Download e-book for kindle: Membranes for clean and renewable power applications by Basile, Angelo; Gugliuzza, Annarosa
By Basile, Angelo; Gugliuzza, Annarosa
Hapters partially one introduce the usage of membrane know-how within the creation of fresh and renewable strength and the combining of membrane methods with renewable power applied sciences. half focusses on membranes for biofuel creation and processing together with membranes and membrane reactors for the creation of biodiesel and moment new release biofuels. half 3 discusses membranes for syngas, hydrogen and oxygen construction and processing. Chapters spotlight steam reforming of biofuels for the construction of hydrogen-rich fuel A., perovskite membrane reactors, and environmental research of hydrogen-methane blends for transportation. Chapters partly 4 discover membranes for gas cells together with ceramic membranes for intermediate temperature strong oxide gasoline cells (SOFC), microbial gasoline cells, and direct bioethanol gasoline cells. ultimately, half 5 discusses membranes built-in with sunlight, wind power and water-related functions together with membrane applied sciences for solar-hydrogen construction, solar-desalination vegetation, and the garage as methane of power generated by means of wind strength and different renewable assets. a last bankruptcy introduces wastewater processing, power conservation and effort generation. Read more...
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Additional resources for Membranes for clean and renewable power applications
E. opposite to the flow direction of natural osmotic processes, and is hence termed reverse osmosis (RO). Most modern desalination plants that have been built all over the world are based on the RO technology. 2 Power generation by the PRO process To achieve continuous and steady power generation by the PRO process, practical PRO systems can be designed as shown in Fig. , 2008). Firstly, the concentrate draw solution, characterized by the volumetric flow rate VD and osmotic pressure π D, is pumped into the PRO module channel.
2011. Microbial reverse electrodialysis cells for synergistically enhanced power production. Environ. Sci. Technol. 45, 5834–5839. , 2013. Reverse osmosis (RO) and pressure retarded osmosis (PRO) hybrid processes: model-based scenario study. Desalination 322, 121–130. , 2015a. Pressure retarded osmosis (PRO) for integrating seawater desalination and waste water reclamation: energy consumption and fouling. J. Membr. Sci. 483, 34–41. , 2015b. Recent advances in osmotic energy generation via pressure-retarded osmosis (PRO): a review.
Recent developments in salinity gradient power. In: Oceans Conference Record (IEEE), vol. 4, pp. 2284–2287. , 1986. Estimation of salinity power potential in India. Mahasagar Bull. Natl. Inst. Oceanogr. 19 (2), 113–118. , 2011. Microbial reverse electrodialysis cells for synergistically enhanced power production. Environ. Sci. Technol. 45, 5834–5839. , 2013. Reverse osmosis (RO) and pressure retarded osmosis (PRO) hybrid processes: model-based scenario study. Desalination 322, 121–130. , 2015a.
Membranes for clean and renewable power applications by Basile, Angelo; Gugliuzza, Annarosa