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1)  mixed culture
混培物
1.
Nitrogen removal with ANAMMOX mixed culture immobilized in different materials;
不同材料包埋固定化厌氧氨氧化混培物
2)  mixed culture
混合培养物
1.
Compared with pure culture, mixed culture of phenol degraders exhibited higher degrading activity for phenol, chlrophenol and nitrophenol.
对 受苯酚污染的地 表水生物修复技术 作了有关基础研 究,结果表明:分离获 得的菌株 S P1 , S P2能利用苯酚作为唯一碳源和能源⒚与单一菌株相比,降解菌的混合培养物对苯 酚、氯 酚和硝基酚均具有较高的降解活性⒚酚降解过程受多因子的影响⒚应用流加培养技术获得菌体浓度为 0。
3)  mixed ammonia oxidizer culture
氨氧化菌混培物
1.
The ammonia metabolic characteristic of mixed ammonia oxidizer culture in the atmosphere of trace NO_2.;
氨氧化菌混培物在微量NO_2气氛下的氨代谢特性
4)  mixed culture
混合培养
1.
Comparison of composition of cellulase from monoculture of Trichoderma with mixed culture with yeast or Aspergillus;
木霉及其混合培养酵母和曲霉产生的纤维素酶系的比较研究
2.
Study on the conditions and growth relationships of mixed culture of multi-strains;
多菌种微生物混合培养的条件及生长关系研究
3.
It was found that the ability of flocculating kaolin suspension by the culture broth produced by mixed culture of the two strains in the proportion of 1∶1 was higher than that of pure culture of either strain.
将两株絮凝剂产生菌分别纯培养及以体积比1∶1比例混合培养,发现混合培养发酵液对高岭土悬浊液的絮凝效果优于各菌株的纯培养发酵液。
5)  mixed culture
混菌培养
1.
Selective culture conditions of Bifidobacterium breve and Streptococcus thermophilus were studied and the characteristics of biomass proliferation and acid production metabolism,by pure and mixed culture in milk medium,were discussed.
研究了短双歧杆菌(Bifidobacteriumbreve)和嗜热链球菌(Streptococcusthermophihus)的选择性培养条件,探讨了两菌在单一菌种培养和混菌培养状况下的菌体生长和产酸特点,发现该两菌种之间的生长及产酸存在着明显的互相促进作用,在牛乳培养基中混菌培养状况下两菌的生长及产酸代谢均优于单菌种培养。
2.
Objective:The effects of yeast presence on the growth and metabolism of Lactobacillus during co-culture in millet and the kinetic model of mixed culture were studied.
方法:以小米为生长基质,将乳酸菌和酵母菌分别纯培养和混菌培养,研究发酵液中细胞浓度、游离氨基氮(FAN)、还原糖、乳酸及乙醇含量的变化;在对Lotka-Voherra种间竞争模型改进的基础上构建混菌发酵生长模型,利用origin软件求解参数并对模型进行拟合验证。
6)  co-culture
混菌培养
1.
Candida krusei which consumed glucose to produce glycerol and Klebsiella pneumoniae which consumed glycerol to produce 1,3-propanediol were co-cultured in a co-substrate medium composed of glucose and glycerol to study their ability of convering glucose to 1,3-propanediol.
以葡萄糖和甘油作为共底物培养基,将利用葡萄糖产甘油的酵母Candida krusei和利用甘油产1,3-丙二醇的细菌Klebsiella pneumoniae进行混菌培养,考查了双菌混合培养转化葡萄糖生成1,3-丙二醇的能力。
补充资料:苯乙烯-丙烯腈共聚物/聚碳酸酯共混物
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性质:系由丙烯腈-苯乙烯共聚物与聚碳酸酯组成的共混物,可改善丙烯腈-苯乙烯共聚物的拉伸强度、热变形温度及冲击强度,并有较好的加工性能,耐溶剂性及耐候性,丙烯腈含量为25%的共聚物与聚碳酸酯共混可获得最好的综合性能,丙烯腈含量小于10%的共聚物与聚碳酸酯共混可得到透明材料,透光率可保持90%以上,机械共混法制取,可用于汽车仪表盘、挡泥板、其他外饰件及商用机器、电器制件等。

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