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凹凸棒石在Pickering乳液制备中的应用研究进展 被引量:3
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作者 于惠 朱永峰 +2 位作者 惠爱平 杨芳芳 王爱勤 《日用化学工业》 CAS 北大核心 2021年第7期670-678,共9页
凹凸棒石因具有独特的一维纳米棒状形貌、纳米孔道结构、天然的负电性和良好的水分散性等特点,在Pickering乳液的制备和应用方面受到广泛关注。在介绍凹凸棒石结构特点和理化性质的基础上,综述了凹凸棒石在Pickering乳液制备中的应用研... 凹凸棒石因具有独特的一维纳米棒状形貌、纳米孔道结构、天然的负电性和良好的水分散性等特点,在Pickering乳液的制备和应用方面受到广泛关注。在介绍凹凸棒石结构特点和理化性质的基础上,综述了凹凸棒石在Pickering乳液制备中的应用研究进展,以期为凹凸棒石及其它黏土矿物稳定Pickering乳液的机理研究及应用拓展提供较全面信息。 展开更多
关键词 凹凸棒石 Pickering乳液 稳定机理 黏土矿物
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Removal of antibiotics from aqueous solution by using porous adsorbent templated from eco-friendly Pickering aqueous foams 被引量:2
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作者 hui Yu Yongfeng Zhu +2 位作者 aiping hui Fangfang Yang Aiqin Wang 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2021年第4期352-362,共11页
The aqueous foam template without any solvent and only using the particles stabilizer has attracted much attention for preparation of the porous adsorbents.Herein,a novel porous adsorbent was fabricated via thermal-in... The aqueous foam template without any solvent and only using the particles stabilizer has attracted much attention for preparation of the porous adsorbents.Herein,a novel porous adsorbent was fabricated via thermal-initiated polymerization of Pickering aqueous foams,which was stabilized by the natural sepiolite(Sep)and pine pollen,and utilized for the removal of antibiotic from aqueous solution.The stabilizing mechanism of Pickering aqueous foam of that the Sep was modified with the leaching substance from pine pollen and arranged orderly around the bubble to form a dense"shell"structure was revealed.The adsorbents possessed the hierarchical porous structure and excellent adsorption performance for antibiotic of chlorotetracycline hydrochloride(CTC)and tetracycline hydrochloride(TC).The equilibrium adsorption capacities of CTC and TC were achieved with 465.59 and 330.59 mg/g within 60 min at 25℃,respectively.The adsorption process obeyed Langmuir model and pseudo-second-order adsorption kinetic model.This work provided eco-friendly approach for fabricate porous adsorbents for wastewater treatment. 展开更多
关键词 Porous adsorbent Adsorption Antibiotic Pickering aqueous foams Pollen SEPIOLITE
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Novel eco-friendly spherical porous adsorbent fabricated from Pickering middle internal phase emulsions for removal of Pb(Ⅱ) and Cd(Ⅱ) 被引量:1
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作者 hui Yu Yongfeng Zhu +1 位作者 aiping hui Aiqin Wang 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2022年第2期320-330,共11页
Spherical porous materials prepared from the emulsion template used in the water treatment have displayed a vast prospect, as the high surface area, abundant porous structure, convenient operation and excellent adsorp... Spherical porous materials prepared from the emulsion template used in the water treatment have displayed a vast prospect, as the high surface area, abundant porous structure, convenient operation and excellent adsorption performance. But the tedious fabrication process, high consumption of organic solvent and surfactant limited the application widely. Herein, a facile and eco-friendly spherical porous adsorbent(SPA) is fabricated from the green surfactant-free(corn oil)-in-water Pickering medium internal phase emulsions(Pickering MIPEs) via the convenient ion crosslinking procedure. The Pickering MIPEs synergistically stabilized with the semi-coke(SC), which is the natural particle produced from the shale oil distillation, and sodium alginate(SA) has excellent storage and anti-coalescence stability. The as-prepared porous adsorbent possessed the abundant pore structure, which provided favorable conditions for effective mass transfer in adsorption, and could be tuned by varying the SA dosage. The saturation adsorption capacities of Pb(II) and Cd(II) can be achieved with 460.54 and 278.77 mg/g within 45 min at 25 ℃, respectively. Overall, this study supplied a viable and eco-friendly route for fabricating the spherical porous adsorbent with a tunable porous structure for heavy metal ion wastewater. 展开更多
关键词 Spherical porous adsorbent(SPA) Emulsion template SEMI-COKE Adsorption Heavy metal ion
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黏土矿物遇上植物:矿物功能材料的绿色构筑
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作者 杨芳芳 卢予沈 +2 位作者 牟斌 惠爱平 王爱勤 《中国科学:化学》 北大核心 2025年第5期1094-1112,共19页
黏土矿物是大自然赐予人类的性能独特的纳米结构材料,由于独特的纳米晶体结构、结构负电荷、可控层间域和特殊孔道以及表面性质等,制备的各种矿物功能材料已在国民经济诸多领域得到广泛应用.近年来,随着绿色可持续发展理念受到高度重视... 黏土矿物是大自然赐予人类的性能独特的纳米结构材料,由于独特的纳米晶体结构、结构负电荷、可控层间域和特殊孔道以及表面性质等,制备的各种矿物功能材料已在国民经济诸多领域得到广泛应用.近年来,随着绿色可持续发展理念受到高度重视,利用自然兼容的天然植物提取物替代有污染的化学试剂构筑矿物功能材料备受关注.植物是地球上的主要生命形式之一,因种类繁多、分布广泛、成分多样和持续再生被称为天然原料库.以源于自然的黏土矿物与天然植物结合构筑矿物功能材料,对加快经济社会发展全面绿色转型和构建人与自然生命共同体将产生重要影响.为此,本文总结了近年来基于黏土矿物和天然植物绿色构筑矿物功能材料的研究进展,从资源化学视角展望了面临的挑战和未来发展机遇,以期为自然资源的协同高效利用和矿物功能材料的绿色制备提供有益参考. 展开更多
关键词 黏土矿物 植物提取物 矿物功能材料 绿色构筑 可持续发展
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