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The structure-directing role of heterologous seeds in the synthesis of zeolite 被引量:2
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作者 Haoyang Zhang Binyu Wang Wenfu Yan 《Green Energy & Environment》 SCIE EI CAS CSCD 2024年第5期792-801,共10页
Zeolites have been widely used as catalysts,ion-exchangers,and adsorbents in chemical industries,detergent industry,steel industry,glass industry,ceramic industry,medical and healthfield,and environmentalfield,and recen... Zeolites have been widely used as catalysts,ion-exchangers,and adsorbents in chemical industries,detergent industry,steel industry,glass industry,ceramic industry,medical and healthfield,and environmentalfield,and recently applied in energy storage.Seed-assisted synthesis is a very effective approach in promoting the crystallization of zeolites.In some cases,the target zeolite cannot be formed in the absence of seed zeolite.In homologous seed-assisted synthesis,the structure of the seed zeolite is the same to that of the target zeolite,while the structure of the seed zeolite is different to that of the target zeolite in the heterologous seed-assisted synthesis.In this review,we briefly summarized the heterologous seed-assisted syntheses of zeolites and analyzed the structure-directing effect of heterologous seeds and surveyed the“common composite building units(CBUs)hypothesis”and the“common secondary building units(SBUs)hypothesis”.However,both hypotheses cannot explain all observations on the heterologous seed-assisted syntheses.Finally,we proposed that the formation of the target zeolite does need nuclei with the structure of target zeolite and the formation of the nuclei of the target zeolite can be promoted by either the undissolved seed crystals with the same CBUs or SBUs to the target zeolite or by the facilitated appropriate distribution of the specific building units due to the presence of the heterologous seed that does not have any common CBUs and SBUs with the target zeolite. 展开更多
关键词 zeolite Heterologous seed SYNTHESIS Structure-directing effect
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Facile synthesis of hierarchical NaX zeolite from natural kaolinite for efficient Knoevenagel condensation 被引量:2
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作者 Wen Xiao Peng Dong +6 位作者 Chan Wang Jingdong Xu Tiesen Li Haibo Zhu Tinghai Wang Renwei Xu Yuanyuan Yue 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第1期75-84,共10页
Zeolite catalysts have found extensive applications in the synthesis of various fine chemicals.However,the micropores of zeolites impose diffusion limitations on bulky molecules,greatly reducing the catalytic efficien... Zeolite catalysts have found extensive applications in the synthesis of various fine chemicals.However,the micropores of zeolites impose diffusion limitations on bulky molecules,greatly reducing the catalytic efficiency.Herein,we explore an economic and environmentally friendly method for synthesizing hierarchical NaX zeolite that exhibits improved catalytic performance in the Knoevenagel condensation reaction for producing the useful fine chemical 2-cyano-3-phenylacrylate.The synthesis was achieved via a low-temperature activation of kaolinite and subsequent in-situ transformation strategy without any template or seed.Systematic characterizations reveal that the synthesized NaX zeolite has both intercrystalline and intra-crystalline mesopores,smaller crystal size,and larger external specific surface area compared to commercial NaX zeolite.Detailed mechanism investigations show that the inter-crystalline mesopores are generated by stacking smaller crystals formed from in-situ crystallization of the depolymerized kaolinite,and the intra-crystalline mesopores are inherited from the pores in the depolymerized kaolinite.This synthesis strategy provides an energy-saving and effective way to construct hierarchical zeolites,which may gain wide applications in fine chemical manufacturing. 展开更多
关键词 Hierarchical NaX zeolite Template-free synthesis Natural kaolinite Knoevenagel condensation
