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| Analogous to our present investigation is the development of biological production process for the production of H2. Achieved using any of four classes of bacteria or algae, this process has demonstrated significant advantages over other, non-biological processes, namely their ability to be conducted under ambient conditions without the use of harmful catalysts (Adessi and De Philippis 2014). However, while biological H2 production processes have been demonstrated as sustainable, renewable, and energy-efficient processes, achieving production on scales similar to non-biological processes remains a significant challenge. </p> | | Analogous to our present investigation is the development of biological production process for the production of H2. Achieved using any of four classes of bacteria or algae, this process has demonstrated significant advantages over other, non-biological processes, namely their ability to be conducted under ambient conditions without the use of harmful catalysts (Adessi and De Philippis 2014). However, while biological H2 production processes have been demonstrated as sustainable, renewable, and energy-efficient processes, achieving production on scales similar to non-biological processes remains a significant challenge. </p> |
| + | <header> |
| + | <h2>REFERENCES</h2> |
| + | </header> |
| + | <p>Adessi, A. and R. De Philippis. Photobioreactor design and illumination systems for H2 production with anoxygenic photosynthetic bacteria: A review. <i>Int. J. Hydrogen Energy.</i> <b>9</b>, 3127-3141 (2014).</p> |
| + | <p>Chen, C.-Y., K.-L. Yeh, R. Aisyah, D.-J. Lee and J.-S. Chang. Cultivation, photobioreactor design and harvesting of microalgae for biodiesel production: A critical review. <i>Biores. Tech.</i> <b>102</b>, 71-81 (2011).</p> |
| + | <p>Tian, X., Q. Liao, X. Zhu, Y. Wang, P. Zhang, J. Li and H. Wang. Characteristics of a biofilm photobioreactor as applied to photo-hydrogen production. <i>Biores. Tech.</i> <b>101</b>, 977-983 (201).</p> |
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