Различные подходы к накоплению биомассы микроводорослей Chlorellavulgaris и к процессам её биокаталитической трансформации (1105654), страница 31
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98. – I. 11. – p. 2220–2228.45. Martı́nez M. E., Sánchez S., Jiménez J. M., Yousfi F. E., Muñoz L. Nitrogen and phosphorusremoval from urban wastewater by the microalga Scenedesmus obliquus [Текст] // BioresourceTechnol. – 2000. – V. 73. – I. 3. – p. 263–272.46. Hameed M. S. A. Effect of algal density in bead, bead size and bead concentrations onwastewater nutrient removal [Текст] // Afr. J. Biotechnol. – 2007. – V.
6. – I. 10. – p. 1185–1191.47. Liu K., Li J., Qiao H., Lin A., Wang G. Immobilization of Chlorella sorokiniana GXNN 01 inalginate for removal of N and P from synthetic wastewater [Текст] // Bioresource Technol. – 2010.– V. 114. – p. 26–32.48. Цуцаева А. А., Ананьина А. Е., Балыбердина Л. М., Степанюк Л. В., Павленко Н. В. Опытдолгосрочногохраненияпромышленныхштаммовмикроорганизмов[Текст]//Микробиология. – 2008. – Т.77. – № 5. с. 696–700.49. Сидякина Т.М.
Консервация микроорганизмов в коллекциях культур [Текст] / СидякинаТ.М. – Сб. науч. тр. АН СССР, Пущинский научн. центр. Институт биологической физики,Пущино: Консервация генетических ресурсов. Методы. Проблемы. Перспективы. – 1991. –с. 81–159.50. Chen Y.-C. Immobilized Isochrysis galbana (Haptophyta) for longterm storage and applicationsfor feed and water quality control in clam (Meretrix lusoria) cultures [Текст] // J.
Appl. Phycol. –2003. – V. 15. – p. 439–444.16251. Marsalek B., Rojickova-Padrtova R. Long-term maintenance of alga strains for use inbiomassays and biotechnology [Текст] // Arch. Hydrobiol. Suppl. Algol. Stud. – 1988. – V. 124. –p. 121–136.52. Poncet J. M., Benoıt V. Cryopreservation of the unicellular marine alga, Nannochloropsisoculata [Текст] // Biotechnol. Lett. – 2003. – V. 25. – I. 23.
– p. 2017–2022.53. Day J. G. Cryopreservation of microalgae and cyanobacteria [Текст] // Methods Mol Biol. –2007. – V. 368. – p. 141–151.54. Taylor R., Fletcher R. L. Cryopreservation of eukaryotic algae – a review of methodologies[Текст] // J. Appl.
Phycol. – 1998. – V. 10. – I. 5. – p. 481–501.55. Hubálek Z. Protectants used in the cryopreservation of microorganisms [Текст] // Cryobiology.– 2003. – V. 46. – p. 205–229.56. Piaseck B. P., Dille K. R., Brand J. J. Cryopreservation of Chlamydomonas reinhardtii: A causeof low viability at high cell density [Текст] // Cryobiology. – 2009. – V.
58. – p. 103–109.57. Mortain-Bertrand A., Etchart F., Boucaud M.-Th. A method for the cryoconservation ofDunaliella salina (CHLOROPHYCEAE): effect of glycerol and cold adaptation [Текст] // J.Phycol. – 1996. – V. 32. – p. 346–352.58. Poncet J.-M., Veron B. Cryopreservation of the unicellular marine alga, Nannochloropsisoculata [Текст] // Biotechnol.
