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1.
利用固定化米根霉在三相流化床中发酵生成L-乳酸   总被引:6,自引:0,他引:6  
用聚氨酯泡沫吸附固定米根霉菌丝,在三相流化床中对葡萄糖、木糖以及木糖渣的纤维素酶解液等不同碳源进行L-乳酸发酵研究,并对游离菌丝和固定化菌丝发酵L-乳酸进行了比较。结果表明,聚氨酯泡沫是米根霉的良好载体,具有经济、高效等特点。实验条件下,不同碳源的乳酸转化率分别为:葡萄糖,82.5%;木糖,53.8%;木糖渣酶水解液,71.9%。三相流化床中固定化米根霉产酸速率(对葡萄糖)为19.1g.h^-1.  相似文献   

2.
采用海藻酸钙包埋法固定化米根霉(Rhizopusoryzae),菌体在颗粒表面形成一层菌丝膜,有利于氧气和其它营养物质的传递;三相流化床生物反应器结构简单、动力消耗低、反应器内物质混合均匀、氧传递量大于固定化米根霉的需氧量,非常适合好氧的固定化米根霉发酵。利用它进行重复使用固定化米根霉的间歇发酵或连续发酵制备L 乳酸,整个过程一般可持续两周以上。固定化米根霉的产酸速率达16~18g/L bead.hr,得率为70~80%,反应器生产能力约为传统搅拌罐的3倍。采用海藻酸钙包埋法固定化米根霉在三相流化床生物反应器中进行发酵可以有效地提高L 乳酸的生产效率,具有良好的工业应用前景。  相似文献   

3.
利用固定化米根霉在三相流化床中发酵生成L-乳酸   总被引:3,自引:0,他引:3  
用聚氨酯泡沫吸附固定米根霉菌丝,在三相流化床中对葡萄糖、木糖以及木糖渣的纤维素酶解液等不同碳源进行L乳酸发酵研究,并对游离菌丝和固定化菌丝发酵L乳酸进行了比较。结果表明,聚氨酯泡沫是米根霉的良好载体,具有经济、高效等特点。实验条件下,不同碳源的乳酸转化率分别为:葡萄糖,82.5%;木糖,53.8%;木糖渣酶水解液,71.9%。三相流化床中固定化米根霉产酸速率(对葡萄糖)为191g.h-1.L(bead)-1。  相似文献   

4.
米根霉发酵生产L-乳酸   总被引:11,自引:0,他引:11  
报道了L-乳酸菌株的分离与筛选,探讨了不同碳源、氮源、通气量、温度等发酵条件对产L-乳酸的影响,从78株米根霉中筛选出13株产L-乳酸较高的菌株,其中米根霉(Rhizopus oryzae)Rs928产L-乳酸最高,产酸最稳定。试验结果表明,该菌株最适发酵培养组成(%):淀粉水解糖16,MgSO4 0.08,KH2PO4 0.05,ZnSO4 0.01,CaCO3 7,pH自然。在60t发酵罐中,  相似文献   

5.
固定化米根霉发酵制L—乳酸   总被引:14,自引:0,他引:14  
李学梅  林建平 《菌物系统》1998,17(4):318-326
采用海藻酸钙包埋法固定化米根霉,菌体在颗粒表面形成一层菌丝膜,有利于氧气和其它营养物质的传递;三相流化床生物反应器结构简单,动力消耗低,反应器内物质混合均匀、氧传递量大于固定化米根霉的需氧量,非常适合好氧的固定化米根霉发酵。  相似文献   

6.
通过研究影响米根霉菌丝体形态的培养基因素,初步构建了无载体固定化米根霉重复间歇发酵生产L-乳酸的工艺条件.研究结果表明,首批次发酵培养基采用120 g/L葡萄糖,3 g/L硝酸铵,K 和Na 浓度比为1:1,发酵72 h后,米根霉菌体形态为均匀的茵丝体小球,直径为1.0 mm~2.0 mm,此时L-乳酸产量可达100.8 g/L,葡萄糖转化率为84%.在此基础上,利用米根霉菌丝体小球重复间歇发酵16批次,每批次发酵24h,此时葡萄糖转化率均高于75%,L-乳酸产量保持在60.0 g/L以上,米根霉菌丝体小球形态保持稳定.  相似文献   

