| ²é¿´: 712 | »Ø¸´: 5 | |||
| ±¾Ìû²úÉú 1 ¸ö ·ÒëEPI £¬µã»÷ÕâÀï½øÐв鿴 | |||
[½»Á÷]
Ò»¶Î»°Ð£¶Ô
|
|||
|
ÕªÒª£º²ÉÓÃÈܼÁÈÈ·½·¨ºÏ³ÉÁ˽é¿×¾ÛºÏÎü¸½²ÄÁÏ£¬ÀûÓÃɨÃèµç×ÓÏÔ΢¾µ(SEM)£¬µªÆøÎü¸½ÒÇ(BET)£¬ºìÍâ¹âÆ×ÒǶԺϳɵÄÎü¸½²ÄÁϽøÐÐÁ˱íÕ÷£¬²¢Í¨¹ýCO2Îü¸½ÆÀ¼ÛʵÑéÑо¿Á˲»Í¬¾ÛºÏÌõ¼þ¡¢²»Í¬¹¤ÒÕÌõ¼þ¶ÔÎü¸½²ÄÁÏCO2Îü¸½ÐÔÄܵÄÓ°Ïì¡£½á¹û±íÃ÷£º¾Û¶þÒÒÏ©±½°±»ù»¯²úÎï¡¢¶þÒÒÏ©±½ÓëßÁह²¾ÛÎï¡¢¶þÒÒÏ©±½Óëßäßò¹²¾ÛÎï¾ùΪ½é¿×½á¹¹£¬±È±íÃæ»ýÔÚ200-800m2/g£¬¿×¾¶ÔÚ20-50nm£»Îü¸½ÐÔÄܾ۶þÒÒÏ©±½°±»ù»¯²úÎ¶þÒÒÏ©±½ÓëßÁह²¾ÛÎ¶þÒÒÏ©±½Óëßäßò¹²¾ÛÎÎü¸½ÐÔÄܵÄÇ¿ÈõÓë¾ÛºÏÎïµÄ¼îÐÔÏà¹Ø£»¾ÛºÏÎïµÄÎü¸½ÐÔÄÜÓëCO2Ũ¶ÈÏà¹ØÐÔ×î´ó£¬µ±CO2Ũ¶È´ï60%ʱ£¬¾ÛºÏÎï²ÄÁϵÄÎü¸½Á¿¿É´ï0.2273g/gÎü¸½¼Á¡£ Abstract: Using a solvent heating way to synthesize polymerization adsorption materials, Using scanning electronic microscope (SEM), nitrogen adsorption meter (BET), the infrared spectroscope to characterizate the synthesised adsorption materials, and study the influence of different polymerization conditions and technological conditions to CO2 adsorption performance of adsorption materials through the CO2 adsorption appraisal experimental. The results indicated that the divinyl benzene polymerization ammoniation product, the divinyl benzene and pyridine polymer, divinyl benzene and imidazole polymer pertain to mesoporous structure, it¡¯s surface area in 200~800m2/g, pore size distribution in 20~50nm; The adsorption performance of divinyl benzene and imidazole polyme is best, the adsorption performance of divinyl benzene polymerization ammoniation product is poor. The superiority of adsorption performance with polymer alkaline related; When CO2 concentration reaches 60%, the adsorption quantity of polymer can reach 0.2273g/g