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国产HR催化剂在高性能聚丙烯EP548RQ生产的应用
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作者 王飞虎 刘恒 王升 《山东化工》 CAS 2024年第15期202-205,共4页
采用HR催化剂在400 kt/a单环管聚丙烯Spheripol装置上生产了高流动、高刚性抗冲共聚聚丙烯EP548RQ,考察了HR催化剂生产期间,粉料细粉含量及装置运行情况、装置活性、烷基铝(TEAL)和外给电子体(Donor)用量、立构定向能力、氢调性、抗冲... 采用HR催化剂在400 kt/a单环管聚丙烯Spheripol装置上生产了高流动、高刚性抗冲共聚聚丙烯EP548RQ,考察了HR催化剂生产期间,粉料细粉含量及装置运行情况、装置活性、烷基铝(TEAL)和外给电子体(Donor)用量、立构定向能力、氢调性、抗冲共聚能力等,并测试了EP548RQ的力学性能。结果表明:与进口催化剂对比,装置运行更稳定,所产粉料的细粉含量更低,更利于装置长周期运行。HR催化剂活性提高约36%,烷基铝(TEAL)用量减少20%(质量分数),外给电子体用量减少75%(质量分数),氢气加入量降低约42%,所产均聚料的等规度提高0.7%(质量分数),所得产品气味低,无塑化剂,树脂品性得到提升。 展开更多
关键词 丙烯聚合 抗冲聚丙烯 HR催化剂 氢调性 高刚性
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球形Ziegler-Natta催化剂在中石化环管聚丙烯工艺装置的应用
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作者 程刘峰 《广东化工》 CAS 2024年第7期14-16,共3页
在中国石化茂名分公司国产第二代环管聚丙烯工艺装置上,采用国产球形Ziegler-Natta催化剂(催化剂1)生产了PPH-T03、N-Z30S和PPR-M55-S三种牌号聚丙烯。研究了球形催化剂在生产三种牌号聚丙烯时的催化剂效率和氢调性,同时分析了各牌号聚... 在中国石化茂名分公司国产第二代环管聚丙烯工艺装置上,采用国产球形Ziegler-Natta催化剂(催化剂1)生产了PPH-T03、N-Z30S和PPR-M55-S三种牌号聚丙烯。研究了球形催化剂在生产三种牌号聚丙烯时的催化剂效率和氢调性,同时分析了各牌号聚丙烯的粉料粒径及产品质量,并将其与另一个国产球形催化剂(催化剂2)进行了对比分析。实验结果表明,与催化剂2相比,两种催化剂生产的聚丙烯在产品质量上相当,但催化剂1的氢调性更加优异,更有利于装置生产高熔融指数产品。 展开更多
关键词 聚丙烯 环管聚丙烯工艺 球形Z-N催化剂 氢调性 高熔融指数
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ZN 111-4催化剂在兰州石化公司Sphripol-Ⅱ双环管聚丙烯工艺上的应用 被引量:3
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作者 赵爱利 刘兴旺 +1 位作者 于国滨 袁华斌 《石化技术与应用》 CAS 2012年第1期46-50,共5页
为减少聚丙烯(PP)产品的细粉含量,确保PP装置的稳定运行,中国石油兰州石化公司试用了Basell公司ZN 111-4催化剂。结果表明,与装置沿用的ZNM 1催化剂(生产均聚PP产品(牌号T38 F)时使用)和ZN 118催化剂(生产共聚PP产品(牌号SP 179)时使用... 为减少聚丙烯(PP)产品的细粉含量,确保PP装置的稳定运行,中国石油兰州石化公司试用了Basell公司ZN 111-4催化剂。结果表明,与装置沿用的ZNM 1催化剂(生产均聚PP产品(牌号T38 F)时使用)和ZN 118催化剂(生产共聚PP产品(牌号SP 179)时使用)相比,使用ZN 111-4催化剂生产这2种PP产品,催化活性可提高15%以上;生产T 38 F时外给电子体消耗量可降低5%,生产SP 179时外给电子体消耗量可降低33%;PP粉料产品的平均粒径较小,但粒径小于300μm的细粉含量相当;共聚性能与ZN 118催化剂相当。 展开更多
关键词 聚丙烯 ZN 111—4催化剂 Sphripol-Ⅱ双环管工艺 催化活性 氢调性 等规度
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DQ-5催化剂在生产BOPP上的应用 被引量:1
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作者 谭小勇 《辽宁化工》 CAS 2010年第2期173-174,177,共3页
对DQ-5催化剂在生产BOPP时的应用情况进行了分析总结,结果表明,DQ-5催化剂在生产BOPP时,聚合过程运行稳定,产品质量达标。同时,与DQ-3催化剂比较,DQ-5催化剂活性明显高,达到了4.6万倍,其氢调性方面也有明显的优势,解决了氢气加入阀门操... 对DQ-5催化剂在生产BOPP时的应用情况进行了分析总结,结果表明,DQ-5催化剂在生产BOPP时,聚合过程运行稳定,产品质量达标。同时,与DQ-3催化剂比较,DQ-5催化剂活性明显高,达到了4.6万倍,其氢调性方面也有明显的优势,解决了氢气加入阀门操作难的问题。但是,等规度分布不同于DQ-3,低等规度物质偏多,导致H801由于丝带料而经常高报,有待今后解决。 展开更多
关键词 BOPP 催化剂活性 氢调性 等规度
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反应条件对茂金属催化乙烯淤浆聚合的影响
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作者 李森 《现代塑料加工应用》 CAS 2022年第3期33-36,共4页
研究了三乙基铝(AT)和三异丁基铝(TIBA)及其用量、乙烯分压,反应温度、氢气乙烯质量比以及己烯-1用量对茂金属催化乙烯淤浆聚合的影响。结果表明:AT比TIBA更适合于茂金属催化乙烯淤浆聚合。将母液蒸馏后得到的己烷作为稀释剂,减少AT用... 研究了三乙基铝(AT)和三异丁基铝(TIBA)及其用量、乙烯分压,反应温度、氢气乙烯质量比以及己烯-1用量对茂金属催化乙烯淤浆聚合的影响。结果表明:AT比TIBA更适合于茂金属催化乙烯淤浆聚合。将母液蒸馏后得到的己烷作为稀释剂,减少AT用量、提高乙烯分压、增加己烯-1用量、降低氢气乙烯质量比都有助于提高催化剂活性。随着反应温度上升,催化剂活性先升高后下降。聚合物细粉(小于75μm)含量随乙烯分压和反应温度的增加均先下降后升高,随氢气乙烯质量比增大而呈增加的趋势。堆密度随乙烯分压和反应温度增加先升高后下降,随AT和己烯-1的用量增加而下降。该茂金属催化剂具有良好的氢调性和共聚性能。 展开更多
关键词 茂金属催化剂 淤浆聚合 反应条件 催化剂活性 颗粒形态 氢调性 共聚性能
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HA催化剂在生产过程中的应用
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作者 杨雷 《石化技术》 CAS 2021年第3期75-76,共2页
HA催化剂具有超高聚合活性、较高的立构定向性,在低烷基铝浓度下可以生产锂电池膜、电容器膜等低灰分含量的高端聚丙烯产品,利用其在高氢条件下的氢调敏感性,可以在环管法聚丙烯装置上生产超高熔体流动速率的均聚和乙丙无规共聚产品。
关键词 HA催化剂 活性 颗粒度 氢调性
