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首页> 外文期刊>Waste and biomass valorization >Evaluating Biomass Ash Properties as Influenced by Feedstock and Thermal Conversion Technology towards Cement Clinker Production with a Lower Carbon Footprint
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Evaluating Biomass Ash Properties as Influenced by Feedstock and Thermal Conversion Technology towards Cement Clinker Production with a Lower Carbon Footprint

机译:评估生物质灰分的性质,其受原料和热转换技术对水泥熟料产生的影响,具有较低的碳足迹

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Purpose: This study evaluates the potential of biomass ash as raw clinker material and the influence of biomass feedstock and thermal conversion technology on biomass ash properties. Methods: A set of criteria for biomass feedstock and ash properties (i.e. CaO/SiO2 ratio and burnability) are established. A large dataset was collected and the best combination of biomass feedstock and conversion technology regarding the desired ash quality was identified. Results: Wood biomass has the highest potential to provide the right CaO/SiO2 ratio which is needed to form clinker minerals. Bark content and exogenous Si inclusion in wood biomass have a large influence on the CaO/SiO2 ratio. Paper sludge is composed of Ca, Si and Al and can potentially serve as a source of cement elements. Wood fly ash from pulverized fuel combustion can substitute a considerable amount of raw clinker materials due to its similar burnability. The replacement ratio is determined by the content of adverse elements in the ash (i.e. MgO2 and P2O5). Conclusion: Using biomass ash to lower the CO2 emission from clinker production depends on the joint effort of bioenergy producers, by providing higher quality biomass ash, and cement makers, by adapting the kiln operation to enable a high level of raw material replacement by biomass ash.The presented evaluation of the ash production chain, from biomass selection through combustion technology and ash management, provides new insights and recommendations for both stakeholders to facilitate this sustainable development.[GRAPHICS].
机译:目的:本研究评估生物质灰作为生熟料材料的潜力以及生物量原料和热转化技术对生物质灰分的影响。方法:建立了一组生物质原料和灰分(即CaO / SiO 2比和燃料性)标准。收集了一个大型数据集,并确定了生物质原料和转换技术的最佳组合,关于所需的灰分质量。结果:木材生物量具有最高的潜力,可提供形成熟料矿物所需的右CaO / SiO2比率。木材生物质中的树皮含量和外源Si夹杂物对CaO / SiO2比例有很大影响。纸污泥由Ca,Si和Al组成,可以作为水泥元素的来源。来自粉碎燃料燃烧的木粉煤灰可以由于其类似的耐磨性而替代大量的原料熟料材料。替换比由灰分中的不利元素的含量(即MgO2和P2O5)确定。结论:采用生物质灰降低熟料生产的二氧化碳排放取决于生物能源生产者的联合努力,通过提供更高质量的生物质灰和水泥制造商,通过适应窑操作,使生物质灰更替代的原料更替代。通过燃烧技术和灰分管理,从生物量选择的灰烬生产链的评价为两位利益攸关方提供了新的见解和建议,以促进这种可持续发展。[图形]。

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