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1)  radiation wave
辐射波
2)  wave radiation
电波辐射,波辐射
3)  microwave irradiation
微波辐射
1.
Synthesis of dibenzalpenlpentaerythritol under microwave irradiation catalyzed by sulfate;
微波辐射下硫酸盐催化合成季戊四醇双缩苯甲醛
2.
Characteristic and property of polyi-butylacrylate resin for oil fume adsorption synthesized by microwave irradiation;
微波辐射制备聚丙烯酸异丁酯吸油烟树脂及其性能和表征
3.
Synthesis of halogenated 1,3-dialkyl imidazolium ionic liquids by microwave irradiation;
微波辐射下卤化1,3-二烷基咪唑离子液体的合成
4)  Microwave-irradiation
微波辐射
1.
Synthesis of 3,5-Bis-(2'-benzimidazyl)pyridine by Orthogonal Experimental Method Design under Microwave-irradiation;
微波辐射下3,5-二(2'-苯并咪唑)吡啶的合成
2.
Synthesis of 3,5-Bis-(2 -benzimidazyl)pyridine by Orthogonal Experimental Method Design under Microwave-irradiation;
微波辐射下3,5-二(2 -苯并咪唑)吡啶的合成
3.
Solvent-free catalytic synthesis of glucose pentaacetate under microwave-irradiation;
微波辐射下无溶剂催化合成葡萄糖五乙酸酯
5)  microwave radiation
微波辐射
1.
Synthesis of zinc borate by solid state reaction under microwave radiation;
微波辐射固相反应合成硼酸锌
2.
Synthesis of salt-tolerance super water-absorbent polymer with hydroxyethyl cellulose under microwave radiation;
微波辐射合成耐盐性羟乙基纤维素高吸水性树脂
3.
Study on the preparation of granular activated carbon from tobacco stems by microwave radiation and water vapor;
微波辐射-水蒸气法制备烟杆基颗粒活性炭
6)  Microwave radiating
微波辐射
1.
The inositol was prepared by hydrolysis of phytic acid with microwave radiating.
采用微波辐射法水解植酸制备肌醇 ,缩短了水解时间和获得了较好的产率。
2.
Tungstic acid is prepared from Na_2WO_4 with protonated cation-exchange resin, to synthesize a series of WO_3 in different methods, such as: hydrothermal, template in porous anodic oxidation of aluminum(AAO), cavitation in ultrasonic supersonic-centrifuging and microwave radiating at circumfluence.
以钨酸钠为原料用阳离子树脂交换法制得钨酸,分别对钨酸采用水热法、阳极铝模板法(AAO)、超声空化-离心法、微波辐射回流法制备系列WO_3,研究各因素对该WO_3产物的晶相、晶粒、形貌、比表面积、红外吸收光谱、紫外-可见光吸收等性能的影响,并用该WO_3光催化降解气相甲醛,评价其光催化活性。
补充资料:单波辐射高温计
分子式:
CAS号:

性质:又称单波辐射高温计,是根据高温热物体某一波长的光谱辐射亮度随温度升高而增加的原理来测量对象温度的。也即将高温物体发出的辐射线中一定波长的亮度与标准灯丝进行比较,从而测得物体的温度。检测亮度方法采用亮度平衡法,由人眼比较被测对象与温度灯丝的亮度,通过调整灯丝电流(隐丝式)或利用光楔改变被测对象投射到人眼的辐射亮度(恒亮式)使灯丝在背景中隐灭,由灯丝电流或光楔系统读出亮度温度。测温范围一般为800~6000℃广泛用于炼焦、玻璃等工业中的高温测量。

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