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Dealuminated Hβ zeolite for selective conversion of fructose to furfural and formic acid 被引量:1
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作者 Rui Li Qixuan Lin +3 位作者 Junli Ren Xiaobao Yang Yingxiong Wang Lingzhao Kong 《Green Energy & Environment》 SCIE EI CAS CSCD 2024年第2期311-320,共10页
The fructose-to-furfural transformation is facing major challenges in the selectivity and high efficiency. Herein, we have developed a simple and effective approach for the selective conversion of fructose to furfural... The fructose-to-furfural transformation is facing major challenges in the selectivity and high efficiency. Herein, we have developed a simple and effective approach for the selective conversion of fructose to furfural using Hβ zeolite modified by organic acids for dealuminization to regulate its textural and acidic properties. It was found that citric acid-dealuminized Hβ zeolite possessed high specific surface areas, wide channels and high Brønsted acid amount, which facilitated the selective conversion of fructose to furfural with a maximum yield of 76.2% at433 K for 1 h in the γ-butyrolactone(GBL)-H_(2)O system, as well as the concomitant formation of 83.0% formic acid. The^(13)C-isotope labelling experiments and the mechanism revealed that the selective cleavage of C1–C2 or C5–C6 bond on fructose was firstly occurred to form pentose or C5 intermediate by weak Brønsted acid, which was then dehydrated to furfural by strong Brønsted acid. Also this dealuminized Hβ catalyst showed the great recycling performance and was active for the conversion of glucose and mannose. 展开更多
关键词 FRUCTOSE Dealuminated-Hb zeolite Selective conversion FURFURAL
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EDTA-LDH/zeolite制备及其对重金属离子的吸附
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作者 谢修鑫 廖立兵 +2 位作者 雷馨宇 王丽娟 唐晓尉 《硅酸盐通报》 CAS 北大核心 2024年第1期370-382,共13页
用水热法和焙烧还原法两步合成了乙二胺四乙酸-水滑石/沸石(EDTA-LDH/zeolite)复合材料,并将其用于去除水溶液中的Cd^(2+)、Pb^(2+)、Cu^(2+),系统研究不同条件下EDTA-LDH/zeolite对单一及混合重金属离子溶液中Cd^(2+)、Pb^(2+)、Cu^(2+... 用水热法和焙烧还原法两步合成了乙二胺四乙酸-水滑石/沸石(EDTA-LDH/zeolite)复合材料,并将其用于去除水溶液中的Cd^(2+)、Pb^(2+)、Cu^(2+),系统研究不同条件下EDTA-LDH/zeolite对单一及混合重金属离子溶液中Cd^(2+)、Pb^(2+)、Cu^(2+)的吸附效果与吸附机制。结果表明,当EDTA-LDH/zeolite投加量为0.05 g、重金属离子浓度为1500 mg/L、pH值为6.5、吸附时间为24 h时,EDTA-LDH/zeolite吸附性能最佳。重金属离子间存在竞争吸附,EDTA-LDH/zeolite对Cd^(2+)、Pb^(2+)、Cu^(2+)的最大吸附容量分别为65.33、98.35和108.51 mg/g。去除过程中沉淀作用、表面络合、螯合反应等多种机制协同作用,去除行为均符合Langmuir等温模型与拟二阶动力学模型。 展开更多
关键词 LDH 沸石 EDTA 重金属离子 吸附性能
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Synthesis of spherical nano-ZSM-5 zeolite with intergranular mesoporous for alkylation of ethylbenzene with ethanol to produce m-diethylbenzene
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作者 Siyue Wang Jinhong Li +5 位作者 Qingxin Xu Shengjie Song Yu'ni Jiang Lidong Chen Xin Shi Weiguo Cheng 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第3期298-309,共12页
Catalytic synthesis of m-diethylbenzene(m-DEB)through alkylation of ethylbenzene(EB)may be a promising alternative route in comparison with traditional rectification of mixed DEB,for which the top priority is to devel... Catalytic synthesis of m-diethylbenzene(m-DEB)through alkylation of ethylbenzene(EB)may be a promising alternative route in comparison with traditional rectification of mixed DEB,for which the top priority is to develop efficient and stable heterogeneous catalysts.Here,the spherical nano-ZSM-5 zeolite with abundant intergranular mesoporous is synthesized by the seed-mediated growth method for alkylation of EB with ethanol to produce m-DEB.The results show that the spherical nano-ZSM-5 zeolite exhibits better stability and higher alkylation activity at a lower temperature than those of commercial micropore ZSM-5.And then,the spherical nano-ZSM-5 is further modified by La_(2)O_(3) through acid treatment followed by immersion method.The acid treatment causes nano-ZSM-5 to exhibit the increased pore size but decreased the acid sites,and subsequent La_(2)O_(3) loading reintroduces the weak acid sites.As a result,the HNO_(3)-La_(2)O_(3)-modified catalyst exhibits a slight increase in EB conversion and DEB yield in comparison with unmodified one,and meanwhile,it still maintains high m-DEB selectivity.The catalyst after acid treatment achieves higher catalytic stability besides maintaining the high alkylation activity of EB with ethanol.The present study on the spherical nano-HZSM-5 zeolite and its modification catalyst with excellent alkylation ability provides new insights into the production of mDEB. 展开更多
