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1)  complex esterifying enzyme microecology fungus
复合酯化酶生态菌剂
1.
The application of complex esterifying enzyme microecology fungus was tested.
复合酯化酶生态菌剂进行了应用试验,实验结果表明,复合酯化酶生态菌剂的用量为3。
2)  Complex probiotics(VT)
复合微生态制剂(VT菌)
3)  micro-ecological probiotics
微生态复合菌制剂
4)  complex microbial community
复合微生物菌剂
1.
Composting experiment of surplus sludge applying complex microbial community(CMC) was carried out to systematically study the function of CMC in composting system to some extends of surplus sludge.
应用复合微生物菌剂对剩余污泥进行堆肥试验,较系统地研究了复合微生物菌剂在剩余污泥堆肥系统中的作用。
2.
The fermentations were carried out to look for a combination of microbial community with the highest activities, and the results indicated that the optimum ratio of preparation of complex microbial community for composting was Trichoderma viride: Saccharo spp: Bacillus subtilist: Pseudomona sp =1:1:2:2.
本研究从果渣资源化利用角度出发,通过添加复合微生物菌剂发酵生产黄腐酸,系统研究了发酵菌种的复配及发酵条件的优化。
3.
Firstly,single factor experiment was conducted on inoculation quantity of complex microbial community, moisture content,ratio of carbon to nitrogen(C/N)and dig frequency.
首先选择复合微生物菌剂接种量、原料含水率、C/N比、翻堆次数4个因素进行单因素试验研究,初步确定四个因素的最适范围,然后对四个因素进行正交优化试验,确定最佳发酵工艺参数。
5)  Complex-probiotic-preparation
复合益生菌制剂
1.
Objective To observe and evaluate the regulatory effect of complex-probiotic-preparation on humoral immunity function of sailors in nuclear-powered submarine during long term voyage.
目的观察及评价复合益生菌制剂对长航核潜艇员体液免疫功能的调节作用。
2.
Objective:To observe and evaluate the effect of complex-probiotic-preparation on blood cell components and rheology of sailors in nuclear-powered submarine during long term voyage.
目的 :观察及评价复合益生菌制剂 (海生元 )对长航核潜艇艇员血液细胞成分及流变学指标的影响。
3.
Objective:To observe and evaluate the preliminary effects of complex-probiotic-preparation (Hai Sheng Yuan) on correcting the sailors , intestinal flora imbalance.
目的 :观察及评价复合益生菌制剂 (海生元 )纠正长航核潜艇艇员肠道菌群失调的初步效果。
6)  Composite bacterial strain
复合生物菌剂
补充资料:磷酸化酶磷酸酯酶
分子式:
CAS号:

性质:又称磷酸化酶磷酸酯酶。磷酸酯酶一种,EC3.1.3.17,分子量5×104。它的底物是有活性的磷酸化酶a。它所催化的反应是磷酸化酶a一级结构中14序号上的丝氨酸上与磷酸基相连接酯键水解(断裂)而游离出4个无机磷酸分子,使磷酸化酶a转变为无活性的磷酸化酶b(变构效应物,即AMP可使它成为有活性的酶)。它的作用正好与在ATP(腺苷三磷酸)存在下的磷酸化酶激酶(phosphorylase kinaseEC2.7.1.38.)的作用相反。它在糖原的生成和代谢中起催化和调节的作用。通常磷酸化酶磷酸酶可从兔肌肉组织中提取。

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