By Se-Kwon Kim, Choul-Gyun Lee
Marine Bioenergy: tendencies and advancements positive factors the newest findings of major scientists from world wide. Addressing the foremost elements of marine bioenergy, this state of the art text:Offers an advent to marine bioenergyExplores marine algae as a resource of bioenergyDescribes biotechnological ideas for biofuel productionExplains the construction of bioenergy, together with bioethanol, biomethane, biomethanol, biohydrogen, and biodiesel Covers bioelectricity and marine microbial gas phone (MFC) creation from marine algae and microbesDiscusses marine waste for bioenergyConsiders com. Read more...
summary: Marine Bioenergy: developments and advancements gains the most recent findings of major scientists from around the globe. Addressing the most important features of marine bioenergy, this cutting-edge text:Offers an creation to marine bioenergyExplores marine algae as a resource of bioenergyDescribes biotechnological concepts for biofuel productionExplains the creation of bioenergy, together with bioethanol, biomethane, biomethanol, biohydrogen, and biodiesel Covers bioelectricity and marine microbial gas cellphone (MFC) construction from marine algae and microbesDiscusses marine waste for bioenergyConsiders com
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Additional resources for Marine Bioenergy : Trends and Developments
These characteristics included the ability of the strains to grow rapidly and have high lipid productivity when growing under high light intensity, high temperature, and in saline waters indigenous to the area in which the commercial production facility is located. In addition, because it is not possible to control the weather in the area of the ponds, the best strain should have good productivity under fluctuating light intensity, temperature, and salinity (Danananda et al. 2007). For the commercial scale-up, the strain should be able to grow in varied ranges of cultural conditions (pH, temperature, light intensity, salinity, and different media) with a considerable production of biocrude.
2011). 92 Source: Adapted from FAO, The State of World Fisheries and Aquaculture 2012, FAO, Rome, Italy, 2012, 209pp. coastal waters of China), Eucheuma seaweeds (a mixture of K. ), wakame (U. 1 million tons, mostly from China). ). The cultivation of aquatic algae is practiced in far fewer countries. 7%, 132,000 tons). However, marine biomass is often an overlooked source and potentially represents a significant source of renewable energy because it was a source of carbohydrate and the average photosynthetic efficiency of seaweeds is higher than the terrestrial biomass (Kraan 2013).
4 (Continued) Oil Content of Marine Microalgae Expressed on a Dry Matter Basis Taxonomy Class: Cocclithophyceae Order: Isochrysidales Order: Prymnesiales Division: Ochrophyta Class: Bacillariophyceae Order: Bacillariales Order: Naviculales Division: Rhodophyta Class: Porphyridiophyceae Order: Porphyridiales a b c d e Species Oil Content (%) Isochrysis galbana Isochrysis sp. Isochrysis sp. ((T-ISO) CS 177) Isochrysis sp. 4d 22–38e Cylindrotheca sp. Hantzschia sp. (DI-160) Nitzschia sp. Phaeodactylum tricornutum (F&M-M40) P.