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Lopez-Llorca LV, Valiente MFC (1993) Study of biodegradation of starch plastic films in soil using
scanning electron microscopy. Micron 457–463
Maurer HW (2009) Starch in the paper industry. In: Starch, 3rd edn. Food science and technology,
pp 657–713
McCracken DA, Cain JR (1980) Amylose in floridean starch. New Phytol 88:67–71
McWilliams A (2017) Biodegradable polymers. BCC Research, Wellesley, MA, USA
Miranda AF, Biswas B, Ramkumar N, Singh R, Kumar J, James A, Lal B, Subudhi S, Bhaskar
T, Mouradov A (2016) Aquatic plant Azolla as the universal feedstock for biofuel production.
Biotechnol Biofuels 9(221):1–17
Muradov N, Taha M, Miranda AF, Kadali K, Gujar A, Rochfort S, Stevenson T, Ball AS, Mouradov
A (2014) Dual application of duckweed and Azolla plants for wastewater treatment and renewable
fuels and petrochemicals production. Biotechnol Biofuels 7(30):1–17
Muthuvelan B, Noro T, Nakamura K (2002) Effect of light quality on the cell integrity in marine
alga Ulva pertusa (Chlorophyceae). Indian J Mar Sci 31:21–25
Negm NA, Zahran MK, Elshafy MRA, Aiad AI (2018) Transformation of Jatropha oil to biofuel
using transition metal salts as heterogeneous catalysts. J Mol Liq 256:16–21
Penfound WT, Earle TT (1948) The biology of the water hyacinth. Ecol Monogr 18(4):447–472
Prabhu M, Chemodanov A, Gottlieb R, Kazir M, Goldberg A (2019) Starch from the sea: the
green macroalga Ulva ohnoi as a potential source for sustainable starch production in the marine
biorefinery. Algal Res 37:215–227
Rahman M, Roy TS, Chowdhury IF (2016) Biochemical composition of different potato varieties
for processing industry in Bangladesh. Agric Sci Pract 2:81–89
Reddy DK, Bhotmange MG (2014) Viscosity of starch: a comparative study of Indian rice (Oryza
sativa L.) varieties. Int Rev Appl Eng Res 4:397–402
Rehman ZU, Anal AK (2018) Enhanced lipid and starch productivity of microalga (Chlorococcum
sp. TISTR 8583) with nitrogen limitation following effective pretreatments for biofuel production.
Biotechnol Rep 20. https://doi.org/10.1016/j.btre.2018.e00298
Robyt J (2008) Starch: structure, properties, chemistry and enzymology. In: Fraser-Reid BO, Tatsuta
K, Thiem J (eds) Glycoscience. Springer, Berlin, Heidelberg
Sarka E, Dvoracek V (2017) Waxy starch as a perspective raw material (a review). Food
Hydrocolloids 69:402–409
Schellart JA, Visser FMW, Zandstra T, Middelhoven WJ (1976) Starch degradation by the mould
Trichoderma viride I. The mechanism of starch degradation. Antonie van Leeuwenhoek 42:229
Sjöö LM, Nilson L (2018) Starch in food: structure, function and applications, 2nd edn. Elsevier, p
58
Smith JL, Summers G, Wong R (2010) Nutrient and heavy metal content of edible seaweeds in
New Zealand. N Z J Crop Hortic Sci 38:19–28
Sullivan-Trainor M (2013) Starches/glucose, global markets. BCC Research, Wellesley, MA, USA
Teli MD, Rohera P, Sheikh J, Singhal R (2009) Application of germinated maize starch in textile
printing. Carbohyd Polym 75(4):599–603
Urbanek AK, Rymowicz W, Mironczuk AM (2018) Degradation of plastic-degrading bacteria in
cold marine habitats. Appl Microbiol Biotechnol 102:7669–7678
Wang Y, Pan S, Jiang Z, Liu S, Feng Y, Gu Z, Li C, Li Z (2019) A novel maltooligosaccharide
forming amylase from Bacillus stearothermophilus. Food Biosci 30:100415
Xu J, Zhao H, Stomp AM, Cheng JJ (2012) The production of duckweed as a source of biofuels.
