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Cu-Based Materials for Enhanced C_(2+) Product Selectivity in Photo-/Electro-Catalytic CO_(2) Reduction: Challenges and Prospects
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作者 Baker Rhimi Min Zhou +2 位作者 Zaoxue Yan Xiaoyan Cai Zhifeng Jiang 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第4期25-66,共42页
Carbon dioxide conversion into valuable products using photocatalysis and electrocatalysis is an effective approach to mitigate global environmental issues and the energy shortages. Among the materials utilized for ca... Carbon dioxide conversion into valuable products using photocatalysis and electrocatalysis is an effective approach to mitigate global environmental issues and the energy shortages. Among the materials utilized for catalytic reduction of CO_(2), Cu-based materials are highly advantageous owing to their widespread availability, cost-effectiveness, and environmental sustainability. Furthermore, Cu-based materials demonstrate interesting abilities in the adsorption and activation of carbon dioxide, allowing the formation of C_(2+) compounds through C–C coupling process. Herein, the basic principles of photocatalytic CO_(2) reduction reactions(PCO_(2)RR) and electrocatalytic CO_(2) reduction reaction(ECO_(2)RR) and the pathways for the generation C_(2+) products are introduced. This review categorizes Cu-based materials into different groups including Cu metal, Cu oxides, Cu alloys, and Cu SACs, Cu heterojunctions based on their catalytic applications. The relationship between the Cu surfaces and their efficiency in both PCO_(2)RR and ECO_(2)RR is emphasized. Through a review of recent studies on PCO_(2)RR and ECO_(2)RR using Cu-based catalysts, the focus is on understanding the underlying reasons for the enhanced selectivity toward C_(2+) products. Finally, the opportunities and challenges associated with Cu-based materials in the CO_(2) catalytic reduction applications are presented, along with research directions that can guide for the design of highly active and selective Cu-based materials for CO_(2) reduction processes in the future. 展开更多
关键词 Photocatalytic co_(2)reduction Cu-based materials Electrocatalytic co_(2)reduction
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Porous metal oxides in the role of electrochemical CO_(2) reduction reaction
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作者 Ziqi Zhang Jinyun Xu +9 位作者 Yu Zhang Liping Zhao Ming Li Guoqiang Zhong Di Zhao Minjing Li Xudong Hu Wenju Zhu Chunming Zheng Xiaohong Sun 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第1期373-398,I0009,共27页
The global energy-related CO_(2) emissions have rapidly increased as the world economy heavily relied on fossil fuels.This paper explores the pressing challenge of CO_(2) emissions and highlights the role of porous me... The global energy-related CO_(2) emissions have rapidly increased as the world economy heavily relied on fossil fuels.This paper explores the pressing challenge of CO_(2) emissions and highlights the role of porous metal oxide materials in the electrocatalytic reduction of CO_(2)(CO_(2)RR).The focus is on the development of robust and selective catalysts,particularly metal and metal-oxide-based materials.Porous metal oxides offer high surface area,enhancing the accessibility to active sites and improving reaction kinetics.The tunability of these materials allows for tailored catalytic behavior,targeting optimized reaction mechanisms for CO_(2)RR.The work also discusses the various synthesis strategies and identifies key structural and compositional features,addressing challenges like high overpotential,poor selectivity,and low stability.Based on these insights,we suggest avenues for future research on porous metal oxide materials for electrochemical CO_(2) reduction. 展开更多