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Ru/FeO_x catalyst performance design: Highly dispersed Ru species for selective carbon dioxide hydrogenation 被引量:2
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作者 Di Zhang Jingjie Luo +5 位作者 Jiajie Wang Xin Xiao Yuefeng Liu Wei Qi Dang Sheng Su Wei Chu 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第1期157-166,共10页
A series of Ru/FeOx catalysts were synthesized for the selective hydrogenation of CO2to CO.Detailed characterizations of the catalysts through X‐ray diffraction,X‐ray photoelectron spectroscopy,transmission electron... A series of Ru/FeOx catalysts were synthesized for the selective hydrogenation of CO2to CO.Detailed characterizations of the catalysts through X‐ray diffraction,X‐ray photoelectron spectroscopy,transmission electron microscopy,and temperature‐programmed techniques were performed to directly monitor the surface chemical properties and the catalytic performance to elucidate the reaction mechanism.Highly dispersed Ru species were observed on the surface of FeOx regardless of the initial Ru loading.Varying the Ru loading resulted in changes to the Ru coverage over the FeOx surface,which had a significant impact on the interaction between Ru and adsorbed H,and concomitantly,the H2activation capacity via the ability for H2dissociation.FeOx having0.01%of Ru loading exhibited100%selectivity toward CO resulting from the very strong interaction between Ru and adsorbed H,which limits the desorption of the activated H species and hinders over‐reduction of CO to CH4.Further increasing the Ru loading of the catalysts to above0.01%resulted in the adsorbed H to be easily dissociated,as a result of a weaker interaction with Ru,which allowed excessive CO reduction to produce CH4.Understanding how to selectively design the catalyst by tuning the initial loading of the active phase has broader implications on the design of supported metal catalysts toward preparing liquid fuels from CO2.?2018,Dalian Institute of Chemical Physics,Chinese Academy of Sciences toward preparing liquid fuels from CO2.?2018,Dalian Institute of Chemical Physics,Chinese Academy of Sciences.Published by Elsevier B.V.All rights reserved. 展开更多
关键词 Highly dispersed Ru/FeOx catalyst Temperature‐programmed surface reaction CO2 selective hydrogenation Product selectivity Hydrogen adsorption
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Tuning catalytic selectivity of propane oxidative dehydrogenation via surface polymeric phosphate modification on nickel oxide nanoparticles 被引量:2
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作者 Kaimin Du Mengjia Hao +5 位作者 Zhinian Li Wei Hong Juanjuan Liu Liping Xiao Shihui Zou Jie Fan 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2019年第7期1057-1062,共6页
Thermal stability has long been recognized as a major limitation for the application of ligand modification in high-temperature reactions. Herein, we demonstrate polymeric phosphate as an efficient and stable ligand t... Thermal stability has long been recognized as a major limitation for the application of ligand modification in high-temperature reactions. Herein, we demonstrate polymeric phosphate as an efficient and stable ligand to tune the selectivity of propane oxidative dehydrogenation. Beneficial from the weakened affinity of propene, NiO modified with polymeric phosphate shows a selectivity 2–3 times higher than NiO towards the production of propene. The success of this regulation verifies the feasibility of ligand modification in high-temperature gas-phase reactions and shines a light on its applications in other important industrial reactions. 展开更多
