Environmental Engineering Reference
In-Depth Information
Lamers PP, Janssen M, De Vos RC, Bino RJ, Wijffels
RH (2012) Carotenoid and fatty acid metabolism in
nitrogen-starved Dunaliella salina , a unicellular green
microalga. J Biotechnol 162:21-27
Lohrasbi M, Pourbafrani M, Niklasson C, Taherzadeh MJ
(2010) Process design and economic analysis of a cit-
rus waste biorefinery with biofuels and limonene as
products. Bioresour Technol 101:7382-7388
Luo G, Talebnia F, Karakashev D, Xie L, Zhou Q, Angeli-
daki I (2011) Enhanced bioenergy recovery from rape-
seed plant in a biorefinery concept. Bioresour Technol
102:1433-1439
Maeda K, Owada M, Kimura N, Omata K, Karube I
(1995) CO 2 fixation from the flue gas on coal-fired
thermal power plant by microalgae. Energy Conver
Manage 36:717-720
Menon V, Rao M (2012) Trends in bioconversion of lig-
nocellulose: biofuels, platform chemicals & biorefin-
ery concept. Prog Energy Combust Sci 38:522-550
Munier M, Jubeau S, Wijaya A, Morancais M, Dumay
J, Marchal L, Jaouen P, Fleurence J (2014) Physico-
chemical factors affecting the stability of two pig-
ments: R-phycoerythrin of Grateloupia turuturu and
B-phycoerythrin of Porphyridium cruentum . Food
Chem 150:400-407
Ng DKS (2010) Automated targeting for the synthesis of
an integrated biorefinery. Chem Eng J 162:67-74
Nobre BP, Villalobos F, Barrag£n BE, Oliveira AC, Batista
AP, Marques PASS, Mendes RL, Sovov£ H, Palavra
AF, Gouveia L (2013) A biorefinery from Nannochlo-
ropsis sp. microalga—Extraction of oils and pigments.
Production of biohydrogen from the leftover biomass.
Bioresour Technol 135:128-136
Orfield ND, Keoleian GA, Love NG (2014) A GIS based
national assessment of algal bio-oil production poten-
tial through flue gas and wastewater co-utilization.
Biomass Bioenerg 63:76-85
Pires JCM, Alvim-Ferraz MCM, Martins FG, Sim￵es M
(2012) Carbon dioxide capture from flue gases using
microalgae: engineering aspects and biorefinery con-
cept. Renew Sustain Energy Rev 16:3043-3053
Plaza M, Santoyo S, Jaime L, Garcia-Blairsy Reina G,
Herrero M, Senorans FJ, Ibanez E (2010) Screening
for bioactive compounds from algae. J Pharm Biomed
Anal 51:450-455
Pulz O, Gross W (2004) Valuable products from biotech-
nology of microalgae. Appl Microbiol Biotechnol
65:635-648
Qin S, Liu GX, Hu ZY (2008) The accumulation and
metabolism of astaxanthin in Scenedesmus obliquus
(chlorophyceae). Process Biochem 43:795-802
Ramanna L, Guldhe A, Rawat I, Bux F (2014) The
optimization of biomass and lipid yields of Chlo-
rella sorokiniana when using wastewater supple-
mented with different nitrogen sources. Bioresour
Technol 168:127-135 (http://dx.doi.org/10.1016/j.
biortech.2014.03.064)
Rawat I, Ranjith Kumar R, Mutanda T, Bux F (2011)
Dual role of microalgae: phycoremediation of domes-
biorefinery in Sabah, Malaysia as an underlay for
renewable and sustainable development. Renew Sus-
tain Energy Rev 14:842-848
Gouveia L, Batista AP, Miranda A, Empis J, Raymundo A
(2007) Chlorella vulgaris biomass used as colouring
source in traditional butter cookies. Innov Food Sci
Emerg Technol 8:433-436
Guerin M, Huntley ME, Olaizola M (2003) Haematococ-
cus astaxanthin : applications for human health and
nutrition. Trends Biotechnol 21:210-216
Guti←rrez LF, S£nchez ᅮJ, Cardona CA (2009) Process
integration possibilities for biodiesel production from
palm oil using ethanol obtained from lignocellulosic
residues of oil palm industry. Bioresour Technol
100:1227-1237
Guldhe A, Singh B, Rawat I, Ramluckan K, Bux F (2014)
Efficacy of drying and cell disruption techniques on
lipid recovery from microalgae for biodiesel produc-
tion. Fuel 128:46-52
Hammond GP, Seth SM (2013) Carbon and environmen-
tal footprinting of global biofuel production. Appl
Energy 112:547-559
Hernandez EM, Campbell G, Sadhukhan J (2013) Eco-
nomic value and environmental impact (EVEI)
analysis of biorefinery systems. Chem Eng Res Des
91:1418-1426
Ho SH, Chan MC, Liu CC, Chen CY, Lee WL, Lee DJ,
Chang JS (2014) Enhancing lutein productivity of an
indigenous microalga Scenedesmus obliquus FSP-3
using light-related strategies. Bioresour Technol
152:275-282
Huo S, Wang Z, Zhu S, Zhou W, Dong R, Yuan Z (2012)
Cultivation of Chlorella zofingiensis in bench-scale
outdoor ponds by regulation of pH using dairy waste-
water in winter, South China. Bioresour Technol
121:76-82
Inbaraj BS, Chien JT, Chen BH (2006) Improved high
performance liquid chromatographic method for
determination of carotenoids in the microalga Chlo-
rella pyrenoidosa . J Chromatogr A 1102:193-199
Isik O, Sarihan E, Kusvarun E, Gul O, Erbatur O (1999)
Comparison of the fatty acid composition of the fresh-
water fish larvae Tilapia zillii , the rotifer Brachionus
calyciflorus , and the microalgae Scenedesmus abun-
dans , Monoraphidium minitumand Chlorella ᅰulgaris
in the algae-rotifer-fish larvae food chains. Aquacul-
ture 174:299-311
Jayappriyan KR, Rajkumar R, Venkatakrishnan V, Nagaraj
S, Rengasamy R (2013) In vitro anticancer activity of
natural ʲ-carotene from Dunaliella salina EU5891199
in PC-3 cells. Biomed Prev Nutr 3:99-105
Johnson E, Tschudi D (2012) Baseline effects on car-
bon footprints of biofuels: the case of wood. Environ
Impact Assess 37:12-17
Jung KA, Lim SR, Kim Y, Park JM (2013) Potentials of
macroalgae as feedstocks for biorefinery. Bioresour
Technol 135:182-190
Koopmans MV, Wijffels RH, Barbosa MJ, Eppink MHM
(2013) Biorefinery of microalgae for food and fuel.
Bioresour Technol 135:142-149
Search WWH ::




Custom Search