Lett. – 2003. – V. 25. – p. 2017–2022.59. Piaseck B.P., Dille K.R., Brand J.J. Cryopreservation of Chlamydomonas reinhardtii: A causeof low viability at high cell density [Текст] // Cryobiology. – 2009. – V. 58. – p. 103–109.60. Guermazi W., Sellami-Kammoun A., Elloumi J.,Drira Z, Aleya L., Marangon R., Ayadi H.,Maalej S. Microalgal cryopreservation using dimethylsulfoxide(Me2SO) coupled with two freezingprotocols:Influence on the fattyacid profile [Текст] // J.Therm. Biol. – 2010. – V. 35. – p.
175–181.61. Roshani O., Yap L.V., Jeevan R.R.,Mohd Syahril M.Z A Preliminary Study TowardsCryopreservation of Unicellular Green Algae, Chlorella vulgaris [Текст] / Proceedings ofUniversiti Malaysia Terengganu 10th International Annual Symposium UMTAS 2011:Empowering Science, Technology and Innovation Towards a Better Tomorrow. – 2011. – p. 141–144.62. Fenwick C., Day J.G. Cryopreservation of Tetraselmis suecica cultured under different nutrientsregimes [Текст] // J.Appl. Phycol. – 1992. – V.
4. – p. 105–109.63. Nakanishi K., Deuchi K., Kuwano K. Cryopreservation of four valuable strains of microalgae,including viability and characteristics during 15 years of cryostorage [Текст] // J. Appl. Phycol. –2012. – V. 24. – I. 6. – p. 1381–1385.16364. Gwo J.-C., Chiu J.-Y., Chou C.-C., Cheng H.-Y. Cryopreservation of a marine microalga,Nannochloropsis oculata (Eustigmatophyceae) [Текст] // Cryobiology.
– 2005. – V. 50. – p. 338–343.65. Youn J.-Y., Hur S. B. Cryopreserved Marine Microalgae Grown Using Different FreezingMethods [Текст] // Algae. – 2009. – V. 24. – I. 4. – p. 257–265.66. Rhodes L., Smith J., Tervit R., Robert R., Adamson J., Adams S., Decker M.
Cryopreservationof economically valuable marine micro-algae in the classes Bacillariophyceae, Chlorophyceae,Cyanophyceae, Dinophyceae, Haptophyceae, Prasinophyceae, and Rhodophyceae [Текст] //Cryobiology. – 2006. – V. 52. – p. 152–156.67. Tzovenisa I., Triantaphyllidis G., Naihong X., Chatzinikolaou E., Papadopoulou K., Xouri G.Tafas T.
Cryopreservation of marine microalgae and potential toxicity of cryoprotectants to theprimary steps of the aquacultural food chain [Текст] // Aquaculture. – 2004. – V. 230. – I. 1-4. –p. 457–473.68. Park H.-K. Long-term Preservation of Bloom-forming Cyanobacteria by Cryopreservation[Текст] // Algae. – 2006. – V. 21. – I. 1. – p. 125–131.69. Tanniou A., Turpin V., Lebeau T. Comparison of cryopreservation methods for the longtermstorage of the marine diatom Haslea ostrearia (simonsen) [Текст] // Cryobiology.
– 2012. – V.65. – p. 45–50.70. Choudhary K. K. Post-storage viability and metabolic stability of immobilized cyanobacteria[Текст] // Nova Hedwigia, – 2010. – V. 90. – I. 1-2. – p. 215—226.71. Efremenko E. N., Tatarinova N. Y. The effect of long-term preservation of bacterial cellsimmobilized in poly(vinyl alcohol) cryogel on their viability and biosynthesis of target metabolites[Текст] // Microbiology – 2007. – V.
76. – I. 3. – p. 336–341.72. Yang Z., Guo R., Xu X., Fan X., Li X. Thermo-alkaline pretreatment of lipid-extractedmicroalgal biomass residues enhances hydrogen production [Текст] // J. Chem. Technol. Biot. –2011. – V. 86. – I. 3. – p. 454–460.73. Halim R., Harun R., Danquah M. K., Webley P. A. Microalgal cell disruption for biofueldevelopment [Текст] // Appl.