关键词 Nickel oxide nanoparticle Surface polymeric phosphate Propane oxidative dehydrogenation Tuning selectivity Adsorption
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Confinement effect of carbon nanotubes on the product distribution of selective hydrogenation of cinnamaldehyde 被引量:7
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作者 Hongfei Ma Tie Yu +1 位作者 Xiulian Pan Xinhe Bao 《Chinese Journal of Catalysis》 CSCD 北大核心 2017年第8期1315-1321,共7页
The catalytic activity of metal catalysts can be modulated by confinement within the channels of carbon nanotubes(CNTs).Here,we show that the product distribution of cinnamaldehyde hydrogenation can be modified by con... The catalytic activity of metal catalysts can be modulated by confinement within the channels of carbon nanotubes(CNTs).Here,we show that the product distribution of cinnamaldehyde hydrogenation can be modified by confinement of Ru nanoparticles in CNTs.A catalyst composed of Ru nanoparticles dispersed on the exterior walls of CNTs gave hydrocinnamaldehyde as product.In contrast,confinement of the Ru nanoparticles within CNT channels facilitated hydrogenation of C=O bonds and complete hydrogenation,and both cinnamyl alcohol and hydrocinnamyl alcohol formed in addition to hydrocinnamaldehyde.High‐resolution transmission electron microscopy,Raman spectroscopy,hydrogen temperature‐programmed reduction,and hydrogen temperature‐programmed desorption were used to investigate the characteristics of the catalysts.The results indicate that the different interactions between the confined Ru nanoparticles and the exterior and interior walls of the CNTs,as well as spatial restriction and enrichment within the narrow channels likely play important roles in modulation of the product distribution. 展开更多
关键词 Carbon nanotubes Confined catalysis RUTHENIUM Selective hydrogenation CINNAMALDEHYDE Selectivity modulation
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Synergistic electronic and morphological modulation on ternary Co_(1-x)V_(x)P nanoneedle arrays for hydrogen evolution reaction with large current density 被引量:3
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作者 Mingyang Yang Chaoqun Shang +8 位作者 Feifei Li Chen Liu Zhenyu Wang Shuai Gu Di Liu Lujie Cao Junjun Zhang Zhouguang Lu Hui Pan 《Science China Materials》 SCIE EI CAS CSCD 2021年第4期880-891,共12页
It is a great challenge to prepare non-noble metal electrocatalysts toward hydrogen evolution reaction(HER)with large current density.Synergistic electronic and morphological structures of the catalyst have been consi... It is a great challenge to prepare non-noble metal electrocatalysts toward hydrogen evolution reaction(HER)with large current density.Synergistic electronic and morphological structures of the catalyst have been considered as an effective method to improve the catalytic performance,due to the enhanced intrinsic activity and enlarged accessible active sites.Herein,we present novel ternary Co_(1-x)V_(x)P nanoneedle arrays with modulated electronic and morphological structures as an