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Utilization of biogas released from palm oil mill effluent for power generation using self-preheated reactor

机译:利用棕榈油厂废水中释放的沼气通过自热反应器发电

摘要

In palm oil mills, for one ton crude palm oil (CPO) production, 70 m3 biogas is released from palm oil mill effluent (POME) which can endanger the environment. Palm oil mills without appropriate strategies for biogas collection can participate in greenhouse gases (GHGs) generation actively. In this paper, a typical palm oil mill with annual capacity of 300,000 ton oil palm production and 3 MW electricity demand is considered as a pilot plant and feasibility of power generation by POME biogas is modeled by Aspen Plus considering flameless mode in combustion system. A new design of lab-scale flameless reactor called self-preheated flameless combustion (SPFC) system is presented and employed in power generation modeling. In SPFC system, the flameless chamber is employed as a heater to preheat an oxidizer over the self-ignition temperature of the fuel. A helical stainless steel pipe (called self-preheating pipe) is installed inside the chamber to conduct the oxidizer from exhaust zone to the combustion zone inside the chamber and preheat oxidizer. In the flameless mode, the diluted oxidizer is injected to the helical pipe from the exhaust zone and the preheated oxidizer at the burner is conducted to the flameless furnace through a distributor. In SPFC system external heater for preheating oxidizer is removed and the rate of power generation increases. The results show that 10.8 MW power could be generated in ultra-lean POME biogas SPFC. However, the rate of pollutant especially CO2 and NOx is high in this circumstances. In stoichiometric condition, 4 MW power could be available in stable conditions with lower pollutant formation. Since, hydrogen is one of the ingredients of POME biogas, calculations confirm that the rate of power generation increases around 0.7 MW when just 2% hydrogen is added to biogas.
机译:在棕榈油厂中,每生产一吨粗棕榈油(CPO),会从棕榈油厂废液(POME)中释放70立方米沼气,这可能危害环境。没有合适的沼气收集策略的棕榈油厂可以积极参与温室气体的产生。在本文中,一个典型的年产30万吨油棕生产能力和3兆瓦电力需求的棕榈油厂被视为试验工厂,而POME沼气发电的可行性是由Aspen Plus模拟的,其中考虑了燃烧系统的无焰模式。提出了一种新的实验室规模无焰反应堆设计,称为自预热无焰燃烧(SPFC)系统,并将其用于发电建模。在SPFC系统中,无焰室用作加热器,以在燃料的自燃温度之上预热氧化剂。螺旋不锈钢管(称为自预热管)安装在腔室内,以将氧化剂从排气区引导到腔室内的燃烧区并预热氧化剂。在无焰模式下,稀释的氧化剂从排气区注入螺旋管,燃烧器中的预热氧化剂通过分配器导入无焰炉。在SPFC系统中,除去了用于预热氧化剂的外部加热器,从而提高了发电速度。结果表明,超稀薄的POME沼气SPFC可以产生10.8 MW的功率。但是,在这种情况下,污染物的比率很高,尤其是CO2和NOx。在化学计量条件下,可以在稳定的条件下获得4兆瓦的功率,且污染物的形成较少。由于氢气是POME沼气的成分之一,因此计算证实,当仅向沼气中添加2%的氢气时,发电速度将增加0.7 MW。

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