Efficient ethanol production from dried oil palm trunk treated by hydrothermolysis and subsequent enzymatic hydrolysis

Author:

Eom In-Yong,Yu Ju-Hyun,Jung Chan-Duck,Hong Kyung-Sik

Funder

MOTIE/KEIT in South Korea

Publisher

Springer Science and Business Media LLC

Subject

Management, Monitoring, Policy and Law,General Energy,Renewable Energy, Sustainability and the Environment,Applied Microbiology and Biotechnology,Biotechnology

Reference23 articles.

1. Wahab AG. Malaysia oilseeds and products. 2013. [http://gain.fas.usda.gov/Recent%20GAIN%20Publications/Oilseeds%20and%20Products%20Annual_Kuala%20Lumpur_Malaysia_3-18-2013.pdf]. Accessed 13 January 2014.

2. Wiyono IE, Slette J. Indonesia oilseeds and products. 2013. [http://gain.fas.usda.gov/Recent%20GAIN%20Publications/Oilseeds%20and%20Products%20Annual_Jakarta_Indonesia_3-28-2013.pdf]. Accessed 13 January 2014.

3. Mumtaza T, Yahaya NA, Abd-Aziz S, Abdul Rahman N, Yee PL, Shirai Y, et al. Turning waste to wealth-biodegradable plastics polyhydroxyalkanoates from palm oil mill effluent - a Malaysian perspective. J Clean Prod. 2010;18:1393–402.

4. Shahirah MNN, Gimbun J, Pang SF, Zakria RM, Cheng CK, Chua GK, et al. Influence of nutrient addition on the bioethanol yield from oil palm trunk sap fermented by Saccharomyces cerevisiae. J Ind Eng Chem. 2014. doi:10.1016/j.jiec.2014.08.018.

5. Chooklin S, Kaewsichan L, Kaewsrichan J. Potential utilization of sap from oil palm (Elaeis guineensis) for lactic acid production by lactobacillus casei. J Sustain Energy Environ. 2011;2:99–104.

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