electrocatalyst for highly efficient HER in alkaline solution.The NF@Co1-xVxP catalyst shows a remarkable catalytic ability with low overpotentials of 46 and 226 mV at current densities of 10 and 400 mA cm^(-2),respectively,as well as a small Tafel slope and superior stability.Combining the experimental and computational study,the excellent catalytic performance was attributed to the improved physical and chemical properties(conductivity and surface activity),large active surface area,and fast reaction kinetics.Furthermore,the assembled Co–V based electrolyzer(NF@Co_(1-x)V_(x)–HNNs(+)||NF@Co_(1-x)V_(x)P(-))delivers small full-cell voltages of 1.58,1.75,and 1.92 V at 10,100,and 300 mA cm^(-2),respectively.Our findings provide a systematic understanding on the V–incorporation strategy to promote highly efficient ternary electrocatalysts via synergistic control of morphology and electronic structures. 展开更多
关键词 modulated morphology and electronic structures ternary Co1-xVxP hydrogen evolution reaction overall water splitting
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A robust self-healing polyurethane elastomer: From H-bonds and stacking interactions to well-defined microphase morphology 被引量:10
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作者 Cheng-Jie Fan Zi-Chun Huang +4 位作者 Bei Li Wen-Xia Xiao En Zheng Ke-Ke Yang Yu-Zhong Wang 《Science China Materials》 SCIE EI CSCD 2019年第8期1188-1198,共11页
Self-healing materials have attracted considerable attention because of their improved safety, lifetime, energy efficiency and environmental impact. Supramolecular interactions have been extensively considered in the ... Self-healing materials have attracted considerable attention because of their improved safety, lifetime, energy efficiency and environmental impact. Supramolecular interactions have been extensively considered in the field of self-healing materials due to their excellent reversibility and sensitive responsiveness to environmental stimuli. However,development of a polymeric material with good mechanical performance as well as self-healing capacity is very challenging. In this study, we report a robust self-healing polyurethane(PU) elastomer polypropylene glycol-2-amino-5-(2-hydroxyethyl)-6-methylpyrimidin-4-ol(PPG-mUPy) by integrating ureidopyrimidone(UPy) motifs with a PPG segment with a well-defined architecture and microphase morphology.To balance the self-healing capacity and mechanical performance, a thermal-triggered switch of H-bonding is introduced. The quadruple H-bonded UPy dimeric moieties in the backbone induce phase separation to form a hard domain as well as enable further aggregation into microcrystals by virtue of the stacking interactions, which are stable in ambient temperature. This feature endows the PU with high mechanical strength. Meanwhile, a high healing efficiency can be realized, when the reversibility of the H-bond was unlocked from the stacking at higher temperature. An optimized sample PPG1000-mUPy50%with a good balance of mechanical performance(20.62 MPa of tensile strength) and healing efficiency(93% in tensile strength) was achieved. This strategy will provide a new idea for developing robust self-healing polymers. 展开更多
关键词 POLYURETHANE H-BONDS stacking interaction microphase morphology SELF-HEALING
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