Page 553 - Refining Biomass Residues for Sustainable Energy and Bioproducts
P. 553
Bioconversion of marine waste biomass for biofuel and value-added products recovery 501
Al-Saif, S.S.A., Abdel-Raouf, N., El-Wazanani, H.A., Aref, I.A., 2014. Antibacterial sub-
stances from marine algae isolated from Jeddah coast of Red sea, Saudi Arabia. Saudi J.
Biol. Sci. 21, 57 64.
Amulya, K., Dahiya, S., Mohan, S.V., 2016. Building a bio-based economy through waste
remediation: innovation towards sustainable future. Bioremediation and Bioeconomy.
Elsevier, pp. 497 521.
Ariunbaatar, J., Panico, A., Esposito, G., Pirozzi, F., Lens, P.N.L., 2014. Pretreatment meth-
ods to enhance anaerobic digestion of organic solid waste. Appl. Energy 123, 143 156.
Arvanitoyannis, I.S., 2010. Waste Management for the Food Industries. Academic Press.
Banu, J.R., Kavitha, S., 2017. In: Singh, L., Kalia, V.C. (Eds.), Various Sludge
Pretreatments: Their Impact on Biogas Generation BT Waste Biomass Management
A Holistic Approach. Springer International Publishing, Cham, pp. 39 71.
Banu, J.R., Do Khac, U., Kumar, S.A., Ick-Tae, Y., Kaliappan, S., 2012. A novel method of
sludge pretreatment using the combination of alkalis. J. Environ. Biol. 33, 249 253.
Banu, J.R., Ushani, U., Kannah, R.Y., 2017. In: Purohit, H.J., Kalia, V.C., Vaidya, A.N.,
Khardenavis, A.A. (Eds.), Activated Sludge Process and Energy BT Optimization and
Applicability of Bioprocesses. Springer Singapore, Singapore, pp. 187 210.
Banu, J.R., Kannah, R.Y., Kavitha, S., Gunasekaran, M., Kumar, G., 2018a. Novel insights
into scalability of biosurfactant combined microwave disintegration of sludge at alkali
pH for achieving profitable bioenergy recovery and net profit. Bioresour. Technol. 267,
281 290.
Banu, J.R., Sugitha, S., Kannah, R.Y., Kavitha, S., Yeom, I.T., 2018b. Marsilea spp.—a
novel source of lignocellulosic biomass: effect of solubilized lignin on anaerobic biode-
gradability and cost of energy products. Bioresour. Technol. 255, 220 228.
Banu, J.R., Kannah, R.Y., Kavitha, S., Gunasekaran, M., Yeom, I.T., Kumar, G., 2018c.
Disperser-induced bacterial disintegration of partially digested anaerobic sludge for effi-
cient biomethane recovery. Chem. Eng. J. 347, 165 172.
Banu, J.R., Parvathy Eswari, A., Kavitha, S., Kannah, R.Y., Kumar, G., Jamal, M.T., et al.,
2019. Energetically efficient microwave disintegration of waste activated sludge for bio-
fuel production by zeolite: quantification of energy and biodegradability modelling. Int.
J. Hydrogen Energy 44, 2274 2288.
Ben Yahmed, N., Jmel, M.A., Ben Alaya, M., Bouallagui, H., Marzouki, M.N., Smaali, I.,
2016. A biorefinery concept using the green macroalgae Chaetomorpha linum for the
coproduction of bioethanol and biogas. Energy Convers. Manage. 119, 257 265.
Brennan, L., Owende, P., 2010. Biofuels from microalgae—a review of technologies for pro-
duction, processing, and extractions of biofuels and co-products. Renew. Sustain.
Energy Rev. 14, 557 577.
Cabrol, L., Marone, A., Tapia-Venegas, E., Steyer, J.-P., Ruiz-Filippi, G., Trably, E., 2017.
Microbial ecology of fermentative hydrogen producing bioprocesses: useful insights for
driving the ecosystem function. FEMS Microbiol. Rev. 41, 158 181.
Calejo, M.T., Almeida, A.J., Fernandes, A.I., 2012. Exploring a new jellyfish collagen in the
production of microparticles for protein delivery. J. Microencapsul. 29, 520 531.
Canakci, M., Sanli, H., 2008. Biodiesel production from various feedstocks and their effects
on the fuel properties. J. Ind. Microbiol. Biotechnol. 35, 431 441.
Cantrell, K.B., Ducey, T., Ro, K.S., Hunt, P.G., 2008. Livestock waste-to-bioenergy genera-
tion opportunities. Bioresour. Technol. 99, 7941 7953.
Chakraborty, D., Karthikeyan, O.P., Selvam, A., Wong, J.W.C., 2018. Co-digestion of food
waste and chemically enhanced primary treated sludge in a continuous stirred tank reac-
tor. Biomass Bioenergy 111, 232 240.