关键词 co_(2)reduction Carbon dioxide TRANSFORMATION Porous metal oxides ELECTROCATALYSIS
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Understanding Bridging Sites and Accelerating Quantum Efficiency for Photocatalytic CO_(2) Reduction
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作者 Kangwang Wang Zhuofeng Hu +8 位作者 Peifeng Yu Alina M.Balu Kuan Li Longfu Li Lingyong Zeng Chao Zhang Rafael Luque Kai Yan Huixia Luo 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第1期68-84,共17页
We report a novel double-shelled nanoboxes photocatalyst architecture with tailored interfaces that accelerate quantum efficiency for photocatalytic CO_(2) reduction reaction(CO_(2)RR)via Mo–S bridging bonds sites in... We report a novel double-shelled nanoboxes photocatalyst architecture with tailored interfaces that accelerate quantum efficiency for photocatalytic CO_(2) reduction reaction(CO_(2)RR)via Mo–S bridging bonds sites in S_(v)–In_(2)S_(3)@2H–MoTe_(2).The X-ray absorption near-edge structure shows that the formation of S_(v)–In_(2)S_(3)@2H–MoTe_(2) adjusts the coordination environment via interface engineering and forms Mo–S polarized sites at the interface.The interfacial dynamics and catalytic behavior are clearly revealed by ultrafast femtosecond transient absorption,time-resolved,and in situ diffuse reflectance–Infrared Fourier transform spectroscopy.A tunable electronic structure through steric interaction of Mo–S bridging bonds induces a 1.7-fold enhancement in S_(v)–In_(2)S_(3)@2H–MoTe_(2)(5)photogenerated carrier concentration relative to pristine S_(v)–In_(2)S_(3).Benefiting from lower carrier transport activation energy,an internal quantum efficiency of 94.01%at 380 nm was used for photocatalytic CO_(2)RR.This study proposes a new strategy to design photocatalyst through bridging sites to adjust the selectivity of photocatalytic CO_(2)RR. 展开更多
关键词 Quantum efficiency Electronic structure Steric interaction Bridging sites co_(2)reduction
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Surface engineering of ZnO electrocatalyst by N doping towards electrochemical CO_(2) reduction
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作者 Rohini Subhash Kanase Getasew Mulualem Zewdie +7 位作者 Maheswari Arunachalam Jyoti Badiger Suzan Abdelfattah Sayed Kwang-Soon Ahn Jun-Seok Ha Uk Sim Hyeyoung Shin Soon Hyung Kang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第1期71-81,I0002,共12页
The discovery of efficient,selective,and stable electrocatalysts can be a key point to produce the largescale chemical fuels via electrochemical CO_(2) reduction(ECR).In this study,an earth-abundant and nontoxic ZnO-b... The discovery of efficient,selective,and stable electrocatalysts can be a key point to produce the largescale chemical fuels via electrochemical CO_(2) reduction(ECR).In this study,an earth-abundant and nontoxic ZnO-based electrocatalyst was developed for use in gas-diffusion electrodes(GDE),and the effect of nitrogen(N)doping on the ECR activity of ZnO electrocatalysts was investigated.Initially,a ZnO nanosheet was prepared via the hydrothermal method,and nitridation was performed at different times to control the N-doping content.With an increase in the N-doping content,the morphological properties of the nanosheet changed significantly,namely,the 2D nanosheets transformed into irregularly shaped nanoparticles.Furthermore,the ECR performance of Zn O electrocatalysts with different N-doping