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Biogas Production from Citrus Waste by Membrane Bioreactor

Biogas Production from Citrus Waste by Membrane Bioreactor

Biogas Production from Citrus Waste by Membrane Bioreactor

Application of membrane bioreactor on citrus waste successfully improved the biogas production by more than six times compared to the conventional digestion

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Biogas Production from Citrus Waste by Membrane Bioreactor

the performance of MBR for improvement of biogas production from citrus waste. 2. Results and Discussion . Citrus waste contains 74.53% of carbohydrate

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Biogas Production from Citrus Waste by Membrane Bioreactor

In this membrane bioreactor (MBR), the free digesting bacteria digested the citrus wastes and produced soluble compounds, which could pass through the membrane

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Biogas Production from Citrus Waste by Membrane Bioreactor ...

2.1. Methane Yield and Biogas Composition. The citrus waste sludge was fed to the bioreactor at the loads of 0.3 kg VS/m 3 /day during the startup period. After

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Biogas Production from Citrus Waste by Membrane Bioreactor

Wikandari et al. (2014) investigated the enhancement of biogas production from citrus waste by the application of a membrane bioreactor. The citrus fruit was

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Biogas Production from Citrus Waste by Membrane Bioreactor

Performance of semi-continuous membrane bioreactor in biogas production from toxic feedstock containing d-Limonene By Supansa Youngsukkasem and Mohammad

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Biogas Production from Citrus Waste by Membrane Bioreactor ...

2.1. Methane Yield and Biogas Composition. The citrus waste sludge was fed to the bioreactor at the loads of 0.3 kg VS/m 3 /day during the startup period. After the methane production was stable, the organic loading rate was gradually increased and reached 3 kg VS/m 3 /day at the end of the digestion. The change of methane production during the digestion process is presented in Figure 2.

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Biogas Production from Citrus Waste by Membrane Bioreactor ...

Rapid acidification and inhibition by d-limonene are major challenges of biogas production from citrus waste. As limonene is a hydrophobic chemical, this...

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Article Biogas Production from Citrus Waste by Membrane ...

BibTeX @MISC{Wik14articlebiogas, author = {Rachma Wik and Ria Millati and Muhammad Nur Cahyanto and Mohammad J. Taherzadeh}, title = {Article Biogas Production from Citrus Waste by Membrane Bioreactor}, year = {2014}}

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Biogas Production from Citrus Waste by Membrane Bioreactor ...

Download PDF: Sorry, we are unable to provide the full text but you may find it at the following location(s): https://doi/10.3390/membra... (external link)

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Semi-Continuous Reverse Membrane Bioreactor in Two

Keywords: anaerobic digestion; biogas; membrane bioreactor; semi-continuous; citrus waste; two-stage 1. Introduction Citrus, as one of the most prominent genus of fruit, has reached a global production level of 121 million metric tons per year [1]. Around 40–60% of citrus used for juice production ends up as waste [2].

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Anaerobic membrane bioreactor for biogas production from ...

A laboratory scale anaerobic membrane bioreactor was operated for 11 months treating synthetic wastewater that mimicked the concentrate from a forward osmosis process treating municipal wastewater with 80% water recovery. The effect of temperature variation on reactor performance was assessed. The r

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New Products From Citrus Waste - Citrus Industry Magazine

Dec 08, 2020  Waste from the citrus industry can provide biogas and valuable products for a range of industries, according to a doctoral thesis at the University of Borås in Sweden. “The citrus industry creates so much waste that it corresponds to between 40 and 60 percent of the total citrus mass,” said Lukitawesa Lukitawesa, who recently defended his doctoral thesis at the University of Borås.

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(PDF) Performance of semi-continuous membrane bioreactor ...

Performance of semi-continuous membrane bioreactor in biogas production from toxic feedstock containing d-Limonene. Bioresource Technology, 2014. Supansa Youngsukkasem. Ria Millati. Mohammad Taherzadeh.

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(PDF) BIOGAS PRODUCTION BY ENCAPSULATED METHANE-PRODUCING ...

Biogas Production from Citrus Waste by Membrane Bioreactor. By Mohammad Taherzadeh and Muhammad Cahyanto. Rapid Biogas Production by Compact Multi-Layer Membrane Bioreactor: Efficiency of Synthetic Polymeric Membranes. By Supansa Youngsukkasem and

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Inhibition of patchouli oil for anaerobic digestion and ...

Dec 01, 2018  Membrane encasing of Saccaromyces cerevisiae found to be powerful against the negative effect of the hydrophobic inhibitor limonene in ethanol production from limonene-containing substrates of e.g. citrus waste . Membrane encased cells were also investigated for biogas production from citrus waste , . When a hydrophobic inhibitor such as ...

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Performance of semi-continuous membrane bioreactor in ...

In this membrane bioreactor (MBR), the free digesting bacteria digested the citrus wastes and produced soluble compounds, which could pass through the membrane and converted to biogas

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urn:nbn:se:hb:diva-1927 : Biogas production from citrus ...

