enhancing the removal of phenolic compounds from palm oil
(PDF) Enhancing the Removal of Phenolic Compounds from Palm Oil Mill
Enhancing the Removal of Phenolic Compounds from Palm Oil Effluent by Enzymatic Pre-Treatment and Microwave Assisted Extraction-full paper copy-june20 14.pdf Content available from N.M. Saifuddin:
[PDF] Enhancing the Removal of Phenolic Compounds from Palm Oil Mill
Palm oil mill effluent (POME), generated by the oil extraction industry, represents a severe environmental problem due to its highly polluting organic load arising from polyphenol content with low biodegradability. However, with its more than dozens of phenolic compounds, POME is also regarded as a potent source of natural antioxidants. This study describes the improvement in the extraction ...
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Enhancing the Removal of Phenolic Compounds from Palm Oil Mill Effluent by Enzymatic Pre-treatment and Microwave-Assisted Extraction N. SAIFUDDIN1, A. SALTANAT2 and H. REFAL1
Enhancing methane production and microbial community dynamics by
The economic feasibility of two conditions, the non-extraction condition commonly used by palm oil industries for methane production and the extraction system that removes phenolic compounds from POME prior to fermentation, was evaluated.
Removal of phenolic compounds from palm oil mill effluent by
The maximum efficiency of the removal of phenolic compounds was 61.1% with a degradation rate of 4.03 mg L −1 h −1. This aerobic pretreatment was able to partially degrade all the individual phenolic compounds but to different extents. Some of the remaining phenolic compounds were further reduced by the anaerobic process.
Enhancing methane production and microbial community dynamics by
This study evaluates the impact of phenolic compound removal from raw Palm Oil Mill Effluent (POME) on methane production in anaerobic digestion. Experiments were conducted at both small and large scales under controlled anaerobic conditions (37 °C, pH 7.0).
Influence of photodegradation on the removal of color and phenolic
Palm oil mill effluent (POME) released from conventional treatment systems poses severe environmental problems due to its dark color, its high chemical oxygen demand (COD), and high content of phenolic compounds. However, the possible biodegradation of phenolic compounds and color by microalgae was not well explored. This research aimed to reveal optimal conditions for pollutant removal ...
Bioaugmentation coupled with phytoremediation for the removal of
The potential for coupling bioaugmentation with phytoremediation to simultaneously treat and utilize treated palm oil mill effluent (TPOME) in animal feed production was determined from a reduction in phenolic compounds and color in soil leachates, as well as from an increased yield of pasture grass. Two phenol-degrading bacteria—Methylobacterium sp. NP3 and Acinetobacter sp. PK1—were ...
Removal of phenolic compounds from palm oil mill effluent by
Abstract Anaerobic digestion is commonly used for the treatment of palm oil mill effluent (POME) due to its efficiency in removing high organic content with the production of renewable energy in the form of methane. The presence of phenolic compounds in the POME has inhibitory effects on anaerobic bacterial growth. The major POME phenolic compounds were identified as gallic acid ...
Novel Concepts for Graphene-Based Nanomaterials Synthesis for Phenol
In recent years, the global population has increased significantly, resulting in elevated levels of pollution in waterways. Organic pollutants are a major source of water pollution in various parts of the world, with phenolic compounds being the most common hazardous pollutant. These compounds are released from industrial effluents, such as palm oil milling effluent (POME), and cause several ...












