首页> 外文期刊>The Open Agriculture Journal >Plant Feedstocks and their Biogas Production Potentials
【24h】

Plant Feedstocks and their Biogas Production Potentials

机译:植物原料及其沼气生产潜力

获取原文
       

摘要

Introduction: Nowadays, organic waste utilization and replacement of fossil energy sources with their renewable alternatives pose a challenging problem both for industrially developed and developing countries. Anaerobic digestion of organic biomass into biogas is considered an efficient technology for bioenergy production. Over the period from 2009 to 2018, the global biogas production capacities have more than doubled and are continuing to grow. The composition and the amount of biogas depend strongly on the type of the substrate. Various types of feedstock can be used for the production of biogas such as animal wastes, agricultural residues, and dedicated energy crops. Objective: To review biogas production potentials of energy crops and plant processing raw materials. Results: In the background of historical development and present state, the paper reviews the potential of different plant raw materials to be utilized for biogas production purposes. The potential of energy crops, agricultural residues, and wastes for biogas production is analyzed. International projects concerning energy crops grown on marginal lands are presented and commented on in the article. The approach of implementing crop rotation systems for industrial energy crop cultivation is described and recommended as beneficial for various purposes. The anaerobic degradability of biomass constituents, optimal process parameters, and biomass treatment for biogas production are discussed. C/N ration and lignocelluloses content in the substrate are considered among the most decisive parameters for AD and methane production. Various concepts of biogas bioreactor technologies have been studied depending on the substrate type. Conclusion: Plant feedstock may play a decisive role in biogas production as a renewable energy source. To avoid GHG release into the atmosphere, biogas facilities should be built within the closest vicinities to the places of existing garbage dumps, and waste management practice involving organic fraction separation in households and in the industry should be applied. Construction of biogas facilities is beneficial for environmental, economic, and social reasons.
机译:简介:如今,随着可再生替代品,有机废物利用和化石能源的更换,对工业发展和发展中国家来说都是一个具有挑战性的问题。厌氧消化对沼气的有机生物质被认为是生物能源生产的有效技术。从2009年到2018年的时间,全球沼气生产能力增加了一倍多,并继续增长。沼气的组成和沼气量依赖于基材的类型。各种类型的原料可用于生产沼气,如动物废物,农业残留物和专用能量作物。目的:审查能源作物和植物加工原料的沼气生产潜力。结果:在历史发展和现状背景下,纸质审查了用于沼气生产目的的不同植物原料的潜力。分析了能源作物,农业残留量和沼气生产废物的潜力。在文章中提出和评论了关于在边缘土地上增长的能源作物的国际项目。描述了实施工业能量作物培养的作物旋转系统的方法,并推荐对各种目的有益。讨论了生物质成分,最佳工艺参数和生物气体生产的生物质处理的厌氧可降解性。在Ad和甲烷生产中最果断的参数中考虑基板中的C / N配油和木质纤维素含量。根据基板类型研究了沼气性生物反应器技术的各种概念。结论:植物原料可能在沼气生产中发挥决定性作用作为可再生能源。为了避免GHG释放到大气中,沼气设施应建在最接近的垃圾场所,以及涉及家庭和行业中的有机分数分离的废物管理实践。沼气设施的建设有利于环境,经济和社会原因。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号