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Addition of iron ore tailings to increase the efficiency of anaerobic digestion of pig manure: A technical and economic analysis

机译:添加铁矿石尾矿,以提高猪粪的厌氧消化效率:技术和经济分析

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摘要

Anaerobic digestion (AD) stands out as an option for treating, transforming pig manure into renewable energy in the form of biogas and providing an organic substrate for agricultural use. However, methane variability and high operational expenses make it difficult to implement this technology in Brazil. This study analyses using iron ore tailings (IOTs) to optimize AD processes for generating biogas from pig manure. Mineralogical and toxico-logical analyses were carried out for the mining waste (MW) to assess its applicability in the process. The manure was anaerobically digested in sequential batch reactors with varied IOTs dosages, ranging between 0 kg m and 3, 1.56 kg m-3, 3.12 kg m-3, and 4.69 kg m-3. The influence these additives had on the process was analysed through examination of the reductions in organic constituents, as well as the biogas production and composition. Furthermore, an economic feasibility analysis was conducted for the entire process using uncertainty analysis. The results indicated that the elements Fe, K, Si, Al, Mg, Ca, Na, and P are present in the additive. Maximum production was measured at 8.41 × 10-2 m~3 CH4 kg-1 in the substrate. Moreover, there were reductions of 77% and 81.40% in the organic load (COD and BOD5,20) for the maximum applied dosage. The levelized cost of electricity (LCOE) ranged from 80 US$ to 90 US$ MWh-1 for scenarios with 50,000- and 200,000-head operations. A total of 742 and 10,135 scenarios for 200,000-head operations resulted in a decrease of 23.24% and 12.28% in relation to the maximum market value.
机译:厌氧消化(AD)作为治疗的选择,以沼气的形式转化猪粪入可再生能源,并为农业用途提供有机基质。然而,甲烷变异性和高运营费用使得在巴西难以实施这项技术。本研究使用铁矿石尾矿(物质)分析,优化来自猪粪产生沼气的广告方法。采矿废物(MW)进行了矿物学和毒性逻辑分析,以评估其在该过程中的适用性。该粪肥在序贯间歇式反应器中被厌氧消化,其具有变化的IOT剂量,范围为0 kg m和3,1.56kg m-3,3.12kg m-3和4.69kg m-3。通过检查有机成分的减少以及沼气生产和组合物来分析这些添加剂对该过程进行的影响。此外,使用不确定性分析对整个过程进行经济可行性分析。结果表明,在添加剂中存在元素Fe,K,Si,Al,Mg,Ca,Na和P.在基材中以8.41×10-2m〜3 CH4 kg-1测量最大产量。此外,用于最大施用剂量的有机载荷(COD和BOD5,20)中还原77%和81.40%。电力(LCoE)的尺寸为80美元至90美元,对于拥有50,​​000至20,000头业务的情况。共有742和10,135个方案为200,000头操作,导致与最大市场价值有关的23.24%和12.28%。

著录项

  • 来源
    《Biomass & bioenergy》 |2021年第5期|106013.1-106013.18|共18页
  • 作者单位

    Master of Science in Environment and Water Resources Natural Resources Institute Federal University of Itajuba (Meio Ambiente e Recursos Hidricos Instituto deRecursos Naturais da Universidade Federal de Itajuba) Av. BPS 1303 Itajuba CEP: 37500-903 MG Brazil;

    Graduate in Environmental Engineering laboratory Technician at Federal University of Itajuba (Universidade Federal de Itajuba) Rua Irma Ivone Drumond 200 - Distrito Industrial Ⅱ Itabira MG Brazil;

    Professor at the Natural Resources Institute of the Federal University of Itajuba (Instituto de Recursos Naturais da Universidade Federal de Itajuba) Av. BPS 1303 Itajuba CEP: 37500-903 MG Brazil;

    Doctorate in Mechanical Engineering at UNIFEI and Master of Science in Engineering of Energy Federal University of Itajuba (Engenharia da Energia da UniversidadeFederal de Itajuba) Hydric Engineer UNIFEI Av. BPS 1303 Itajuba CEP: 37500-903 MG Brazil;

    Graduate in Chemistry at UNIFEI Laboratory Technician at the Federal University of Itajuba (Universidade Federal de Itajuba) Av. BPS 1303 Itajuba CEP: 37500-903 MG Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pig manure; Mining tailings; Toxicological analysis; Anaerobic digestion;

    机译:猪粪;采矿尾矿;毒理学分析;厌氧消化;

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