1) polyaspartic acid

聚天冬氨酸(PASP)
1.
The anti-CaCO3 scaling efficiency of polyaspartic acid(PASP) was evaluated by conductivity method and static method respectively.
采用电导法和静态阻垢法对聚天冬氨酸(PASP)阻CaCO3垢的性能进行了测定。
2) PASP(Polyaspartic acid)

PASP(聚天冬氨酸)
3) poly(aspartic acid)

聚天冬氨酸
1.
Scale inhibiting abilities of poly(aspartic acid) and the combinations of phosphorus-containing inhibitors;
聚天冬氨酸与含磷阻垢剂复配产品的阻垢性能
2.
Synthesis and Characterization of Poly(aspartic acid);

聚天冬氨酸的合成与表征
3.
To synthesize poly(aspartic acid),the hydrolysis of poly-succinimide has to be carried on.
合成聚天门冬氨酸阻垢剂时,都要经历中间产物聚琥珀酰亚胺(PSI)水解生成聚天冬氨酸钠盐这一步骤。
4) PASP

聚天冬氨酸
1.
Photoelectrochemical study of inhibition mechanism of PASP on copper;

聚天冬氨酸对铜缓蚀作用的光电化学研究
2.
Electrochemical study of PASP and its complex as corrosion inhibitors for B30;

聚天冬氨酸及其复配对白铜(B30)缓蚀作用的电化学研究
3.
Synthesis of PASP Copolymers with Citric Acid and Its Scale Inhibition Property;

柠檬酸改性聚天冬氨酸阻垢剂的合成及性能研究
5) polyaspartic acid

聚天冬氨酸
1.
Study on the synthesis of pyrocondensation polyaspartic acid;

热缩聚天冬氨酸合成方法研究
2.
Study on the equation of scale-inhibiting efficiency of polyaspartic acid;

聚天冬氨酸阻垢效能方程的研究
3.
Optimal method for preparing liquid green scale inhibiter polyaspartic acid;

绿色阻垢剂聚天冬氨酸的液相优化制备
6) Poly-aspartic acid

聚天冬氨酸
1.
Poly-aspartic Acid is achieved by hydrolization of Polysuccinimide.

聚天冬氨酸(Polyasparticacid,PASP)是天冬氨酸单体的氨基和羧基缩水而成的聚合物,PASP作为一种阻垢剂,可用于冷却水处理、锅炉水处理、海水淡化、反渗透膜、油田回收水处理等。
2.
Function of poly-aspartic acid for inhibiting calcium carbonate scale was evaluated by air blowing in the laboratory.
用鼓泡法对六种聚天冬氨酸 (Polyasparticacid ,PASP)的阻碳酸钙垢性能进行了评价 ,考察了pH值、阻垢剂用量、温度、恒温时间等对阻垢性能的影响。
3.
The molecular-weight of the poly-aspartic acid which is synthesized with urea and maleic anhydride can reach about 13 000,the best conditions of reaction as follows:the mole ratio of maleic anhydride to urea is 1 ∶0.
以尿素和马来酸酐为原料合成聚天冬氨酸(PASP),最佳反应条件为马来酸酐与尿素摩尔比为1∶0。
补充资料:L-精氨酸-L-天冬氨酸
CAS: 7675-82-4
中文名称: L-精氨酸-L-天冬氨酸
英文名称: L-Arg-L-Asp
中文名称: L-精氨酸-L-天冬氨酸
英文名称: L-Arg-L-Asp
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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