adsorbent; The polymer adsorption performance and the CO2 density relevance are biggest, when the CO2 density reaches 60%, The polymer material's adsorptive capacity may reach the 0.2273g/g absorbent. The influence of CO2 concentration on polymer adsorption performance is biggest. |
» ²ÂÄãϲ»¶
Çóµ÷¼Á
ÒѾÓÐ4È˻ظ´
0854Çóµ÷¼Á
ÒѾÓÐ27È˻ظ´
²ÄÁÏÏà¹Ø×¨Òµ344Çóµ÷¼ÁË«·Ç¹¤¿ÆÑ§Ð£»ò¿ÎÌâ×é
ÒѾÓÐ27È˻ظ´
300Çóµ÷¼Á
ÒѾÓÐ12È˻ظ´
291Çóµ÷¼Á
ÒѾÓÐ10È˻ظ´
Ò»Ö¾Ô¸»¦9£¬326ÇóÉúÎïѧµ÷¼Á
ÒѾÓÐ12È˻ظ´
ÉúÎïѧµ÷¼Á
ÒѾÓÐ10È˻ظ´
320Çóµ÷¼Á
ÒѾÓÐ5È˻ظ´
½ÓÊÜÈκε÷¼Á
ÒѾÓÐ7È˻ظ´
»¯Ñ§070300 Çóµ÷¼Á
ÒѾÓÐ29È˻ظ´
» ÇÀ½ð±ÒÀ²£¡»ØÌû¾Í¿ÉÒԵõ½:
³ÏÑûÉ걨 | Ϋ·»Ñ§Ôº¡°ÂÌÉ«´ß»¯Ð²ÄÁÏÓë¹â»¯Ñ§×ª»¯É½¶«Ê¡¹¤³ÌÑо¿ÖÐÐÄ¡°¿ª·Å¿ÎÌâ
+1/485
¹ã¶«Ê¯ÓÍ»¯¹¤Ñ§Ôº»·¾³¹¤³Ìרҵ˶ʿÉú£¬´óÀà07£¬08£¬09¶¼¿ÉÒÔµ÷¼Á£¬Ïȵ½Ïȵã¡
+1/485
ËÕÖݹú¼ÒʵÑéÊÒ---ÄϾ©´óѧÁªºÏÅàÑø²©Ê¿ÕÐÉú£¨2026Çï¼¾Èëѧ£©
+5/255
ɽ¶«Õ÷Å®ÓÑ£¬×ø±ê¼ÃÄÏ
+1/171
26ÄêÇïÈëѧ²©Ê¿ÕÐÉú¡¾¶þÅú¡¿
+1/91
Å·ÖÞ¡°CO2²¶¼¯Óë¼ÓÇâ´ß»¯×ª»¯¡±²©Ê¿ÕÐÆ¸£¨½Ý¿Ë-µÂ¹ú-˹ÂåÎÄÄáÑÇÈý¹úÏîÄ¿£©
+1/89
Ì©¹úÅÅÃûµÚÒ»ÊÀ½çÅÅÃû221λÖìÀ¡¹¦´óѧÔÚ»ªÕÐÉú-ÔÚ»ª¾Í¶ÁѧԺÕýʽÕÐÉúÁË
+1/86
Ïã¸Û³ÇÊдóѧ£¨¶«Ý¸£©À×½ø³Ì²©Ê¿¿ÎÌâ×éÕÐÆ¸Ñо¿ÖúÀí
+1/80
ÐÂ¼ÓÆÂ¹úÁ¢´óѧ»¯Ñ§ÏµÁõС¸Ö½ÌÊÚ¿ÎÌâ×éÕÐÊÕ²©Ê¿Éú3-4Ãû
+1/77
¹ã¶«Ê¯ÓÍ»¯¹¤Ñ§Ôº£¬»¯Ñ§¹¤³Ì£¬ÕÐÊÕµ÷¼ÁÉú£¬ÏßÉÏÃæÊÔ
+2/50
×ø±êÖ£ÖÝ£¬Õ÷Å®ÓÑ
+1/46
ÖÐÐÂÂÌÉ«¿Æ¼¼Ñо¿Ôº£¨É½¶«¼ÃÄÏ£©ÕÐÊÕ»úеÉè¼Æ·½ÏòʵϰÉú
+1/35
×ø±êºÓ±±ÐĮ̈£¬Õ÷Å®ÓÑ
+1/35
AIRS΢ÄÉ»úÆ÷ÈËÖÐÐijÏÕÐÑо¿ÐÍ˶ʿÉú£¨Mphil£©¡¢È«Ö°¿ÆÑÐÖúÀí£¨RA£©¡¢ÊµÏ°Éú£¨Intern£
+1/10
ÖØÇìÈýÏ¿¿Æ¼¼´óѧµç´Å³¡Óë΢²¨¼¼Êõרҵ½ÓÊÕµ÷¼Á£¬¿¼Êý¶þ¿Éµ÷£¬ÏµÍ³4ÔÂ13ÈÕ¿ª·Å
+1/6
ºÓÄÏʡҽѧ¿ÆÑ§ÔºÍõÄþÀûԺʿ¿ÆÑÐÍŶӲ©Ê¿¡¢²©ºó¡¢Ë¶Ê¿ÕÐÆ¸£¨ÓбàÖÆ/°²¼Ò·Ñ/¿ÆÑÐÆô¶¯¾
+1/6
»ªÄÏʦ·¶´óѧ»·¾³Ñ§Ôº´ó·Ö×ÓÌåϵ¶à³ß¶ÈÄ£ÄâÓëʵÑéÑо¿ÍŶÓÕÐÊÕ2026Ä꿼Ñе÷¼ÁÉú1Ãû
+1/5
ÎÄÏ×ÇóÖú
+1/3
ÕÐ07Àíѧµ÷¼ÁÉú£¬Ê£Óà2¸öÃû¶î
+1/2
Ïã¸Û³ÇÊдóѧ»úеϵÕŃײ©Ê¿¿ÎÌâ×éÕÐÆ¸ÏȽøÖÆÔì·½Ïò²©Ê¿ºó
