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| 1 | Structures and catalytic performances of Me/SAPO-34(Me=Mn,Ni,Co)catalysts for low-tem perature SCR of NO_x by ammonia显示文摘Me/SAPO-34(Me=Mn,Ni,Co)series of catalysts were prepared by a wetness impregnation method and investigated for the selective catalytic reduction of nitrogen oxides with ammonia(NH 3-SCR).Among them,Mn/SAPO-34 catalyst was found as the most promising candidate based on its superior low-temperature activity.The catalysts were characterized by X-ray diffraction(XRD),transmission electron microscopy images(TEM),nuclear magnetic resonance(NMR),X-ray photoelectron spectroscopy(XPS),temperature programmed reduction and desorption(TPR and TPD),and diffuse reflectance infrared Fourier transformed spectroscopy(DRIFTS)of NH_(3)/NO_(x)adsorption.Mn/SAPO-34 is obviously different from Ni/SAPO-34 and Co/SAPO-34 in the active species state and distribution.Surface MnO_(x)species which play an essential role in NO oxidation and NO_(2)adsorption,act as better active sites than nickel and cobalt mostly in the form of the aluminates and silicates. | Xuesong Liu Zhiming Sui Hongfeng Chen Yong Chen Haigang Liu Peng Jiang Zhongyun Shen Wensheng Linghu Xiaodong Wu | 2021 | Journal of Environmental Sciences2021,33,6: | 8 |
| 2 | 低温SCR脱硝催化剂研究进展显示文摘使用低温SCR技术可提高脱硝设备的使用寿命,降低处理成本,具有广阔的发展应用前景,开发低温SCR脱硝催化剂是实现该技术是必要条件之一。本文综述了各种低温SCR催化剂的研究现状,主要从元素掺杂改性、载体的更换和制备方法的改变等方面进行介绍,最后,针对现有研究中存在的不足提出了未来低温SCR催化剂的发展方向。 | 黄哲彪 钟圣俊 | 2020 | 广东化工2020,47,14: | 6 |
| 3 | 基于金属有机骨架和稻谷壳前体构筑ZnZrO_(x)&bio-SAPO-34双功能催化剂及CO_(2)加氢制低碳烯烃显示文摘CO_(2)过量排放导致全球气候异常,通过CO_(2)催化加氢将CO_(2)转化为具有高附加值的基础化学品或燃料是实现碳循环的有效方式,同时也有助于实现我国的“碳中和”目标。本文报道了基于稻谷壳前体制备具有多层次、相互贯通的介孔及大孔结构的bio-SAPO-34分子筛,该结构有利于反应过程中反应中间体的传质。本文系统地研究了分子筛前体液浓度、微孔导向剂种类及浓度、生物模板加入量等因素对bio-SAPO-34合成过程中维持生物模板分级结构的影响规律。将bio-SAPO-34与ZnZrOx固溶体氧化物组装构筑ZnZrO_(x)&bio-SAPO-34双功能催化剂用于催化CO_(2)加氢制备低碳烯烃反应。在380℃、3MPa的反应条件下,双功能催化剂的CO_(2)转化率为11.8%,低碳烯烃的选择性为66.4%(占烃类产物),且经过连续反应60h后未发现催化剂明显失活。 | 李雯 詹国武 黄加乐 李清彪 | 2022 | 化工进展2022,41,3: | 4 |
| 4 | 柴油车选择性催化还原和氨逃逸催化研究进展显示文摘为了进一步提升国Ⅵ柴油车的污染物净化能力,开发更有效的机外净化体系,系统性地回顾了选择性催化还原和氨逃逸催化技术研究进展和应用现状。探讨选择性催化还原反应和氨逃逸催化反应过程中的反应机理,并介绍了2种技术的不同催化器类型和应用优势,重点阐述了催化器类型、载体,系统结构和反应条件等对选择性催化还原催化器中NO_(x)还原活性、N_(2)O排放和NH_(3)逃逸的影响以及其对氨逃逸催化器中NH_(3)转化率和N_(2)选择性的影响。结果表明:对于2种选择性催化还原催化器,铜基比钒基具有更宽的活性温度窗口和优异的催化活性,但铜基催化器同样面临着N_(2)O生成和NH_(3)逃逸等挑战;对于3种氨逃逸催化器,贵金属型具有较高的NH_(3)氧化活性但N_(2)选择性较低,而分子筛型与金属型的性能相反,综合两者优势的双涂层型可以在较宽温度范围内同时实现较高的NH_(3)转化率和N_(2)选择性,但三者都面临N_(2)O排放控制问题。因此,铜基催化器是最具应用前景的选择性催化还原催化器,而双涂层氨逃逸催化器则能够更高效降低随之增加的NH_(3);这2种技术均可实现现阶段柴油车排放达标,但现有技术仍存在不足,需要进一步解决催化过程中N_(2)O生成的问题;未来的发展将主要集中在2种技术的耦合研究,联合开发控制系统以保证同时获得更高的催化效率。 | 李松峰 张春化 李阳阳 叶荣来 孙宏杰 | 2022 | 长安大学学报(自然科学版)2022,42,1: | 3 |