content was assessed in 1.0 M KHCO_(3) electrolyte using a gas-diffusion electrode-based ECR cell.While the ECR activity increased after a small amount of N doping,it decreased for higher N doping content.Among them,the N:ZnO-1 h electrocatalysts showed the best CO selectivity,with a faradaic efficiency(FE_(CO))of 92.7%at-0.73 V vs.reversible hydrogen electrode(RHE),which was greater than that of an undoped Zn O electrocatalyst(FE_(CO)of 63.4%at-0.78 V_(RHE)).Also,the N:ZnO-1 h electrocatalyst exhibited outstanding durability for 16 h,with a partial current density of-92.1 mA cm^(-2).This improvement of N:ZnO-1 h electrocatalyst can be explained by density functional theory calculations,demonstrating that this improvement of N:ZnO-1 h electrocatalyst comes from(ⅰ)the optimized active sites lowering the free energy barrier for the rate-determining step(RDS),and(ⅱ)the modification of electronic structure enhancing the electron transfer rate by N doping. 展开更多
关键词 ZNO N-doped ZnO Gas-diffusion electrode co Selectivity Electrochemical co_(2)reduction
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Performance enhancement and active sites identification of Cu-Cd bimetallic oxide derived catalysts for electrochemical CO_(2)reduction
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作者 Cai Wang Xin Hu +7 位作者 Bairong Chen Houan Ren Xiaoyu Wang Yilin Zhang Xinyu Chen Yuping Liu Qingxin Guan Wei Li 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第4期50-58,共9页
The development of earth-abundant electrocatalysts with high performance for electrochemical CO_(2)reduction(ECR)is of great significance.Cu-based catalysts have been widely investigated for ECR due to their unique ab... The development of earth-abundant electrocatalysts with high performance for electrochemical CO_(2)reduction(ECR)is of great significance.Cu-based catalysts have been widely investigated for ECR due to their unique ability to generate various carbonaceous products,but directing selectivity toward one certain product and identifying the real active sites during ECR are still full of challenge.Here,after the incorporation of CdO into CuO,the Cu_(0.5)Cd_(0.5)-O catalyst achieves a 10.3-fold enhancement for CO selectivity in comparison with CuO,and a CO faradic efficiency nearly 90%with a current density around20 mA cm^(-2)could maintain at least 60 h.Interestingly,a wide CO/H_(2)ratio(0.07-10)is reached on Cu_(x)Cd_(1-x)-O catalysts by varying the Cu/Cd ratio,demonstrating the potential of syngas production using such catalysts.The results of ex situ XRD,XPS,and in situ Raman reveal that the real active sites of Cu_(0.5)Cd_(0.5)-O catalysts for CO production during ECR reaction are the reconstructed mixed phases of CuCd alloy and CdCO_(3).In situ FTIR and theoretical calculations further implicate the presence of Cd related species promotes the CO desorption and inhibits the H_(2)evolution,thus leading to an enhanced CO generation. 展开更多
关键词 co_(2)reduction Cu-Cd bimetallic Real active sites co production
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Exploring the impact of Nafion modifier on electrocatalytic CO_(2) reduction over Cu catalyst
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作者 Yingshi Su Yonghui Cheng +6 位作者 Zhen Li Yanjia Cui Caili Yang Ziyi Zhong Yibing Song Gongwei Wang Lin Zhuang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第1期543-551,I0012,共10页
