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1)  stannic acid
锡酸
2)  acid tin plating
酸性镀锡
1.
The effects of addition of TTHA to acid tin plating bath at different current densities on the efficiency in removing Fe~(2+) and on coating quality are investigated in Hull cell.
采用赫尔槽试验,研究了在不同电流密度下,酸性镀锡液中加入三乙四胺六乙酸(TTHA)对去除Fe2+的效果和对镀层的影响;通过盐雾试验及塔菲尔曲线的测量,研究了镀层的耐蚀性能。
3)  stannous oxalate
草酸亚锡
1.
Synthesis of poly(trimethylene terephthalate) catalyzed with stannous oxalate;
草酸亚锡催化合成PTT的研究
2.
The thermal decomposition of stannous oxalate was investigated by differential scanning calorimetry.
以草酸和氧化亚锡为原料,用室温固相一步反应法合成了草酸亚锡,用红外光谱(FTIR)和热重(TG)技术对产物进行了表征。
4)  Sn(Oct)2
辛酸亚锡
1.
In this paper,with D,L-lactic acid as raw material and ZnO-Sn(Oct)2 as catalyst,the lactide was synthesized by the oligomerization and depolymerization under high vacuum.
采用氧化锌和辛酸亚锡为催化剂,在高真空条件下共同催化合成丙交酯。
2.
Under reduced pressure,Poly(L-lactic acid)(PLLA) has been synthesized by ring-opening polymerization of L-lactide(LLA) catalyzed by Sn(Oct)2.
采用自制、提纯的L-丙交酯(LLA),用辛酸亚锡作催化剂,在减压下进行聚L-乳酸(PLLA)的开环聚合研究。
5)  stannous octoate
辛酸亚锡
1.
The catalytic activity of esterification of diisooctyl terephthalate was studied,with stannous oxide,stannous chloride,stannous octoate and their synergism as catalyst.
以3种亚锡类催化剂氧化亚锡、氯化亚锡、辛酸亚锡以及它们之间复配后作为催化剂,对对苯二甲酸二异辛酯酯化反应的催化活性进行了研究,实验结果表明,以氧化亚锡和辛酸亚锡复配后的催化活性最高,氧化亚锡和辛酸亚锡作为催化剂的酯化反应最佳合成工艺条件为:催化剂的加量为0。
2.
Dioctyl phthalate as plasticizer was synthesized from octanol and phthalic anhydride using aluminium oxide,zince acetate,red lead oxide,stannous octoate,paratuluene sulfonic acid or two-component mixtures of the above compounds at certain ratio as catalysts.
介绍了以异辛醇和邻苯二甲酸酐(苯酐)为原料,合成增塑剂邻苯二甲酸二辛酯(DOP)的方法,分别以氧化铝、氧化锌、乙酸锌、红色氧化铅、辛酸亚锡、对甲苯磺酸6种单体催化剂及其以一定比例相互复配的6种复配催化剂合成DOP,考察催化剂对合成DOP的影响,结果表明,氧化铝与辛酸亚锡以1∶1比例复配催化剂为最佳催化剂。
3.
Poly (ε-caprolactone) (PCL) was prepared via ring -opening polymerization ofε-caprolactone (ε-CL) with stannous octoate as initiator.
分别以D,L-乳酸和L-乳酸为原料制得D,L-丙交酯(D,L-LA)和L-丙交酯(L-LA);以辛酸亚锡为内酯开环聚合引发剂,用ε-己内酯(ε-CL)开环均聚合制备聚ε-己内酯,考察了引发剂用量、聚合时间和温度等对聚合产物特性黏数的影响。
6)  zinc stannate
锡酸锌
1.
Study on the optimization of blockburning substance——zinc stannate;
阻燃剂锡酸锌的优化制备
2.
Synthesis of zinc stannate by low-temperature solid-phase reaction method;
低温固相反应合成锡酸
3.
Preparation of zinc stannate and zinc stannate coated nano-sized calcium carbonate by homogeneous precipitation method
均匀沉淀法制备锡酸锌与锡酸锌包覆纳米碳酸钙的研究
补充资料:锡酸
      化学式H2SnO3。有两种形态:α锡酸和β锡酸。它们都是二氧化锡的水合物,其通式为xSnO2·y H2O。α锡酸长期放置或加热会逐渐变成β锡酸。α 锡酸常称氢氧化锡(Ⅳ),为白色无定形固体或凝胶状沉淀,难溶于水,溶于酸、碱:
  
  α 锡酸可由锡(Ⅳ)盐或四卤化锡在室温下水解,或与适量碱或氨水作用而得:
  
  这里的Sn(OH)4就是H2SnO3·H2O,也是SnO2·2H2O。
  
  β锡酸为白色细晶固体,具有SnO2四方晶体结构,不溶于水、酸和碱。在稀的酸或碱作用下会发生胶溶作用而形成溶胶。
  
  经X射线研究证明,这两种锡酸都是含水的锡石SnO2,并不是两种异构体。它们的溶解性不同是由于粒子大小和聚结程度的不同造成的。
  

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