx.doi.org/10.1088/0022-3727/49/17/175601.

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29

Benítez, José Jesús, José Alejandro Heredia-Guerrero, Susana Guzmán-Puyol, Eva Domínguez, and Antonio Heredia. "Polyester films obtained by noncatalyzed melt-condensation polymerization of aleuritic (9,10,16-trihydroxyhexadecanoic) acid in air." Journal of Applied Polymer Science 132, no. 4 (2014): n/a. http://dx.doi.org/10.1002/app.41328.

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30

SUBRAMANIAN, G. B. V., and N. MALATHI. "ChemInform Abstract: Synthesis of Some Long Chain Amines from Aleuritic Acid and Some of Their Physical Properties." ChemInform 23, no. 35 (2010): no. http://dx.doi.org/10.1002/chin.199235122.

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31

TEWARI, N., A. ROHATGI, K. H. BHUSHAN, and G. B. V. SUBRAMANIAN. "ChemInform Abstract: Preparation of 7,8,16-Trihydroxyhexadecanoic Acid from Aleuritic Acid and a Synthesis of E/Z-7-Hexadecen-1,16-olides and Hexalure." ChemInform 26, no. 52 (2010): no. http://dx.doi.org/10.1002/chin.199552228.

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32

BHUSHAN, K. H., A. RASTOGI, and G. B. V. SUBRAMANIAN. "ChemInform Abstract: Wittig Reaction on Some Aldehydes from Aleuritic Acid Derivatives and a Synthesis of (Z)-9-Tricosene." ChemInform 26, no. 11 (2010): no. http://dx.doi.org/10.1002/chin.199511321.

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33

Subramanian, G. B. V., and Somdutta Sen. "ChemInform Abstract: Decarboxylative-halogenation of Aleuritic Acid and Its Derivatives Using N-Hydroxypyridine-2-thione and a Halogen Source." ChemInform 31, no. 3 (2010): no. http://dx.doi.org/10.1002/chin.200003233.

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34

Benítez, José J., Sonja Osbild, Susana Guzman-Puyol, Antonio Heredia, and José A. Heredia-Guerrero. "Bio-Based Coatings for Food Metal Packaging Inspired in Biopolyester Plant Cutin." Polymers 12, no. 4 (2020): 942. http://dx.doi.org/10.3390/polym12040942.

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Metals used for food canning such as aluminum (Al), chromium-coated tin-free steel (TFS) and electrochemically tin-plated steel (ETP) were coated with a 2–3-µm-thick layer of polyaleuritate, the polyester resulting from the self-esterification of naturally-occurring 9,10,16-trihydroxyhexadecanoic (aleuritic) acid. The kinetic of the esterification was studied by FTIR spectroscopy; additionally, the catalytic activity of the surface layer of chromium oxide on TFS and, in particular, of tin oxide on ETP, was established. The texture, gloss and wettability of coatings were characterized by AFM, U
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35

Subramanian, G. B. V., Alka Mehrotra, and Kalpana Mehrotra. "Enamine condensation on derivatives of aleuritic acid and synthesis of (Z)-9-tricosene (muscalure), its (E)-isomer, and (E)-13-heptacosene." Tetrahedron 42, no. 14 (1986): 3967–72. http://dx.doi.org/10.1016/s0040-4020(01)87551-7.

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36

SUBRAMANIAN, G. B. V., and S. AHUJA. "ChemInform Abstract: Aleuritic Acid in the Preparation of (Z)-9-Octadecene-1,18-dioic Acid ( Intermediate in Civetone Synthesis) and Queen Substance of Honey-Bee Utilizing Phosphonate Carbanions." ChemInform 27, no. 52 (2010): no. http://dx.doi.org/10.1002/chin.199652288.

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37

Ali, Mohd, Dipak Kumar Hazra, Haraprasad Naiya, Kewal Krishan Sharma, and Arumugam Mohanasundaram. "Microwave-assisted extraction and purification of aleuritic acid from seedlac: A fast, eco-friendly and cost-effective single process for enhanced yield and purity." Chemical Engineering and Processing - Process Intensification 197 (March 2024): 109716. http://dx.doi.org/10.1016/j.cep.2024.109716.