Nafion as a universal polymer ionomer was widely applied for nanocatalysts electrode preparation.However,the effect of Nafion on electrocatalytic performance was often overlooked,especially for CO_(2)electrolysis.Here... Nafion as a universal polymer ionomer was widely applied for nanocatalysts electrode preparation.However,the effect of Nafion on electrocatalytic performance was often overlooked,especially for CO_(2)electrolysis.Herein,the key roles of Nafion for CO_(2)RR were systematically studied on Cu nanoparticles(NPs)electrocatalyst.We found that Nafion modifier not only inhibit hydrogen evolution reaction(HER)by decreasing the accessibility of H_(2)O from electrolyte to Cu NPs,and increase the CO_(2)concentration at electrocatalyst interface for enhancing the CO_(2)mass transfer process,but also activate CO_(2)molecule by Lewis acid-base interaction between Nafion and CO_(2)to accelerate the formation of^(*)CO,which favor of C–C coupling for boosting C_(2)product generation.Owing to these features,the HER selectivity was suppressed from 40.6%to 16.8%on optimal Cu@Nafion electrode at-1.2 V versus reversible hydrogen electrode(RHE),and as high as 73.5%faradaic efficiencies(FEs)of C_(2)products were achieved at the same applied potential,which was 2.6 times higher than that on bare Cu electrode(~28.3%).In addition,Nafion also contributed to the long-term stability by hinder Cu NPs morphology reconstruction.Thus,this work provides insights into the impact of Nafion on electrocatalytic CO_(2)RR performance. 展开更多
关键词 Nafion modifier co_(2)reduction Cu nanoparticles In situ ATR-SEIRAS C_(2)product
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A cascade of in situ conversion of bicarbonate to CO_(2) and CO_(2) electroreduction in a flow cell with a Ni-N-S catalyst
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作者 Linghui Kong Min Wang +6 位作者 Yongxiao Tuo Shanshan Zhou Jinxiu Wang Guangbo Liu Xuejing Cui Jiali Wang Luhua Jiang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第1期183-193,I0005,共12页
Combination of CO_(2) capture using inorganic alkali with subsequently electrochemical conversion of the resultant HCO_(3)^(-)to high-value chemicals is a promising route of low cost and high efficiency.The electroche... Combination of CO_(2) capture using inorganic alkali with subsequently electrochemical conversion of the resultant HCO_(3)^(-)to high-value chemicals is a promising route of low cost and high efficiency.The electrochemical reduction of HCO_(3)^(-)is challenging due to the inaccessible of negatively charged molecular groups to the electrode surface.Herein,we adopt a comprehensive strategy to tackle this challenge,i.e.,cascade of in situ chemical conversion of HCO_(3)^(-)to CO_(2) and CO_(2) electrochemical reduction in a flow cell.With a tailored Ni-N-S single atom catalyst(SACs),where sulfur(S)atoms located in the second shell of Ni center,the CO_(2)electroreduction(CO_(2)ER)to CO is boosted.The experimental results and density functional theory(DFT)calculations reveal that the introduction of S increases the p electron density of N atoms near Ni atom,thereby stabilizing^(*)H over N and boosting the first proton coupled electron transfer process of CO_(2)ER,i.e.,^(*)+e^(-)+^(*)H+^(*)CO_(2)→^(*)COOH.As a result,the obtained catalyst exhibits a high faradaic efficiency(FE_(CO)~98%)and a low overpotential of 425 mV for CO production as well as a superior turnover frequency(TOF)of 47397 h^(-1),outcompeting most of the reported Ni SACs.More importantly,an extremely high FECOof 90%is achieved at 50 mA cm^(-2)in the designed membrane electrode assembly(MEA)cascade electrolyzer fed with liquid bicarbonate.This work not only highlights the significant role of the second coordination on the first coordination shell of the central metal for CO_(2)ER,but also provides an alternative and feasible strategy to realize the electrochemical conversion of HCO_(3)^(-)to high-value chemicals. 展开更多
