
Performance and microbial diversity of palm oil mill effluent
Palm oil mill effluent (POME) is the wastewater generated during processing of palm oil. Currently, 0·65 tons of POME is generated from the processing of every ton of palm oil. It was estimated that 56·22 million tons of POME was generated in 2009 from the palm oil mills in Malaysia ( Anonymous 2010 ), and the figure is increasing because of
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ORIGINAL ARTICLE Performance and microbial diversity of palm
Palm oil mill effluent (POME) is the wastewater gener-ated during processing of palm oil. Currently, 0Æ65 tons of POME is generated from the processing of every ton of palm oil. It was estimated that 56Æ22 million tons of POME was generated in 2009 from the palm oil mills in Malaysia (Anonymous 2010), and the figure is increasing
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Performance of a laboratory-scale moving bed biofilm reactor
An alternative palm oil mill effluent treatment was developed using a laboratory-scale MBBR. • Two types of supporting media in the MBBR system were compared. • Increasing the MFF and HRT improved the MBBR treatment of palm oil mill effluent. • More than 10 species of bacteria were found on the supporting media of the MBBR system.
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Performance and microbial diversity of palm oil mill effluent
Performance and microbial diversity of palm oil mill effluent microbial fuel cell Article in Letters in Applied Microbiology 53(6):660-7 · October 2011 with 197 Reads How we measure 'reads'
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UASB performance and microbial adaptation during a transition
The treatment of palm oil mill effluent (POME) by an upflow anaerobic sludge bed (UASB) at organic loading rates (OLR) between 2.2 and 9.5 g COD l −1 day −1 was achieved by acclimatizing the mesophilic (37 °C) microbial seed to the thermophilic temperature (57 °C) by a series of stepwise temperature shifts.
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Enrichment, Performance, and Microbial Diversity of a
Performance and microbial diversity of palm oil mill effluent microbial fuel cell. Letters in Applied Microbiology 2011 , 53 (6) , 660-667. DOI: 10.1111/j.1472-765X.2011.03159.x.
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Effect of biofilm formation on the performance of microbial
Jahim J, Wan Ramli W, Ismail M, Anuar N, Kamarudin SK, Shari SN (2010) Optimization of electricity generation and Palm Oil Mill Effluent (POME) treatment from microbial fuel cell. J Appl Sci 10(24):3355–3360 CrossRef Google Scholar
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Insights into microbial community structure and diversity in
Abstract. Empty fruit bunch (EFB) and palm oil mill effluent (POME) are the major wastes generated by the oil palm industry in Malaysia. The practice of EFB and POME digester sludge co-composting has shown positive results, both in mitigating otherwise environmentally damaging waste streams and producing a useful product (compost) from these streams.
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Effect of biofilm formation on the performance of microbial
Jahim J, Wan Ramli W, Ismail M, Anuar N, Kamarudin SK, Shari SN (2010) Optimization of electricity generation and Palm Oil Mill Effluent (POME) treatment from microbial fuel cell. J Appl Sci 10(24):3355–3360 CrossRef Google Scholar
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Enrichment, Performance, and Microbial Diversity of a
Performance and microbial diversity of palm oil mill effluent microbial fuel cell. Letters in Applied Microbiology 2011 , 53 (6) , 660-667. DOI: 10.1111/j.1472-765X.2011.03159.x.
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Insights into microbial community structure and diversity in
Request PDF | Insights into microbial community structure and diversity in oil palm waste compost | Empty fruit bunch (EFB) and palm oil mill effluent (POME) are the major wastes generated by the
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Insights into microbial community structure and diversity in
Abstract. Empty fruit bunch (EFB) and palm oil mill effluent (POME) are the major wastes generated by the oil palm industry in Malaysia. The practice of EFB and POME digester sludge co-composting has shown positive results, both in mitigating otherwise environmentally damaging waste streams and producing a useful product (compost) from these streams.
