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Techno-economic and performance evaluation of energy production by anaerobic digestion in Brazil: bovine, swine and poultry slaughterhouse effluents

机译:巴西厌氧消化能源生产技术经济和绩效评估:牛,猪和家禽屠宰场流出物

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摘要

This work describes anaerobic treatment system modeling, using up- flow anaerobic sludge blanket reactors (UASB) reactors, aiming at biogas energy use, under hydraulic retention times (HRT) of 12, 24, 48, 120 and 240 h, from bovine (slaughter capacity: less than 20, 20 to 40, 40 to 80 and more than 80 heads.h(-1)), swine (less than 80, 80 to 200, 200 to 400, 400 to 800 and more than 800 heads.d(-1)) and poultry (less than 600, 600 to 1500, 1500 to 3000 and more than 3000 heads.h(-1)) slaughterhouse effluents. To techno-economic potential evaluate, four scenarios were designed using the combination of maximum and minimum values for the installation of the treatment system (reactors) and the generator system. The scenarios were applied for all classes of slaughterhouses throughout HRTs established under two project concepts: i) full implementation of the treatment and generator systems and; ii) partial implementation, only the generator system. Economic viability analyzes were performed using Net Present Value (NPV), Internal Rate of Return (IRR) and Minimum Attractive Rate of Return (MARR) criteria. In scenario 1, using minimum unit values for the treatment system (USD 43.23.m(-3)) and the generator set (USD 287.80.KW-1) and HRT of up to 48 h, all bovine, swine and poultry slaughterhouse classes presented potential and economic viability for energy generation, with gains of up to USD 831.462.78 to bovine slaughterhouse, USD 91.977.88 to swine slaughterhouse and USD 179.150.63 to poultry slaughterhouse. The scenarios 2 and 4 result in unviability for al simulations. The scenario 3 result in viability under specific conditions of implementation (total and/or partial); HRT (12, 24, 48 h and sporadically 120); In 24-h HRT show negatives IRRs; and attractive ratio criteria (use of IRR as MARR). In simulated conditions of scenario 1 the techno-economic analysis is HRT of 24 h and HRT of 12 h in scenario 3, both with the need for post-treatment systems. HRTs of 120 and 240 h were found to be infeasible due to system size and costs involved, as well as a non-significant increase in energy generation when compared to lower HRTs. (C) 2020 Elsevier Ltd. All rights reserved.
机译:这项工作描述了一种厌氧处理系统建模,使用上流厌氧污泥橡皮布反应器(UASB)反应器,旨在从牛(屠宰)的液压保留时间(HRT)下的沼气​​能量使用下(HRT)。容量:小于20,20至40,40至80且超过80个头部.h(-1)),猪(小于80,80至200,200,200至400,400,400至800,超过800头.d (-1))和家禽(小于600,600至1500,1500至3000且超过3000头)屠宰场流出物。为了技术经济潜力评估,使用用于安装治疗系统(反应堆)和发电机系统的最大值和最小值的组合来设计四种情况。在两个项目概念下建立的HRTS中的所有类别屠宰场应用了这种情况:i)全面实施处理和发电机系统和; ii)部分实施,只有发电机系统。使用净目前值(N​​PV),内部返回率(IRR)和最低返回率(Marr)标准进行经济活力分析。在场景1中,使用治疗系统的最小单位值(43.23.M(-3))和发电机组(USD 287.80.kw-1)和高达48小时的HRT,所有牛,猪和家禽屠宰场课程为能源发电提供了高达831.462.78美元的潜在和经济可行性,牛屠宰场为91.977.88美元至猪屠宰场91.977.88美元和179.150.63美元到家禽屠宰场。方案2和4导致AL仿真的不公平性。方案3在执行条件下导致生存能力(总和/或部分); HRT(12,24,48小时和零星120); 24小时HRT展示了负面的IRS;和有吸引力的比例标准(使用IRRAS Marr)。在模拟的情景条件下,技术经济分析是24小时和12小时的HRT,既需要治疗后系统。由于系统规模和成本,发现120和240小时的HRT是不可行的,并且与较低的HRT相比,能量产生的不显着增加。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Journal of Cleaner Production》 |2020年第1期|123332.1-123332.13|共13页
  • 作者单位

    Univ Catolica Dom Bosco Agrosantech Agrotechnol Oriented Sustainable Sani Dept Civil Sanit & Environm Engn Av Tamandare 6000 BR-79117900 Campo Grande MS Brazil;

    Univ Catolica Dom Bosco Agrosantech Agrotechnol Oriented Sustainable Sani Dept Civil Sanit & Environm Engn Av Tamandare 6000 BR-79117900 Campo Grande MS Brazil|Univ Catolica Dom Bosco Masters & Doctoral Program Environm Sci & Agr Sus Av Tamandare 6000 BR-79117900 Campo Grande MS Brazil|Univ Catolica Dom Bosco Masters & Doctoral Program Local Dev Av Tamandare 6000 BR-79117900 Campo Grande MS Brazil;

    Univ Catolica Dom Bosco Masters & Doctoral Program Environm Sci & Agr Sus Av Tamandare 6000 BR-79117900 Campo Grande MS Brazil|Univ Catolica Dom Bosco Masters & Doctoral Program Local Dev Av Tamandare 6000 BR-79117900 Campo Grande MS Brazil;

    Univ Dev State & Reg Pantanal Dept Environm Engn Av Ceara 333 BR-79003010 Campo Grande MS Brazil|Univ Politecn Valencia Res Inst Water & Environm Engn IIAMA Camino Vera S-N Valencia 46022 Spain;

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

    Biogas; Renewable energy; Economic viability; Circular economy;

    机译:沼气;可再生能源;经济可行性;循环经济;

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