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Artificial leaf device for hydrogen generation from immobilised C. reinhardtii microalgae

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논문

Artificial leaf device for hydrogen generation from immobilised C. reinhardtii microalgae

학술지

Journal of materials chemistry. A, Materials for energy and sustainability

저자명

Das, Anupam A. K.; Esfahani, Mohammad M. N.; Velev, Orlin D.; Pamme, Nicole; Paunov, Vesselin N.

초록

<▼1><P>We have engineered a hydrogen generating device replicating the function of a leaf undergoing photosynthesis based on fabric-immobilized microalgae culture with controlled perfusion with nutrients and collection of hydrogen through parallel microchannel networks.</P></▼1><▼2><P>We developed a fully biomimetic leaf-like device for hydrogen production which allows incorporated fabric-immobilised microalgae culture to be simultaneously hydrated with media and harvested from the produced hydrogen in a continuous flow regime without the need to replace the algal culture. Our leaf device produces hydrogen by direct photolysis of water resulting from redirecting the photosynthetic pathways in immobilised microalgae due to the lack of oxygen. In contrast to the many other reports in the literature on batch photobioreactors producing hydrogen from suspension culture of microalgae, we present the first report where this is done in a continuous manner from a fabric-immobilised microalgae culture. The reported artificial leaf device maximises the sunlight energy utilisation per gram of algae and can be upscaled cheaply and easily to cover large areas. We compared the production of hydrogen from both immobilised and suspended cultures of <I>C. reinhardtii</I> microalgae under sulphur, phosphorus and oxygen deprived conditions. The viability and potential of this approach is clearly demonstrated. Even though this is a first prototype, the hydrogen yield of our artificial leaf device is twenty times higher per gram of algae than in previously the reported batch reactors. Such leaf-like devices could potentially be made from flexible plastic sheets and installed on roofs and other sun-exposed surfaces that are inaccessible by photovoltaic cells. The ability to continuously produce inexpensive hydrogen by positioning inexpensive sheets onto any surface could have an enormous importance in the field of biofuels. The proposed new concept can provide a cleaner and very inexpensive way of bio-hydrogen generation by flexible sheet-like devices.</P></▼2>

발행연도

2015

발행기관

The Royal Society of Chemistry

라이선스

cc-by-nc

ISSN

2050-7488

ISSN

2050-7496

3

41

페이지

pp.20698-20707

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1 2023-12-11

논문; 2015-01-01

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