In this membrane bioreactor (MBR), the free digesting bacteria digested the citrus wastes and produced soluble compounds, which could pass through the membrane and converted to biogas by the encapsulated cell. As a control experiment, similar digestions were carried out in bioreactors containing the identical amount of just free cells.

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Waste Management期刊最新论文, 化学/材料, - X-MOL

Waste Management期刊最新论文,,顶级期刊最新论文图文内容,出版社网站每日同步更新,点击标题直达论文原文,自定义关注的期刊,覆盖PubMed的论文库,快速方便精准的找到您想要的论文

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Recovery of Banana Waste-Loss from Production and ...

The enzymatic treatment can be carried out in two-liter bioreactors at a concentration of 60% (dry weight) of the shell. The waste-loss are dissolved and stirred in purified water, and during this stage, it is vital to measure the pH, the sugar content and the dissolved oxygen . Fermentation is the anaerobic degradation of organic substances ...

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Biogas Production from Citrus Waste by Membrane Bioreactor ...

Download PDF: Sorry, we are unable to provide the full text but you may find it at the following location(s): https://doi/10.3390/membra... (external link)

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Biogas production from citrus waste by membrane ... - CORE

In this membrane bioreactor (MBR), the free digesting bacteria digested the citrus wastes and produced soluble compounds, which could pass through the membrane and converted to biogas by the encapsulated cell. As a control experiment, similar digestions were carried out in bioreactors containing the identical amount of just free cells.

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urn:nbn:se:hb:diva-1927 : Biogas production from citrus ...

In this membrane bioreactor (MBR), the free digesting bacteria digested the citrus wastes and produced soluble compounds, which could pass through the membrane and converted to biogas by the encapsulated cell. As a control experiment, similar digestions were carried out in bioreactors containing the identical amount of just free cells.

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Biogas Production from Citrus Wastes and Chicken Feather ...

In this membrane bioreactor (MBR), the free digesting bacteria digested the citrus wastes and produced soluble compounds, which could pass through the membrane and converted to biogas

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(PDF) BIOGAS PRODUCTION BY ENCAPSULATED METHANE-PRODUCING ...

Biogas Production from Citrus Waste by Membrane Bioreactor. By Mohammad Taherzadeh and Muhammad Cahyanto. Rapid Biogas Production by Compact Multi-Layer Membrane Bioreactor: Efficiency of Synthetic Polymeric Membranes. By Supansa Youngsukkasem and

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Semi-Continuous Reverse Membrane Bioreactor in Two-Stage ...

Aug 02, 2018  The presence of an antimicrobial compound called D-Limonene in citrus waste inhibits methane production from such waste in anaerobic digestion. In this work, a two-stage anaerobic digestion method is developed using reverse membrane bioreactors (rMBRs) containing cells encased in hydrophilic membranes.

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Millati RIA Universitas Gadjah Mada, Yogyakarta UGM ...

Rapid acidification and inhibition by d-limonene are major challenges of biogas production from citrus waste. As limonene is a hydrophobic chemical, this challenge was encountered using ...

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(PDF) Biogas production by encased bacteria in synthetic ...

Biogas production by encased bacteria in synthetic membranes: protective effects in toxic media and high loading rates. Environmental Technology, 2013.

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Citrus fruits - ScienceDirect

Jan 01, 2020  Based on the total industrial processing of citrus fruits, approximately 50% waste are being generated (Vergamini et al., 2015).By considering waste generation and observing the global citrus production data from USDA (2018) the estimated waste generated from citrus processing industries is 10,929.50 metric tons in 2016. With the increased production and processing in the citrus

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Creates energy and valuable products - from fruit waste ...

Nov 26, 2020  But anaerobic digestion can be used to produce biogas or fatty acids – all for the sake of the environment and the climate. The solution that Lukitawesa highlights is anaerobic digestion in two steps, using a membrane. In the first part of the doctoral thesis, biogas production from citrus waste was studied. This is something that can reduce ...

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Acetogenesis - an overview ScienceDirect Topics

7.3.3.4 Biogas. Biogas production from citrus waste involves the anaerobic digestion of the organic matter by different groups of facultative and obligatory anaerobic microorganisms. Anaerobic digestion includes the steps hydrolysis, acidogenesis, acetogenesis, and methanogenesis.

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Anaerobic digestion of citrus waste using two-stage ...

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Large pilot-scale submerged anaerobic membrane bioreactor ...

The aim of this work was to demonstrate the operation of a large pilot-scale submerged anaerobic membrane bioreactor (5.0 m 3) for biogas production from municipal wastewater at ambient temperature of 25 °C.To the best of our knowledge, this is the largest one-stage submerged AnMBR that has ever been reported.

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[PDF] Biogas from Waste and Renewable Resources Semantic ...

DOI: 10.1002/9783527621705 Corpus ID: 132862446. Biogas from Waste and Renewable Resources @inproceedings{Deublein2008BiogasFW, title={Biogas from Waste and Renewable Resources}, author={Dieter Deublein and Angelika Steinhauser}, year={2008} }

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