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Biohydrogen from thermophilic co-fermentation of swine manure with fruit and vegetable waste: Maximizing stable production without pH control

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논문

Biohydrogen from thermophilic co-fermentation of swine manure with fruit and vegetable waste: Maximizing stable production without pH control

학술지

Bioresource technology : biomass, bioenergy, biowastes, conversion technologies, biotransformations, production technologies

저자명

Tenca, A.; Schievano, A.; Perazzolo, F.; Adani, F.; Oberti, R.

초록

<P><B>Highlights</B></P><P>&#x025BA; Swine manure as alkali source in bioH2 production from promptly degradable biomass. &#x025BA; Effects of manure/biomass ratio and of retention time on process. &#x025BA; Relevant production rate and yield at optimal mixing ratio and retention time. &#x025BA; Stable process without addition of external alkali for pH control.</P> <P><B>Abstract</B></P><P>Hydrogen production by dark fermentation may suffer of inhibition or instability due to pH deviations from optimality. The co-fermentation of promptly degradable feedstock with alkali-rich materials, such as livestock wastes, may represent a feasible and easy to implement approach to avoid external adjustments of pH.</P><P>Experiments were designed to investigate the effect of the mixing ratio of fruit&ndash;vegetable waste with swine manure with the aim of maximizing biohydrogen production while obtaining process stability through the endogenous alkalinity of manure.</P><P>Fruit&ndash;vegetable/swine manure ratio of 35/65 and HRT of 2d resulted to give the highest production rate of 3.27&plusmn;0.51L<SUB>H2</SUB>L<SUP>&minus;1</SUP>d<SUP>&minus;1</SUP>, with a corresponding hydrogen yield of 126&plusmn;22mL<SUB>H2</SUB>g<SUP>&minus;1</SUP><SUB>VS-added</SUB> and H<SUB>2</SUB> content in the biogas of 42&plusmn;5%. At these operating conditions the process exhibited also one of the highest measured stability, with daily productions deviating for less than 14% from the average.</P>

발행연도

2011

ISSN

0960-8524

102

18

페이지

pp.8582-8588

주제어

Biohydrogen; Swine manure; Fruit and vegetables waste; Co-fermentation; Response surface analysis

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1 2023-12-11

논문; 2011-09-01

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