全部文献期刊学位论文会议报纸专利标准年鉴图书|学者科研项目
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作者:Supriya Mathur , A. V. Umakanth , V. A. Tonapi ...
来源:[J].Biotechnology for Biofuels(IF 5.552), 2017, Vol.10 (1)Springer
摘要:Sweet sorghum is a promising target for biofuel production. It is a C4 crop with low input requirements and accumulates high levels of sugars in its stalks. However, large-scale planting on marginal lands would require improved varieties with optimized biofuel-related traits and ...
作者:Na Sui , Zhen Yang , Mingli Liu ...
来源:[J].BMC Genomics(IF 4.397), 2015, Vol.16 (1)Springer
摘要:Abstract(#br) Background(#br)Sweet sorghum is an annual C4 crop considered to be one of the most promising bio-energy crops due to its high sugar content in stem, yet it is poorly understood how this plant increases its sugar content in response to salt stress. In response to hig...
作者:Xiaomin Xie , Tingting Zhang , Liming Wang ...
来源:[J].Biotechnology for Biofuels(IF 5.552), 2017, Vol.10 (1)Springer
摘要:... This study is intended to evaluate the life-cycle water footprints (WF) of biofuels derived from several potential non-edible feedstocks including cassava, sweet sorghum, and Jatropha curcas in China. Different water footprint types including blue water, green water, and grey...
作者:Shaolong Sun , Jialong Wen , Shaoni Sun ...
来源:[J].Biotechnology for Biofuels(IF 5.552), 2015, Vol.8 (1)Springer
摘要:... In this study, the sweet sorghum stems were subjected to various hydrothermal pretreatment processes (110°C to 230°C, 0.5 to 2.0 h), and the focus of this work is to systematically evaluate the degraded products of polysaccharides and lignins in the liquor phase obtained ...
作者:Niphaphat Phukoetphim , Apilak Salakkam , Pattana Laopaiboon ...
来源:[J].Electronic Journal of Biotechnology(IF 0.827), 2017, Vol.26, pp.84-92Elsevier
摘要:... Improvement of ethanol production efficiency from sweet sorghum juice (SSJ) under normal gravity (NG, 160 g/L of sugar), high gravity (HG, 200 and 240 g/L of sugar) and very high gravity (VHG, 280 and 320 g/L of sugar) conditions by nutrient supplementation and alternative...
作者:Lantian Ren , Kara Cafferty , Mohammad Roni ...
来源:[J].Energies(IF 1.844), 2015, Vol.8 (6), pp.5577-5597DOAJ
摘要:... In this paper, we quantify the logistics cost of corn stover and sweet sorghum in China under different scenarios. We analyze three scenarios of corn stover logistics from northeast China and three scenarios of sweet sorghum stalks logistics from Inner Mongolia in China. The ...
作者:Sunan Nuanpeng , Sudarat Thanonkeo , Preekamol Klanrit ...
来源:[J].Brazilian Journal of Microbiology(IF 0.762), 2017Elsevier
摘要:Abstract(#br)Ethanol production from sweet sorghum juice (SSJ) using the thermotolerant Saccharomyces cerevisiae strain DBKKUY-53 immobilized in an alginate-loofah matrix (ALM) was successfully developed. As found in this study, an ALM with dimensions of 20 × 20 × 5 mm 3 is ...
作者:Daira Aragon , Howard P. Viator , Franz S. Ehrenhauser
来源:[J].BioEnergy Research(IF 4.25), 2017, Vol.10 (3), pp.783-791Springer
摘要:Sweet sorghum ( Sorghum bicolor L. Moench) is a promising bioenergy crop for the production of ethanol and bio-based products. Sugarcane billet harvesters can be used to harvest sweet sorghum. Multiple extractor fan speed settings of these harvesters allow for separating the ...
作者:Michael E. Salassi , Alessandro Holzapfel , Brian M. Hilbun ...
来源:[J].BioEnergy Research(IF 4.25), 2017, Vol.10 (3), pp.772-782Springer
摘要:... For the southeastern region of the USA, energy cane and sweet sorghum have been identified as two feedstock crops with the greatest potential for further development of production. This study utilized field trial data from yield studies in Louisiana to develop estimates of fe...
作者:Atiya Techaparin , Pornthap Thanonkeo , Preekamol Klanrit
来源:[J].Biotechnology Letters(IF 1.853), 2017, Vol.39 (10), pp.1521-1527Springer
摘要:To investigate gene expression profiles of the thermotolerant yeast Saccharomyces cerevisiae strain KKU-VN8, a potential high-ethanol producer, in response to various stresses during high-temperature ethanol fermentation using sweet sorghum juice (SSJ) under optimal conditions.

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