关键词 S doped Ni-N-C single atom catalysts co_(2)electrochemical reduction DFT calculations Membrane electrode assembly reduction of bicarbonate
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Atomic Dispersed Hetero‑Pairs for Enhanced Electrocatalytic CO_(2)Reduction
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作者 Zhaoyong Jin Meiqi Yang +13 位作者 Yilong Dong Xingcheng Ma Ying Wang Jiandong Wu Jinchang Fan Dewen Wang Rongshen Xi Xiao Zhao Tianyi Xu Jingxiang Zhao Lei Zhang David J.Singh Weitao Zheng Xiaoqiang Cui 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第1期55-67,共13页
Electrochemical carbon dioxide reduction reaction(CO_(2)RR)involves a variety of intermediates with highly correlated reaction and ad-desorption energies,hindering optimization of the catalytic activity.For example,in... Electrochemical carbon dioxide reduction reaction(CO_(2)RR)involves a variety of intermediates with highly correlated reaction and ad-desorption energies,hindering optimization of the catalytic activity.For example,increasing the binding of the*COOH to the active site will generally increase the*CO desorption energy.Breaking this relationship may be expected to dramatically improve the intrinsic activity of CO_(2)RR,but remains an unsolved challenge.Herein,we addressed this conundrum by constructing a unique atomic dispersed hetero-pair consisting of Mo-Fe di-atoms anchored on N-doped carbon carrier.This system shows an unprecedented CO_(2)RR intrinsic activity with TOF of 3336 h−1,high selectivity toward CO production,Faradaic efficiency of 95.96%at−0.60 V and excellent stability.Theoretical calculations show that the Mo-Fe diatomic sites increased the*COOH intermediate adsorption energy by bridging adsorption of*COOH intermediates.At the same time,d-d orbital coupling in the Mo-Fe di-atom results in electron delocalization and facilitates desorption of*CO intermediates.Thus,the undesirable correlation between these steps is broken.This work provides a promising approach,specifically the use of di-atoms,for breaking unfavorable relationships based on understanding of the catalytic mechanisms at the atomic scale. 展开更多
关键词 co_(2)reduction reaction Atomic dispersed catalyst Hetero-diatomic pair Ad-desorption energy Linear scaling relation
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Strongly Coupled Ag/Sn-SnO_(2)Nanosheets Toward CO_(2)Electroreduction to Pure HCOOH Solutions at Ampere‑Level Current
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作者 Min Zhang Aihui Cao +5 位作者 Yucui Xiang Chaogang Ban Guang Han Junjie Ding Li‑Yong Gan Xiaoyuan Zhou 《Nano-Micro Letters》 SCIE EI CSCD 2024年第3期212-226,共15页
Electrocatalytic reduction of CO_(2) converts intermittent renewable electricity into value-added liquid products with an enticing prospect,but its practical application is hampered due to the lack of high-performance... Electrocatalytic reduction of CO_(2) converts intermittent renewable electricity into value-added liquid products with an enticing prospect,but its practical application is hampered due to the lack of high-performance electrocatalysts.Herein,we elaborately design and develop strongly coupled nanosheets composed of Ag nanoparticles and Sn-SnO_(2) grains,designated as Ag/Sn-SnO_(2) nanosheets(NSs),which possess optimized electronic structure,high electrical conductivity,and more accessible sites.As a result,such a catalyst exhibits unprecedented catalytic performance toward CO_(2)-to-formate conversion with near-unity faradaic efficiency(≥90%),ultrahigh partial current