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首页> 外文期刊>Energy Conversion & Management >Evaluating bioenergy potential of the Para grass (Brachiaria mutica) biomass produced on a land-free cultivation system while keeping the water-energy-environment nexus sustainable
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Evaluating bioenergy potential of the Para grass (Brachiaria mutica) biomass produced on a land-free cultivation system while keeping the water-energy-environment nexus sustainable

机译:评估在无土地栽培系统上产生的帕拉草(BRACHIARIA MUTICA)生物量的生物能源潜力,同时保持水能环境Nexus可持续发展

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摘要

Producing biomass as a renewable bioenergy feedstock is challenging due to scarcity of agricultural lands. In the present study, a land-free cultivation system was employed to produce the Para grass biomass using industrial and urban wastewaters as growth media. The biomass was pyrolyzed at four different heating rates (10 degrees C min-1, 20 degrees C min-1, 30 degrees C min-1, 40 degrees C min-1) under an inert environment. The pyrolysis data were analyzed using three isoconversional models namely Flynn-Wall-Ozawa (FWO), Kissenger-Akahira-Sunose (KAS), and Starink. The pyrolysis of both samples occurred in three stages, while major pyrolysis occurred during the second stage (200-400 degrees C) at the corresponding conversion points (alpha) ranging from 0.20 to 0.65. The high heating values (HHV) of the biomasses produced on wastewaters were shown to be 18.85 MJKg-1 and 18.14 MJKg-1, respectively. The activation energies ranged from 136.45 to 149.18 kJmol-1, 133.35-146.71 kJmol-1, 133.85-147.23 kJmol-1 estimated through for FWO, KAS, and Starink methods, respectively. Pre-exponential factors showed the first order reaction kinetics and a lower difference (5 KJmol-1) between the enthalpy change and activation energy (Ea) values indicated the favorable reaction thermodynamics. The pyrolytic gases mainly contained hydrocarbons, aromatics, alcohols, phenols, ketones, aldehydes, carboxylic acids, and esters. Interestingly, the wastewater cultivation improved HHV of the biomasses, lowered the Ea-values, and made the pyrolysis more energy efficient, and this improvement was more obvious for industrial wastewater cultivation. Hence, employing a land-free cultivation system could be a novel and promising approach to produce renewable biomass with improved pyrolysis potential to fuel the future while keeping the energy-water-environment nexus sustainable.
机译:由于农业土地稀缺,生产生物量作为可再生的生物能源原料是挑战。在本研究中,使用土着培养系统使用工业和城市废水作为生长媒体生产巴拉生物量。在惰性环境下以四种不同的加热速率(10℃min-1,20℃,30摄氏度为30摄氏度为30摄氏度,30摄氏度为30℃-1,40℃C MIN-1,生物质。使用三个异组型模型来分析热解数据即Flynn-Wall-Ozawa(FWO),Kissenger-Akahira-Sunose(KAS)和明星。两个样品的热解成三个阶段,而在相应的转化点(α)的第二阶段(200-400℃)期间发生主要热解(α),范围为0.20至0.65。废水中产生的生物质的高加热值(HHV)分别显示为18.85mJkg-1和18.14 mjkg-1。激活能量范围为136.45至149.18 kJmol-1,133.35-146.71 kJmol-1,133.85-147.23 Kjmol-1分别估计FWO,KAS和饥饿方法。预指导因子显示了第一阶反应动力学和焓变化和激活能量(EA)值之间的较低差(& 5 kJmol-1)表明了有利的反应热力学。热解气体主要含有碳氢化合物,芳烃,醇,酚,酮,醛,羧酸和酯。有趣的是,废水栽培改善了生物量的HHV,降低了EA值,并使热解更能节能,并且这种改进对于工业废水栽培更为明显。因此,采用无土地栽培系统可以是一种新颖的和有希望的方法,可以生产可再生生物量,并在保持能源 - 环境Nexus可持续的情况下改善的热解电位以燃料。

著录项

  • 来源
    《Energy Conversion & Management》 |2021年第10期|114590.1-114590.16|共16页
  • 作者单位

    Univ Faisalabad Govt Coll Dept Bioinformat & Biotechnol Bioenergy Res Ctr Faisalabad 38000 Pakistan;

    Univ Punjab Inst Energy & Environm Engn Lahore Pakistan;

    Shanghai Jiao Tong Univ Sch Life Sci & Biotechnol Joint Int Res Lab Metab & Dev Sci State Key Lab Microbial Metab Shanghai 200240 Peoples R China;

    Coll Pakistan Inst Engn & Appl Sci NIBGE C PIEAS Natl Inst Biotechnol & Genet Engn Coll Faisalabad 38000 Punjab Pakistan;

    Univ Faisalabad Govt Coll Dept Bioinformat & Biotechnol Bioenergy Res Ctr Faisalabad 38000 Pakistan;

  • 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

    Para grass; Land-free cultivation; Phytoremediation; Pyrolysis; Bioenergy; Biochemicals;

    机译:Para草;无土地培养;植物修复;热解;生物能量;生物化学;

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