Capacity building in porous materials research for sustainable energy applications

被引:1
|
作者
Langmi, Henrietta W. [1 ]
Musyoka, Nicholas M. [2 ]
Kemmegne-Mbouguen, Justin C. [3 ]
Kowenje, Chrispin [4 ]
Kengara, Fredrick [5 ]
Mokaya, Robert [6 ]
机构
[1] Univ Pretoria, Dept Chem, Private Bag X20, ZA-0028 Hatfield, South Africa
[2] Univ Nottingham Ningbo China, Nottingham Ningbo China Beacons Excellence Res & I, Ningbo 315100, Peoples R China
[3] Univ Yaounde I, Fac Sci, Lab Nanomat Sensors & Energy, BP 812, Yaounde, Cameroon
[4] Maseno Univ, Dept Chem, POB 333, Maseno 40105, Kenya
[5] Bomet Univ Coll, Sch Pure & Appl Sci, POB 701-20400, Bomet 20400, Kenya
[6] Univ Nottingham, Sch Chem, Univ Pk, Nottingham NG7 2RD, England
关键词
capacity; porous; materials; research; sustainable; energy; ORGANIC FRAMEWORK UIO-66; HYDROGEN STORAGE; ACETAMINOPHEN; OPTIMIZATION; COMPOSITE;
D O I
10.1098/rsfs.2023.0067
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
The project aimed to develop porous materials for sustainable energy applications, namely, hydrogen storage, and valorization of biomass to renewable fuels. At the core of the project was a training programme for Africa-based researchers in (i) the exploitation of renewable locally available raw materials; (ii) the use of advanced state-of-the-art techniques for the design and synthesis of porous materials (zeolites and metal-organic frameworks (MOFs)) for energy storage; and (iii) the valorization of sustainable low-value feedstock to renewable fuels. We found that compaction of the UiO-66 MOF at high pressure improves volumetric hydrogen storage capacity without any loss in gravimetric uptake, and experimentally demonstrated the temperature-dependent dynamic behaviour of UiO-66, which allowed us to propose an activation temperature of <= 150 degrees C for UiO-66. Co-pelletization was used to fabricate UiO-66/nanofibre monoliths as hierarchical porous materials with enhanced usable (i.e. deliverable) hydrogen storage capacity. We clarified the use of naturally occurring kaolin as a source of silica and alumina species for zeolite synthesis. The kaolin-derived zeolite X was successfully used as a catalyst for the transesterification of Jatropha curcas oil (from non-edible biomass) to biodiesel. We also prepared porous composites (i.e. carbon/UiO-66, organoclay/UiO-66 and zeolite/carbon) that were successfully applied in electrochemical sensing.
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页数:10
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