Page 558 - Refining Biomass Residues for Sustainable Energy and Bioproducts
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506 Refining Biomass Residues for Sustainable Energy and Bioproducts
Packyam, G.S., Kavitha, S., Adish Kumar, S., Kaliappan, S., Yeom, I.T., Banu, J.R., 2015.
Effect of sonically induced deflocculation on the efficiency of ozone mediated partial
sludge disintegration for improved production of biogas. Ultrason. Sonochem. 26,
241 248.
Pham, T.N., Nam, W.J., Jeon, Y.J., Yoon, H.H., 2012. Volatile fatty acids production from
marine macroalgae by anaerobic fermentation. Bioresour. Technol. 124, 500 503.
Plaza, M., Herrero, M., Cifuentes, A., Ibanez, E., 2009. Innovative natural functional ingredi-
ents from microalgae. J. Agric. Food Chem. 57, 7159 7170.
Poli, A., Anzelmo, G., Nicolaus, B., 2010. Bacterial exopolysaccharides from extreme marine
habitats: production, characterization and biological activities. Mar. Drugs 8,
1779 1802.
Reddy, G.S.N., Matsumoto, G.I., Shivaji, S., 2003. Sporosarcina macmurdoensis sp. nov.,
from a cyanobacterial mat sample from a pond in the McMurdo Dry Valleys,
Antarctica. Int. J. Syst. Evol. Microbiol. 53, 1363 1367.
Sadik, M.W., El Shaer, H.M., Yakot, H.M., 2010. Recycling of agriculture and animal farm
wastes into compost using compost activator in Saudi Arabia. J. Int. Environ. Appl. Sci.
5, 397 403.
Sa ´nchez, J.F., Ferna ´ndez, J.M., Acie ´n, F.G., Rueda, A., Pe ´rez-Parra, J., Molina, E., 2008.
Influence of culture conditions on the productivity and lutein content of the new strain
Scenedesmus almeriensis. Process Biochem. 43, 398 405.
Sanjeewa, K.K.A., Kim, E.-A., Son, K.-T., Jeon, Y.-J., 2016. Bioactive properties and poten-
tials cosmeceutical applications of phlorotannins isolated from brown seaweeds: a
review. J. Photochem. Photobiol. B: Biol. 162, 100 105.
Santian ˜ez, W.J.E., Trono Jr., G.C., 2013. Taxonomy of the Genus Sargassum (Fucales,
Phaeophyceae) from Alabat Island, Quezon, Northeastern Philippines. Sci. Diliman 25,
27 49.
Smaal, A.C., Wijsman, J.W.M., 2010. Exploitation and restoration of bivalve shellfish
resources: case studies presented at the Tenth International Conference on Shellfish
Restoration. Aquac. Int. 18, 1 2.
Spolaore, P., Joannis-Cassan, C., Duran, E., Isambert, A., 2006. Commercial applications of
microalgae. J. Biosci. Bioeng. 101, 87 96.
Tamilarasan, K., Kavitha, S., Banu, J.R., Arulazhagan, P., Yeom, I.T., 2017. Energy-efficient
methane production from macroalgal biomass through chemo disperser liquefaction.
Bioresour. Technol. 228, 156 163.
Tamilarasan, K., Kavitha, S., Selvam, A., Rajesh Banu, J., Yeom, I.T., Nguyen, D.D., et al.,
2018. Cost-effective, low thermo-chemo disperser pretreatment for biogas production
potential of marine macroalgae Chaetomorpha antennina. Energy 163, 533 545.
Tan, I.S., Lee, K.T., 2014. Enzymatic hydrolysis and fermentation of seaweed solid wastes
for bioethanol production: an optimization study. Energy 78, 53 62.
Taneja, A., Singh, H., 2012. Challenges for the delivery of long-chain n-3 fatty acids in func-
tional foods. Annu. Rev. Food Sci. Technol. 3, 105 123.
Trivedi, N., Gupta, V., Reddy, C.R.K., Jha, B., 2013. Enzymatic hydrolysis and production
of bioethanol from common macrophytic green alga Ulva fasciata Delile. Bioresour.
Technol. 150, 106 112.
Tsui, M.T.K., Cheung, K.C., Tam, N.F.Y., Wong, M.H., 2006. A comparative study on metal
sorption by brown seaweed. Chemosphere 65, 51 57.
Vavilin, V.A., Angelidaki, I., 2005. Anaerobic degradation of solid material: importance of
initiation centers for methanogenesis, mixing intensity, and 2D distributed model.
Biotechnol. Bioeng. 89, 113 122.

