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            โครงการหนังสออเล็กทรอนกสด้านการเกษตร เฉลมพระเกียรตพระบาทสมเด็จพระเจ้าอยู่หัว
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            [16]   N. Chumuang, V. Punsuvon. 2017. Response surface methodology for
                 biodiesel production using calcium methoxide catalyst assisted with
                 tetrahydrofuran as cosolvent, J. Chem. 2017: 4190818.

            [17]   N. Yodsuwan, S. Sawayama, S. Sirisansaneeyakul. 2017. Effect of

                 nitrogen concentration on growth, lipid production and fatty acid
                 profiles of the marine diatom Phaeodactylum tricornutum.
                 Agr. Nat. Resour. 51(3): 190–197.

            [18]   P. Chaisutyakorn, J. Praiboon, C. Kaewsuralikhit. 2018. The effect of
                 temperature on growth and lipid and fatty acid composition on marine

                 microalgae used for biodiesel production. J. Appl. Phycol. 30(1): 37–45.

            [19]   A. Sirikhachornkit, A. Suttangkakul, S. Vuttipongchaikij, P. Juntawong.
                 2018. De novo transcriptome analysis and gene expression profiling of
                 an oleaginous microalga Scenedesmus acutus TISTR8540 during
                 nitrogen deprivation-induced lipid accumulation. Sci. Rep. 8(1): 3668.

            [20]   P. Kraisintu, W. Yongmanitchai, S. Limtong. 2010. Selection and

                 optimization for lipid production of a newly isolated oleaginous yeast,
                 Rhodosporidium toruloides DMKU3-TK16. Agr. Nat. Resour. 44(3): 436–445.

            [21]   P. Polburee, W. Yongmanitchai, N. Lertwattanasakul, T. Ohashi,
                 K. Fujiyama, S. Limtong. 2015. Characterization of oleaginous yeasts

                 accumulating high levels of lipid when cultivated in glycerol and their
                 potential for lipid production from biodiesel-derived crude glycerol.
                 Fungal Biol. 119(12): 1194–1204.

            [22]   R. Poontawee, W. Yongmanitchai, S. Limtong. 2017 Efficient oleaginous
                 yeasts for lipid production from lignocellulosic sugars and effects of

                 lignocellulose degradation compounds on growth and lipid
                 production. Process Biochem. 53: 44–60.

            [23]   R. Poontawee, W. Yongmanitchai, S. Limtong, Lipid production from a
                 mixture of sugarcane top hydrolysate and biodiesel-derived crude
                 glycerol by the oleaginous red yeast, Rhodosporidiobolus fluvialis,

                 Process Biochem. 66 (2018) 150–161.



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