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Microbial and process performance in anaerobic digestion of
methanogens and methanogens directly reflected in process stability and performance efficiency more than microbial population. Keywords: Microbial characteristics, Normal and overload feeding, Palm oil mill effluent. 1. Introduction Palm oil industry has become one of the rapidly growing sectors in Thailand. The rapid development has
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Performance of a laboratory-scale moving bed biofilm reactor
Performance of a laboratory-scale moving bed biofilm reactor (MBBR) and its microbial diversity in palm oil mill effluent (POME) treatment. Highlights•An alternative palm oil mill effluent treatment was developed using a laboratory-scale MBBR.•Two types of supporting media in the MBBR system were compared.•Increasing the MFF and HRT improved the MBBR treatment of palm oil mill effluent
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Performance of Two-Chambered Microbial Fuel Cell (MFC) at
Performance of Two-Chambered Microbial Fuel Cell (MFC) at Different pH Anode Microenvironment Using Palm Oil Mill Effluent (POME) as Substrate p.511 Dynamic Behavior of Rapeseed Oil Spray in Diesel Engine
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[PDF] Treatment of Palm Oil Mill Effluent in Microbial Fuel
Palm oil mill effluent (POME) is an organic waste material produced at the oil palm mills. It is highly polluting due to its high content of biological and chemical oxygen demand. In the present paper, POME was treated using double chamber microbial fuel cell with simultaneous generation of electricity. Polyacrylonitrile carbon felt (PACF) was used as electrode and anaerobic sludge was used as
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Microbial and process performance in anaerobic digestion of
methanogens and methanogens directly reflected in process stability and performance efficiency more than microbial population. Keywords: Microbial characteristics, Normal and overload feeding, Palm oil mill effluent. 1. Introduction Palm oil industry has become one of the rapidly growing sectors in Thailand. The rapid development has
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UASB performance and microbial adaptation during a transition
The treatment of palm oil mill effluent (POME) by an upflow anaerobic sludge bed (UASB) at organic loading rates (OLR) between 2.2 and 9.5 g COD l-1 day-1 was achieved by acclimatizing the mesophilic (37°C) microbial seed to the thermophilic temperature (57°C) by a series of stepwise temperature shifts.
Get Inquiry![[pdf] treatment of palm oil mill effluent in microbial fuel](/wp-content/rand/65.jpg)
[PDF] Treatment of Palm Oil Mill Effluent in Microbial Fuel
Palm oil mill effluent (POME) is an organic waste material produced at the oil palm mills. It is highly polluting due to its high content of biological and chemical oxygen demand. In the present paper, POME was treated using double chamber microbial fuel cell with simultaneous generation of electricity. Polyacrylonitrile carbon felt (PACF) was used as electrode and anaerobic sludge was used as
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Palm Oil Mill Effluent as an Environmental Pollutant | IntechOpen
In recent decades, Malaysia has been known as one of the world’s leading producers and exporters of palm oil products. Every year, the number of palm oil mills increases rapidly, thus increasing the capacity of fresh fruit bunch waste or effluent discharge. Based on the data from the Malaysian Palm Oil Board in 2012, Malaysia produced 99.85 million tons of fresh fruit bunch (FFB) per year
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Effect of Biofilm Formation on the Performance of Microbial
Effect of Biofilm Formation on the Performance of Microbial Fuel Cell for the Treatment of Palm Oil Mill Effluent By Baranitharan E., Maksudur R. Khan, Prasad D. M. R., Fei Aaron Teo Wee, Yuan Annie Tan Geok and Jose Rajan
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Effect of Biofilm Formation On The Performance Of Microbial
Furthermore, DGGE patterns obtained from 7th and 14th day suggest the presence of less diversity and probable functional redundancy within the anodic communities possibly responsible for the stable MFC performance in changing environmental conditions. KEYWORDS: Microbial fuel cell Biofilm Palm oil mill effluent Wastewater treatment
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Investigation on the performance of innovative powdered
Investigation on the performance of innovative powdered activated carbon hybrid microbial fuel cell in treating palm oil mill effluent . J Y Lee, P F Lim, P K Lo, M J K Bashir, H Nisar, W P Teoh and C A Ng * Faculty of Engineering and Green Technology, Univ. ersity of Tunku Abdul Rahman, 31900 Kampar, Perak, Malaysia. Abstract
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Microbial community analysis in anaerobic palm oil mill
Denaturing gradient gel electrophoresis (DGGE) was used to monitor succession of the microbial community and thus predominant bands were sequenced to reveal the microbial community composition inside palm oil mill effluent (POME) wastewater.DNA bands from DGGE gels were excised with a sterile blade and placed in 1.5 ml eppendorf tube containing
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