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1)  H-l07 Adsorption resin
H-107吸附树脂
2)  aperture H type absorption resin
H型大孔吸附树脂
1.
Results showed that it was most fovourable to use aperture H type absorption resin for the extraction of L PAC from biosynthesized products.
结果表明 ,采用H型大孔吸附树脂从生物合成的反应产物中提取L PAC最佳。
3)  H-103 macroporous resin
H-103大孔吸附树脂
1.
The suitable experimental conditions of H-103 macroporous resin were obtained through static and dynamic adsorption experiment methods.
方法用大孔吸附树脂对模拟苯甲酸废水进行处理,通过静态吸附和动态吸附相结合的方法得出H-103大孔吸附树脂处理苯甲酸废水的最适合的工艺条件。
4)  NK-107 resin
NK-107树脂
5)  Adsorbing resin
吸附树脂
1.
m-Suladimethoxypyrimidine production wastewater was treated by adsorption process with adsorbing resin made by authors.
利用自行制备的吸附树脂处理磺胺间二甲氧嘧啶生产过程中产生的有机废水。
2.
The results show that the adsorbing resin NDA 900 has an excellent performance of adsorption desorption.
研究结果表明 ,NDA 90 0吸附树脂对该废水具有良好的吸附—脱附处理效果。
6)  Polymeric adsorbent
吸附树脂
1.
Polymeric adsorbents for the adsorption of proanthocyanidins were designed and synthesized.
根据原花青素含有疏水性的苯环和酚羟基的特点,设计合成了含有苯环和酰胺基的大孔二乙烯苯-异氰酸三烯丙基酯-丙烯腈(DTA)共聚物吸附树脂,DTA树脂通过疏水作用和氢键吸附原花青素。
2.
In this paper, the dephenolizing process for treatment of phenol-containing wastewater from flotation extraction using modified 8BV-polymeric adsorbent is study.
采用改性8BV型吸附树脂,对含酚废水作进一步脱酚研究,考察了有关工艺条件。
3.
A continuous resin adsorption-desorption process has been developed successfully based on studies of series ultrahigh-crosslinking polymeric adsorbents which have different polarity, big specific area, big adsorption capacity, good mechanical strength, dense nano-pore and pore diameter matching for the molecule diameter of substances adsorbed.
该项目在研制具有不同极性且比表面积高、吸附容量大、机械强度好、纳米孔密集,以及孔径与被吸附物质分子直径相匹配的系列超高交联吸附树脂的基础上,成功地开发出连续式树脂吸附-脱附工艺,实现了此类废水的有效治理,并成功的实现了工业化。
补充资料:大孔网状吸附树脂
分子式:
CAS号:

性质:有时也称为大孔网状吸附树脂(macroreticular adsorbent resin),高分子吸附树脂(polymeric adsorbing resin),高分子吸附剂(poly-meric adsorbent)。这是一种不带离子交换基、具有大孔网状立体结构的高聚物树脂。其结构随单体不同而异,孔隙率、比表面等取决于致孔剂及合成工艺。分为极性、非极性及中性几种。这类树脂具有非常大的比表面(一般≥200m2/g),能从溶液中吸附大分子有机物。它的吸附性能(主要是物理吸附)与活性炭相比,具有再生容易及可反复使用等特点。大孔吸附树脂对分子吸附作用力较弱,只要改变体系的亲水及疏水平衡条件,就可引起吸附的增加或解吸。主要用于污水处理,糖类脱色,抗菌素、维生素、酶、氨基酸、多肽的浓缩、精制及分离,还可用作色谱柱填料及催化剂的载体等。

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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