Pitfalls in Photochemical and Photoelectrochemical Reduction of CO2 to Energy Products

被引:2
作者
Baran, Tomasz [1 ]
Caringella, Domenico [1 ]
Dibenedetto, Angela [2 ,3 ]
Aresta, Michele [1 ]
机构
[1] Innovat Catalysis Carbon Recycling IC2R, Via Camillo Rosalba 49, I-70124 Bari, Italy
[2] Interuniv Consortium Chem React & Catalysis CIRCC, Via Celso Ulpiani 27, I-70126 Bari, Italy
[3] Univ Bari Aldo Moro, Dept Chem, I-70125 Bari, Italy
关键词
photochemical reduction of CO2; photoelectrochemical reduction of CO2; CO2RPs; false positive; risk management; WATER; TIO2; ZINC; CATALYSTS; METHANOL; SURFACE; DESIGN; OXIDES;
D O I
10.3390/molecules29194758
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The photochemical and photoelectrochemical reduction of CO2 is a promising approach for converting carbon dioxide into valuable chemicals (materials) and fuels. A key issue is ensuring the accuracy of experimental results in CO2 reduction reactions (CO2RRs) because of potential sources of false positives. This paper reports the results of investigations on various factors that may contribute to erroneous attribution of reduced-carbon species, including degradation of carbon species contained in photocatalysts, residual contaminants from synthetic procedures, laboratory glassware, environmental exposure, and the operator. The importance of rigorous experimental protocols, including the use of labeled (CO2)-C-13 and blank tests, to identify true CO2 reduction products (CO2RPs) accurately is highlighted. Our experimental data (eventually complemented with or compared to literature data) underline the possible sources of errors and, whenever possible, quantify the false positives with respect to the effective conversion of CO2 in clean conditions. This paper clarifies that the incidence of false positives is higher in the preliminary phase of photo-material development when CO2RPs are in the range of a few 10s of mu g g(cat)(-1) h(-1), reducing its importance when significant conversions of CO2 are performed reaching 10s of mol g(cat)(-1) h(-1). This paper suggests procedures for improving the reliability and reproducibility of CO2RR experiments, thus validating such technologies.
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页数:22
相关论文
共 92 条
[81]   Electrochemically prepared copper/indium oxides photocathode for efficient photoelectrochemical hydrogen production [J].
Wojtyla, Szymon ;
Baran, Tomasz .
SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2020, 206
[82]   Copper zinc oxide heterostructure nanoflowers for hydrogen evolution [J].
Wojtyla, Szymon ;
Baran, Tomasz .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2019, 44 (50) :27343-27353
[83]   Type II Heterostructures: The Way Towards Improved Photoelectrochemical Activity of Graphitic Carbon Nitride [J].
Wojtyla, Szymon ;
Szmit, Konrad ;
Baran, Tomasz .
JOURNAL OF INORGANIC AND ORGANOMETALLIC POLYMERS AND MATERIALS, 2018, 28 (02) :492-499
[84]   Is. D printing safe? Analysis of the thermal treatment of thermoplastics: ABS, PLA, PET, and nylon [J].
Wojtyla, Szymon ;
Klama, Piotr ;
Baran, Tomasz .
JOURNAL OF OCCUPATIONAL AND ENVIRONMENTAL HYGIENE, 2017, 14 (06) :D80-D85
[85]   Fate and implication of acetylacetone in photochemical processes for water treatment [J].
Wu, Bingdang ;
Zhang, Guoyang ;
Zhang, Shujuan .
WATER RESEARCH, 2016, 101 :233-240
[86]   Noble metal nanoparticles and nanodiamond modified strontium titanate photocatalysts for room temperature CO production from direct hydrogenation of CO2 [J].
Yadav, Mohit ;
Gyulavari, Tamas ;
Kiss, Janos ;
Abrahamne, Kornelia B. ;
Efremova, Anastasiia ;
Szamosvolgyi, Akos ;
Pap, Zsolt ;
Sapi, Andras ;
Kukovecz, Akos ;
Konya, Zoltan .
JOURNAL OF CO2 UTILIZATION, 2023, 78
[87]   Artificial Photosynthesis over Crystalline TiO2-Based Catalysts: Fact or Fiction? [J].
Yang, Chieh-Chao ;
Yu, Yi-Hui ;
van der Linden, Bart ;
Wu, Jeffrey C. S. ;
Mul, Guido .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2010, 132 (24) :8398-8406
[88]  
Yau YH, 2012, INT J SUSTAIN BUILT, V1, P110, DOI DOI 10.1016/J.IJSBE.2012.07.005
[89]   How carbon contamination on the photocatalysts interferes with the performance analysis of CO2 reduction [J].
You, Jiakang ;
Xiao, Mu ;
Liu, Siqi ;
Lu, Haijiao ;
Chen, Peng ;
Jiang, Zhi ;
Shangguan, Wenfeng ;
Wang, Zhiliang ;
Wang, Lianzhou .
JOURNAL OF MATERIALS CHEMISTRY A, 2023, 11 (19) :10149-10154
[90]   Current dilemma in photocatalytic CO2 reduction: real solar fuel production or false positive outcomings? [J].
Zhang, Kai ;
Gao, Qi ;
Xu, Cuiping ;
Zhao, Dawei ;
Zhu, Qibin ;
Zhu, Zhonghui ;
Wang, Jin ;
Liu, Cong ;
Yu, Haitao ;
Sun, Chen ;
Liu, Xianglei ;
Xuan, Yimin .
CARBON NEUTRALITY, 2022, 1 (01)