Determination of Total Iron Content by Potassium Thiocyanate Colorimetry with Tween 20 as Cosolvent 测定水中总铁的含量以吐温20作助溶剂的硫氰酸钾比色法
Determination of Iodine in Edible Salt Added Potassium Iodate by Ultraviolet Spectrophotometry determination of chromate, iodide, sulfite, thiocyanate and thiosulfate 加碘酸钾食盐中碘含量的紫外分光光度法测定铬酸盐、碘化物、亚硫酸盐、硫氰酸盐和硫代硫酸酯的测定
Secondly diisothiocyanates were synthesized by the phase transfer reaction of bischloroformate and potassium thiocyanate; 然后将双氯甲酸酯与硫氰酸钾在相转移催化剂的催化下反应生成二异硫氰酸酯;
Photometric Quick Determination of Potassium Thiocyanate in Black Nickel Plating Bath 光度法快速测定黑镍镀液中的硫氰酸钾
The function of potassium thiocyanate as a grow-th modifier in the preparation of the epitaxial silver halide emulsion 硫氰酸钾在外延卤化银乳剂制备中的作用
Spectrophotometric Determination of palladium with potassium thiocyanate and Rhodamine B 钯(Ⅱ)硫氰酸钾罗丹明B分光光度法测定微量钯
Mercury in crude gold has been determined directly without separation by AAS with potassium thiocyanate as the masking reagent for gold and SnCl_2as reductant to reduce mercury into the vapour atomic mercury in NaOH medium. 以硫氰酸甲作金的掩蔽剂,用SnCl2在强碱介质中还原化合汞为原子汞进行汞的冷原子吸收测定。
The Complex Reaction of Iron ( ⅲ) with Potassium Thiocyanate 铁(Ⅲ)离子与硫氰酸钾的配合反应
The chromogenic reaction of palladium with potassium thiocyanate and rhodamine B in the presence of polyvinyl alcohol has been investigated. 研究了在聚乙烯醇存在下,钯与硫氰酸钾和罗丹明B的显色反应。
Spectrophotometric Determination of Available Iron in Soil and Total Iron in Plant with Potassium Thiocyanate in the Presence of Emulgent OP aod 1, 10-Phenanthroline 乳化剂OP和邻菲啰啉存在下硫氰酸钾分光光度法测定土壤有效铁和植物中的铁
CuSCN thin films were prepared by electrochemical deposition method in aqueous solutions using cupric sulphate and potassium thiocyanate as precursor materials. 本文采用电化学沉积法,首次以硫酸铜和硫氰酸钾的水溶液为前驱体原料,在ITO导电玻璃上沉积出了性能良好的p-CuSCN半导体薄膜。
Spectrophotometric Determination of iron in plant with potassium thiocyanate and 1,10-phenanthroline in the presence of Tween-20 硫氰酸钾-邻菲啰啉-吐温-20分光光度法测定植物中的铁
Sodium chloride, sodium sulfate, potassium chloride, potassium sulfate, sodium thiocyanate and potassium thiocyanate was studied on the recovery of protamine. 并研究了无机盐氯化钠、硫酸钠、氯化钾、硫酸钾、硫氰酸钠以及硫氰酸钾六种溶液对从复合物中回收鱼精蛋白的影响。
Through the contrast experiments of different background electrolyte buffer solution, potassium thiocyanate was selected as the buffer system. As the same time, other separation and detection parameters were also optimized. 对不同的背景电解质和缓冲溶液进行对比优选,选择硫氰酸钾作为本研究的缓冲体系,并对其它分离参数进行优化试验,最终确定了铂、钯硫氰酸根配合物的毛细管电泳分离条件。