7.
耐氨米根霉发酵生产L-乳酸的研究   总被引:2,自引:0,他引:2  
传统的L-乳酸发酵法生产以CaCO3为酸中和剂,在乳酸后提取中产生的大量石膏废渣不仅在过滤时造成较大的乳酸损失,而且由于废渣不易处理,对L-乳酸万吨级规模的生产将形成巨大的环保压力和废渣处理成本。为此,为了降低L-乳酸生产成本,该文采用氨水为酸中和剂,用筛选得到的一株米根霉RhizopusoryzaeJS-N02-02进行以氨水为中和剂的L-乳酸摇瓶、15L自动发酵罐的发酵试验。以玉米粉双酶水解糖为碳源,接种孢子浓度1×105个ml,以0.01%(NH4)2SO4为氮源,30℃,15L自动发酵罐连续5批发酵,平均总糖浓度为136.8gL,平均产酸达100.6gL,L-乳酸纯度达95.3%,糖酸转化率达71.6%。  相似文献   

8.
固定化米根霉生产L—乳酸的研究   总被引:2,自引:0,他引:2  
  相似文献   

9.
10.
为了强化厨余垃圾发酵L-乳酸的产量和光学纯度,研究了pH对米根霉AS3.819发酵厨余垃圾生产乳酸及其光学特性的影响。结果表明,在中温条件下(34℃),米根霉生长的最适pH为7,最适发酵条件为8。用米根霉发酵非灭菌的厨余垃圾生产乳酸,发酵液中还原糖浓度低,且呈先升高,后下降到最低的趋势。pH调节到近中性和偏碱性(pH6、7、8)的各组还原糖浓度高于偏酸性组(pH 5和对照组)。控制pH为8时,总乳酸产生速率达1 g/(L·h),L-乳酸是主要的异构体形式,L-乳酸在总乳酸中的比例在整个发酵时间段内都保持在0.75以上,L-乳酸浓度最高达到59.8 g/L,L-乳酸光学纯度可达到0.99。控制pH为8时,可以同时获得高的乳酸产量和光学纯度。  相似文献   

11.
12.
A rotating fibrous-bed bioreactor (RFB) was developed for fermentation to produce L(+)-lactic acid from glucose and cornstarch by Rhizopus oryzae. Fungal mycelia were immobilized on cotton cloth in the RFB for a prolonged period to study the fermentation kinetics and process stability. The pH and dissolved oxygen concentration (DO) were found to have significant effects on lactic acid productivity and yield, with pH 6 and 90% DO being the optimal conditions. A high lactic acid yield of 90% (w/w) and productivity of 2.5 g/L.h (467 g/h.m(2)) was obtained from glucose in fed-batch fermentation. When cornstarch was used as the substrate, the lactic acid yield was close to 100% (w/w) and the productivity was 1.65 g/L.h (300 g/h.m(2)). The highest concentration of lactic acid achieved in these fed-batch fermentations was 127 g/L. The immobilized-cells fermentation in the RFB gave a virtually cell-free fermentation broth and provided many advantages over conventional fermentation processes, especially those with freely suspended fungal cells. Without immobilization with the cotton cloth, mycelia grew everywhere in the fermentor and caused serious problems in reactor control and operation and consequently the fermentation was poor in lactic acid production. Oxygen transfer in the RFB was also studied and the volumetric oxygen transfer coefficients under various aeration and agitation conditions were determined and then used to estimate the oxygen transfer rate and uptake rate during the fermentation. The results showed that the oxygen uptake rate increased with increasing DO, indicating that oxygen transfer was limited by the diffusion inside the mycelial layer.  相似文献   

13.
应用HPLC一反相色谱法测定米根霉乳酸发酵液中的有机酸   总被引:10,自引:1,他引:10  
提出了一种利用高效液相色谱法分析米根霉乳酸发酵液中有机酸的方法,应用反相Wakosil-II 5C18RS色谱柱,以0.01mol/L磷酸(pH2\5)作为流动相,发酵液经稀硫酸预处理后直接进样分离定量,在10min内把其中的乳酸,苹果酸,富马酸等完全分离定量,各种酸回收率大于97%。经多次实验结果证明:本方法是测定乳酸发酵液中各有机酸的快速,有效的定量测定方法。  相似文献   

