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11篇 您的检索式:作者名="Betiku"
    题名 作者 年代 出处 被引量
1Cellulase production by Aspergillus flavus Linn Isolate NSPR 101 fermented in sawdust,bagasse and corncob显示文摘Ojumu Tunde Victor Solomon Bamidele Ogbe Betiku Eriola Layokun Stephen Kolawole Amigun Bamikole 2003African Journal of Biotechnology2003,2,6:1
2Lipid profile in HIV/AIDS patients in Nigeria显示文摘Adewole OO Eze S Betiku Ye 0,,02:1
3Modeling and optimization of bioethanol production from breadfruit starch hydrolyzate vis--vis response surface methodology and artificial neural network 显示文摘BETIKU E TAIWO A E 2015Renewable Energy2015,74,:1
4Statistical approach to the optimizationof citric acid production using filamentous fungusA spergillus niger grown on sweet potato starch hydrolyzate显示文摘BETIKU E ADESINA 0 A 2013Biomass and Bioenergy2013,55,:1
5Lipid profile in HIV/AIDS patients in Nigeria显示文摘Adewole OO Eze S Betiku Ye Anteyi E 2010African Health Sciences2010,10,2:1
6Optimization of cellulase production by Aspergillus flavus Linn isolate NSPR 101 grown on bagasse显示文摘SOLOMON B O AMIGUN B BETIKU E 1999JNSChE1999,16,:1
7Cellulase pro- duction by aspergillus flavus linn isolate NSPR 101 fermented in sawdust, bagasse and corncob显示文摘OJUMU T V SOLOMON B O BETIKU E 2003African Journal of Bio- technology2003,2,6:1
8Lipid profile in HIV/AIDS patients in Nigeria显示文摘Adewole OO Eze S Betiku Y 0,,:1
9Optimization of Bau- hinia monandra seed oil extraction via artificial neural network and response surface methodology: A potential biofucl candidate 显示文摘Akintunde A M Ajala S O Betiku E 2015Ind Crop Prod2015,67,:1
10查看详情显示文摘Solomon B O Amigun B Betiku E T 0,,:1
11Bioprocessing of underutilized Artocarpus altilis fruit to bioethanol by Saccharomyces cerevisiae:A fermentation condition improvement study显示文摘Raw materials availability needed for commercial bioethanol production is one of the chal-lenges against its global adoption.Identifying rich,cheap,underused,and readily available starch sources for bioethanol production could help address the problem.Thus,this current study inves-tigated the bioconversion of underutilized Artocarpus altilis(breadfruit)starch to bioethanol using Saccharomyces cerevisiae.The effects of the essential fermentation conditions(fermentation time,breadfruit starch hydrolysate(BSH)concentration,pH,and inoculum size)and their interactions on bioethanol production were investigated.The central composite design was used to generate twenty-one experiments conducted under batch fermentation conditions in the laboratory.The breadfruit starch hydrolysis led to a BSH concentration of 108.9 g/L under a starch concentration of 122 g/L,microwave output of 720 W,and an incubation time of 6 min.For the fermentation of BSH,maximum bioethanol production of 4.99%(V)was reached under the cultivation conditions of BSH concentration of 80 g/L,medium pH of 4.7,inoculum size of 2%(V),and fermentation time of 20.41 h.Except for pH,the impact of each parameter on the bioethanol production was in this order:BSH concentration,inoculum size,and fermentation time.While for the interactions amongst the parameters,the impact is in this order:BSH concentration and inoculum size;BSH concentration and fermentation time;and fermentation time and inoculum size.The results of this study indicated breadfruit starch could be hydrolyzed using acid hydrolysis and microwave irradiation in a relatively short time.The BSH obtained could potentially add to other substrates for bioethanol production.Eriola Betiku Ebenezer O Olatoye Lekan M.Latinwo 2023Journal of Bioresources and Bioproducts2023,8,2:0
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