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20篇 您的检索式:作者名="Nithitanakul"
    题名 作者 年代 出处 被引量
1Thermal, crystallization, mechanical and rheological characteristics of poly ( trimethylene terephthalate)/poly ( ethylene terephthalate) blends显示文摘Supaphol Pitt Dangseeyun Nujalee Thanomkiat Pakin Nithitanakul Manit 2004Journal of Polymer Science Part B: Polymer Physics2004,42,4:1
2显示文摘Mit up patham C Nithitanakul M Supaphol P 2004Macromole cules Chem &Physic2004,20,5:1
3Ultrafine electrospun polyamide-6 fibers:Effect of solution conditions on morphology and average fiber diameter显示文摘MIT-UPPATHAM C NITHITANAKUL M SUPAPHOL P 0,,17:1
4Ultrafine electrospun polyamide-6 fibers: effect of solution conditionson morphology and average fiber diameter显示文摘MIT-UPPATHAM C NITHITANAKUL M SUPAPHOL P 2004Macromolecular Chemistry and Physics2004,205,17:1
5Melt rheology and die swell of PA6/LDPEblends by using lithium ionomer as a Compatibilizer显示文摘Wachiraphon Sinthavathavorn Manit Nithitanakul Brian PGrady 2009Polymer Bulletin2009,63,1:1
6Blends of low- density polyethylene with nylon compatibilized with a sodium- neutralized carboxylate ionomer显示文摘Atchara Lahor Manit Nithitanakul Brian P Grady 2004European Polymer Journal2004,40,11:1
7显示文摘Mit-uppatham C Nithitanakul M Supaphol P 2004Maeromol Chem Phys2004,205,:1
8Preparation and characterization of uhrafine electrospun Polyacrylonitrile fibers and their subsequent pyrolysis to carbon fibers 显示文摘Juthawan Sutasinpromprae Sujinda Jitjaicham Manit Nithitanakul 2006Polymer International2006,55,:1
9Thermal,crystallization,and rheological characteristics of poly(trimethylene terephthalate)/poly(butylene terephthalate) blend显示文摘Nujalee Dangseeyun Pitt Supaphol Manit Nithitanakul 2004Polymer Testing2004,23,:1
10Melt Rheology of Low-Density Polyethylene/Polyamide 6 using Ionomer as a Compatibilizer显示文摘Wachiraphon Sinthavathavorn Manit Nithitanakul Brian P. Grady Rathanawan Magaraphan 2008Polymer Bulletin2008,,3:1
11Ultrafine electrospun polyamide-6 fibers: Effect of emitting electrode polarity on morphology and average fiber diameter显示文摘Pitt Supaphol Chidchanok Mit-Uppatharn Manit Nithitanakul 2005Journal of Applied Polymer Science2005,43,24:1
12Ultrafme electrospun polyamide-6 fibers:Effect of solution conditions on morphology and average fiber diameter显示文摘Mit-uppatham C Nithitanakul M Supaphol P 2004Macromol Chem Physic2004,205,:1
13Thermal, crys- tallization ,and rheological characteristics of poly(trimethy- lene terephthalate)/poly(butylene terephthalate) blends显示文摘Dangseeyun N Supaphol P Nithitanakul M 2004Poly- mer Testing2004,23,2:1
14Carbon dioxide adsorption/desorption performance of single-and blended-amines-impregnated MCM-41 mesoporous silica in post-combustion carbon capture显示文摘High-surface-area,hexagonal-structured mesoporous silica,MCM-41,was synthesized and wet impregnated with three different amines of 2-(ethylamino)ethanol(EAE),ethylenediamine(EDA),and tetraethylenepentamine(TEPA)for use as solid adsorbents in post-combustion CO_(2) capture application.The CO_(2) adsorption test was performed at 25℃and atmospheric pressure using 15/85 vol%of CO_(2)/N2 at a 20-mL/minute flow rate.Desorption was carried out at 100℃under 20 mL/minute of N2 flow.The results show that the capacity and rate of CO_(2) adsorption obtained from all the amine-modified adsorbents were significantly increased with increasing amine loading due to carbamate formation.Desorption efficiency and heat duty for regeneration were also affected by the amount of amine loading.The more stable the carbamate produced,the higher the energy was required.They exhibited the highest adsorption-desorption performance at 60 wt%amines used for impregnation.Blended EAE/TEPA at different weight ratios at a total concentration at 60 wt%amines was impregnated on MCM-41 adsorbent.Sorbent impregnated with 50%/10%of EAE/TEPA showed the best performance of 4.25 mmolCO_(2)/g at a high adsorption rate,a low heat duty of 12 kJ/mmolCO_(2) and with 9.4%reduction of regeneration efficiency after five repeated adsorption-desorption cycles.Pailin Muchan Chintana Saiwan Manit Nithitanakul 2022Clean Energy2022,6,3:1
15Preparation and characterization of ultrafine electrospun polyacrylonitrile fibers and their subsequent pyrolysis to carbon fibers 显示文摘Sutasinpromparae J Jiljiaieham S Nithitanakul M 2006Polymer International2006,55,8:1
16Ultrafine elec- trospuning polyamide 6 fibers: Effect of solution conditions on morphology and average fiber diameter 显示文摘Mit-uppatham C Nithitanakul M Supaphol P 2004Maeromol Chem Phys2004,205,17:1
17Melt rheology and die swell of PA6/LDPE blends by using lithium ionomer as a compatibilizer显示文摘Sinthavathavom W Nithitanakul M Grady B P 0,,01:1
18Thermal, Crystallization and Rheological Characteristics of Poly( trimethylene terephalate )/Poly ( butylenes terephthalate )blends显示文摘Nujalee Dangseeyun Pitt Supaphol Manit Nithitanakul 2004Polymer Testing2004,23,:1
19Melt rheology of low density polyethylene/polyamide 6 using ionomer as a compatibilizer显示文摘Wachiraphon Sinthavathavorn Manit Nithitanakul 2008Polymer Bulletin2008,61,3:1
20Investigation of adsorption/desorption performance by aminopropyltriethoxysilane grafted onto different mesoporous silica for post-combustion CO_(2) capture显示文摘Mesoporous silicas with hexagonal structure(MCM-41 and SBA-15)and cubical interconnected pore structure(KIT-6)were synthesized and modified with aminopropyltriethoxysilane(APTES)for using as adsorbents in carbon-dioxide(CO_(2))-adsorption application.The CO_(2)-adsorption experiment was carried out at room temperature and atmospheric pressure using 15%CO_(2) with a flow rate of 20 mL/min and the desorption experiment was carried out at 100℃ under N_(2) balance with a flow rate of 20 mL/min.The adsorption capacity and adsorption rate of all modified mesoporous silicas were enhanced due to the presence of primary amine in the structure,which was able to form a fast chemical reaction with CO_(2).All adsorbents showed good adsorption performance stability after using over five adsorption/desorption cycles.Due to the effect of the adsorbents’porous structure on the adsorption/desorption process,an adsorbent with sufficient pore-size diameter and pore volume together with interconnected pore,KIT-6,represents a promising adsorbent that gave the optimum adsorption/desorption performance among others.It showed reasonable adsorption capacity with a high rate of adsorption.In addition,it could also be regenerated with 99.72% efficiency using 12.07 kJ/mmol CO_(2) of heat duty for regeneration.Pailin Muchan Chintana Saiwan Manit Nithitanakul 2020Clean Energy2020,4,2:0
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