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Mechanical pretreatment processes for enhancement of biogas production from palm oil mill effluent (POME)

机译:机械预处理工艺可提高棕榈油厂废水(POME)的沼气产量

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Various pretreatment methods including ultrasonication, coalescer filtration, and dissolved air flotation (DAF) have been investigated for palm oil mill effluent (POME) treatment prior to the biogas system. These methods showed significant improvement in the biodegradability characteristics of POME in comparison with non-pretreatment. Their efficiencies were determined by measuring the biochemical oxygen demand (BOD)/total chemical oxygen demand (TCOD) ratio, soluble chemical oxygen demand (SCOD)/TCOD ratio, and reducing sugar content, as well as TCOD removal, fat, oil and grease removal, and biomethane production. Ultrasonication, coalescer, and DAF increases oil removal efficiencies by 50.30%, 53.13%, and 68.21%, respectively. The results found that the BOD/TCOD and SCOD/TCOD values for POME were increased slightly by pretreatment methods, but remained within the range for biodegradable values. While the coalescer and DAF increased the reducing sugar content in POME from 4.36 to 4.80 g/L and 4.36 to 4.40 g/L, respectively, sonication can increase it by nearly double, from 4.36 to 8.12 g/L. Maximum methane production was 3.05 LCH4/L POME and a methane production rate of 88.52 LCH4/day was also found with ultrasonication.
机译:对于沼气系统之前的棕榈油厂出水(POME)处理,已经研究了各种预处理方法,包括超声处理,聚结器过滤和溶解气浮(DAF)。与非预处理相比,这些方法在POME的生物降解特性方面显示出显着改善。通过测量生化需氧量(BOD)/总化学需氧量(TCOD)比率,可溶性化学需氧量(SCOD)/ TCOD比率以及降低糖含量以及TCOD的去除,脂肪,油脂和油脂来确定其效率去除和沼气生产。超声处理,聚结器和DAF分别将除油效率提高了50.30%,53.13%和68.21%。结果发现,通过预处理方法,POME的BOD / TCOD和SCOD / TCOD值略有增加,但仍在可生物降解值的范围内。尽管聚结剂和DAF将POME中的还原糖含量分别从4.36 g / L增加到4.80 g / L和4.36 g / L增加到4.40 g / L,但超声处理可以将其增加近一倍,从4.36 g / L增加到8.12 g / L。甲烷的最大产量为3.05 LCH4 / L POME,超声处理发现甲烷的生产率为88.52 LCH4 /天。

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