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1)  separate hydrolysis and fermentation
分步糖化发酵
2)  simultaneous saccharification and fermentation
同步糖化发酵
1.
Fuel ethanol production from kitchen garbage by simultaneous saccharification and fermentation process using Zymomonas mobilis;
运动发酵单胞菌同步糖化发酵厨余垃圾制取乙醇
2.
Study of simultaneous saccharification and fermentation for steam exploded wheat straw to ethanol;
蒸汽爆破麦草同步糖化发酵转化乙醇的研究
3.
Hydrogen production from rice straw by simultaneous saccharification and fermentation (SSF) was studied using the Klebsiella oxytoca HP1 in this report.
实验以产酸克雷伯氏菌(Klebsiella oxytoca)HP1为产氢菌株,以稻草粉为产氢底物,进行同步糖化发酵(Simultaneous Saccharification and Fermentation,SSF)产氢。
3)  SSF
同步糖化发酵
1.
Cellulase Synergetic Experiment and the SSF of Recombinant Yeast;
纤维素酶系协同作用实验及重组酵母的同步糖化发酵
2.
This research was about the breeding ofβ-glucosidase-producing strains, the optimum condition of SSF for enhancing hydrolytic efficiency and ethanol yield and the mix-cultured of Penicillium decumbens JU-A10 with Aspergillus aculeatus L22.
本论文以玉米芯深加工生产木糖工业产生的废渣-木糖渣为原料,初步探讨了同步糖化发酵(SSF)木糖渣生产乙醇的技术。
4)  simultaneous saccharification and fermentation (SSF)
同步糖化发酵
1.
Hydrogen production from rice straw by simultaneous saccharification and fermentation (SSF) was studied using the Klebsiella oxytoca HP1 in this report.
以产酸克雷伯氏菌(Klebsiella oxytoca)HP1为产氢菌株,以稻草粉为产氢底物,进行同步糖化发酵(Simultaneous Saccharification and Fermentation,SSF)产氢。
5)  simultaneous saccharification and cofermentation (SSCF)
同步糖化共发酵
6)  simultaneous saccharification and fermentation(SSF)
同步糖化发酵
1.
Furfural residue pretreated by overliming is fermented to ethanol by batch simultaneous saccharification and fermentation(SSF) in this paper.
以过碱化处理的糠醛渣为原料,采用正交试验法进行同步糖化发酵(SSF)转化乙醇工艺条件及过程研究。
2.
The ethanol production with simultaneous saccharification and fermentation(SSF)by Zymomonas mobilis 232B using fresh sweet potato as raw material was studied.
对运动发酵单胞菌232B同步糖化发酵(SSF)鲜甘薯快速生产燃料乙醇的条件进行了研究。
补充资料:分步结晶
      一种古老的用于分离化学性质相近的金属化合物的方法。此法依靠化合物间溶解度的微小差别,通过重复操作而达到分离的目的。钽、铌复合氟化物(如K2TaF7和K2NbOF5·H2O)的分步结晶,锆、铪复合氟化物(如K2ZrF6和K2HfF6)的分步结晶,铷、钾草酸盐的分步结晶,轻稀土硝酸盐和硝酸铵(或硝酸镁)复盐的分步结晶等,都曾经在工业上应用。此法近年来虽然多被溶剂萃取法和离子交换法所代替,但在某些条件下仍然应用。
  

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