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1)  composite absorbents
复合吸波剂
1.
Property and preparation of carbonyl iron powder/polymethacrylate/poly-aniline composite absorbents;
羰基铁粉/聚甲基丙烯酸甲酯/聚苯胺复合吸波剂的制备与性能
2)  compound adsorbent
复合吸附剂
1.
Performance of novel 13X zeolite based refrigerant compound adsorbent;
基于13X沸石的新型制冷复合吸附剂性能
2.
A multi-function heat pipe type adsorption ice maker, which uses activated carbon-CaCl2 as compound adsorbent and ammonia as refrigerant, was designed.
设计了一种基于多功能热管的高效吸附式制冰机组,采用氯化钙/活性炭复合吸附剂和氨作为吸附工质对。
3.
Different compound adsorbents thermal conductivities were measured at different adsorption capacities.
应用瞬时热探针法测试吸附制冷工质导热系数,在不同的吸附量下对配置出的复合吸附剂导热系数进行测试,并从中选出适用于太阳能冷管的复合吸附剂Z1和Z2。
3)  Composite adsorbent
复合吸附剂
1.
Adsorption performance of composite adsorbent for adsorption refrigeration;
吸附制冷用复合吸附剂的吸附性能
2.
Adsorption isotherm estimation of composite adsorbents for adsorption refrigeration;
吸附制冷用复合吸附剂的吸附等温线推算
3.
Preparation and adsorption mechanism of composite adsorbents for adsorption refrigeration;
吸附制冷用复合吸附剂的制备
4)  compound adsorbents
复合吸附剂
1.
Calculation of parameters on adsorption kinetics of carbon monoxide, carbon dioxide and methane on compound adsorbents with rare-earth elements;
CO、CO_2和CH_4在稀土复合吸附剂上吸附动力学参数计算
5)  composite absorbent
复合吸收剂
1.
Mass transfer of membrane absorption was simulated with a composite absorbent based on potassium glycine-piperazine solution.
建立了传质微分方程-传质阻力方程相结合的膜吸收数学模型,对氨基乙酸钾-哌嗪复合吸收剂的膜吸收过程进行模拟,讨论了吸收剂液速、膜孔湿润率和温度等因素对膜吸收的影响。
6)  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。
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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