stannous 中文意思是什麼

stannous 解釋
adj. 形容詞 【化學】亞錫的;含錫的;二價錫(的)。

  1. The experimental results of the catalysts such as p - toluene sulfonic acid, strongly acidic cationic exchange resin, sulfo - polyvinyl chloride resin ferric chloride hexahydrate, polyvinyl chloride - ferric chloride resin chlorinated polyvinyl chloride - ferric chloride resin, stannous chloride dihydrate, ammonium ferric sulfate dodecahydrate, ferrie sulfate - potassium thiosulfate, cerium sulfate tetrahydrate, sodium bisulfate monohydrate potassium bisulfate, neodymia solid super acid and heteropoly acid for catalytic synthesis of ethyl chloroacetate were reviewed

    摘要評述了對甲苯磺酸、強酸性陽離子交換樹脂、磺化聚氯乙烯樹脂、六水三氯化鐵、聚氯乙烯三氯化鐵樹脂、氯化聚氯乙烯三氯化鐵樹脂、二水氯化亞錫、十二水合硫酸鐵按、硫酸鐵硫代硫酸鉀復鹽、四水硫酸鈰、一水硫酸氫鈉、硫酸氫鉀、三氧化二釹、固體超強酸和雜多酸等催化劑催化合成氯乙酸乙酯的實驗結果。
  2. The stannous chloride - mercuric chloride - potassium dichromate volumetric method for the determination of total iron content

    重鉻酸鉀容量法測定全鐵量
  3. Chemical products. stannous sulphate for electroplating

    化學製品.硫酸錫
  4. Preparation of stannous chloride stock solution

    氯化亞錫儲備液的配製
  5. Determination of palladium content - stannous choride - potassium iodide spectrophotometric method

    碘化鉀分光光度法測定鈀量
  6. Urine. determination of mercury. cold atomic absorption spectrometric method. acidic stannous chloride reduction method

    尿中汞的冷原子吸收光譜測定方法
  7. Sponge titanium, titanium and titanium alloys - determination of palladium content - stannous choride - potassium iodide spectrophotometric method

    海綿鈦鈦及鈦合金化學分析方法氯化亞錫-碘化鉀分光光度法測定鈀量
  8. Modified polylactic acid is synthesized from lactide and aminophenol by morpholine - dione with stannous octoate as the crystal

    摘要以聚乳酸為主體,通過化學方法,合成聚乳酸/氨基酸共聚物,並對其藥物緩釋性能做了研究。
  9. Jcig lianhua welfare chemical industry factory - specialized producer of triethyl phosphate, methyl phosphate, methyl dichloroacetate, stannous oxide, and palladium chloride

    [吉化集團吉林市聯化福利化工廠生產磷酸三乙酯、氯化鈀等二種化工產品。
  10. Polylactic acid ( pla ) of different molecular weights were synthesized by the direct condensation of lactic acid with modified gneiss as the catalyst, or with modified gneiss and stannous caprylate as the catalyst in the same reaction conditions and different reaction times

    摘要以天然礦石改性片麻巖為聚合反應的催化劑,通過直接縮聚方法制備了不同分子量的聚乳酸。
  11. The main work and the conclusion of the article are : ( 1 ) give a suggestion on the reaction mechanism and the principle of catalyst selection. ( 2 ) by comparison of the catalyst activity of solid superacid with the zinc oxide, stannous chlorde and tin ( ii ) octate in the synthesis reaction. we find that although its activity is lower than tin ( ii ) octate, obviously higher than that of traditional zinc oxide and stannous chlorde. from the point of preparation cost, we select solid superacid as catalyst

    但從催化劑的制備成本和工藝的角度選擇,固體超強酸具有明顯的優勢; ( 3 )制備一系列單組元和雙組元硫酸促進氧化物固體超強酸,並用於丙交酯的合成反應,篩選具有最佳活性的固體超強酸催化劑: ( 4 )使用so2 - 4 / zno - sno2 ( 2 : 1 ) la3 +固體超強酸作催化劑,反應脫水時間1
  12. Lactide were investigated. the key factors affecting the polymer intrinsic viscosity were found to be monomer recrystallization times, stannous octoate concentration and polymerization time. the thermal stabilizing agent did not significantly affect the polymer molecular weight. the polymer with a viscosity average molecular weight beyond 200000 was fairly reproducible by optimizing the polymerization conditions. it was found that poly

    單體重結晶次數辛酸亞錫濃度聚合時間等條件均是影響聚合物特性粘數的重要因素。熱穩定劑對聚丙交酯的分子量幾乎沒有影響。優化聚合條件可以獲得粘均分子量大於200000的聚丙交酯材料,聚合結果具有良好的重復性。
  13. Abstract : by comparing the dehydration methods of three catalytic by comparing the dehydration methods of three catalytic esterification reactions and the catalysts used under negative by comparing the dehydration methods of three catalytic esterification reactions and the catalysts used under negative pressure, the better method of synthesizing 2 - ethylhexyl chloroacetate is using stannous oxide as catalyst under negative chloroacetate is using stannous oxide as catalyst under negative pressure

    文摘:通過對三種催化酯化反應的脫水方法及負壓下使用不同催化劑的比較和通過對三種催化酯化反應的脫水方法及負壓下使用不同催化劑的比較和選擇,提出了以氧化亞錫為催化劑負壓脫水合成氯乙酸2 -乙基己酯的方法。
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