Energ. – 2012. – V. 91. – I. 1. – p. 116–121.74. Zhou N., Zhang Y., Gong X., Wang Q., Ma Y. Ionic liquids-based hydrolysis of Chlorellabiomass for fermentable sugars [Текст] // Bioresource Technol. – 2012. – V. 118. – p. 512–517.75. Kim K. H., Choi I. S., Kim H. M., Wi S. G., Bae H. J. Bioethanol production from the nutrientstress-induced microalga Chlorella vulgaris by enzymatic hydrolysis and immobilized yeastfermentation [Текст] // Bioresource Technol.
– 2014. – V. 153. – p. 47–54.16476. Prabakaran P., Ravindran A.D. A comparative study on effective cell disruption methods forlipid extraction from microalgae [Текст] // Lett. Appl. Microbiol. – 2011. – V. 53. – I. 2. – p. 150–154.77. M. A. Rodrigues, da Silva Bon E. P. Evaluation of Chlorella (Chlorophyta) as Source ofFermentable Sugars via Cell Wall Enzymatic Hydrolysis [Текст] // Enzyme Research. – 2011. – V.2011. – p. 1–5.78.
Miranda J. R., Passarinho P. C., Gouveia L. Pre-treatment optimization of Scenedesmusobliquus microalga for bioethanol production [Текст] // Bioresource Technol. – 2012. – V. 104. –p. 342–348.79. Cao Y., Wu J., Zhang J., Li H., Zhang Y., He J. Room temperature ionic liquids (RTILs): Anew and versatile platform for cellulose processing and derivatization [Текст] // Chem. Eng. J.
–2009. – V. 147. – p. 13–21.80. Shill K., Padmanabhan S., Xin Q., Prausnitz J. M., Clark D. S., Blanch H. W. Ionic liquidpretreatment of cellulosic biomass: Enzymatic hydrolysis and ionic liquid recycle [Текст] //Biotechnol. Bioeng. – 2011. – V. 108. – I. 3. – p. 511–520.81. Сашина Е.С., Новоселов Н.П. Влияние строения ионных жидкостей на их растворяющуюспособность по отношению к природным полимерам [Текст] // Журн. общ. Химии. – 2009. –Т. 79. – В.
6. – с. 885–890.82. Zavrel M., Bross D., Funke M., Buchs J., Spiess A. High-throughput screening for ionic liquidsdissolving (lingo-)cellulose [Текст] // Bioresour. Technol. – 2009. – V. 100. – p. 2580–2587.83. Xiao W., Yin W., Xia S., Ma P. The study of factors affecting the enzymatic hydrolysis ofcellulose after ionic liquid pretreatment [Текст] // Carbohyd. Polym.
– 2011. – V. 87. – p. 2019–2023.84. Liu C.-H., Chang C.-Y., Cheng C.-L., Lee D.-J., Chang J.-S. Fermentative hydrogen productionby Clostridium butyricum CGS5 using carbohydrate-rich microalgal biomass as feedstock [Текст]// Int. J. Hydr. Energ. – 2012. – V. 37. – I. 20. – p. 15458–15464.85. Ho S.-H., Huang S.-W., Chen C.-Y., Hasunuma T., Kondo A., Chang J.-S. Bioethanolproduction using carbohydrate-rich microalgae biomass as feedstock [Текст] // BioresourceTechnol. – 2013.
– V. 135.– p. 191–198.86. Zhou N., Zhang Y., Wu X., Gong X., Wang Q. Hydrolysis of Chlorella biomass for fermentablesugars in the presence of HCl and MgCl2 [Текст] // Bioresource Technol. – 2011. – V. 102. – I. 21.– p. 10158–10161.87. Nguyen M. T., Choi S. P., Lee J., Lee J. H., Sim S. J. Hydrothermal acid pretreatment ofChlamydomonas reinhardtii biomass for ethanol production [Текст] // J. Microbiol. Biot.