14.
冯小海  吴波  沈晓波  徐虹 《微生物学报》2008,24(6):1075-1079
构建了一种纤维床反应器(FBB), 并将其应用于丙酸的生产。将棉纤维绕成桶状, 固定于反应器中, 即可用于丙酸固定化发酵。以40 g/L的葡萄糖为碳源, 与游离细胞相比, 利用FBB生产丙酸, 丙酸产量由14.58 g/L提高至20.41 g/L, 发酵时间由120 h缩短至60 h。研究了不同糖浓度条件下FBB生产丙酸情况, 并将补料策略应用于丙酸发酵中。结果表明: 补料发酵能够有效改善Propionibacterium freudenreichii CCTCC M207015在高糖条件下丙酸对葡萄糖转化率较低、副产物较多的问题。经补料发酵280 h, 丙酸产量达45.91 g/L, 丙酸质量约占有机酸总质量比例为72.31%。  相似文献   

15.
利用纤维床反应器固定化发酵生产丙酸   总被引:2,自引:0,他引:2  
构建了一种纤维床反应器(FBB), 并将其应用于丙酸的生产。将棉纤维绕成桶状, 固定于反应器中, 即可用于丙酸固定化发酵。以40 g/L的葡萄糖为碳源, 与游离细胞相比, 利用FBB生产丙酸, 丙酸产量由14.58 g/L提高至20.41 g/L, 发酵时间由120 h缩短至60 h。研究了不同糖浓度条件下FBB生产丙酸情况, 并将补料策略应用于丙酸发酵中。结果表明: 补料发酵能够有效改善Propionibacterium freudenreichii CCTCC M207015在高糖条件下丙酸对葡萄糖转化率较低、副产物较多的问题。经补料发酵280 h, 丙酸产量达45.91 g/L, 丙酸质量约占有机酸总质量比例为72.31%。  相似文献   

16.
A key challenge for bioprocess engineering is the identification of the optimum process conditions for the production of biochemical and biopharmaceutical compounds using prokaryotic as well as eukaryotic cell factories. Shake flasks and bench-scale bioreactor systems are still the golden standard in the early stage of bioprocess development, though they are known to be expensive, time-consuming, and labor-intensive as well as lacking the throughput for efficient production optimizations. To bridge the technological gap between bioprocess optimization and upscaling, we have developed a microfluidic bioreactor array to reduce time and costs, and to increase throughput compared with traditional lab-scale culture strategies. We present a multifunctional microfluidic device containing 12 individual bioreactors (Vt = 15 µl) in a 26 mm × 76 mm area with in-line biosensing of dissolved oxygen and biomass concentration. Following initial device characterization, the bioreactor lab-on-a-chip was used in a proof-of-principle study to identify the most productive cell line for lactic acid production out of two engineered yeast strains, evaluating whether it could reduce the time needed for collecting meaningful data compared with shake flasks cultures. Results of the study showed significant difference in the strains' productivity within 3 hr of operation exhibiting a 4- to 6-fold higher lactic acid production, thus pointing at the potential of microfluidic technology as effective screening tool for fast and parallelizable industrial bioprocess development.  相似文献   

17.
Concentrative influx of γ-aminobutyric acid (GABA) and α-aminoisobutyric acid (AIB) into incubated mouse cerebrum slices is decreased when pyruvate is substituted for glucose. Influx of GABA from pyruvate medium is not increased by presence of glucose, 2-deoxy-d -glucose (2-DOG), or 3-O-methyl-d -glucose (3-O-MeG). Influx of AIB is restored to the rate from glucose medium if 2-DOG is present initially, but is not restored if 2-DOG is added with AIB. Influx is not restored if 3-O-MeG is present initially, but is restored if 3-O-MeG is added with AIB. Influx is restored if glucose is present initially or is added with AIB.  相似文献   

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