关键词 zeolite Modification Alkylation reaction m-diethylbenzene Catalyst FIXED-BED
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Production of linear alkylbenzene over Ce containing Beta zeolites
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作者 Shiqi Zhang Shengzhi Gan +1 位作者 Baoyu Liu Jinxiang Dong 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第3期220-227,共8页
Ce-encapsulated Beta zeolite was synthesized by a one-pot hydrothermal method with citric acid complexing Ce in the absence of Na species.Additional citric acid can effectively prevent the deposition of Ce species dur... Ce-encapsulated Beta zeolite was synthesized by a one-pot hydrothermal method with citric acid complexing Ce in the absence of Na species.Additional citric acid can effectively prevent the deposition of Ce species during the hydrothermal synthesis of zeolites,leading to uniform distribution of Ce cluster in the framework of Beta zeolites.Moreover,the sodium-free synthesis system resulted that the Brønsted acid sites were mainly located on the straight channels and external surface of Beta zeolites,improving the utilization of Brønsted acid sites.In addition,Ce encapsulated Beta zeolites showed enhanced activity and robust stability in the alkylation of benzene with 1-dodecene based on the synergistic effect between Ce species and Brønsted acid sites,which pave the way for its practical application in the production of alkylbenzene. 展开更多
关键词 Beta zeolites CATALYSIS ALKYLATION Long-chain olefins
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Development and Catalytic Cracking Performance of Ultrastable Y Zeolite Rich in Secondary Pores
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作者 Li Jiaxing Wang Shengji +3 位作者 Sha Hao Wang Juan Zhou Lingping Wang Lixia 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS CSCD 2024年第2期13-21,共9页
A novel ultra-stable zeolite, NSZ, rich in secondary pores was developed through the combination of gas-phase andmild hydrothermal methods. This zeolite was successfully tested in an industrial setting for the first t... A novel ultra-stable zeolite, NSZ, rich in secondary pores was developed through the combination of gas-phase andmild hydrothermal methods. This zeolite was successfully tested in an industrial setting for the first time in the world. The porestructure characteristics of the NSZ zeolite prepared for industrial use were analyzed and characterized using BET. The resultsindicate a significant increase in the secondary pore volume of NSZ zeolite compared to the existing ultra-stable zeolite HSZ-5, which is produced through a conventional gas-phase method. The average secondary pore volume to total pore volume ratioin NSZ zeolite was found to be 58.96% higher. The catalytic cracking performance of NSZ zeolite was evaluated. The resultsshowed that the NSC-LTA catalyst, with NSZ as the active component, outperformed the HSC-LTA catalyst with HSZ-5 zeolitein terms of obtaining more high-value products (gasoline and liquefied petroleum gas) during the hydrogenated light cycle oilprocessing. Additionally, the NSC-LTA catalyst showed a significant improvement in coke selectivity. 展开更多
关键词 GAS-PHASE ultra-stable zeolite CATALYST catalytic cracking
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Preparation of a zeolite-palladium composite membrane for hydrogen separation:Influence of zeolite film on membrane stability
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作者 Hongmei Wu Xinyu Liu Yu Guo 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第8期44-52,共9页