density(2,000 mA cm^(−2)),and superior long-term stability(200 mA cm^(−2),200 h),surpassing the reported catalysts of CO_(2) electroreduction to formate.Additionally,in situ attenuated total reflection-infrared spectra combined with theoretical calculations revealed that electron-enriched Sn sites on Ag/Sn-SnO_(2)NSs not only promote the formation of*OCHO and alleviate the energy barriers of*OCHO to*HCOOH,but also impede the desorption of H*.Notably,the Ag/Sn-SnO_(2)NSs as the cathode in a membrane electrode assembly with porous solid electrolyte layer reactor can continuously produce~0.12 M pure HCOOH solution at 100 mA cm^(−2)over 200 h.This work may inspire further development of advanced electrocatalysts and innovative device systems for promoting practical application of producing liquid fuels from CO_(2). 展开更多
关键词 Electrochemical co_(2)reduction coupled Ag/Sn-SnO_(2)nanosheets Electronic structure Porous solid electrolyte PURE
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Highly selective photocatalytic reduction of CO_(2) to CH_(4) on electron-rich Fe species cocatalyst under visible light irradiation
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作者 Qianying Lin Jiwu Zhao +8 位作者 Pu Zhang Shuo Wang Ying Wang Zizhong Zhang Na Wen Zhengxin Ding Rusheng Yuan Xuxu Wang Jinlin Long 《Carbon Energy》 SCIE EI CAS CSCD 2024年第1期255-266,共12页
Efficient photocatalytic reduction of CO_(2) to high-calorific-value CH4,an ideal target product,is a blueprint for C_(1)industry relevance and carbon neutrality,but it also faces great challenges.Herein,we demonstrat... Efficient photocatalytic reduction of CO_(2) to high-calorific-value CH4,an ideal target product,is a blueprint for C_(1)industry relevance and carbon neutrality,but it also faces great challenges.Herein,we demonstrate unprecedented hybrid SiC photocatalysts modified by Fe-based cocatalyst,which are prepared via a facile impregnation-reduction method,featuring an optimized local electronic structure.It exhibits a superior photocatalytic carbon-based products yield of 30.0μmol g^(−1) h^(−1) and achieves a record CH_(4) selectivity of up to 94.3%,which highlights the effectiveness of electron-rich Fe cocatalyst for boosting photocatalytic performance and selectivity.Specifically,the synergistic effects of directional migration of photogenerated electrons and strongπ-back bonding on low-valence Fe effectively strengthen the adsorption and activation of reactants and intermediates in the CO_(2)→CH_(4) pathway.This study inspires an effective strategy for enhancing the multielectron reduction capacity of semiconductor photocatalysts with low-cost Fe instead of noble metals as cocatalysts. 展开更多
关键词 artificial synthesis of CH4 electronic structure optimization Fe species cocatalyst photocatalytic co_(2)reduction SiC
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液态CO_(2)-水循环作用下煤体的物理改性规律及增润减尘效应
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作者 王和堂 王辉 +3 位作者 谭江龙 王豪杰 杨景皓 何军 《煤炭学报》 EI CAS CSCD 2024年第3期1463-1474,共12页
煤层注水是预防煤矿粉尘危害的主动性、治本性措施,也是防治瓦斯突出、冲击地压等灾害的重要手段之一。但我国大量煤层具有高地应力、低孔隙率、低渗透性的特点,传统方法和技术面临水注入难、注水周期长、煤体假性润湿等瓶颈。为此,利... 煤层注水是预防煤矿粉尘危害的主动性、治本性措施,也是防治瓦斯突出、冲击地压等灾害的重要手段之一。但我国大量煤层具有高地应力、低孔隙率、低渗透性的特点,传统方法和技术面临水注入难、注水周期长、煤体假性润湿等瓶颈。为此,利用液态CO_(2)具有的低温冷冻、高渗透性、相变自增压、酸化解堵等优异特性,提出液态CO_(2)-水循环作用致裂增润煤体的新思路,研制了液态CO_(2)循环冷浸试验系统,联合低场核磁共振仪研究了液态CO_(2)-水循环作用对煤孔隙结构的影响规律,联用电液伺服压力实验机探究了循环作用对煤体力学特性的改变机理,运用截齿破碎煤岩产尘试验系统研究了循环作用后煤体破碎过程的产尘特性。结果表明:液态CO_(2)-水循环作用使煤体有效孔隙度(φ_(NF))增加,增幅与循环作用次数呈正相关,煤体内部束缚流体变少,自由流体增多,T2截止值(T_(2cutoff))随之降低,结合分形理论发现基于渗流孔隙的分形维数Ds具有明显的分形特征,煤体原生孔隙经历了“扩容”的过程,微裂隙与原始裂隙形成贯通,循环作用增强了有效渗流通道连通性,优化了煤的孔隙网络与渗流条件。随着循环次数的增加,煤的最大应力σ_(c)呈指数衰减至4.93 MPa,应变ε_(c)线性增加至2.29×10^(-2),煤的抗压强度减弱,变形能力增加,循环作用改变了煤基质间联结状态,产生的冻胀力对煤体施加挤压作用加剧了裂隙的扩展,脆性指数B5最大降幅为34.71%,显著减弱了煤体脆性,具有了更好的抗动载荷或冲击能力;煤体对外加能量的存储能力弱化,改变了煤在截割过程中的破坏形式,试验条件下煤体破碎过程全尘产尘率降低了74%,呼吸性粉尘占比下降至2%,大幅减弱了粉尘危害性。 展开更多
