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Process Innovation Via Supercritical Water Gasification to Improve the Conventional Plants Performance in Treating Highly Humid Biomass

机译:通过超临界水气化进行工艺创新,以改善常规植物在处理高湿生物质方面的性能

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摘要

The aim of the paper is a comparison among three innovative process layouts for biomethane and power production from humid biomasses: anaerobic digestion (AD), supercritical water gasification integrated in a supercritical steam turbine stages (SCWG + SuST) and a technology that combines these two, AD plus SCWG and SuST. All the solutions were implemented in an ad hoc simulative tool of Aspen Hysis(A (R)) v.7.0.1. Livestock sludge (LS) with an energy content up to 10 wt% (ashes free) was used as reference biomass to establish and compare the performance of any proposed process scheme. LS feedstocks introduced in the SCWG + SuST increased both biomethane production and power production of about 50 % compared to AD process that produces 25 Nm(3)/(day t) of pure biomethane. Combining both technologies, the digestate from AD outflow is feeding the SCWG + SuST process, there is an increase of 50 % of power generation with a production of biomethane of about 36 Nm(3)/(day t). Another advantage of the SCWG + SuST is that, set the fed, it is possible to reduce drastically the volume of the plant because the fermentation step, which usually corresponds to 15-30 days, is not required. Considering that although AD process is a simple and consolidated technology, it does not allow the total recovery of the organic compounds and requires long period for the biomass, the proposed innovative processes could offer new solutions for biomethane and power production.
机译:本文的目的是比较湿式生物质生产沼气和沼气的三种创新工艺布局:厌氧消化(AD),集成在超临界汽轮机级中的超临界水气化(SCWG + SuST)以及将这两种技术结合在一起的技术,AD加上SCWG和SuST。所有解决方案均在Aspen Hysis(A(R))v.7.1的临时仿真工具中实现。能量含量高达10 wt%(不含灰分)的畜禽粪便(LS)被用作参考生物量,以建立和比较任何提议的处理方案的性能。与生产25 Nm(3)/(day t)的纯生物甲烷的AD工艺相比,SCWG + SuST中引入的LS原料使生物甲烷的产量和发电量均提高了约50%。结合这两种技术,AD流出物的消化物进入SCWG + SuST工艺,增加了50%的发电量,产生的生物甲烷约为36 Nm(3)/(day t)。 SCWG + SuST的另一个优点是,设定进料量后,可以大大减少植物的体积,因为通常不需要15-30天的发酵步骤。考虑到尽管AD工艺是一种简单而合并的技术,但它不能完全回收有机化合物,并且需要较长的生物质时间,所以提出的创新工艺可以为生物甲烷和发电提供新的解决方案。

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  • 来源
    《Waste and biomass valorization》 |2016年第5期|1289-1295|共7页
  • 作者单位

    Natl Agcy New Technol Energy & Sustainable Econ D, ENEA, CR Enea Trisaia, SS 106 Ionica,Km 419 500, I-75026 Matera, Italy;

    Univ Calabria, Dept Environm & Chem Engn, Via P Bucci Cubo 44a, I-87036 Arcavacata Di Rende, CS, Italy;

    Univ Calabria, Dept Environm & Chem Engn, Via P Bucci Cubo 44a, I-87036 Arcavacata Di Rende, CS, Italy;

    Univ Calabria, Dept Environm & Chem Engn, Via P Bucci Cubo 44a, I-87036 Arcavacata Di Rende, CS, Italy;

    Univ Calabria, Dept Environm & Chem Engn, Via P Bucci Cubo 44a, I-87036 Arcavacata Di Rende, CS, Italy;

    ITM CNR, Inst Membrane Technol, Via P Bucci Cubo 17-C, I-87036 Arcavacata Di Rende, CS, Italy;

    Natl Agcy New Technol Energy & Sustainable Econ D, ENEA, CR Enea Trisaia, SS 106 Ionica,Km 419 500, I-75026 Matera, Italy;

    CR Enea Casaccia, Via Anguillarese 301, I-00123 Rome, Italy;

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

    Biomass; Power energy; Biofuels; Supercritical fluids;

    机译:生物质;能源;生物燃料;超临界流体;

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