{"id":7023,"date":"2022-09-19T04:38:13","date_gmt":"2022-09-19T04:38:13","guid":{"rendered":"https:\/\/file.currentschoolnews.com\/?post_type=product&p=7023"},"modified":"2022-09-19T13:17:24","modified_gmt":"2022-09-19T13:17:24","slug":"enhancement-of-cellulosic-ethanol-production-through-aspergillums-modification","status":"publish","type":"product","link":"https:\/\/pastexamquestions.com\/product\/enhancement-of-cellulosic-ethanol-production-through-aspergillums-modification\/","title":{"rendered":"Enhancement of Cellulosic Ethanol Production through Aspergillums Modification"},"content":{"rendered":"

– Enhancement of Cellulosic Ethanol Production through Aspergillums Modification –<\/strong><\/span><\/p>\n

Download Enhancement of Cellulosic Ethanol Production through Aspergillums Modification<\/strong><\/span>. Chemical Engineering students who are writing their projects can get this material to aid their research work.<\/span><\/span><\/p>\n

Abstract<\/b><\/span><\/h2>\n

Simultaneous Saccharification and Fermentation (SSF) were carried out to produce ethanol from maize stalk in 500ml conical flask. Aspergillus niger strains were isolated from four difference sources, maize stalk, soil, bambaranut, rotten wood.<\/p>\n

Cellulose degrading ability was screened by zone of clearance carried out by simple agar method.. Apergillus strain from rotten wood (ANRW) produced the largest zone of clearance of 6.5mm; hence it was selected for further studies.<\/p>\n

The effect of pH, temperature, substrate particle size, and substrate concentration were studies and optimized to be 5.0, 3o C, 300um, 3% respectively.Aspergillus niger was modified using UV irradiation technique by varying the exposure timings.<\/p>\n

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Introduction<\/span><\/span><\/strong><\/span><\/h2>\n

In view of continuously rising petroleum cost and dependence upon fossil fuel resources, considerable attention has been focused on alternative energy resources.<\/p>\n

Production of ethanol or ethyl alcohol [CH3CH2CH2OH] from biomass is one way to reduce both the cost of consumption of crude oil and environmental pollution. Ethanol represents an important, renewable liquid fuel for motor vehicles (Lewis, 1996).<\/p>\n

The use of bioethanol as an alternative motor fuel has been steadily increasing around the world for a number of reasons. Domestic production and use of ethanol for fuel can decrease dependence on foreign oil, reduce trade deficits, create jobs in rural area, reduce air pollution, and reduce global climate change due to carbon dioxide buildup.<\/p>\n

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