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1)  Biodemulsifier compound
生物复合脱盐剂
2)  composite biosorbent
复合生物吸附剂
1.
Composite biosorbent nano Fe_3O_4/Sphaerotilus natans was prepared when nano Fe_3O_4 was used as carrier,then the composite biosorbent characterized by infrared instrument and investigated on adsorbing heavy metal ions from wastewater.
以纳米Fe3O4负载浮游球衣菌(Sphaerotilus natans)制备复合生物吸附剂,对此吸附剂进行表征并考察了其吸附水中重金属离子的性能。
2.
In the range of pH 2 to 3,the adsorbance of the composite biosorbent to(Cr(Ⅵ)) is 0.
以纳米Fe3O4负载浮游球衣菌(Sphaerotilus natans)为复合生物吸附剂,考察了其对Cr(Ⅵ)的吸附性能,并对生物吸附机理进行了初步研究。
3)  bio-compound demulsifier
生物复合破乳剂
1.
The optimized process conditions developed from simulation are:20 ppm dosage of bio-compound demulsifier, 800 V/cm electric field strength, 120℃temperature and 6% water injection.
得出的最佳工艺条件为:生物复合破乳剂用量20μg/g,电场强度800 V/cm,温度120℃,注水量6%。
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)  compound microorganism
复合微生物制剂
1.
The toilet was composed of a bioreacter(containing compound microorganisms),a case,and a closet.
结果复合微生物制剂能够减少粪尿释放氨和硫化氢等臭气,降低粪尿中大肠杆菌的数量。
6)  Composite bacterial strain
复合生物菌剂
补充资料:复合固体推进剂氧化剂
分子式:
CAS号:

性质:它提供推进剂自持燃烧所需的氧。要求氧化剂的有效氧含量高、密度大、生成热高、分解产物为气体、安定性好,与推进剂组分化学相容。氧化剂品种、含量、颗粒形状、粒度及粒度分布对推进剂的能量、燃烧、力学、工艺、安全等性能有重要影响。在推进剂中用量一般占60%~75%,常用的氧化剂有高氯酸铵、硝酸铵、奥克特今、黑索今等。

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