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1)  microwave sodium chloride method
微波NaCl法
2)  sodium chloride
NaCl
1.
Effect of sodium chloride and sodium sulfate on the seed germination and seedlings establishment of Chinese dandelion;
NaCl和Na_2SO_4胁迫对蒲公英种子发芽及成苗的影响
2.
The influence of three different salts on the forming of granular resistant starch was studied and the results showed that the optimum amount of sodium chloride and potassium chloride content was 20% and 12% respectively.
文中考察了盐(NaCl、KCl和CaCl2)对颗粒态抗性淀粉形成的影响,得出NaCl和KCl的最适添加量分别为20%和12%,而CaCl2的添加对抗性淀粉形成不利。
3.
High-amylose cornstarch was used as material to study on effects of concentrations of sodium chloride and glucose on the formation of RS.
以高直链玉米淀粉为试材,分别研究了NaCl浓度和葡萄糖浓度对抗性淀粉形成的影响,发现当NaCl浓度提高到10%以上时,抗性淀粉得率从10。
3)  microwave [英]['maɪkrəweɪv]  [美]['maɪkrə'wev]
微波法
1.
Research on determination of water contents in flour rapidly by microwave;
微波法快速测定面粉中的水分的研究
2.
Study on alcoholysis of waste Poly(ehtylene terephthalate) by microwave method
应用微波法对废PET进行醇解的研究
3.
A microwave extraction was used to extracted flavonoids from Aloe.
采用微波法对芦荟中黄酮类化合物进行提取。
4)  microwave method
微波法
1.
Preparation of Gd_2O_2S:Tb~(3+) phosphor by microwave method;
微波法制备Gd_2O_2S:Tb~(3+)荧光粉
2.
Preparation of amphoteric starch by microwave method;
微波法合成羧甲基型木薯两性淀粉
3.
The microwave method pH value was 9, microwave power was 406 W, the microwave process time was 20 s.
5,辐射时间为40min;微波法的pH值为9,微波功率406W,微波处理时间为20s。
5)  microwave irradiation
微波法
1.
Synthesis and characterization of the graft copolymer of xanthan gum and acrylamide by microwave irradiation;
微波法合成黄原胶与丙烯酰胺接枝共聚物及其表征
2.
5 G PAMAM as a stabilizing agent,Au nanoparticles were prepared by reducing HAuCl4 with microwave irradiation.
5代聚酰胺-胺型)树状大分子为保护剂,利用微波法还原HAuCl4溶液制备金纳米粒子。
6)  microwave-enzyme method
微波-酶法
1.
The processing parameters of microwave-enzyme method,used to produce corn retrograded starch,were optimized by respond surface methodology.
运用响应面法,对微波-酶法制备RS3型玉米抗性淀粉的工艺参数进行优化。
补充资料:微波等离子体原子吸收光谱法
分子式:
CAS号:

性质:一种利用微波等离子体作为原子化器的原子吸收光谱分析技术。用微量注射器将几微升样品加到钽丝上,先用小电流加热干燥样品,再增大电流加热使样品蒸发。氩气将样品蒸气载入微波等离子体焰炬中,经历原子化后再进入原子吸收池经原子吸收,测量吸光度,根据吸光度大小确定被测元素的含量。

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