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首页> 外文期刊>Energy and Environment Research >Characterization of Inorganic Elements in Woody Biomass Bottom Ash from a Fixed-bed Combustion System, a Downdraft Gasifier and a Wood Pellet Burner by Fractionation
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Characterization of Inorganic Elements in Woody Biomass Bottom Ash from a Fixed-bed Combustion System, a Downdraft Gasifier and a Wood Pellet Burner by Fractionation

机译:固定床燃烧系统,向下气流气化炉和木质颗粒燃烧器分馏对木质生物质底灰中无机元素的表征

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摘要

The direct combustion of biomass residues produces large quantities of bottom ash. Environmental sustainable management requires that ash recycling should be carried out whenever possible. Suitable applications of bottom ash are based predominantly on its chemical properties. The presence of major ash forming and trace elements along with other intrinsic properties unique to bottom ash, suggest its potential as a soil additive. But, ash quality must be of a high standard to prevent environmental pollution. This comparative study characterizes bottom ash obtained from three types of bioenergy systems - a fixed-bed boiler, a downdraft gasifier and a wood pellet burner. The chemical properties were analyzed and discussed for each bottom ash, together with their respective particle fractions that were obtained by sieving. The pH of the starting ash samples for the gasifier, boiler and pellet burner were 10.36, 12.49 and 13.46, respectively. Ni with a concentration of 229 mg/kg in the pellet burner ash, exceeded the maximum limit for soil amendments (in British Columbia, Canada) within the particle size fraction ≥ 850 μm but < 2000. All samples were significantly enriched in both Ca (50-61%) and K (10-26%). The elements Mg, Al, Mn, Fe, P and Na each contributed 10% or less to the inorganic portion of the ash. Concentrations of inorganic contents varied with particle size. Water soluble phosphates were very low in the samples. The results suggest that size fraction separation can be a useful method to isolate fractions containing higher (or lower) amounts of some metals. This method may be a useful technique for managing ash that contains elements exceeding environmental limits.
机译:生物质残渣的直接燃烧产生大量的底灰。环境可持续管理要求灰烬回收应尽可能进行。底灰的合适应用主要基于其化学性质。主要的灰分形成和痕量元素以及底灰独有的其他固有特性的存在表明其作为土壤添加剂的潜力。但是,灰分质量必须具有高标准以防止环境污染。这项比较研究的特征在于从三种类型的生物能源系统获得的底灰:固定床锅炉,向下气流气化炉和木质颗粒燃烧器。分析并讨论了每种底灰的化学性质,以及通过筛分获得的各自的颗粒级分。气化炉,锅炉和颗粒燃烧器的起始灰分样品的pH分别为10.36、12.49和13.46。颗粒燃烧器灰分中的镍浓度为229 mg / kg,在粒径分数≥850μm但≤2000的情况下,超过了土壤改良剂的最大限量(加拿大不列颠哥伦比亚省)。所有样品中的两种Ca( 50-61%)和K(10-26%)。元素Mg,Al,Mn,Fe,P和Na分别占灰分的无机部分的10%或更少。无机含量的浓度随粒度而变化。样品中的水溶性磷酸盐非常低。结果表明,分离大小馏分可能是分离包含更高(或更低)数量某些金属的馏分的有用方法。此方法可能是用于管理包含超过环境限制的元素的灰烬的有用技术。

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  • 来源
    《Energy and Environment Research》 |2014年第1期|85-94|共10页
  • 作者单位

    Environmental Science & Engineering, University of Northern British Columbia, 3333 University Way, Prince George, BC, V2N 4Z9, Canada;

    Environmental Science & Engineering, University of Northern British Columbia, 3333 University Way, Prince George, BC, V2N 4Z9, Canada;

    Environmental Science & Engineering, University of Northern British Columbia, 3333 University Way, Prince George, BC, V2N 4Z9, Canada;

    Environmental Science & Engineering, University of Northern British Columbia, 3333 University Way, Prince George, BC, V2N 4Z9, Canada;

    Environmental Science & Engineering, University of Northern British Columbia, 3333 University Way, Prince George, BC, V2N 4Z9, Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bottom ash; soil amendment; major elements; trace elements; particle size fraction; ash utilization;

    机译:底灰土壤改良剂;主要元素;微量元素;粒度分数;灰分利用;

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