+1/1
°®ÓëÓêÏÂ
ÈÙÓþ°æÖ÷ (Ö°Òµ×÷¼Ò)
- ·ÒëEPI: 283
- Ó¦Öú: 10 (Ó×¶ùÔ°)
- ¹ó±ö: 3.592
- ½ð±Ò: 33341.6
- Ìû×Ó: 4644
- ÔÚÏß: 1456.1Сʱ
- ³æºÅ: 535832
2Â¥2011-03-08 18:57:56
°®ÓëÓêÏÂ
ÈÙÓþ°æÖ÷ (Ö°Òµ×÷¼Ò)
- ·ÒëEPI: 283
- Ó¦Öú: 10 (Ó×¶ùÔ°)
- ¹ó±ö: 3.592
- ½ð±Ò: 33341.6
- Ìû×Ó: 4644
- ÔÚÏß: 1456.1Сʱ
- ³æºÅ: 535832
3Â¥2011-03-08 19:00:17
°®ÓëÓêÏÂ
ÈÙÓþ°æÖ÷ (Ö°Òµ×÷¼Ò)
- ·ÒëEPI: 283
- Ó¦Öú: 10 (Ó×¶ùÔ°)
- ¹ó±ö: 3.592
- ½ð±Ò: 33341.6
- Ìû×Ó: 4644
- ÔÚÏß: 1456.1Сʱ
- ³æºÅ: 535832
ankang276(½ð±Ò+4): 2011-03-08 20:57:03
|
µÚÒ»¾äµÄºóÃæ²¿·ÖÄã×Ô¼º½²Óï̬¸Ä¸Ä¡£ The results indicated that the divinyl benzene polymerization ammoniation product, the divinyl benzene and pyridine polymer, divinyl benzene and imidazole polymer pertain to mesoporous structure with surface area between 200 and 800m2/g, pore size distribution between 20 and 50nm. |
4Â¥2011-03-08 19:08:33
°®ÓëÓêÏÂ
ÈÙÓþ°æÖ÷ (Ö°Òµ×÷¼Ò)
- ·ÒëEPI: 283
- Ó¦Öú: 10 (Ó×¶ùÔ°)
- ¹ó±ö: 3.592
- ½ð±Ò: 33341.6
- Ìû×Ó: 4644
- ÔÚÏß: 1456.1Сʱ
- ³æºÅ: 535832
5Â¥2011-03-08 19:14:47
°®ÓëÓêÏÂ
ÈÙÓþ°æÖ÷ (Ö°Òµ×÷¼Ò)
- ·ÒëEPI: 283
- Ó¦Öú: 10 (Ó×¶ùÔ°)
- ¹ó±ö: 3.592
- ½ð±Ò: 33341.6
- Ìû×Ó: 4644
- ÔÚÏß: 1456.1Сʱ
- ³æºÅ: 535832
ankang276(½ð±Ò+4): 2011-03-08 20:57:20
| ¡°When CO2 concentration reaches 60%, the adsorption quantity of polymer can reach 0.2273g/g adsorbent; The polymer adsorption performance and the CO2 density relevance are biggest, when the CO2 density reaches 60%, The polymer material's adsorptive capacity may reach the 0.2273g/g absorbent. The influence of CO2 concentration on polymer adsorption performance is biggest. ¡±½¨ÒéʹÓùýȥʽ£¡ |
6Â¥2011-03-08 19:15:38













»Ø¸´´ËÂ¥