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1)  acetic acid-water-butyl acetate
乙酸-水-乙酸正丁酯
1.
Thermodynamic analysis and azeotropic distillation simulation for acetic acid-water-butyl acetate system;
乙酸-水-乙酸正丁酯三相体系的热力学分析与共沸精馏过程模拟
2)  n-Butyl acetate
乙酸正丁酯
1.
Synthesis of n-butyl acetate catalyzed by palygorskite supported 12-tungstophosphotungstic acid;
坡缕石固载磷钨杂多酸催化合成乙酸正丁酯的研究
2.
Catalytic synthesis of n-butyl acetate under microwave irradiation;
微波辐射催化合成乙酸正丁酯
3.
Synthesis of n-butyl acetate under the catalysis of nano solid superacid SO_4~(2-)/TiO_2;
纳米固体超强酸SO_4~(2-)/TiO_2催化合成乙酸正丁酯
3)  ethyl butyrate
正丁酸乙酯
1.
Synthesis of ethyl butyrate with molecular sieves as catalysts;
分子筛催化合成正丁酸乙酯的研究
4)  butyl acetate
乙酸正丁酯
1.
Synthesis of butyl acetate using ammonium ceric sulfate as catalyst;
硫酸铈铵催化合成乙酸正丁酯的研究
2.
Synthesis of butyl acetate using activated carbon supported ferric chloride as catalyst;
活性炭固载氯化铁催化合成乙酸正丁酯
3.
In the synthesis of butyl acetate by acetic acid and n-butanol, under the condition of continuous stirring and water removal in a batch reactor, the Hβ properties exchanged by Fe ion and La ion were studied.
采用间歇反应器,在连续搅拌及分水条件下,研究了Fe离子和La离子交换Hβ用于乙酸和正丁醇合成乙酸正丁酯的催化反应。
5)  n-butylacetate
乙酸正丁酯
1.
Synthesis of n-butylacetate catalyzed by activated carbon modified by H_2SO_4;
H_2SO_4改性煤基活性炭催化合成乙酸正丁酯
2.
Synthesis of n-Butylacetate with SO_4~(2-)/TiO_2-Hβ Solid Superacid Catalyst;
SO_4~(2-)/TiO_2-Hβ固体超强酸催化合成乙酸正丁酯
3.
Study on the catalytic synthesis of n-butylacetatewith H_2SO_4-K_2Cr_2O_7 modified coal activated carbon;
用浓H_2SO_4-K_2Cr_2O_7改性煤基活性炭催化合成乙酸正丁酯
6)  n-butyl chloroacetate
氯乙酸正丁酯
1.
Synthesis of n-butyl chloroacetate catalyzed by an inorganic solid acid;
无机固体酸催化合成氯乙酸正丁酯
2.
Synthesis of n-butyl chloroacetate catyzed by sodium bisulfateunder microwave irradiation;
微波辐射硫酸氢钠催化合成氯乙酸正丁酯
3.
The synthesis conditions of n-butyl chloroacetate were studied applied solid superacid SO42-/TiO2 as catalyst under microwave irradiation.
在微波辐射下,以SO42-/TiO2固体超强酸为催化剂合成氯乙酸正丁酯。
补充资料:乙酸铅
      分子式Pb(CH3COO)2。白色晶体;熔点280°C,密度3.25克/厘米3(20°C);易溶于水,溶解度为44.3克/100克水(20°C)。三水合乙酸铅Pb(CH3COO)2·3H2O为白色单斜晶体;又称铅糖;密度2.55克/厘米3(25°C);溶解度为 55.04克/100克水;75°C时失水。十水合乙酸铅Pb(CH3COO)2·10H2O为白色正交晶体,密度 1.69克/厘米3(25°C),在室温下容易风化失水。
  
  乙酸铅在水溶液中会形成配位化合物,其电离程度比较小。乙酸铅可由一氧化铅溶于乙酸溶液来制取,也可将水白铅矿2PbCO3·Pb(OH)2或白铅矿PbCO3溶于乙酸来制取。乙酸铅可用于染料和医药工业。
  

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