The effect of thermal pre-treatment and waste paper addition to biomethane potential of macro algae Saccharina lattissima

As a steady renewable energy technology, biogas is a viable alternative to reduce our dependency to fossil fuels and to prevent severe climate change. Biogas potential can be improved through combining different types of substrate and inoculum, as well as through substrate pre-treatments. This study...

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Main Author: Tandiyoputri, Gadis
Format: Others
Language:English
Published: Linnéuniversitetet, Institutionen för byggd miljö och energiteknik (BET) 2018
Subjects:
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:lnu:diva-76383
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spelling ndltd-UPSALLA1-oai-DiVA.org-lnu-763832018-06-27T05:23:38ZThe effect of thermal pre-treatment and waste paper addition to biomethane potential of macro algae Saccharina lattissimaengTandiyoputri, GadisLinnéuniversitetet, Institutionen för byggd miljö och energiteknik (BET)2018biomethane potentialmacroalgaeSaccharina Lattissimamechanical pre-treatmentthermal pre-treatmentEngineering and TechnologyTeknik och teknologierAs a steady renewable energy technology, biogas is a viable alternative to reduce our dependency to fossil fuels and to prevent severe climate change. Biogas potential can be improved through combining different types of substrate and inoculum, as well as through substrate pre-treatments. This study aims to observe and explore the potential of macroalgae Saccharina latissima as a promising new source in renewable energy technology. The biomethane potential of macroalgae in mixture with additional substrate of mixed waste paper will be studied as a mean to improve the biogas yield. It will also compare the biomethane results of the macroalgae and the mixed substrate (macroalgae plus waste paper) exposure to non-thermal and thermal pre-treatment. In the experiment, the ratio of 3 : 1 for gr VS inoculum : gr VS substrate is used in a quantitative BMP test up to 25 days of incubation. The substrate was pre-treated mechanically (blended) into slurry and thermally through pre-heating at high temperature (130°C, 45 minutes) before digested by the inoculum. In the end of incubation period at STP (0°C and 1 atm), the highest cumulative methane yield of 260.91 Nml CH4/gr VS substrate was achieved by sample in Var – I, while the control has cumulative methane yield of 50.52 Nml CH4/gr VS. Thermally pre-treated samples resulted in lower BMP yields than the ones which were not thermally pre-treated. Through the ANOVA t-test of the methane volume and biomethane potential (BMP) yields, it is concluded that the thermal pre-treatment and waste paper addition only give little effect to biomethane production from macroalgae. Student thesisinfo:eu-repo/semantics/bachelorThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:lnu:diva-76383application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language English
format Others
sources NDLTD
topic biomethane potential
macroalgae
Saccharina Lattissima
mechanical pre-treatment
thermal pre-treatment
Engineering and Technology
Teknik och teknologier
spellingShingle biomethane potential
macroalgae
Saccharina Lattissima
mechanical pre-treatment
thermal pre-treatment
Engineering and Technology
Teknik och teknologier
Tandiyoputri, Gadis
The effect of thermal pre-treatment and waste paper addition to biomethane potential of macro algae Saccharina lattissima
description As a steady renewable energy technology, biogas is a viable alternative to reduce our dependency to fossil fuels and to prevent severe climate change. Biogas potential can be improved through combining different types of substrate and inoculum, as well as through substrate pre-treatments. This study aims to observe and explore the potential of macroalgae Saccharina latissima as a promising new source in renewable energy technology. The biomethane potential of macroalgae in mixture with additional substrate of mixed waste paper will be studied as a mean to improve the biogas yield. It will also compare the biomethane results of the macroalgae and the mixed substrate (macroalgae plus waste paper) exposure to non-thermal and thermal pre-treatment. In the experiment, the ratio of 3 : 1 for gr VS inoculum : gr VS substrate is used in a quantitative BMP test up to 25 days of incubation. The substrate was pre-treated mechanically (blended) into slurry and thermally through pre-heating at high temperature (130°C, 45 minutes) before digested by the inoculum. In the end of incubation period at STP (0°C and 1 atm), the highest cumulative methane yield of 260.91 Nml CH4/gr VS substrate was achieved by sample in Var – I, while the control has cumulative methane yield of 50.52 Nml CH4/gr VS. Thermally pre-treated samples resulted in lower BMP yields than the ones which were not thermally pre-treated. Through the ANOVA t-test of the methane volume and biomethane potential (BMP) yields, it is concluded that the thermal pre-treatment and waste paper addition only give little effect to biomethane production from macroalgae.
author Tandiyoputri, Gadis
author_facet Tandiyoputri, Gadis
author_sort Tandiyoputri, Gadis
title The effect of thermal pre-treatment and waste paper addition to biomethane potential of macro algae Saccharina lattissima
title_short The effect of thermal pre-treatment and waste paper addition to biomethane potential of macro algae Saccharina lattissima
title_full The effect of thermal pre-treatment and waste paper addition to biomethane potential of macro algae Saccharina lattissima
title_fullStr The effect of thermal pre-treatment and waste paper addition to biomethane potential of macro algae Saccharina lattissima
title_full_unstemmed The effect of thermal pre-treatment and waste paper addition to biomethane potential of macro algae Saccharina lattissima
title_sort effect of thermal pre-treatment and waste paper addition to biomethane potential of macro algae saccharina lattissima
publisher Linnéuniversitetet, Institutionen för byggd miljö och energiteknik (BET)
publishDate 2018
url http://urn.kb.se/resolve?urn=urn:nbn:se:lnu:diva-76383
work_keys_str_mv AT tandiyoputrigadis theeffectofthermalpretreatmentandwastepaperadditiontobiomethanepotentialofmacroalgaesaccharinalattissima
AT tandiyoputrigadis effectofthermalpretreatmentandwastepaperadditiontobiomethanepotentialofmacroalgaesaccharinalattissima
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