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Improved economic viability of integrated biogas energy and compost production for sustainable palm oil mill management

机译:整合沼气能源和堆肥生产的经济可行性,以实现可持续棕榈油厂管理

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This paper proposes a new approach for integrated technology of biogas energy and compost production for a palm oil mill. This study evaluated the economic viability based on the changes of materials flow and energy balance when a palm oil mill introduces this approach. A palm oil mill processing 54 tonnes fresh fruit bunch (FFB) per hour has the potential to produce 8.2 GWh per year of electricity using biogas captured during anaerobic treatment of palm oil mill effluent (POME). Compost production using shredded empty fruit bunch (EFB) and POME anaerobic sludge obtained from the anaerobic digester is equivalent of 579 tonnes, 151 tonnes and 761 tonnes per year of nitrogen, phosphorus and potassium respectively. The integrated technology is a more attractive solution compared to the case when the palm oil mill installs either biogas energy or compost technology individually. The result of economic analysis suggests that this integrated approach is the most economically effective in comparison to the other two cases. Interestingly, even without Clean Development Mechanism (CDM), the integrated technology can still be economically viable, which can be a good solution for sustainable palm oil industry management in the near future.
机译:本文提出了一种用于棕榈油厂的沼气能源和堆肥生产集成技术的新方法。当棕榈油厂采用这种方法时,本研究基于物料流量和能量平衡的变化评估了经济可行性。一家每小时处理54吨新鲜水果束(FFB)的棕榈油厂,利用棕榈油厂废水(POME)的厌氧处理过程中收集的沼气,每年可产生8.2 GWh的电力。使用切碎的空果束(EFB)和从厌氧消化池获得的POME厌氧污泥的堆肥生产分别相当于每年氮,磷和钾分别为579吨,151吨和761吨。与棕榈油厂单独安装沼气能源或堆肥技术的情况相比,集成技术是一种更具吸引力的解决方案。经济分析的结果表明,与其他两种情况相比,这种综合方法在经济上最有效。有趣的是,即使没有清洁发展机制(CDM),该集成技术仍在经济上可行,这可以在不久的将来成为可持续棕榈油行业管理的良好解决方案。

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