关键词 液态co_(2)-水 循环作用 孔隙结构 力学特性 物理改性 减尘效应
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金属有机框架材料用于光催化CO_(2)还原的研究进展
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作者 王正民 赵胜斌 +1 位作者 钱庆一 赵秋萍 《化工新型材料》 CAS CSCD 2024年第2期277-281,共5页
CO_(2)光催化还原转化为有价值的碳氢燃料和化工原料是达成“碳中和”目标的重要途径。金属有机框架材料(MOFs)是一种由有机配位体和金属离子或团簇通过配位键形成的有机-无机杂化材料,具有超高的比表面积、可调的孔结构,并易于功能化修... CO_(2)光催化还原转化为有价值的碳氢燃料和化工原料是达成“碳中和”目标的重要途径。金属有机框架材料(MOFs)是一种由有机配位体和金属离子或团簇通过配位键形成的有机-无机杂化材料,具有超高的比表面积、可调的孔结构,并易于功能化修饰,在CO_(2)光催化还原反应中展现出良好的应用前景。总结了基于MOFs的新型功能材料绿色光催化CO_(2)还原的最新研究进展,探讨了改性及功能化MOFs材料及MOFs衍生物的光催化CO_(2)还原反应机理,并从理化特性上分析了材料性能优势的成因。总结了提高光催化还原CO_(2)反应的活性和选择性的策略。在此基础上,对这类新型催化剂面临的主要问题和未来发展进行了总结与展望。 展开更多
关键词 co_(2)还原 金属有机框架材料 光催化
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菌藻共生系统污水处理及CO_(2)固定作用机制的研究进展
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作者 安浩 吴鑫明 +2 位作者 操家顺 李超 刘伟京 《净水技术》 CAS 2024年第3期39-46,共8页
目前水生态环境污染严重,现有水处理工艺存在能耗高、温室气体排放等问题。菌藻共生技术是一种能同步处理污水和固定CO_(2)的绿色处理技术。文章综述了菌藻共生体系提高减污固碳效率的作用效能及作用机制,详细阐述了菌藻共生体系降解氮... 目前水生态环境污染严重,现有水处理工艺存在能耗高、温室气体排放等问题。菌藻共生技术是一种能同步处理污水和固定CO_(2)的绿色处理技术。文章综述了菌藻共生体系提高减污固碳效率的作用效能及作用机制,详细阐述了菌藻共生体系降解氮磷污染物及固定CO_(2)的作用机理:微藻通过同化作用实现对氮磷的吸收,并通过光合自养、异养、兼养3种固碳过程实现CO_(2)的固定;细菌通过硝化作用和反硝化作用脱氮,利用聚磷菌强化除磷,通过促进碳酸酐酶的产生来提高藻细胞的固碳效率。总结了菌藻共生体系实际应用中的现存问题,并对未来的研究方向进行了展望,为今后菌藻共生体系的进一步应用提供了理论支持。 展开更多
关键词 菌藻共生 污水处理 co_(2) 固定 作用机制 减污降碳
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大气CO_(2)浓度缓增、骤增和不同施氮水平对稻田CH4排放的影响
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作者 武熳秋 商东耀 +4 位作者 帅斯樑 曹琰梅 柯浩楠 胡正华 李琪 《生态与农村环境学报》 CAS CSCD 2024年第2期205-212,共8页
为探究大气CO_(2)浓度缓增、骤增和不同施氮水平对稻田CH_(4)排放的影响,基于CO_(2)浓度自动调控平台开展水稻试验,以“南粳9108”为试验品种,采用静态箱-气相色谱法测定CH_(4)通量。在背景大气CO_(2)浓度(CK)的基础上,设置CO_(2)浓度缓... 为探究大气CO_(2)浓度缓增、骤增和不同施氮水平对稻田CH_(4)排放的影响,基于CO_(2)浓度自动调控平台开展水稻试验,以“南粳9108”为试验品种,采用静态箱-气相色谱法测定CH_(4)通量。在背景大气CO_(2)浓度(CK)的基础上,设置CO_(2)浓度缓增(C_(1)处理,从2016年开始逐年增加40μmol·mol^(-1),至2018年增加120μmol·mol^(-1))和骤增(C_(2)处理,CO_(2)浓度每年均增加200μmol·mol^(-1))处理;在常规施氮量(N 1处理,25 g·m^(-2))的基础上设置氮肥减施处理(N_(2)处理,15 g·m^(-2))。结果表明,CO_(2)浓度缓增、骤增和不同施氮量均没有改变稻田CH_(4)通量的季节变化规律,总体上呈现先增加后减小的趋势。在整个生育期,CO_(2)浓度缓增、骤增对稻田单位产量CH_(4)排放量无显著影响。在C_(2)条件下,与N 1处理相比,N_(2)处理水稻产量显著降低45.2%(P=0.037),同时稻田单位产量CH_(4)排放量显著增加63.3%(P=0.008)。综上所述,随着CO_(2)浓度升高,氮肥减施至15 g·m^(-2)会减少水稻产量,同时增加稻田单位产量CH_(4)排放。 展开更多
关键词 水稻 co_(2)浓度 氮肥 CH_(4)排放
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MOF基单原子催化剂用于CO_(2)还原的研究进展
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作者 贾宇桐 周阿武 +4 位作者 赵琛 张岩 张更新 谢亚勃 李建荣 《北京工业大学学报》 CAS CSCD 2024年第2期216-229,共14页
CO_(2)资源化利用是实现“双碳”目标的重要途径之一。金属有机框架(metal-organic frameworks,MOF)材料具有高孔隙率、可调节的功能、丰富的活性位点和潜在锚定位点等优点;单原子催化剂(single-atom catalysts,SAC)有独特的电子结构和... CO_(2)资源化利用是实现“双碳”目标的重要途径之一。金属有机框架(metal-organic frameworks,MOF)材料具有高孔隙率、可调节的功能、丰富的活性位点和潜在锚定位点等优点;单原子催化剂(single-atom catalysts,SAC)有独特的电子结构和最大化金属利用率的优点。结合二者的优势,MOF基单原子催化剂在光/电催化CO_(2)还原反应中表现出良好的应用前景。系统地总结了MOF基单原子催化剂在光/电催化CO_(2)还原中的最新研究进展,主要分为2个部分:纯MOF固定的SAC和MOF衍生的SAC,分别探讨了各种制备策略和原理及在光/电催化CO_(2)还原中展现的独特优势,并从理化特性上分析了材料性能优势的成因。最后对以MOF基材料为光/电催化CO_(2)还原催化剂的研究进行了总结和展望。 展开更多
关键词 二氧化碳还原 金属有机框架(MOF) 单原子催化剂(SAC) MOF衍生物 光催化 电催化
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徐州市不同行业CO_(2)排放量测算及减排措施
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作者 张娜 张谷春 +6 位作者 王双美 王伟 徐辉 马萍 朱燕 吴蒙 陈飞 《能源与节能》 2024年第1期81-86,共6页
