报道了一种含多酯基不对称阳离子Gem in i表面活性剂(Ⅰ)的合成。在甲醇钠催化下,N,N-二甲基乙醇胺与邻苯二甲酸二甲酯酯交换制得二(N,N-二甲基氨基乙基)邻苯二甲酸酯(Ⅱ),收率92%(以邻苯二甲酸二甲酯计);氯乙酸分别与十二醇、十六醇反...报道了一种含多酯基不对称阳离子Gem in i表面活性剂(Ⅰ)的合成。在甲醇钠催化下,N,N-二甲基乙醇胺与邻苯二甲酸二甲酯酯交换制得二(N,N-二甲基氨基乙基)邻苯二甲酸酯(Ⅱ),收率92%(以邻苯二甲酸二甲酯计);氯乙酸分别与十二醇、十六醇反应合成氯乙酸十二醇酯(Ⅲ)和十六醇酯(Ⅳ),产率分别为93%(以十二醇计)、91%(以十六醇计);(Ⅱ)与(Ⅲ)反应,经石油醚洗涤除去杂质后,再与(Ⅳ)季铵盐化,经乙腈重结晶,得白色晶体(I),采用两相滴定法测定其质量分数为99.5%,收率59%(以氯乙酸十二醇酯计)。用IR1、HNMR、元素分析表征了其结构,测定了其CMC和γCMC,研究了其乳化性和泡沫性质。展开更多
The two kinds of rigid polyurethane (PU) foams were prepared with respectively adding the refined alkali lignin and alkali lignin modified by 3-chloro-1,2-epoxypropane to be instead of 15% of the polyether glycol in...The two kinds of rigid polyurethane (PU) foams were prepared with respectively adding the refined alkali lignin and alkali lignin modified by 3-chloro-1,2-epoxypropane to be instead of 15% of the polyether glycol in weight. The indexes of mechanical performance, apparent density, thermal stability and aging resistance were separately tested for the prepared PU foams. The results show that the mechanical property, thermal insulation and thermal stability for PU foam with modified alkali lignin are excellent among two kinds of PU foams and control samples. The additions of the refined alkali lignin and modified alkali lignin to PU foam have little effect on the natural aging or heat aging resistance except for decreasing hot alkali resistance apparently. Additionally, the thermal conductivity of modified alkali lignin PU foam is lowest among two kinds of PU foams and control samples. The alkali lignin PU foam modified by 3-chloro-1,2-epoxypropane could be applied in the heat preservation field.展开更多
In this study,orthogonal experiments were conducted to investigate the influence of expandable graphite(EG),dimethyl methylphosphonate(DMMP),triethanolamine(TEA),and isocyanate content on the compressive and bonding s...In this study,orthogonal experiments were conducted to investigate the influence of expandable graphite(EG),dimethyl methylphosphonate(DMMP),triethanolamine(TEA),and isocyanate content on the compressive and bonding strengths,oxygen index,and fluidity of rigid polyurethane foam(RPUF).The results revealed that EG significantly increased the oxygen index of RPUF,enlarged the diameter of foam cells,and decreased the cell-closed content in foam;thus,leading to a pressure drop in RPUF.However,excessive EG was capable of reducing the fluidity of polyurethane slurry.TEA exhibited significant influence on the compressive strength of RPUF,which dropped initially,and then increased.DMMP had a remarkable effect on the flame retardant property and compressive strength of RPUF.Compressive strength of RPUF initially displayed an increase followed by a decrease with increasing dosage of DMMP,and achieved the maximum value at DMMP dosage of 4%.DMMP could effectively reduce the diameter of RPUF cells leading to an increase in the percentage of close area in foam.DMMP displayed the flame-retardation effects mainly in the gas phase leading to a significant enhancement in the oxygen index of RPUF.Moreover,the compressive strength and bonding strength of RPUF decrease significantly with the increase of isocyanate content due to the increased blowing efficiency by the CO_2.The oxygen index and flowing length of foam increased with the increase in isocyanate dosage.展开更多
文摘报道了一种含多酯基不对称阳离子Gem in i表面活性剂(Ⅰ)的合成。在甲醇钠催化下,N,N-二甲基乙醇胺与邻苯二甲酸二甲酯酯交换制得二(N,N-二甲基氨基乙基)邻苯二甲酸酯(Ⅱ),收率92%(以邻苯二甲酸二甲酯计);氯乙酸分别与十二醇、十六醇反应合成氯乙酸十二醇酯(Ⅲ)和十六醇酯(Ⅳ),产率分别为93%(以十二醇计)、91%(以十六醇计);(Ⅱ)与(Ⅲ)反应,经石油醚洗涤除去杂质后,再与(Ⅳ)季铵盐化,经乙腈重结晶,得白色晶体(I),采用两相滴定法测定其质量分数为99.5%,收率59%(以氯乙酸十二醇酯计)。用IR1、HNMR、元素分析表征了其结构,测定了其CMC和γCMC,研究了其乳化性和泡沫性质。
文摘The two kinds of rigid polyurethane (PU) foams were prepared with respectively adding the refined alkali lignin and alkali lignin modified by 3-chloro-1,2-epoxypropane to be instead of 15% of the polyether glycol in weight. The indexes of mechanical performance, apparent density, thermal stability and aging resistance were separately tested for the prepared PU foams. The results show that the mechanical property, thermal insulation and thermal stability for PU foam with modified alkali lignin are excellent among two kinds of PU foams and control samples. The additions of the refined alkali lignin and modified alkali lignin to PU foam have little effect on the natural aging or heat aging resistance except for decreasing hot alkali resistance apparently. Additionally, the thermal conductivity of modified alkali lignin PU foam is lowest among two kinds of PU foams and control samples. The alkali lignin PU foam modified by 3-chloro-1,2-epoxypropane could be applied in the heat preservation field.
基金supported by the National Natural Science Foundation of China(No.51304027)China Postdoctoral Science Foundation(2014M560567 and 2015T80730)+4 种基金Shandong Province Science and Technology Development Plan(2014GSF120012)the State Key Program of Coal Joint Funds of National Natural Science Foundation of China(Nos.51134020 and U1261205)Shandong Province Natural Science Foundation(No.ZR2011EL036)the Doctoral Scientific Research Foundation of Binzhou University(No.2013Y06)the Key Technology Projects for Preventing Major Accident of National Security State Administration of Work Safety
文摘In this study,orthogonal experiments were conducted to investigate the influence of expandable graphite(EG),dimethyl methylphosphonate(DMMP),triethanolamine(TEA),and isocyanate content on the compressive and bonding strengths,oxygen index,and fluidity of rigid polyurethane foam(RPUF).The results revealed that EG significantly increased the oxygen index of RPUF,enlarged the diameter of foam cells,and decreased the cell-closed content in foam;thus,leading to a pressure drop in RPUF.However,excessive EG was capable of reducing the fluidity of polyurethane slurry.TEA exhibited significant influence on the compressive strength of RPUF,which dropped initially,and then increased.DMMP had a remarkable effect on the flame retardant property and compressive strength of RPUF.Compressive strength of RPUF initially displayed an increase followed by a decrease with increasing dosage of DMMP,and achieved the maximum value at DMMP dosage of 4%.DMMP could effectively reduce the diameter of RPUF cells leading to an increase in the percentage of close area in foam.DMMP displayed the flame-retardation effects mainly in the gas phase leading to a significant enhancement in the oxygen index of RPUF.Moreover,the compressive strength and bonding strength of RPUF decrease significantly with the increase of isocyanate content due to the increased blowing efficiency by the CO_2.The oxygen index and flowing length of foam increased with the increase in isocyanate dosage.