With the development of hydrogen energy,palladium-based membranes have been widely used in hydrogen separation and purification.However,the poor chemical stability of palladium composite membranes limits their commerc... With the development of hydrogen energy,palladium-based membranes have been widely used in hydrogen separation and purification.However,the poor chemical stability of palladium composite membranes limits their commercial applications.In this study,a zeolite-palladium composite membrane with a sandwich-like structure was obtained by using a TS-1 zeolite film grown on the surface of palladium membrane.The membrane microstructure was characterized by SEM and EDX.The effects of the TS-1 film on the hydrogen permeability and stability of palladium composite membrane were investigated in details.Benefited from the protection of the TS-1 zeolite film,the stability of palladium composite membrane was enhanced.The results indicate that the TS-1-Pd composite membrane was stable after eight cycles of the temperature exchange cycles between 773 K and 623 K.Especially,the loss of hydrogen permeance for TS-1-Pd composite membrane was much smaller than that of the pure palladium membrane when the membrane was tested in the presence of C3H6atmosphere.It indicated that the TS-1-Pd composite membrane had better chemical stability in comparison with pure palladium membrane,owing to its sandwich-like structure.This work provides an efficient way for the deposition of zeolite film on palladium membrane to enhance the membrane stability. 展开更多
关键词 Palladium membrane zeolite film Hydrogen separation STABILITY
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A concise review on surface and structural modification of porous zeolite scaffold for enhanced hydrogen storage
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作者 B.A.Abdulkadir R.S.R.Mohd Zaki +4 位作者 A.T.Abd Wahab S.N.Miskan Anh-Tam Nguyen Dai-Viet N.Vo H.D.Setiabudi 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第6期33-53,共21页
Investigating zeolites as hydrogen storage scaffolds is imperative due to their porous nature and favorable physicochemical properties.Nevertheless,the storage capacity of the unmodified zeolites has been rather unsat... Investigating zeolites as hydrogen storage scaffolds is imperative due to their porous nature and favorable physicochemical properties.Nevertheless,the storage capacity of the unmodified zeolites has been rather unsatisfactory(0.224%-1.082%(mass))compared to its modified counterpart.Thus,the contemporary focus on enhancing hydrogen storage capacities has led to significant attention towards the utilization of modified zeolites,with studies exploring surface modifications through physical and chemical treatments,as well as the integration of various active metals.The enhanced hydrogen storage properties of zeolites are attributed to the presence of aluminosilicates from alkaline and alkaline-earth metals,resulting in increased storage capacity through interactions with the charge density of these aluminosilicates.Therefore,there is a great demand to critically review their role such as well-defined topology,pore structure,good thermal stability,and tunable hydrophilicity in enhanced hydrogen storage.This article aimed to critically review the recent research findings based on modified zeolite performance for enhanced hydrogen storage.Some of the factors affecting the hydrogen storage capacities of zeolites that can affect the rate of reaction and the stability of the adsorbent,like pressure,structure,and morphology were studied,and examined.Then,future perspectives,recommendations,and directions for modified zeolites were discussed. 展开更多
关键词 zeolites Hydrogen storage Surface modification Adsorption Active metal
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Phosphotungstic acid immobilized on amino-functionalized TS-1 zeolite as a solid acid catalyst for the synthesis of tributyl citrate
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作者 Pei Li Bianfang Shi +4 位作者 Junyao Shen Ran Cui Wenze Guo Ling Zhao Zhenhao Xi 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第6期199-210,共12页
