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1)  micro-aerobic
微氧
1.
Characteristics of micro-aerobic water treatment technology and its research progress;
微氧水处理技术的特性及应用研究进展
2.
Inhibition on sulfate reduction by micro-aerobic environment;
微氧环境抑制硫酸盐还原反应作用研究
3.
Research on dying-printing wastewater treatment in IC reactor under micro-aerobic
微氧状态下IC反应器处理印染废水的试验研究
2)  microaerobic
微氧
1.
Optimum condition for microaerobic biological treatment of methanol wastewater;
微氧生物处理高浓度甲醇废水最佳工况研究
2.
Performance characteristic of the EGSB reactor in the microaerobic conditions;
EGSB反应器在微氧条件下的运行特性
3.
Study on municipal wastewater treatment in a microaerobic membrane bioreactor;
微氧膜生物反应器处理生活污水的研究
3)  micro-arc oxidation
微弧氧化
1.
Effects of a novel near β titanium alloy Ti-5Zr-3Sn-5Mo-15Nb modified by micro-arc oxidation on initial osteoblast responses;
近β钛合金表面微弧氧化处理对成骨细胞早期行为的影响
2.
Effect of voltage on formation of ceramic coating prepared by micro-arc oxidation on aluminum alloy;
电压对铝合金微弧氧化陶瓷层形成的影响
3.
Effects of anode current density on micro-arc oxidation ceramic coating of aluminum alloy;
阳极电流密度对铝合金微弧氧化陶瓷膜的影响
4)  microarc oxidation
微弧氧化
1.
Engineering applications of microarc oxidation and magnetron sputtering;
微弧氧化与磁控溅射的工程应用
2.
Study on microarc oxidation processes for Mg alloy;
镁合金微弧氧化膜的制备工艺研究
3.
Electrochemical corrosion behavior of microarc oxidation film on LC4 aluminum alloy;
LC4超硬铝合金微弧氧化膜电化学腐蚀特性
5)  anoxic microzone
微缺氧区
1.
The results show that after addition of this medium,considerable anoxic microzone can be created in the aerobic zone.
试验结果表明,投加该媒介后可在好氧段内产生大量的微缺氧区,当维持污泥浓度为3~4 g/L、DO为1。
6)  micro-arc oxidization
微弧氧化
1.
Corrosion resistance of magnesium alloy micro-arc oxidization ceramic coating;
镁合金微弧氧化陶瓷层的耐蚀性
2.
The micro-arc oxidization is an efficient and pollution-free technique of surface processing and can form in situ a ceramic layer on the surface of nonferrous metal.
采用自行研制的脉冲微弧氧化设备,在TiAl合金表面制备了微弧氧化陶瓷层。
3.
Ceramic coating on the surface of die casting Al alloy ADC12 with high Si content has been prepared by micro-arc oxidization (MAO) in an electrolyte containing Na2SiO3 and NasPO4 as its major compositions at constant current density.
利用恒流微弧氧化技术,在以Na2SiO3和Na3PO4为主盐的电解液中,在高硅压铸Al合金ADC12表面制备了 陶瓷膜。
补充资料:2-[2-[2-(2-苯氧乙氧基]乙氧基]乙氧基]乙醇
CAS:36366-93-5
分子式:C14H22O5

中文名称:2-[2-[2-(2-苯氧乙氧基]乙氧基]乙氧基]乙醇

英文名称:Ethanol,2-[2-[2-(2-phenoxyethoxy)ethoxy]ethoxy]
2-(2-(2-(2-phenoxyethoxy)ethoxy)ethoxy)-ethanol
tetraethylene glycol monophenyl ether
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