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ZnFe<sub>2sub>O<sub>4sub> deposited on BiOCl with exposed (001) and (010) facets for photocatalyticreduction of CO<sub>2sub> in cyclohexanol

Guixian Song, Xionggang Wu, Feng Xin, Xiaohong Yin

Frontiers of Chemical Science and Engineering 2017, Volume 11, Issue 2,   Pages 197-204 doi: 10.1007/s11705-016-1606-y

Abstract: The samples were then used as catalysts for the photocatalytic reduction of CO in cyclohexanol underThe photocatalytic CO reduction activities over the hydrothermally prepared ZnFe O -BiOCl compositesthe (001) facets with ultraviolet light produces photo-generated electrons which is helpful for the reductionThe mechanism for the photocatalytic reduction of CO in cyclohexanol over ZnFe O -BiOCl composites with

Keywords: reduction of CO<sub>2sub>     cyclohexanol     ZnFe<sub>2sub>O<sub>4sub> deposited BiOCl     facet     composite    

Scale up of reactors for carbon dioxide reduction

Frontiers of Chemical Science and Engineering 2023, Volume 17, Issue 1,   Pages 116-122 doi: 10.1007/s11705-022-2178-7

Abstract: On the other hand, the translation of these developments in electrochemical reduction of carbon dioxideWe observed that increasing the electrode area from 1 to 10 cm2 led to only a 4% drop in currentdensity, with similarly small penalties realised when stacking sub-cells together.

Keywords: CO<sub>2sub> reduction     electrochemical cell     electrosynthesis     upscaling    

The Contribution of Solar Energy Technology to Reduction of CO<sub>2sub> Emissions in Future in China

Zhao Yuwen

Strategic Study of CAE 2003, Volume 5, Issue 4,   Pages 38-40

Abstract:

The effect of solar energy technology on the reduction of CO<sub>2sub> emissions in future in Chinatechnology will have an appreciable effect after 2010, and a remarkable effect emissions after 2020 on the reductionof CO<sub>2sub>.

Keywords: solar energy     reduction of CO<sub>2sub> emissions    

Newly-modeled graphene-based ternary nanocomposite for the magnetophotocatalytic reduction of CO2 with

Frontiers of Chemical Science and Engineering 2022, Volume 16, Issue 10,   Pages 1438-1459 doi: 10.1007/s11705-022-2166-y

Abstract: promising material for use in a photocatalytic and magneto-electrochemical method that fosters the reductionthe electrons to the surface for the chemical reaction of CO<sub>2sub> reduction.> and 2 times higher than those of AgCuZnS<sub>2sub>–graphene and AgCuZnS<sub>2sub>–TiO<sub>2subThe electrochemical CO<sub>2sub> reduction test was also conducted to analyze the efficacy of the AgCuZnSAmong all tested nanocomposites, AgCuZnS<sub>2sub>–graphene–TiO<sub>2sub> absorbed the CO<sub>2

Keywords: ternary nanocomposite     photocatalytic     electrochemical CO<sub>2sub> reduction     UV-light     magnetic core    

Reduction potential of the energy penalty for CO capture in CCS

Frontiers in Energy 2023, Volume 17, Issue 3,   Pages 390-399 doi: 10.1007/s11708-023-0864-x

Abstract: CO<sub>2sub> capture and storage (CCS) has been acknowledged as an essential part of a portfolio oftechnologies that are required to achieve cost-effective long-term CO<sub>2sub> mitigation.One of the crucial reasons for this delay lies in the unaffordable penalty caused by CO<sub>2sub> capture

Keywords: CO<sub>2sub> capture and storage (CCS)     CO<sub>2sub> separation     energy penalty    

Effect of different acid anions on highly efficient Ce-based catalysts for selective catalytic reductionof NO with NH<sub>3sub>

Frontiers of Chemical Science and Engineering 2023, Volume 17, Issue 10,   Pages 1399-1411 doi: 10.1007/s11705-023-2345-5

Abstract: Three kinds of Ce-based catalysts (CePO<sub>4sub>, CeVO<sub>4sub>, Ce<sub>2sub>(SO<sub>4sub>)<sub>3sub>) were synthesized and used for the selective catalytic reduction (SCR) of NO by NH<sub>3> Ce<sub>2sub>(SO<sub>4sub>)<sub>3sub>, which is in agreement with their abilities of NH<sub>3reduction and field emission scanning electron microscopy tests.>2sub> for Ce<sub>2sub>(SO<sub>4sub>)<sub>3sub>.