The amino-functionalization of TS-1 zeolite followed by immobilization of phosphotungstic acid(HPW)was presented to prepare a strong solid acid catalyst for the synthesis of bio-based tributyl citrate from the esterif... The amino-functionalization of TS-1 zeolite followed by immobilization of phosphotungstic acid(HPW)was presented to prepare a strong solid acid catalyst for the synthesis of bio-based tributyl citrate from the esterification of citric acid and n-butanol.γ-Aminopropyltriethoxysilane(APTES)was first grafted on the TS-1 zeolite via the condensation reactions with surface hydroxyl groups,and subsequently the HPW was immobilized via the reaction between the amino groups and the protons from HPW-forming strong ionic bonding.The Keggin structure of HPW and MFI topology of TS-1 zeolite were well maintained after the modifications.The amino-functionalization generated abundant uniformly distributed active sites on TS-1 for HPW immobilization,which promoted the dispersity,abundance,as well as the stability of the acid sites.The tetrahedrally coordinated framework titanium and non-framework titania behaved as weak Lewis acid sites,and the protons from the immobilized HPW acted as the moderate or strong Brønsted acid sites.An optimized TBC yield of 96.2%(mol)with a conversion of-COOH of 98.1%(mol)was achieved at 150℃for 6 h over the HPW immobilized on amino-functionalized TS-1.The catalyst exhibited good stability after four consecutive reaction runs,where the activity leveled off at still a relatively high level after somewhat deactivation possibly caused by the leaching of a small portion of weakly anchored APTES or HPW. 展开更多
关键词 AMINO-FUNCTIONALIZATION Phosphotungstic acid TS-1 zeolite ESTERIFICATION Tributyl citrate
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High-silica faujasite zeolite-tailored metal encapsulation for the low-temperature production of pentanoic biofuels
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作者 Wenhao Cui Yuanshuai Liu +11 位作者 Pengfei Guo Zhijie Wu Liqun Kang Huawei Geng Shengqi Chu Linying Wang Dong Fan Zhenghao Jia Haifeng Qi Wenhao Luo Peng Tian Zhongmin Liu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第1期552-560,I0012,共10页
Zeolite-encapsulated metal nanoclusters are at the heart of bifunctional catalysts,which hold great potential for petrochemical conversion and the emerging sustainable biorefineries.Nevertheless,efficient encapsulatio... Zeolite-encapsulated metal nanoclusters are at the heart of bifunctional catalysts,which hold great potential for petrochemical conversion and the emerging sustainable biorefineries.Nevertheless,efficient encapsulation of metal nanoclusters into a high-silica zeolite Y in particular with good structural integrity still remains a significant challenge.Herein,we have constructed Ru nanoclusters(~1 nm)encapsulated inside a high-silica zeolite Y(SY)with a SiO_(2)/Al_(2)O_(3) ratio(SAR)of 10 via a cooperative strategy for direct zeolite synthesis and a consecutive impregnation for metal encapsulation.Compared with the benchmark Ru/H-USY and other analogues,the as-prepared Ru/H-SY markedly boosts the yields of pentanoic biofuels and stability in the direct hydrodeoxygenation of biomass-derived levulinate even at a mild temperature of 180℃,which are attributed to the notable stabilization of transition states by the enhanced acid accessibility and properly sized constraints of zeolite cavities owing to the good structural integrity. 展开更多
关键词 High-silica zeolite Y Metal encapsulation Bifunctional catalysis HYDRODEOXYGENATION Biofuels
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OSDA-free synthesis of FeZSM-22 zeolite from natural minerals for n-octane hydroisomerization
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作者 Tiesen Li Ting Chen +5 位作者 Yinghui Ye Peng Dong TinghaiWang Qingyan Cui Chan Wang Yuanyuan Yue 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第2期51-59,共9页
