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41.
在无溶剂系统中固定化脂肪酶合成聚乙二醇400月桂酸酯 总被引:4,自引:1,他引:3
在无溶荆反应系统中,研究了固定化假丝酵母(Candida sp)-1619脂肪酶催化合成聚乙二醇400(PEG400)月桂酸酯的酯化条件。在反应过程中不断脱水和使月桂酸的量高于化学计量值的方法,使酯化率明显提高。分批补加PEG400使产量进一步增加。在5.0mmol月桂酸.2.5mmolPEG400,20mg同定化脂肪酶(200u),O.2ml水组成的反应体系中,40℃,锥形瓶敞口振荡反应48h。醑化率达91%;在负压条件下反应.酯化率达98.9%;反应体系中月桂酸的董增加到6.0mmol时,PEG400完全被酯化。用己烷提取产物的收率为95%.通过薄层色谱鉴定酯化产物为双酯。 相似文献
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用固相pH梯度(pH 5.05~5.60)等电聚焦技术对随机抽取的188名北京地区健康汉族人的血清转铁蛋白(Tf)进行分型调查,并统计基因频率,检出了在中国还未见报道的TfC3基因.其表型分别是:TfC1, TfC2, TfC1C2, TfC1C3, TfC1Dchi, TfC2Dchi.TfC1=0.7420, TfC2=0.2420, TfC3=0.0027, TfDchi=0.0133, 符合Hardy-Weinberg定律, 并与其他已见报道的汉族 Tf基因频率大致相符. 相似文献
44.
A photomicrobial sensor consisting of immobilized Chlorella vulgaris and an oxygen electrode has been developed for selective determination of phosphate. When 40 mM phosphate was added to the sensor system, the photocurrent increased to a maximum under light irradiation with a response time of 1 min. The current increased with increasing phosphate concentration in the range 8–70 mM. Selectivity of the sensor was satisfactory. Good agreement was obtained between the phosphate concentrations in lake water determined by the photomicrobial sensor and by conventional colorimetry (correlation coefficient 0.96). 相似文献
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Fine, almost single cell, suspensions were produced from both existing suspension cultures containing large cell clumps and
from chopped callus pieces by immobilizing the cells in 4–5 mm diameter calcium alginate beads. The immobilized cells continued
to divide inside the beads and at the bead surface, and after 2–3 weeks' culture, fine cell suspensions were formed as a result
of loss of the surface cells into the medium. After removal of the cell suspensions by filtration, subsequent culture of the
beads in fresh medium resulted in the further production of homogeneous cell suspensions after 1–2 weeks. In this way an almost
continuous supply of fine cell suspensions could be obtained from cultures containing large clumps of cells. The cells produced
by this method remained in this state for at least one culture period, although in some instances repeated subculture resulted
in an increase in the size of cell groups. The technique has been successfully applied to the production of fine cell suspensions
ofCatharanthus roseus, Nicotiana tabacum andDaucus carota. 相似文献
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Hans-Ulrich Meisch Helga Benzschawel Hans-Joachim Bielig 《Archives of microbiology》1977,114(1):67-70
Cells of Chlorella pyrenoidosa, derived from vanadium free agar slants, respond with great sensitivity to microamounts of vanadium, added as NH4VO3 to autotrophic liquid cultures. Between 0.01 and 1 g V per litre nutrient medium (2·10-10-2·10-8g-at/l), the algae respond with a continuous increase in dry weight. At higher V-concentrations, further enhancement in biomass is accompanied by a additional increase in chlorophyll content. Maximum V-effect on both parameters was found to be at 500g V/l (10-5 g-at/l). Dry weight as well as chlorophyll content of Chlorella are decreased by concentrations above 25 mg V/l; 100 mg V/l (2·10-3 g-at/l) stop growth and cause death of the cells. The toxic threshold for the V-content in the algae was determined to be at 150–200 g V/g (3–4·10-6 g-at/g) dry weight.Two different pH-optima for a positive vanadium action on dry weight and chlorophyll biosynthesis were established, the first at pH 7, the other in the range pH 7.5–8. Two sites of vanadium action in green algae are discussed.Part I: Arch. Microbiol. 105, 77–82 (1975) 相似文献
50.
A lumped model for cell growth and secondary metabolite production in an immobilized live cell bioreactor has been developed. This model is applied here to simulate the performance of an immobilized bioreactor under steady-state conditions and under conditions of periodically varying concentration of a growth-limiting substrate. The results of the simulation study were experimentally verified in the case of the production of the antibiotic candicidin by Streptomyces griseus in an immobilized bioreactor with forced periodic operation. The results of the studies suggest that periodically operated immobilized live cell bioreactors can provide a potent alternative for the production of non-growth-associated biochemicals, as compared to free cell fermentations, pulsed fermentations with process cycle regeneration, and nonregenerated bioreactors. This work has demonstrated that by frequent pulsing of the growth limiting nutrient, stable extended production can be obtained at high specific cellular productivities. 相似文献