Biofuels 3:589–601
Xu J, Stomp A, Cheng J (2014) The production of duckweed as a source of biofuels. Biofuels
3(5):589–601
Xu Y, Fang Y, Li Q, Yang G, Guo L, Chen G, Tan L, He K, Jin Y, Zhao H (2018) Turion, an
innovative duckweed-based starch production system for economical biofuel manufacture. Ind
Crops Prod 124:108–114
Yao C, Ai J, Cao X, Xue S, Zhang W (2012) Enhancing starch production of a marine green microalga
Tetraselmis subcordiformis through nutrient limitation. Bioresour Technol 118:438–444
309
Lopez-Llorca LV, Valiente MFC (1993) Study of biodegradation of starch plastic films in soil using
scanning electron microscopy. Micron 457–463
Maurer HW (2009) Starch in the paper industry. In: Starch, 3rd edn. Food science and technology,
pp 657–713
McCracken DA, Cain JR (1980) Amylose in floridean starch. New Phytol 88:67–71
McWilliams A (2017) Biodegradable polymers. BCC Research, Wellesley, MA, USA
Miranda AF, Biswas B, Ramkumar N, Singh R, Kumar J, James A, Lal B, Subudhi S, Bhaskar
T, Mouradov A (2016) Aquatic plant Azolla as the universal feedstock for biofuel production.
Biotechnol Biofuels 9(221):1–17
Muradov N, Taha M, Miranda AF, Kadali K, Gujar A, Rochfort S, Stevenson T, Ball AS, Mouradov
A (2014) Dual application of duckweed and Azolla plants for wastewater treatment and renewable
fuels and petrochemicals production. Biotechnol Biofuels 7(30):1–17
Muthuvelan B, Noro T, Nakamura K (2002) Effect of light quality on the cell integrity in marine
alga Ulva pertusa (Chlorophyceae). Indian J Mar Sci 31:21–25
Negm NA, Zahran MK, Elshafy MRA, Aiad AI (2018) Transformation of Jatropha oil to biofuel
using transition metal salts as heterogeneous catalysts. J Mol Liq 256:16–21
Penfound WT, Earle TT (1948) The biology of the water hyacinth. Ecol Monogr 18(4):447–472
Prabhu M, Chemodanov A, Gottlieb R, Kazir M, Goldberg A (2019) Starch from the sea: the
green macroalga Ulva ohnoi as a potential source for sustainable starch production in the marine
biorefinery. Algal Res 37:215–227
Rahman M, Roy TS, Chowdhury IF (2016) Biochemical composition of different potato varieties
for processing industry in Bangladesh. Agric Sci Pract 2:81–89
Reddy DK, Bhotmange MG (2014) Viscosity of starch: a comparative study of Indian rice (Oryza
sativa L.) varieties. Int Rev Appl Eng Res 4:397–402
Rehman ZU, Anal AK (2018) Enhanced lipid and starch productivity of microalga (Chlorococcum
sp. TISTR 8583) with nitrogen limitation following effective pretreatments for biofuel production.
Biotechnol Rep 20. https://doi.org/10.1016/j.btre.2018.e00298
Robyt J (2008) Starch: structure, properties, chemistry and enzymology. In: Fraser-Reid BO, Tatsuta
K, Thiem J (eds) Glycoscience. Springer, Berlin, Heidelberg
Sarka E, Dvoracek V (2017) Waxy starch as a perspective raw material (a review). Food
Hydrocolloids 69:402–409
Schellart JA, Visser FMW, Zandstra T, Middelhoven WJ (1976) Starch degradation by the mould
Trichoderma viride I. The mechanism of starch degradation. Antonie van Leeuwenhoek 42:229
Sjöö LM, Nilson L (2018) Starch in food: structure, function and applications, 2nd edn. Elsevier, p
58
Smith JL, Summers G, Wong R (2010) Nutrient and heavy metal content of edible seaweeds in
New Zealand. N Z J Crop Hortic Sci 38:19–28
Sullivan-Trainor M (2013) Starches/glucose, global markets. BCC Research, Wellesley, MA, USA
Teli MD, Rohera P, Sheikh J, Singhal R (2009) Application of germinated maize starch in textile
printing. Carbohyd Polym 75(4):599–603
Urbanek AK, Rymowicz W, Mironczuk AM (2018) Degradation of plastic-degrading bacteria in
cold marine habitats. Appl Microbiol Biotechnol 102:7669–7678
Wang Y, Pan S, Jiang Z, Liu S, Feng Y, Gu Z, Li C, Li Z (2019) A novel maltooligosaccharide
forming amylase from Bacillus stearothermophilus. Food Biosci 30:100415
Xu J, Zhao H, Stomp AM, Cheng JJ (2012) The production of duckweed as a source of biofuels.
Biofuels 3:589–601
Xu J, Stomp A, Cheng J (2014) The production of duckweed as a source of biofuels. Biofuels
3(5):589–601
Xu Y, Fang Y, Li Q, Yang G, Guo L, Chen G, Tan L, He K, Jin Y, Zhao H (2018) Turion, an
innovative duckweed-based starch production system for economical biofuel manufacture. Ind
Crops Prod 124:108–114
Yao C, Ai J, Cao X, Xue S, Zhang W (2012) Enhancing starch production of a marine green microalga
Tetraselmis subcordiformis through nutrient limitation. Bioresour Technol 118:438–444