A seed-directed approach to synthesizing Fe ZSM-22 zeolite without organic structure directing agent(OSDA)was developed by using Fe-rich diatomite as all aluminum and iron sources.The Fe ZSM-22zeolite with optimal cry... A seed-directed approach to synthesizing Fe ZSM-22 zeolite without organic structure directing agent(OSDA)was developed by using Fe-rich diatomite as all aluminum and iron sources.The Fe ZSM-22zeolite with optimal crystallinity and purity can be obtained by systematically adjusting feed composition and synthesis conditions.Characterizations show that Fe ZSM-22 zeolite synthesized with OSDA-free owns high crystallinity,obvious thin needle-shaped morphology and high Bronsted/Lewis acid ratio.Significantly,when used for n-octane hydroisomerization reaction,its derived catalyst exhibits the best catalytic performance reflected by the highest selectivity to C_(8)isomers compared to the two reference catalysts prepared based on a Fe-containing and a Fe-free ZSM-22 synthesized through an OSDA-directed route from natural diatomite and conventional chemicals,respectively.This work provides an alternative route to sustainably synthesizing heteroatomic zeolites with high performance. 展开更多
关键词 FeZSM-22 zeolite OSDA-free synthesis Natural minerals n-octane hydroisomerization
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Synthesis of NaY zeolite from a submolten depolymerized perlite:Alkalinity effect and crystallization kinetics
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作者 Yanli Qu Peng Dong +4 位作者 Li Yang Yuanyuan Yue Haoliang Wang Jingcai Cheng Chao Yang 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第6期130-138,共9页
NaY zeolites are synthesized using submolten salt depolymerized natural perlite mineral as the main silica and alumina sources in a 0.94 L stirred crystallizer.Effects of alkalinity ranging from 0.38 to 0.55(n(Na_(2)O... NaY zeolites are synthesized using submolten salt depolymerized natural perlite mineral as the main silica and alumina sources in a 0.94 L stirred crystallizer.Effects of alkalinity ranging from 0.38 to 0.55(n(Na_(2)O)/n(SiO_(2)))on the relative crystallinity,textural properties and crystallization kinetics were investigated.The results show that alkalinity exerts a nonmonotonic influence on the relative crystallinity and textural properties,which exhibit a maximum at the alkalinity of 0.43.The nucleation kinetics are studied by fitting the experimental data of relative crystallinity with the Gualtieri model.It is shown that the nucleation rate constant increases with increasing alkalinity,while the duration period of nucleation decreases with increasing alkalinity.For n(Na_(2)O)/n(SiO_(2))ratios ranging from 0.38 to 0.55,the as-synthesized NaY zeolites exhibit narrower crystal size distributions with the increase in alkalinity.The growth rates determined from the variations of average crystal size with time are 51.09,157.50,46.17 and 24.75 nm·h^(-1),respectively.It is found that the larger average crystal sizes at the alkalinity of 0.38 and 0.43 are attributed to the dominant role of crystal growth over nucleation.Furthermore,the combined action of prominent crystal growth and the longer duration periods of nucleation at the alkalinity of 0.38 and 0.43 results in broader crystal size distributions.The findings demonstrate that control of the properties of NaY zeolite and the crystallization kinetics can be achieved by conducting the crystallization process in an appropriate range of alkalinity of the reaction mixture. 展开更多
关键词 NaY zeolite Submolten salt depolymerized perlite ALKALINITY Crystallization kinetics
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Facile in situ synthesis and characterization of Fe@Si/zeolite Na composites with magnetic core–shell structures from natural materials for enhanced curcumin loading capacity
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作者 Munasir Nasir Nuhaa Faaizatunnisa +2 位作者 Muhammad Naufal Ariesta Lydia Rohmawati Rifqi Aulia Nurazizah 《Nanotechnology and Precision Engineering》 EI CAS CSCD 2024年第2期69-86,共18页
