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Technical Assessment and Flue Gases Emission Monitoring of an Oil Palm Biomass-Biogas Cofired Boiler

机译:油棕生物质-沼气共燃锅炉的技术评估和烟气排放监测

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Biogas generated from anaerobic digestion of palm oil mill effluent (POME) can be a supplementary fuel in palm oil mill biomass boilers. The effects of biogas cofiring with different types of oil palm biomass-based conventional boiler fuel on the boiler efficiency and performance were investigated. Three different types of fuel input were assessed, namely (1) a mixed biogas-mesocarp fiber (MF)-empty fruit bunch fiber (EFBF) (biogas-MF-EFBF) fuel, (2) a mixed biogas-MF (biogas-MF) fuel, and (3) MF only for a 40 t/h water tube boiler. It was found that the boiler efficiencies and particulate emissions varied from 72 to 83% and 0.1375 to 0.6050 g/m(3), respectively. The highest boiler efficiency with the lowest particulate emission was attainable when cofiring biogas with MF. This fuel mix combination contributed to reduction of the fed solid biomass fuel into the boiler furnace and resulted in lesser incomplete combustion and ash generation. The findings demonstrated that the fuel selection and proper mixture of the type of biogas-biomass fuel are among the important factors to ensure high palm oil mill boiler efficiency and low particulate emission in meeting the permitted limit as stipulated in the Malaysian Environmental Quality (Clean Air) Regulations, 2014. (c) 2019 American Institute of Chemical Engineers Environ Prog, 38:e13146, 2019
机译:棕榈油厂废水(POME)的厌氧消化产生的沼气可以作为棕榈油厂生物质锅炉的补充燃料。研究了沼气与不同类型油棕生物质基常规锅炉燃料共燃对锅炉效率和性能的影响。评估了三种不同类型的燃料输入,即(1)混合沼气-中果皮纤维(MF)-空果串纤维(EFBF)(biogas-MF-EFBF)燃料,(2)混合沼气-MF(biogas- MF)燃料,以及(3)MF仅适用于40 t / h水管锅炉。发现锅炉效率和颗粒物排放分别从72%到83%和0.1375到0.6050 g / m(3)不等。将沼气与MF共烧时,可获得最高的锅炉效率和最低的颗粒物排放。这种燃料混合物的组合有助于减少进料到锅炉炉膛中的固体生物质燃料,并导致较少的不完全燃烧和灰烬产生。研究结果表明,燃料的选择和沼气-生物质燃料的适当混合是确保高棕榈油厂锅炉效率和低颗粒物排放以满足马来西亚环境质量(Clean Air)规定的许可限制的重要因素之一。 )法规,2014年。(c)2019美国化学工程师协会Environ Prog,38:e13146,2019

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