| 5 | 粉煤灰活化及其制备多孔催化材料的研究进展显示文摘粉煤灰是煤燃烧过程产生的重要固体废弃物,产量巨大,其排放不仅占用了大量土地资源,还引发了一系列环境问题。目前,粉煤灰的资源化利用方式主要为建筑材料,附加值较低。粉煤灰中SiO_(2)、Al_(2)O_(3)总量超过80%,以粉煤灰制备多孔催化材料可实现粉煤灰的高附加值资源化利用。但由于原始粉煤灰的热稳定性高、成型性差,需要对其进行改性处理。介绍了粉煤灰的基本理化特性,包括粉煤灰的化学组成、晶相结构、粒径分布等。并对目前粉煤灰的改性方式进行分析,包括粉煤灰直接做载体和分子筛,其中酸改性、碱改性和等离子体改性是常用的粉煤灰直接做载体的改性方式;一步水热法、两步水热法、碱熔融-水热法和微波辅助法是常用的粉煤灰基分子筛合成方法。此外,对粉煤灰基催化剂的应用领域进行了概述,包括有机降解、有机合成和无机污染物脱除等,其中有机降解主要包含光催化反应和非光催化反应,有机合成主要包括缩聚反应和酯化反应,无机污染物脱除主要包括氮氧化物处理和汞催化氧化。目前粉煤灰做多孔催化材料有较大发展潜力,但常规改性方式各有利弊,技术还不够成熟,需进一步完善;不同反应体系对粉煤灰载体性质要求不一,改性方式应贴合催化反应需求。最后对目前粉煤灰制备多孔催化材料的发展做出展望,可对后续粉煤灰高值化利用以及粉煤灰基催化剂的相关研究提供支撑。 | 陆强 吴亚昌 徐明新 刘子树 张平新 欧阳昊东 | 2021 | 洁净煤技术2021,27,3: | 3 |
| 6 | Enhanced hydrothermal stability of Cu-SAPO-34 with an ultrathin TiO_(2)coated by atomic layer deposition for NH3-SCR显示文摘Reducing pollution and carbon emissions is an important step toward peaking CO_(2)emissions before 2030 and reaching carbon neutrality before 2060,and heavy diesel vehicle pollution,particularly nitrogen oxides(NOx)emissions,is an essential part.CuSAPO-34 is a CHA-type small pore molecular sieve with excellent ammonia(NH_(3))selective catalytic reduction(NH_(3)-SCR)catalytic activity,but it cannot be stored or applied because of severe degradation caused by low-temperature hydrothermal aging.To improve the hydrothermal stability,TiO_(2)was coated on the surface of Cu-SAPO-34 by the ALD method to form a uniform nanolayer.Though this ultrathin TiO_(2)nanolayer has little effect on NH_(3)-SCR catalytic activity of Cu-SAPO-34,the resistance to low-temperature hydrothermal aging in liquid water at 80℃for 24 h has greatly been improved.A study carried out by SEM,XRD,NH_(3)-TPD,and EPR,showed that the ultra-thin TiO_(2)nanolayers were covered uniformly and hydrolysis of frameworks silicon and the migration of Cu^(2+)was retarded.This method has some implications for the future preparation of highly robust Cu-SAPO-34 catalysts for industrial applications.This research could inspire the development of highly robust CuSAPO-34 catalysts to control the NOx emissions from diesel engines. | TIAN HeYuan XI WenChang ZHANG YiBo SUN LiWei LIU Peng WU Fan YANG Guo GUO Feng YANG XiangGuang | 2022 | Science China(Technological Sciences)2022,65,10: | 1 |