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醋酸附聚制备大粒径PB胶乳影响因素的研究 被引量:2
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作者 王一业 曾超 +1 位作者 杨景峰 王华伟 《天津化工》 CAS 2020年第4期12-15,共4页
以醋酸为化学附聚剂,对小粒径PB胶乳进行化学附聚,研究醋酸浓度、醋酸加入量、附聚温度、附聚时间对附聚效果的影响,评估醋酸附聚制备的大粒径PB胶乳性能。
关键词 PB胶乳 化学附聚 醋酸 效果
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附聚后胶乳粒子形态对接枝聚合的影响 被引量:1
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作者 左立娟 《石油化工》 CAS CSCD 北大核心 2016年第5期559-563,共5页
以小粒径聚二烯烃胶乳为主干胶乳,分别利用化学附聚、压力附聚和高分子附聚的方法合成大粒径胶乳,并采用相同的接枝聚合工艺对附聚后胶乳进行接枝聚合,考察了附聚后胶乳的粒径分布、静态稳定性、微观结构,分析了接枝后胶乳的特性参数。... 以小粒径聚二烯烃胶乳为主干胶乳,分别利用化学附聚、压力附聚和高分子附聚的方法合成大粒径胶乳,并采用相同的接枝聚合工艺对附聚后胶乳进行接枝聚合,考察了附聚后胶乳的粒径分布、静态稳定性、微观结构,分析了接枝后胶乳的特性参数。实验结果表明,化学附聚后胶乳粒子通过粒子间作用力黏附在一起形成大粒子,接枝率最高(98.8%);压力附聚是小粒径线性分子缠结重新融合形成大粒子,接枝率较低(97.1%),但可实现连续生产;高分子附聚是具有羧基团的高分子附聚剂与小粒子通过键能键合在一起形成的稳态大粒子,接枝稳定性最佳,未见宏观沉淀物。 展开更多
关键词 二烯烃胶乳 ABS 化学附聚 高分子 压力 接枝
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ABS装置聚丁二烯胶乳的生产工艺及应用研究 被引量:3
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作者 梁金奎 《上海化工》 CAS 2022年第4期54-57,共4页
对乳液接枝-本体SAN(苯乙烯、丙烯腈共聚物)掺混法ABS(丙烯腈-丁二烯-苯乙烯共聚物)装置聚丁二烯(PB)胶乳生产工艺进行研究,分析一步法工艺、两步法化学附聚工艺、两步法压力附聚工艺的技术特点及在工业装置中的应用概况。在浙江石油化... 对乳液接枝-本体SAN(苯乙烯、丙烯腈共聚物)掺混法ABS(丙烯腈-丁二烯-苯乙烯共聚物)装置聚丁二烯(PB)胶乳生产工艺进行研究,分析一步法工艺、两步法化学附聚工艺、两步法压力附聚工艺的技术特点及在工业装置中的应用概况。在浙江石油化工有限公司新建40万t/a ABS装置中,优化组合设计聚丁二烯胶乳生产工艺,建立了一步法、两步法相结合的工艺流程,实现对聚丁二烯胶乳品质的灵活控制,使ABS树脂产品的性能可以根据市场需求进行调整。 展开更多
关键词 PB胶乳 ABS树脂 化学附聚 压力
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Electrochemical study on adsorption behavior of surfactants at β-2CaO·SiO2/NaAlO2 interface 被引量:2
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作者 Hai-yan YU Bo WANG +2 位作者 Xiao-lin PAN Ting-ting DING Shi-wen BI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第8期2416-2421,共6页
β-2CaO'SiO2 was obtained with analytical grade reagents. Polyethylene glycol (PEG), sodium polyacrylate (PAAS) and their mixture were used to inhibit the decomposition of β-2CaO·SiO2 in sodium aluminate so... β-2CaO'SiO2 was obtained with analytical grade reagents. Polyethylene glycol (PEG), sodium polyacrylate (PAAS) and their mixture were used to inhibit the decomposition of β-2CaO·SiO2 in sodium aluminate solution. The potential of solid-liquid interface and the adsorption mechanism were studied by the methods of Zeta potential measurement and XPS. The results indicate that PEG and PAAS have synergistic effect on the inhibition of secondary reaction. The inhibitory effect is the best when the volume ratio of PAAS to PEG is 1:1 and the total concentration is 12.5 mg/L. PAAS adsorbs on the surface of β-2CaO-SiO2 by the formation of --COOCa coordinate bond, and the negative charge enters into Stem layer, which results in the decrease of particle potential and the obvious change of binding energy of Ca 2p, Si 2p and O Is. PEG only physically adsorbs on the surface ofβ-2CaO·SiO2, and had little effect on particle potential and binding energy of Ca 2p, Si 2p and O Is. 展开更多
关键词 sodium aluminate solution secondary reaction SURFACTANT (-potential interfacial adsorption electrochemicalperfon'nance
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Chemical adsorption on 2D dielectric nanosheets for matrix free nanocomposites with ultrahigh electrical energy storage 被引量:3
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作者 Jie Chen Zhonghui Shen +4 位作者 Qi Kang Xiaoshi Qian Shengtao Li Pingkai Jiang Xingyi Huang 《Science Bulletin》 SCIE EI CSCD 2022年第6期609-618,M0004,共11页
Relaxor ferroelectric polymers display great potential in capacitor dielectric applications because of their excellent flexibility,light weight,and high dielectric constant.However,their electrical energy storage capa... Relaxor ferroelectric polymers display great potential in capacitor dielectric applications because of their excellent flexibility,light weight,and high dielectric constant.However,their electrical energy storage capacity is limited by their high conduction losses and low dielectric strength,which primarily originates from the impact-ionization-induced electron multiplication,low mechanical modulus,and low thermal conductivity of the dielectric polymers.Here a matrix free strategy is developed to effectively suppress electron multiplication effects and to enhance mechanical modulus and thermal conductivity of a dielectric polymer,which involves the chemical adsorption of an electron barrier layer on boron nitride nanosheet surfaces by chemically adsorbing an amino-containing polymer.A dramatic decrease of leakage current(from 2.4×10^(-6)to 1.1×10^(-7)A cm^(-2)at 100 MV m^(-1))and a substantial increase of breakdown strength(from 340 to 742 MV m^(-1))were achieved in the nanocompostes,which result in a remarkable increase of discharge energy density(from 5.2 to 31.8 J cm^(-3)).Moreover,the dielectric strength of the nanocomposites suffering an electrical breakdown could be restored to 88%of the original value.This study demonstrates a rational design for fabricating dielectric polymer nanocomposites with greatly enhanced electric energy storage capacity. 展开更多
关键词 Boron nitride nanosheets Electron barrier layer Relaxor ferroelectric polymers NANOCOMPOSITES Electrical energy storage
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