Curcumin is a natural polyphenol that is used in various traditional medicines.However,its inherent properties,such as its rapid degradation and metabolism,low bioavailability,and short half-life,are serious problems ... Curcumin is a natural polyphenol that is used in various traditional medicines.However,its inherent properties,such as its rapid degradation and metabolism,low bioavailability,and short half-life,are serious problems that must be resolved.To this end,a drug carrier incorporating natural magnetic cores in a zeolite framework was developed and applied to the loading of curcumin in ethanol solutions.In this system,curcumin is encapsulated in a zeolite Na(ZNA)magnetic core–shell structure(Fe@Si/ZNA),which can be easily synthesized using an in situ method.Synthesis of Fe_(3)O_(4) nanoparticles was carried out from natural materials using a co-precipitation method.Analysis of the prepared magnetic core–shell structures and composites was carried out using vibrating-sample magnetometery,Fourier transform infrared spectroscopy,transmission electron microscopy,and x-ray diffraction.The cumulative loading of curcumin in the ZNA composite with 9%nanoparticles was found to reach 90.70%with a relatively long half-life of 32.49 min.Stability tests of curcumin loading in the composite showed that adding magnetic particles to the zeolite framework also increased the stability of the composite structure.Adsorption kinetics and isotherm studies also found that the system follows the pseudo-second-order and Langmuir isotherm models. 展开更多
关键词 zeolite Na Magnetic core–shell nanoparticles(MNPs) ZNA Adsorption CURCUMIN
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CoFe_(2)O_(4)@Zeolite催化剂活化过一硫酸盐对甲基橙的强化降解:性能与机理
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作者 王磊 李建军 +4 位作者 宁军 胡天玉 王洪阳 张占群 武琳馨 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2023年第4期469-476,共8页
采用共沉淀水热法制备了CoFe_(2)O_(4)@Zeolite(CFZ),并将其用于活化过一硫酸盐(PMS)降解合成染料。综合表征表明,组成多孔壳层的CoFe_(2)O_(4)纳米颗粒均匀地覆盖在Na-A沸石上。CFZ的比表面积为107.06 m^(2)/g,是原始沸石比表面积的3倍... 采用共沉淀水热法制备了CoFe_(2)O_(4)@Zeolite(CFZ),并将其用于活化过一硫酸盐(PMS)降解合成染料。综合表征表明,组成多孔壳层的CoFe_(2)O_(4)纳米颗粒均匀地覆盖在Na-A沸石上。CFZ的比表面积为107.06 m^(2)/g,是原始沸石比表面积的3倍。CFZ的饱和磁化强度为29.0 A·m^(2)·kg^(–1),可以进行有效磁分离。催化降解实验表明,CFZ/PMS体系对甲基橙(MO)的去除率远远高于单独使用CFZ或PMS。在最佳条件([MO]=50 mg/L、[PMS]=1.0 mmol/L、0.2 g/L CFZ、pH 8和T=25℃)下,MO去除率可达到97.1%。实验研究了pH、PMS用量、CFZ用量、MO浓度以及共存阴离子等因素对CFZ催化性能的影响。活性氧粒子淬灭实验表明,1O2和O_(2)^(•–)在降解过程中起主导作用。CFZ具有良好的回收性能,5次循环后MO去除效率仅下降2.4%。本文还详细讨论了CFZ/PMS体系的催化降解机理。 展开更多
关键词 高级氧化技术 过一硫酸盐活化 磁性催化剂 CoFe_(2)O_(4)@zeolite 活性氧粒子 降解
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甲状腺功能亢进症患者血清神经调节蛋白4水平及其临床意义 被引量:1
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作者 王丽萍 牛尚梅 +4 位作者 柴巧英 刘云 史冬丹 李欣欣 胡新磊 《检验医学与临床》 CAS 2024年第14期2025-2029,共5页
目的 探讨甲状腺功能亢进症(甲亢)患者血清神经调节蛋白4(NRG4)水平及其临床意义。方法 选取2019年8月至2021年8月该院收治的69例甲亢患者作为甲亢组,同期收治的57例亚临床甲亢患者作为亚临床甲亢组,同期健康体检者63例为健康对照组。... 目的 探讨甲状腺功能亢进症(甲亢)患者血清神经调节蛋白4(NRG4)水平及其临床意义。方法 选取2019年8月至2021年8月该院收治的69例甲亢患者作为甲亢组,同期收治的57例亚临床甲亢患者作为亚临床甲亢组,同期健康体检者63例为健康对照组。对甲亢患者均给予硫酰胺类药物甲巯咪唑治疗3个月。比较3组促甲状腺激素(TSH)、游离三碘甲腺原氨酸(FT3)、游离甲状腺素(FT4)水平;分析甲亢患者治疗前后的TSH、FT3、FT4、NRG4水平变化;评估治疗前血清NRG4辅助诊断甲亢的价值;分析治疗前血清NRG4水平与TSH、FT3、FT4水平的相关性。结果 甲亢组治疗前TSH水平[(0.14±0.03)mU/L]低于亚临床甲亢组[(0.25±0.04)mU/L]、健康对照组[(2.61±0.45)mU/L],甲亢组治疗前FT3、FT4、NRG4水平[(15.54±2.68)pmol/L、(41.36±10.02)pmol/L、(3.42±1.12)ng/mL]高于亚临床甲亢组[(6.25±0.27)pmol/L、(20.34±3.45)pmol/L、(2.61±0.52)ng/mL]、健康对照组[(3.74±0.39)pmol/L、(12.03±2.16)pmol/L、(1.89±0.49)ng/mL],差异均有统计学意义(P<0.05)。甲亢患者FT3、FT4、NRG4水平在治疗1个月[(12.04±2.41)pmol/L、(30.25±7.84)pmol/L、(2.84±0.87)ng/mL]、3个月[(7.65±2.23)pmol/L、(19.63±4.25)pmol/L、(2.37±0.61)ng/mL]时相比治疗前降低(P<0.05),TSH水平在治疗1个月[(0.87±0.21)mU/L]、3个月[(1.42±0.32)mU/L]相比治疗前升高(P<0.05)。受试者工作特征曲线分析结果显示:血清NRG4诊断甲亢的曲线下面积为0.859(95%CI=0.799~0.919,P<0.05),灵敏度为66.7%,特异度为88.9%,最佳临界值为2.39 ng/mL,约登指数为0.556。Pearson相关分析结果显示:NRG4水平与TSH水平呈负相关(r=-0.494,P<0.05),与FT3、FT4水平均呈正相关(r=0.502、0.644,P<0.05)。结论 甲亢患者血清NRG4呈相对高水平,硫酰胺类药物治疗后其水平下降;甲亢患者NRG4水平与甲状腺激素指标水平具有相关性,对甲亢的临床诊治具有辅助评估价值。 展开更多
关键词 甲状腺功能亢进症 神经调节蛋白4 促甲状腺激素 游离三碘甲腺原氨酸 游离甲状腺素
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基于FAERS数据库的周期蛋白依赖性激酶4/6抑制剂血液毒性真实世界研究 被引量:1
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作者 董俊丽 宋海斌 +1 位作者 张韶辉 郭珩 《医药导报》 CAS 北大核心 2024年第1期137-142,共6页