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38

de Souza, Márcia Maria, Luiz G. R. D. Chagas, Ana Elisa Gonçalves, et al. "Phytochemical Analysis and Antinociceptive Properties of Hydroalcoholic Extracts of Aleurites moluccanus Bark." Planta Medica 87, no. 10/11 (2021): 896–906. http://dx.doi.org/10.1055/a-1497-0239.

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Abstract Aleurites moluccanus is used in folk medicine to treat many diseases including pain and inflammatory processes in general. Considering the potential of the leaf extract, evidenced in a previous study, the present study investigates the antinociceptive and anti-inflammatory properties of the hydroethanolic extract of A. moluccanus bark and isolated compounds in animal models of pain. The antinociceptive and anti-inflammatory activities of A. moluccanus bark were evaluated through hyperalgesia induced by carrageenan, PGE2, cytokines, bradykinin, epinephrine, Freundʼs complete adjuvant,
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39

SHARMA, S. C., S. K. PANDEY, and N. PRASAD. "Equipments for Manufacturing Lac Based Value Added Products." JOURNAL OF AGRISEARCH 9, no. 03 (2021): 249–54. http://dx.doi.org/10.21921/jas.v9i03.11010.

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Lac, a natural resin of insect origin, yields basically three useful materials i.e.resin, wax and dye and is an important source of livelihood for poor and tribal farmers in the lac growing regions. Lac growers harvest lac in form of lac stick and lac encrustations attached with sticks are then scraped which is known as sticklac. Sticklac contains impurities which need to be removed by converting sticklac in to seedlac through different unit operations under primary lac processing so that seedlac, a semi-refined product, can be further used in making lac based value added products i.e.shellac,
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40

Ujv�ry, I., A. Kis-Tam�s, and L. Nov�k. "Simple and economic syntheses of some (Z)-7- and (Z)-9-alkenyl acetates, and of (E,Z)-7,9-dodecadien-1-yl acetate, the sex pheromone of the European grapevine moth, using aleuritic acid as a common starting material." Journal of Chemical Ecology 11, no. 1 (1985): 113–24. http://dx.doi.org/10.1007/bf00987610.

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41

Bueno, Otto V. M., J. J. Benítez, and Miguel A. San-Miguel. "Understanding segregation processes in SAMs formed by mixtures of hydroxylated and non-hydroxylated fatty acids." RSC Advances 9, no. 67 (2019): 39252–63. http://dx.doi.org/10.1039/c9ra06799j.

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Segregation processes emerging when preparing self-assembled layers from mixtures with different compositions of aleuritic (9,10,16 trihydroxyhexadecanoic) (ALE) and palmitic (hexadecanoic) (PAL) acids.
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42

Munadi, Rachmin, and Nurul Azizah. "EFFECT OF ACTIVATED CHARCOAL PECAN SHELL (Aleurites moluccanus L. Willd) WITH VARIATIONS IN SULFURIC ACID CONCENTRATION ON DECREASED COD AND BOD LEVELS OF LAUNDRY LIQUID WASTE." Jurnal Pendidikan Matematika dan IPA 15, no. 1 (2024): 119. http://dx.doi.org/10.26418/jpmipa.v15i1.69666.

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Pecan shells are organic waste that can be decomposed but the texture is hard enough that it takes a long time to decompose it naturally. Various efforts to utilize pecan shell waste (Aleurites moluccanus L. Willd), one of which is as a raw material for making activated charcoal. This study aims to find out how the effect of pecan shell activated charcoal (Aleurites moluccanus L. Willd) with variations in the concentration of sulfuric acid against a decrease in Biological Oxygen Demand (BOD) and Chemical Oxygen Demand (COD) levels of laundry liquid waste, as well as the effectiveness of the co
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43

Radunz, A., P. Heb, and G. H. Schmid. "Analysis of the Seed Lipids of Aleurites montana." Zeitschrift für Naturforschung C 53, no. 5-6 (1998): 305–10. http://dx.doi.org/10.1515/znc-1998-5-602.

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Abstract The seed lipids of the Chinese tung-oil tree Aleurites montana are composed of 97.2% triglycerides, 2% phospholipids and of 0.8% glycolipids. In the triglycerides 67% of all fatty acids are α-eleostearic acid (configuration C18:3, ∆9 cis, ∆11 trans, ∆13 trans). This acid is bound in the triglycerides in the 1,3 position. Via mercury Il-acetate adducts and subsequent chromatography on silica gel a separation of this fatty acid from the seed fatty acids is possible. By this procedure an a-eleostearic acid-free tung-oil mixture is obtained, which consists by one half of C18:2, 25% of C18
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44

Grotjohann, Norbert, Ping He, and Georg H. Schmid. "Capacity of Enzymes of the Euphorbiacea Aleurites montana Involved in CO2- Fixation, Compared to Plants Having C3-, C4- and Crassulacean Acid Metabolism." Zeitschrift für Naturforschung C 55, no. 5-6 (2000): 383–91. http://dx.doi.org/10.1515/znc-2000-5-613.