Keywords: CePO<sub>4sub>     CeVO<sub>4sub>     Ce<sub>2sub>(SO<sub>4sub>)<sub>3sub>     selective catalytic reduction    

Characterization and performance of V

Caiting LI, Qun LI, Pei LU, Huafei CUI, Guangming ZENG

Frontiers of Environmental Science & Engineering 2012, Volume 6, Issue 2,   Pages 156-161 doi: 10.1007/s11783-010-0295-x

Abstract: The catalysts were evaluated for low temperature selective catalytic reduction (SCR) of NO with ammonia

Keywords: V<sub>2sub>O<sub>5sub>/CeO<sub>2sub> catalysts     NH<sub>3sub>-SCR (selective catalytic reduction    

Does environmental infrastructure investment contribute to emissions reduction? A case of China

Xiaoqian SONG, Yong GENG, Ke LI, Xi ZHANG, Fei WU, Hengyu PAN, Yiqing ZHANG

Frontiers in Energy 2020, Volume 14, Issue 1,   Pages 57-70 doi: 10.1007/s11708-019-0654-7

Abstract: However, the effect of EII on SO emission fluctuated although it still contributes to the reduction

Keywords: environmental infrastructure investment (EII)     CO<sub>2sub> emission     SO<sub>2sub> emission     PM<sub>2.5sub> pollution     stochastic impact by regression on population     affluence and technology (STIRPAT)    

Evaluation of H<sub>2sub> on the Evolution Mechanism of NO<sub>xsub> Storage and Reductionover Pt–Ba–Ce/γ-Al<sub>2sub>O<sub>3sub> Catalysts Article

Pan Wang, Jing Yi, Chuan Sun, Peng Luo, Lili Lei

Engineering 2019, Volume 5, Issue 3,   Pages 568-575 doi: 10.1016/j.eng.2019.02.005

Abstract:

In this investigation, Pt–Ba–Ce/γ-Al<sub>2sub>O<sub>3sub> catalysts were preparedthe evolution mechanism of nitrogen oxides (NO<sub>xsub>) storage and reduction (NSR).The physical and chemical properties of the Pt–Ba–Ce/γ-Al<sub>2sub>O<sub>3sub>>xsub>, CeO<sub>2sub>, and BaCO<sub>3sub>, whose peaks were observed in X-ray diffraction>catsub> at 350 °C, which was ascribed to the increase in NO<sub>2sub> yield.

Keywords: Pt–Ba–Ce/γ-Al<sub>2sub>O<sub>3sub> catalysts     Physicochemical properties     NO<sub>xsub> storageand reduction     NO<sub>xsub> emission     H<sub>2sub> reductant    

Metal-organic framework loaded manganese oxides as efficient catalysts for low-temperature selective catalytic reduction

Minhua Zhang, Baojuan Huang, Haoxi Jiang, Yifei Chen

Frontiers of Chemical Science and Engineering 2017, Volume 11, Issue 4,   Pages 594-602 doi: 10.1007/s11705-017-1668-5

Abstract: deposition method was used to fabricate Mn-based catalysts on a UiO-66 carrier for the selective catalytic reduction

Keywords: metal-organic framework     selective catalytic reduction     manganese oxides     deNO<sub>xsub>     SO<sub>2sub> resistance    

Effects of Pd doping on N

Mingxin Dong, Jun Wang, Jinxin Zhu, Jianqiang Wang, Wulin Wang, Meiqing Shen

Frontiers of Environmental Science & Engineering 2017, Volume 11, Issue 6, doi: 10.1007/s11783-017-0976-9

Abstract: Compared with Pt/BaO/Al O , (Pt/BaO/Al O +Pd/Al O ) produced less N O and more NH during NO storage and reductionCO results showed that Pd/Al O component in (Pt/BaO/Al O +Pd/Al O ) played an important role in NO reductionover Pd/BaO/Al O , which inhibits the NO dissociation and thus drives the selectivity to N O in NO reduction

Keywords: NO<sub>xsub> storage reduction     Pt/BaO/Al<sub>2sub>O<sub>3sub>     Pd doping     N<sub>2sub>O formation    

Revealing the GHG reduction potential of emerging biomass-based CO utilization with an iron cycle system

Frontiers of Environmental Science & Engineering 2023, Volume 17, Issue 10, doi: 10.1007/s11783-023-1727-8

Abstract:

● Greenhouse gas mitigation by biomass-based CO<sub>2sub> utilization

Keywords: Carbon dioxide utilization     Hydrothermal reactions     Biomass-based CO<sub>2sub> reduction     Simulation    

On the monolayer dispersion behavior of Co<sub>3sub>O<sub>4sub> on HZSM-5 support: designing applicablecatalysts for selective catalytic reduction of nitrogen oxides by ammonia

Frontiers of Chemical Science and Engineering 2023, Volume 17, Issue 11,   Pages 1741-1754 doi: 10.1007/s11705-023-2332-x

