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Ensiling of seaweed for a seaweed biofuel industry.

Bioresource technology (2015-08-09)
Christiane Herrmann, Jamie FitzGerald, Richard O'Shea, Ao Xia, Pádraig O'Kiely, Jerry D Murphy
RESUMEN

Effective biogas production from seaweed necessitates harvest at times of peak quality of biomass and low-loss preservation for year-around supply. Ensiling of five seaweed species and storage up to 90days was investigated as a method to preserve the methane yield potential. Adequate acidification by natural lactic acid fermentation was difficult due to low rapidly fermentable carbohydrate contents, high buffering capacities and low initial numbers of lactic acid bacteria. Nevertheless, products of silage fermentation increased methane yields by up to 28% and compensated for volatile solid losses during ensiling. Preservation of the original methane yield potential was achieved for four of five seaweed species, provided that silage effluent is collected and utilised. 10-28% of the ensiled biomass was released as effluent with methane yields of 218-423LNkg(-1) VS. If further optimised, ensiling represents an effective method of preservation crucial for an efficient seaweed biofuel industry.

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Alcohol etílico puro, 200 proof, anhydrous, ≥99.5%
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Alcohol etílico puro, 190 proof, ACS spectrophotometric grade, 95.0%
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D-Manitol, ≥98% (GC)
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Lactic acid, meets USP testing specifications
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Lactic acid, 88%, FCC
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D-Manitol, ACS reagent
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Valeric acid, ≥99%
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D-Manitol, ≥98% (GC), suitable for plant cell culture
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Alcohol etílico puro, 190 proof, meets USP testing specifications
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Lactic acid, natural, ≥85%
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Lactic acid solution, ACS reagent, ≥85%
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Propionic acid, ACS reagent, ≥99.5%
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Ácido acético, suitable for luminescence, BioUltra, ≥99.5% (GC)
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5α-Androstan-17β-ol-3-one, ≥97.5%
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D-Manitol, BioUltra, ≥99.0% (sum of enantiomers, HPLC)
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D-Manitol, meets EP, FCC, USP testing specifications
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Carbon nanofibers, graphitized, platelets(conical), >98% carbon basis, D × L 100 nm × 20-200 μm
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Ácido acético, ≥99.7%
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Carbon nanofibers, pyrolitically stripped, platelets(conical), >98% carbon basis, D × L 100 nm × 20-200 μm
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Heptanoic acid, ≥99.0% (GC)
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1-Propanol, ≥99%, FG
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Propionic acid, ≥99.5%, FCC, FG
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Ácido acético, ≥99.5%, FCC, FG
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1-Propanol, anhydrous, 99.7%
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Ácido acético, natural, ≥99.5%, FG
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D-Manitol, BioXtra, ≥98% (HPLC)
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Ácido acético, JIS special grade, ≥99.7%
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Carbon, mesoporous, less than 100 ppm Al, Ti, Fe, Ni, Cu, and Zn combined
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Carbon, mesoporous, nanopowder, less than 500 ppm Al, Ti, Fe, Ni, Cu, and Zn combined
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Valeric acid, ≥99%, FCC, FG