目的 基于美国美国食品药品管理局(FDA)的不良事件报告系统(FAERS)分析3种周期蛋白依赖性激酶4/6(CDK4/6)抑制剂上市后的不良事件(AEs)信号,为临床用药安全提供参考。方法 提取FAERS数据库2015年第一季度至2022年第一季度共29个季度AEs... 目的 基于美国美国食品药品管理局(FDA)的不良事件报告系统(FAERS)分析3种周期蛋白依赖性激酶4/6(CDK4/6)抑制剂上市后的不良事件(AEs)信号,为临床用药安全提供参考。方法 提取FAERS数据库2015年第一季度至2022年第一季度共29个季度AEs,利用报告比值比法(ROR)和比例报告比值法(PRR)对CDK4/6抑制剂AEs进行数据挖掘。结果 CDK4/6抑制剂相关性血液毒性报告共有7 872份,各抑制剂血液毒性AEs占总AEs比例依次为哌柏西利(80.31%)>瑞博西利(15.36%)>阿贝西利(4.33%)。血液毒性常见中性粒细胞减少和贫血。哌柏西利(2 982/6 322,47.17%)和瑞博西利(613/1 209,50.70%)致中性粒细胞减少的报告占比较阿贝西利(117/341,34.31%)更高,血液毒性主要发生在药物开始使用后60 d内(1 630,61.86%),哌柏西利中位时间最长,且用药90 d后仍有32.9%的患者存在血液毒性,不同CDK4/6抑制剂血液毒性临床表现及发生强度存在差异。结论 哌柏西利、阿贝西利、瑞博西利均会导致明显的血液毒性,其中阿贝西利致血液毒性报告最少,但要警惕阿贝西利致贫血后导致死亡的风险。用药后的2个月内密切监测全血细胞计数,关注中性粒细胞、血红蛋白等水平,警惕CDK4/6抑制剂相关血液AEs的发生。 展开更多
关键词 周期蛋白依赖性激酶4/6抑制剂 血液毒性 药品不良反应 真实世界研究
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抗PCV4 Cap蛋白抗体间接ELISA检测方法的建立 被引量:1
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作者 徐鹏 吉卫龙 +7 位作者 伊立超 张爽 郝嘉翼 高子函 任世斌 时小双 任林柱 李昌 《中国动物传染病学报》 CAS 北大核心 2024年第1期115-121,共7页
为建立可应用于猪圆环病毒4型(PCV4)候选疫苗特异性抗体检测与评价方法,本研究应用PCV4 Cap蛋白作为抗原,以PCV4多克隆兔源抗体作为一抗,优化各反应的最佳条件并建立了针对PCV4 Cap蛋白抗体的间接ELISA方法。最佳条件为2μg/m L PCV4 Ca... 为建立可应用于猪圆环病毒4型(PCV4)候选疫苗特异性抗体检测与评价方法,本研究应用PCV4 Cap蛋白作为抗原,以PCV4多克隆兔源抗体作为一抗,优化各反应的最佳条件并建立了针对PCV4 Cap蛋白抗体的间接ELISA方法。最佳条件为2μg/m L PCV4 Cap纯化蛋白,4℃包被过夜,5%脱脂乳封闭60 min,待检血清稀释比例为1∶800,反应条件为37℃、45 min,酶标抗体稀释比例为1∶5000,反应条件为37℃、60 min,底物显色时间为10 min,Cut of f值为0.157,灵敏度可达102400倍。成功建立的抗PCV4Cap蛋白抗体间接ELISA检测方法具有良好的敏感性、重复性和特异性。可为检测PCV4候选疫苗的特异性抗体水平提供一种精准、高效的方法。 展开更多
关键词 猪圆环病毒4 免疫效果检测 间接ELISA方法
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血清PCT、CRP及IL-4水平预测小儿支原体肺炎病情严重程度的价值 被引量:1
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作者 王耀邦 沙宁 +1 位作者 杨娟 杨珊珊 《中外医学研究》 2024年第2期69-72,共4页
目的:探讨血清降钙素原(PCT)、C反应蛋白(CRP)及白细胞介素-4(IL-4)水平预测支原体肺炎患儿病情严重程度的价值。方法:选取2019年1月—2023年1月淮安市第二人民医院儿科收治的102例支原体肺炎患儿作为研究对象,根据病情将患儿分为轻症... 目的:探讨血清降钙素原(PCT)、C反应蛋白(CRP)及白细胞介素-4(IL-4)水平预测支原体肺炎患儿病情严重程度的价值。方法:选取2019年1月—2023年1月淮安市第二人民医院儿科收治的102例支原体肺炎患儿作为研究对象,根据病情将患儿分为轻症组59例和重症组43例。比较两组临床资料及基质细胞衍生因子(CXCL12)、γ干扰素(IFN-γ)、硫化氢(H_(2)S)、超氧化物歧化酶(SOD)、基质金属蛋白酶-9(MMP-9)、PCT、CRP及IL-4水平,多因素分析采取非条件logistic逐步回归分析,采用ROC曲线分析PCT、CRP及IL-4水平对重症支原体肺炎的预测价值。结果:两组性别、年龄、病程及CXCL12、IFN-γ、H_(2)S、SOD、MMP-9水平比较,差异无统计学意义(P>0.05);重症组PCT、CRP、IL-4水平显著高于轻症组,差异有统计学意义(P<0.05)。logistic逐步回归分析结果显示,PCT、CRP及IL-4为重症支原体肺炎独立危险因素(P<0.05)。ROC分析显示,PCT、CRP及IL-4预测重症支原体肺炎的曲线下面积分别为0.896、0.851、0.787。结论:血清PCT、CRP及IL-4水平均参与支气管肺炎患儿的病情进展,且可作为重症支气管肺炎的诊断指标。 展开更多
关键词 支原体肺炎 儿童 降钙素原 C反应蛋白 白细胞介素-4
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左归降糖舒心方调控TLR4/NF-κB通路抑制糖尿病心肌病小鼠心肌纤维化的机制研究 被引量:1
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作者 黄娟 王一阳 +2 位作者 肖凡 刘秀 喻嵘 《湖南中医药大学学报》 CAS 2024年第5期729-736,共8页
目的 基于Toll样受体4(Toll-like receptor 4,TLR4)/核因子κB(nuclear factor-κB,NF-κB)信号通路探讨左归降糖舒心方对糖尿病心肌病MKR小鼠心肌纤维化及炎症因子的影响。方法 以8周龄雄性MKR小鼠为实验对象,采用高脂饮食联合腹腔注... 目的 基于Toll样受体4(Toll-like receptor 4,TLR4)/核因子κB(nuclear factor-κB,NF-κB)信号通路探讨左归降糖舒心方对糖尿病心肌病MKR小鼠心肌纤维化及炎症因子的影响。方法 以8周龄雄性MKR小鼠为实验对象,采用高脂饮食联合腹腔注射链脲佐菌素(streptozotocin,STZ)40 mg/kg构建糖尿病心肌病模型,随机分为中药高剂量组[33.67 g/(kg·d)左归降糖舒心方2 g/mL]、中药低剂量组[16.84 g/(kg·d)左归降糖舒心方2 g/mL]、西药联合组[0.23 g/(kg·d)二甲双胍联合1.5 mg/(kg·d)依那普利]和模型组(等容量蒸馏水);另设FVB小鼠为空白对照组(等容量蒸馏水)。每组10只,连续给药8周后取材。收集尾静脉血液检测空腹血糖水平;采用HE、Masson染色观察心肌病理改变,电镜观察心肌组织超微结构变化;采用ELISA检测小鼠血清肿瘤坏死因子-α(tumor necrosis factor-α,TNF-α)及白细胞介素-1β(interleukin-1β,IL-1β)含量;采用Western blot法检测TLR4、NF-κB p56、p-NF-κB p56/NF-κB p56蛋白表达情况;RT-qPCR及Western blot检测小鼠心肌组织Ⅰ型胶原(collagen type I,CollagenⅠ)、Ⅲ型胶原(collagen typeⅢ,CollagenⅢ)及α-平滑肌肌动蛋白(α-smooth muscle actin,α-SMA)的表达水平。结果 与空白对照组比较,模型组小鼠空腹血糖及血清中TNF-α、IL-1β含量增高(P<0.01);心肌细胞结构紊乱,胶原含量增加,心肌细胞重度退行性变;心肌组织中TLR4、NF-κB p56、p-NF-κB p56/NF-κB p56蛋白表达上调(P<0.01),CollagenⅠ、CollagenⅢ、α-SMA mRNA及蛋白表达增加(P<0.05,P<0.01),中药高剂量组小鼠心肌组织CollagenⅠ、CollagenⅢ蛋白表达增加(P<0.01)。与模型组比较,中药高、低剂量组和西药联合组小鼠空腹血糖及血清中TNF-α、IL-1β含量均降低(P<0.01);心肌结构改善,胶原沉积减少;心肌组织中TLR4、NF-κB p56、p-NF-κB p56/NF-κB p56蛋白表达下调(P<0.01),CollagenⅠ、CollagenⅢ、α-SMA蛋白及mRNA表达下调(P<0.01)。与西药联合组比较,中药低剂量组小鼠空腹血糖及血清中TNF-α、IL-1β含量均升高(P<0.01),心肌结构无明显改善,胶原沉积无显著减少;心肌组织中TLR4、NF-κB p56、p-NF-κB p56/NF-κB p56蛋白表达上调(P<0.01),CollagenⅠ、CollagenⅢ、α-SMA蛋白及mRNA表达上调(P<0.01)。结论 左归降糖舒心方能抑制心肌炎性反应、改善心肌细胞结构,其作用机制可能与调控TLR4/NF-κB通路、下调细胞炎症因子表达、抑制心肌纤维化有关。 展开更多
关键词 左归降糖舒心方 心肌纤维化 炎性反应 TLR4/NF-κB通路 MKR鼠 糖尿病
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