Abstract: have been prepared for selective catalytic reduction of nitrogen oxides by ammonia.threshold of 0.061 mmol 100 m2, equaling to a weight percentage around 4.5%.It has been revealed that the quantities of surface active oxygen (O<sub>2sub>) and acidgenerate the two kinds of active sites, hence promoting the performance of ammonia selective catalytic reductioncapacity, possesses the most abundant active O<sub>2sub> species and acidic sites, thereby

Keywords: Co<sub>3sub>O<sub>4sub>/ZSM-5     NO<sub>xsub>-SCR by NH<sub>3sub>     monolayer dispersionthreshold effect     surface acid sites     surface active O<sub>2sub> anions    

Development of an H reduction and moderate oxidation method for 3,5-dimethylpyridine hydrogenation in

Frontiers of Chemical Science and Engineering 2022, Volume 16, Issue 12,   Pages 1807-1817 doi: 10.1007/s11705-022-2243-2

Abstract: Under the same reduction conditions (300 °C in H<sub>2sub>), the catalytic activity of the non-in-situTherefore, an in-situ H<sub>2sub> reduction and moderate oxidation method was developed to increase>2sub> reduction and moderate oxidation (oxidized at 100 °C).of the in-situ H<sub>2sub> reduction and moderate oxidized Ru/C-i2 catalyst, the interactionThe developed in-situ H<sub>2sub> reduction and moderate oxidation method eliminated the step

Keywords: Ru/C catalyst     in-situ H<sub>2sub> reduction and moderate oxidation     in-situ reduction     non-in-situ reduction     hydrogenation of 3     5-dimethylpyridine    

The effect of preparation conditions of Pt/Al

Lei YUAN, Xiang ZHENG, Kaijiao DUAN, Hao HU, Jinggang WANG, Seong Ihl WOO, Zhiming LIU

Frontiers of Environmental Science & Engineering 2013, Volume 7, Issue 3,   Pages 457-463 doi: 10.1007/s11783-013-0512-5

Abstract: Selective catalytic reduction of NO by H in the presence of oxygen has been investigated over Pt/Al

Keywords: NO<sub>xsub> reduction     Pt/Al<sub>2sub>O<sub>3sub>     preparation condition     H<sub>2sub>-SCR    

Title Author Date Type Operation

ZnFe<sub>2sub>O<sub>4sub> deposited on BiOCl with exposed (001) and (010) facets for photocatalyticreduction of CO<sub>2sub> in cyclohexanol

Guixian Song, Xionggang Wu, Feng Xin, Xiaohong Yin

Journal Article

Scale up of reactors for carbon dioxide reduction

Journal Article

The Contribution of Solar Energy Technology to Reduction of CO<sub>2sub> Emissions in Future in China

Zhao Yuwen

Journal Article

Newly-modeled graphene-based ternary nanocomposite for the magnetophotocatalytic reduction of CO2 with

Journal Article

Reduction potential of the energy penalty for CO capture in CCS

Journal Article

Effect of different acid anions on highly efficient Ce-based catalysts for selective catalytic reductionof NO with NH<sub>3sub>

Journal Article

Characterization and performance of V

Caiting LI, Qun LI, Pei LU, Huafei CUI, Guangming ZENG

Journal Article

Does environmental infrastructure investment contribute to emissions reduction? A case of China

Xiaoqian SONG, Yong GENG, Ke LI, Xi ZHANG, Fei WU, Hengyu PAN, Yiqing ZHANG

Journal Article

Evaluation of H<sub>2sub> on the Evolution Mechanism of NO<sub>xsub> Storage and Reductionover Pt–Ba–Ce/γ-Al<sub>2sub>O<sub>3sub> Catalysts

Pan Wang, Jing Yi, Chuan Sun, Peng Luo, Lili Lei

Journal Article

Metal-organic framework loaded manganese oxides as efficient catalysts for low-temperature selective catalytic reduction

Minhua Zhang, Baojuan Huang, Haoxi Jiang, Yifei Chen

Journal Article

Effects of Pd doping on N

Mingxin Dong, Jun Wang, Jinxin Zhu, Jianqiang Wang, Wulin Wang, Meiqing Shen

Journal Article

Revealing the GHG reduction potential of emerging biomass-based CO utilization with an iron cycle system

Journal Article

On the monolayer dispersion behavior of Co<sub>3sub>O<sub>4sub> on HZSM-5 support: designing applicablecatalysts for selective catalytic reduction of nitrogen oxides by ammonia

Journal Article

Development of an H reduction and moderate oxidation method for 3,5-dimethylpyridine hydrogenation in

Journal Article

The effect of preparation conditions of Pt/Al

Lei YUAN, Xiang ZHENG, Kaijiao DUAN, Hao HU, Jinggang WANG, Seong Ihl WOO, Zhiming LIU

Journal Article