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羊肉的减菌化研究
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作者 孙卫青 马俪珍 《肉类工业》 2004年第3期37-39,共3页
阻碍我国低温肉制品发展的一个很重要的原因就是原料本身污染严重。本试验以羊肉为例,对其进行了减菌化处理,结果表明处理的最佳有机酸组合为:醋酸2%,双乙酸钠3%,抗坏血酸2%,硫代硫酸钠2%,山梨酸钾1%。减菌化效果可使原料初始菌数... 阻碍我国低温肉制品发展的一个很重要的原因就是原料本身污染严重。本试验以羊肉为例,对其进行了减菌化处理,结果表明处理的最佳有机酸组合为:醋酸2%,双乙酸钠3%,抗坏血酸2%,硫代硫酸钠2%,山梨酸钾1%。减菌化效果可使原料初始菌数由数量级105降到103。 展开更多
关键词 低温肉制品 羊肉 减菌化处理 有机酸组合
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Study on New Pretreatment Combining Dilute Acid Treatment and Organic Solvent Water / Ethanol for Biorefinery: Application to Switch Grass
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作者 Dachun Gong Yingping Huang +3 位作者 M. Holtman Kevin Ruiping Li Franqui-Espiet Diana J. Orts William 《Journal of Life Sciences》 2010年第3期25-32,共8页
Switch grass was developed as a pioneer energy crop in USA with great industrial prospect. It contains about 60% sugars and 18% lignin. The purpose of this research is to find pretreatment process to fractionate cellu... Switch grass was developed as a pioneer energy crop in USA with great industrial prospect. It contains about 60% sugars and 18% lignin. The purpose of this research is to find pretreatment process to fractionate cellulose, hemicellulose and lignin from switch grass to obtain much more useful chemicals and enhance the residue solid to be hydrolyzed by enzymes. The six different pretreatment methods were studied, such as hot water pretreatment (HWP) alone, dilute acid pretreatment (DAP), ammonia pretreatment (AP), lime pretreatment (LP), organosolv water / ehanol pretreatment (OWEP), and organosolv water / acetone pretreatment (OWAP). It was the best method combining DAP with OWEP because the hemicellulose sugars were recovered in the first residual liquid while a varied amount of cellulose was retained in the residual solid and the lignin fraction was obtained by simply adjusting the pH from the second liquid. The result shows the optimal two-stage process consisted of the first stage DAP at 428 K for 7 min with 0.8% sulfuric acid, resulting in 79.82% glucose recovery yield and 98.74% xylose removal and the second stage OWEP at 468K for 20 min in 45% (v / v) ethanol with 0.4% NaOH, resulting in 62% total glucose yield 99% xylose and 80% lignin removal. After enzymatic hydrolysis, the glucose yield was up to 92.6%, compared with 16% yield from untreated switch grass. Scanning electron microscopy (SEM) highlighted the differences in switch grass structure from the various pretreatment methods during biomass fractionation. 展开更多
关键词 Switch grass FRACTIONATION dilute acid pretreatment organosolv pretreatment.
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