在城市发展过程中,准确计算城市碳排放量对优化和指导CO_(2)减排路径至关重要。通过收集26年的徐州统计年鉴,运用碳排放因子法计算了徐州市化石能源、家庭燃气、水泥、钢铁、化工、电力和交通运输的CO_(2)排放量。结果发现徐州市1995—2... 在城市发展过程中,准确计算城市碳排放量对优化和指导CO_(2)减排路径至关重要。通过收集26年的徐州统计年鉴,运用碳排放因子法计算了徐州市化石能源、家庭燃气、水泥、钢铁、化工、电力和交通运输的CO_(2)排放量。结果发现徐州市1995—2020年各行业CO_(2)排放量情况为:化石能源消费CO_(2)排放量为2.765 18×10^(7)~1.335 63×108t,家庭燃气CO_(2)排放量为0.931×10^(5)~5.275×10^(5)t,水泥行业CO_(2)排放量为1.050 185×10^(7)~3.894 500×10^(7)t,钢铁行业CO_(2)排放量为0.565 9×10^(6)~8.195 7×10^(6)t,化工行业CO_(2)排放量为0.722 8×10^(6)~4.411 4×10^(6)t,电力行业CO_(2)排放量为0.690 87×10^(7)~3.339 01×10^(7)t,交通运输CO_(2)排放量为0.658 0×10^(6)~7.340 3×10^(6)t。徐州市政府应根据各行业CO_(2)排放特点,从加大政策扶持、加强碳汇利用、倡导低碳发展和研发清洁能源等角度合理制定减碳措施。 展开更多
关键词 徐州市 co_(2)排放 排放因子 减排措施
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理论研究Cu@C_(2)N催化剂表面上水分子对电催化CO_(2)还原反应机理的影响
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作者 徐涵煜 宋雪旦 +2 位作者 张青 于畅 邱介山 《物理化学学报》 SCIE CAS CSCD 2024年第1期24-25,共2页
电催化CO_(2)还原反应(CO_(2)RR)的反应途径涉及多个质子-电子对转移,在水溶剂条件下,质子的来源是水分子,考虑水分子对质子-电子对的转移机制十分必要。本研究提出水辅助氢穿梭模型,与常用的以氢原子作为氢源的直接加氢模型对比,研究... 电催化CO_(2)还原反应(CO_(2)RR)的反应途径涉及多个质子-电子对转移,在水溶剂条件下,质子的来源是水分子,考虑水分子对质子-电子对的转移机制十分必要。本研究提出水辅助氢穿梭模型,与常用的以氢原子作为氢源的直接加氢模型对比,研究水分子在CO_(2)RR中对质子-电子对转移的影响。采用密度泛函理论,系统地研究了铜原子嵌入C_(2)N单层催化剂(Cu@C_(2)N)和石墨烯作为衬底的Cu@C_(2)N/石墨烯复合催化剂(Cu@C_(2)N/G)表面上不同加氢模型的CO_(2)RR反应机理。在水辅助氢穿梭模型中,氢原子与水分子结合形成水合质子,水合质子将自身的氢原子转移到催化剂表面的反应物上形成反应中间体,增强了中间体与催化剂之间的相互作用。此外,在Cu@C_(2)N/G催化剂中,石墨烯将电子转移到表面的Cu@C_(2)N上,提高了催化剂的CO_(2)RR催化活性。进一步,计算了Cu@C_(2)N和Cu@C_(2)N/G催化剂上CO_(2)RR和析氢反应的极限电位,讨论催化剂的活性和选择性。结果表明CO_(2)在低电位下容易生成HCOOH,施加高电位时可以生成CO、CH3OH和CH4并伴随着H2的生成。 展开更多
关键词 co_(2)还原反应 电催化 氮掺杂石墨烯 水辅助氢穿梭 反应机理 密度泛函理论
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电力行业CO_(2)排放量预测及减排路径——以徐州市为例
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作者 吴蒙 王晓青 +4 位作者 杨旅涵 张谷春 肖哓虎 徐辉 秦云虎 《江苏师范大学学报(自然科学版)》 CAS 2024年第1期46-50,共5页
基于1996—2022年《徐州统计年鉴》数据,分析徐州市电力行业CO_(2)排放特征,参考宾婵佳等的方法测算徐州市电力行业CO_(2)排放量,运用BP神经网络模型对2022—2030年徐州市电力行业CO_(2)排放量进行预测.结果表明:1995—2021年徐州市电... 基于1996—2022年《徐州统计年鉴》数据,分析徐州市电力行业CO_(2)排放特征,参考宾婵佳等的方法测算徐州市电力行业CO_(2)排放量,运用BP神经网络模型对2022—2030年徐州市电力行业CO_(2)排放量进行预测.结果表明:1995—2021年徐州市电力行业CO_(2)排放量为1002.684~4462.032万t;单位煤耗CO_(2)排放系数从1995年的1.027 t/MWh上升到1998年的1.043 t/MWh,再下降到2021年的0.820 t/MWh.不同情景下,徐州市电力行业CO_(2)排放量的预测值与实际值的独立样本t检验结果表明,运用BP神经网络模型预测电力行业CO_(2)排放量是可行的.预测结果显示,到2030年,徐州市电力行业CO_(2)排放量在基准情景下为5382.358万t,低碳情景下为4481.523万t,强化低碳情景下为4077.167万t.提出了徐州市电力行业可从发电端、电网端和消费端实施碳减排措施. 展开更多
关键词 徐州市 电力行业 co_(2)排放 BP神经网络模型
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MoO_(3-x)负载蜂窝状氮化碳的制备及其光热协同催化CO_(2)还原性能研究
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作者 李晨露 王亚男 +1 位作者 徐松 李忠玉 《化学反应工程与工艺》 CAS 2024年第1期10-18,共9页
在传统光催化CO_(2)反应中引入热能是提高转化效率的新方法。通过一锅法将含氧空位缺陷的MoO_(3)(MoO_(3-x))均匀负载在蜂窝状氮化碳(NCN)表面,成功制备出不同MoO_(3-x)比例的MNCN复合催化剂。通过X射线粉末衍射、扫描电子显微镜、紫外... 在传统光催化CO_(2)反应中引入热能是提高转化效率的新方法。通过一锅法将含氧空位缺陷的MoO_(3)(MoO_(3-x))均匀负载在蜂窝状氮化碳(NCN)表面,成功制备出不同MoO_(3-x)比例的MNCN复合催化剂。通过X射线粉末衍射、扫描电子显微镜、紫外可见漫反射光谱、傅立叶变换红外光谱等手段对复合材料进行表征;在全光谱照射下,复合样品MNCN-1.0光热催化CO_(2)表现出优秀的性能,CO和CH_(4)的产率分别达到25.35μmol/(g·h)和1.80μmol/(g·h)。这是由于MoO_(3-x)独特的性质使其在全光谱反应中提高反应温度,促进温度场与光场的协同作用,提高了光催化的反应效率。 展开更多
关键词 光热催化 co_(2)还原 蜂窝状氮化碳 氧缺陷三氧化钼 助催化剂
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模板法制备多孔Bi_(0.5)La_(0.5)VO_(4)固溶体光催化还原CO_(2)
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作者 孙雨平 马洋博 +2 位作者 刘小强 高丽 陈威 《化学研究》 CAS 2024年第1期16-22,共7页
光催化还原CO_(2)为有价值的化学品为缓解温室效应提供了理想的途径。本工作中,采用纳米球形SiO_(2)模板剂抑制光催化剂颗粒的生长从而合成高比表面积的多孔Bi_(0.5)La_(0.5)VO_(4)(BLV)固溶体光催化材料。得益于纳米SiO_(2)的限域效应... 光催化还原CO_(2)为有价值的化学品为缓解温室效应提供了理想的途径。本工作中,采用纳米球形SiO_(2)模板剂抑制光催化剂颗粒的生长从而合成高比表面积的多孔Bi_(0.5)La_(0.5)VO_(4)(BLV)固溶体光催化材料。得益于纳米SiO_(2)的限域效应,硬模板法制备的固溶体的粒径明显小于固相法制备的体相固溶体。N_(2)吸脱附测试结果显示950℃焙烧下制备的多孔BLV的比表面积为固相法的11.9倍。光催化CO_(2)还原活性评价表明多孔BLV-950固溶体的CO析出速率达0.58μmol·g^(-1)·h^(-1),是体相BLV的3.9倍。这归因于多孔BLV较体相具有更高的载流子分离效率和更低的CO_(2)还原界面阻力。 展开更多
关键词 光催化co_(2)还原 Bi_(0.5)La_(0.5)VO_(4)固溶体 模板法 电荷分离
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