光催化
材料科学
化学工程
废物管理
可扩展性
聚乙烯
生物量(生态学)
工艺工程
城市固体废物
比例(比率)
环境科学
制浆造纸工业
催化作用
纳米技术
废水
放大
作者
Ariffin Bin Mohamad Annuar,Yongpeng Liu,Subhajit Bhattacharjee,Jonathan Slaughter,Iuliia Mikulska,Farheen N. Sayed,Clare P. Grey,Dominic S. Wright,Erwin Reisner
出处
期刊:
[Springer Science+Business Media]
日期:2026-06-24
卷期号:3 (6): 351-362
被引量:2
标识
DOI:10.1038/s44286-026-00406-y
摘要
Abstract Photocatalytic reforming offers a route to valorize biomass and plastic waste into clean H 2 under ambient conditions. However, the scalability of photocatalyst sheets is limited by high-temperature processing, binders and complex co-catalyst deposition. Here a [Co 4 Zr 2 O(O n Pr) 10 (acac) 4 ] single-source precursor is deposited onto Al-doped SrTiO 3 and immobilized on glass substrates to fabricate photocatalyst sheets using multiple techniques, including high-throughput spray coating. The resulting sheets enable photoreforming of cellulose- and polyethylene terephthalate-derived feedstocks, producing H 2 alongside value-added organics such as formate, acetate, glycolate and glycolaldehyde dimer. The system is demonstrated from the centimeter- to meter-squared scale, culminating in a 1-m 2 outdoor reactor operating under natural sunlight. After 6 h, H 2 yields reached 5.24 and 1.51 mmol m −2 for glucose and pretreated cellulose, respectively, with concurrent formation of oxygenates. Techno-economic analysis based on real-world data estimates an H 2 cost of £0.93 mmol −1 . This work advances scalable photocatalytic reforming and provides a step towards practical deployment.
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