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Capacities of phosphoenolpyruvate carboxylase (PEP-Co), ribulose bisphosphate carboxylase (Rubisco), NADP+ malic enzyme (ME) and of malate dehydrogenase (MDH) were measured in the Euphorbiacea Aleurites montana, grown under 700 ppm CO2 for four weeks prior to enzyme extraction. For comparison Bryophyllum daigremontiana (CAM), Saccharum officinarum (C4) and Capsicum frutescens (C3) were treated in the same way. PEP-Co capacity of Aleurites was in the range of 12-, that of Capsicum approx. 26 nmol × min-1 × mg protein-1, without significant influence of the light period or CO2-treatment. In cont
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Abdul Aziz, Rosmawati, and Norizan Ahmat. "ISOLATION OF ACETYL ALEURITOLIC ACID FROM Pimeleodendron griffithianum (Euphorbiaceae)." Malaysian Journal of Analytical Science 20, no. 3 (2016): 573–77. http://dx.doi.org/10.17576/mjas-2016-2003-16.

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Mo, De-Juan, Jun Li, and Min-Yi Li. "A New 28-Nor-oleanane Triterpene from Excoecaria agallocha." Natural Product Communications 13, no. 1 (2018): 1934578X1801300. http://dx.doi.org/10.1177/1934578x1801300107.

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A new 28-nor-oleanane triterpene, 28- nor-olean-2α, 3β-dihydroxy-14,17-diene-16-one with a rare cyclohexa-2,5-dienone moiety, together with three known triterpenes, viz.β-amyrin (2), 3α- O - trans -coumaroyl-betulinic acid (3), 3-acetyl-aleuritolic acid (4), were isolated from the twigs of Excoecaria agallocha L.. Their structures were determined by extensive spectroscopic data analysis and comparison with previous literatures (known compounds).
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Rengganis, Mutiara, and Helgananta Adirya Sabian. "Kinetika Transesterifikasi Minyak Biji Kemiri (Aleurites moluccanus) Menjadi Fatty Acid Methyl Ester." Jurnal Tekno Insentif 18, no. 1 (2024): 53–65. https://doi.org/10.36787/jti.v18i1.1232.

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Abstrak Minyak biji kemiri dapat digunakan sebagai metil ester. Metil ester dapat diproduksi dengan satu metode transesterifikasi atau dengan menggabungkan metode transesterifikasi dan esterifikasi menggunakan katalis untuk mempercepat reaksi. Penelitian ini dilakukan untuk memperoleh metil ester asam lemak dari minyak biji kemiri dengan proses transesterifikasi menggunakan variabel suhu 30°C, 40°C, 50°C pada waktu 40, 50, 60, 70, 80, 90 menit. Proses refluks dilakukan dengan variabel suhu yang telah ditentukan dan pengambilan sampel dilakukan pada waktu yang telah ditentukan. Pengeringan dila
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Liu, Jia-Bao, Ying Zhang, Bao-Song Cui, et al. "Anti-HIV and NO production inhibition activities of epi-aleuritolic acid derivatives." Journal of Asian Natural Products Research 15, no. 5 (2013): 515–24. http://dx.doi.org/10.1080/10286020.2013.787990.

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Yi, Hua, Kun Wang, Biaoyan Du, et al. "Aleuritolic Acid Impaired Autophagic Flux and Induced Apoptosis in Hepatocellular Carcinoma HepG2 Cells." Molecules 23, no. 6 (2018): 1338. http://dx.doi.org/10.3390/molecules23061338.

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Melo, I. R. S., A. M. R. Teixeira, D. M. Sena Junior, et al. "FT-Raman and FTIR-ATR spectroscopies and DFT calculations of triterpene acetyl aleuritolic acid." Journal of Molecular Structure 1058 (January 2014): 221–27. http://dx.doi.org/10.1016/j.molstruc.2013.11.023.

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