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BIOHYDROGEN OPTIMISATION
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2018-01-08
相关数据集
东北大学梭菌
该菌株在CM0244培养基上35℃生长良好,需氧类型为厌氧可用于分类;研究。可采用-80℃冰箱冻结法;真空冷冻干燥法进行保藏。革兰氏阳性杆菌、极生鞭毛可运动,可产生芽胞、主要细胞脂肪酸C14:0和C16:0;DNA的 (G+C)mol%:41.5%,GenBank序列接受号: KT824779。发酵生物制氢研究,分类学研究。
中国科技资源共享网2026-07-07 更新120
How post-translational modification of nitrogenase is circumvented in Rhodopseudomonas palustris strains that produce hydrogen gas constitutively. Rhodopseudomonas palustris
Characterization of post-translational modification of nitrogenase in Rhodopseudomonas palustris strains that produce hydrogen gas constitutively. Overall design: To characterize the effect of yeast e
NIAID Data Ecosystem60
HydA1 purification yields and specific activities from various expression hosts.
aHydA1 specific activities for hydrogen evolution by MV assay; 1 U = µmol hydrogen min−1 mg−1.bHydA1 mg L−1 of cell culture.cIron content as mol iron (mol HydA1)−1; NR, not reported.
Figshare2015-12-02 更新30
Data_Sheet_1_Bioremediation of Crude Glycerol by a Sustainable Organic–Microbe Hybrid System.docx
Klebsiella pneumoniae with crude glycerol-utilizing and hydrogen (H2)-producing abilities was successfully isolated from return activated sludge from Shatin Sewage Treatment Works. The H2 production s
NIAID Data Ecosystem80
E. coli BW25113 frdC vs. E. coli BW25113 HW2. Escherichia coli
Glycerol is an attractive feedstock for biofuels since it accumulates as a byproduct during biodiesel operations; hence, it is interesting to consider converting glycerol to hydrogen using the formate
NIAID Data Ecosystem40



