会议论文详细信息
International Conference on Biomass: Technology, Application, and Sustainable Development
Varieties of sweet sorghum Super-1 and Super-2 and its equipment for bioethanol in Indonesia
生物科学;能源学;经济学
Pabendon, M.B.^1 ; Efendi, R.^1 ; Santoso, S.B.^1 ; Prastowo, B.^2
Indonesia Cereals Research Institute, Maros, Indonesia^1
Indonesia Center for Estate Crops Research and Development, Bogor, Indonesia^2
关键词: Alternative sources of energy;    Bio-ethanol production;    Fermentation time;    Planting seasons;    Potential sources;    Processing equipment;    Renewable energies;    Research institutes;   
Others  :  https://iopscience.iop.org/article/10.1088/1755-1315/65/1/012054/pdf
DOI  :  10.1088/1755-1315/65/1/012054
学科分类:生物科学(综合)
来源: IOP
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【 摘 要 】

The demands for alternative sources of energy are currently growing because people now are more aware of the many negative impacts fossil fuel gives to the environment. Plant based renewable energy provides potential sources of energy with advantages of cleaner fuel effect and capability of integration with food crop production. Sorghum have been considered to be a highly potential source of food, feed and fuel, especially sweet stalk sorghum that posses both functions as source of food from its grain and fuel made from its stalk juice. Sorghum varieties are well known to have excellent adaptability in marginal areas, especially drought prone areas where other food crops are unable to thrive. The current paper aimed to share ongoing research on many functional uses of sweet stalk sorghum varieties released at Indonesian Cereals Research Institute (ICERI). Among many varieties that had been released were two sweet stalk sorghum varieties SUPER-1 and SUPER-2 released in 2013 that stands out in biomass yield and bioethanol production. Based on various researches conducted at different location and planting season, yield potential of biomass ranged at 30 - 40 t/ha with higher yield occurred during dry season. Stalk juice sugar content in brix were found to be higher in dry season ranged at 13.6 % to 18.4 %, and the amount of juice stalk was obtained at about 30-50 % from total biomass yield. Furthermore, bioethanol production from stalk juice after fermentation was at the range of 8 to 10 % from total stalk juice volume. Modification of processing equipment of bioethanol have also been carried out and was able to increased the concentration of ethanol being distilled from 85% -92% to 90% -95%. Another result obtained was able to decreased fermentation time from 14-21 days to 6-10 days. Furthermore, the yield of ethanol from juice was also from an average of 4.95% to 6.75%.

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