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Recycling and utilisation of faba bean harvesting and threshing waste for bioenergy

机译:生物能源Faba Bean收获和脱粒废弃物的回收利用

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摘要

This article analyses and evaluates the impact of the technology of soil processing on the biomass indicators of faba bean waste. Samples from five different primary tillage systems were taken and analysed. The raw material of faba bean waste was processed and pressed into cylindrical pellets. The results of the experimental research of the pellet properties revealed that the content of moisture of the pellets from faba bean waste changed from 8.2% (deep cultivation, 3-GP) to 10.8% (untreated soil, 5-ND). The highest density of faba bean waste pellets was obtained from the sample of conventional soil ploughing, (1-IA) (1311 kg m(-3)), while the lowest density was recorded under shallow ploughing (2-SA) 1275 kg m(-3). The lower calorific value of dry biofuel from faba bean waste pellets was similar in all the samples and ranged from 16.9 MJ kg(-1) (5-ND) to 17.1 MJ kg(-1) (2-SP). The calorific value of faba bean waste pellets was relatively high and was close to the calorific value of some types of wood waste. The following harmful gas emissions were analysed and evaluated: carbon monoxide CO, carbon dioxide CO2, unburned hydrocarbons CxHy, and nitrogen oxides NOx. The harmful gas environmental emissions detected while burning the pellets of faba bean waste have not exceeded the permissible limits. The best results of the pellet properties, the content of ash and the emissions were obtained under conventional ploughing (1 IA) and deep cultivation (3-GP). The research results suggest that faba bean waste could be used as granulated biofuel, since the main parameters of this legume waste correspond to the basic requirements of solid biofuel. It was determined that under untreated soil (5-ND) technology the CO2 emissions eqv. were twice lower than under conventional soil ploughing (1-IA). These results show that no-till technology is suitable for sustainable agricultural practise both for producing the faba bean grain and for processing the pellets from the waste. (c) 2020 Elsevier Ltd. All rights reserved.
机译:本文分析并评估了土壤加工技术对Faba Bean废物的生物质指标的影响。采集了来自五种不同初级耕种系统的样品并分析。将Faba Bean废物的原料加工并压入圆柱形粒料。颗粒性能的实验研究结果显示,Faba Bean废物的颗粒的水分含量从8.2%(深培养,3-GP)变为10.8%(未处理的土壤,5-Nd)。从常规土壤样品(1-Ia)的样品中获得的粉刺豆废料颗粒的最高密度(1311 kg m(-3)),而在浅耕作(2-sa)1275kg m下记录最低密度(-3)。所有样品的干生生物燃料的较低的热值在所有样品中相似,范围为16.9mJ kg(-1)(5-nd)至17.1mj kg(-1)(2-sp)。 Faba Bean废料颗粒的热值相对较高,并且接近某些类型的木材废物的热值。分析和评价以下有害气体排放:一氧化碳CO,二氧化碳CO2,未燃烧的烃CXHY和氮氧化物NOx。在燃烧Faba Bean废物颗粒的同时检测到的有害气体环境排放并未超过允许的限制。在常规耕犁(1 IA)和深培养(3-GP)下获得颗粒性能,灰分含量和排放的最佳结果。研究结果表明,法瓦豆浪费可以用作颗粒状生物燃料,因为该豆类废物的主要参数对应于坚实生物燃料的基本要求。确定在未处理的土壤(5-Nd)技术下CO2排放EQV。比常规土壤犁(1-IA)低两倍。这些结果表明,禁止技术适用于生产Faba Bean谷物的可持续农业实践,并用于从废物中加工颗粒。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Renewable energy》 |2020年第1期|257-266|共10页
  • 作者单位

    Vytautas Magnus Univ Agr Acad Inst Agr Engn & Safety Studentu Str 15A LT-53362 Akademija Kaunas Distr Lithuania;

    Vytautas Magnus Univ Agr Acad Inst Agr Engn & Safety Studentu Str 15A LT-53362 Akademija Kaunas Distr Lithuania;

    Vytautas Magnus Univ Agr Acad Inst Agr Engn & Safety Studentu Str 15A LT-53362 Akademija Kaunas Distr Lithuania;

    Vytautas Magnus Univ Agr Acad Inst Agroecosyst & Soil Sci Studentu Str 11 LT-53361 Akademija Kaunas Distr Lithuania;

    Vytautas Magnus Univ Agr Acad Inst Agroecosyst & Soil Sci Studentu Str 11 LT-53361 Akademija Kaunas Distr Lithuania;

    Lithuanian Energy Inst Lab Heat Equipment Res & Testing Breslaujos 3 LT-44403 Kaunas Lithuania;

  • 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

    faba Bean; Waste; Solid biofuel; Fractional composition; Pellet properties; Harmful emissions;

    机译:Faba Bean;浪费;坚实生物燃料;分数组成;颗粒性质;有害排放;

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