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Effect of temperature on porosity of iron ore sinter with biochar derived from EFB

机译:温度对生物炭源自EFB的生物炭孔隙率的影响

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In this research, the replacement of fossil fuel energy (coke) with oil palm empty fruit bunch as a potential energy in sintering of iron ore was investigated. Carbon derived biomass has been produced by using oil palm empty fruit bunch by heat treatment process. In the present investigation, sintering process was carried out by heating the mixed iron ore and biochar at various temperatures. The apparent density and porosity for iron sinter show a significant increase and gradual decrement as the temperature increase, respectively. The porosity of iron sinter shows a gradual decrement from 950 °C to 1050 °C but up to 1150 °C it shows a significant decrement about 44%. Inferring to the micrograph, the agglomeration and assimilation of sinter at high temperature is better compared with low sintering temperature.
机译:在这项研究中,研究了用油棕榈空果实的化石燃料能量(焦炭)作为铁矿石烧结势能的潜在能量。通过使用热处理过程使用油棕空果实束生产碳衍生的生物质。在本研究中,通过在各种温度下加热混合的铁矿石和生物炭来进行烧结过程。对于铁烧结的表观密度和孔隙率显着增加,随着温度的增加而显着增加和逐渐减少。铁烧结的孔隙率显示出950℃至1050℃的逐渐减量,但高达1150°C显示出约44%的显着降低。推断到显微照片,与低烧结温度相比,在高温下的烧结凝聚和同化较好。

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