首页> 外文期刊>Archives in Chemical Research >Biofuels and Bioenergy 2018 - Canadian bioenergy landscape Key drivers and future potential
【24h】

Biofuels and Bioenergy 2018 - Canadian bioenergy landscape Key drivers and future potential

机译:生物燃料和生物能源2018-加拿大生物能源格局主要驱动因素和未来潜力

获取原文
           

摘要

Biofuel is a fuel that is created through contemporary organic procedures, for example, farming and anaerobic assimilation, as opposed to a fuel delivered by land procedures, for example, those engaged with the development of non-renewable energy sources, for example, coal and oil, from ancient natural issue. Biofuels can be gotten straightforwardly from plants, or in a roundabout way from farming, business, local, or potentially modern squanders. Inexhaustible biofuels by and large include contemporary carbon obsession, for example, those that happen in plants or microalgae through the procedure of photosynthesis. Bioenergy is sustainable power source made accessible from materials got from organic sources. Biomass is any natural material which has put away daylight as synthetic vitality. As a fuel, it might incorporate wood, wood squander, straw, excrement, sugarcane, and numerous other results from an assortment of rural procedures. Worldwide vitality request developed by 2.9% and carbon emanations developed by 2.0% in 2018, quicker than whenever since 2010-11.Petroleum gas utilization and creation was up over 5%, probably the most grounded pace of development for both interest and yield for more than 30 years. Renewables developed by 14.5%, approaching their record-breaking increment in 2017, however this despite everything represented uniquely around 33% of the expansion in all out force age. Coal utilization (+1.4%) and creation (+4.3%) expanded for the second year straight in 2018, after three years of decrease (2014-16). The United States recorded the biggest ever yearly creation increments by any nation for both oil and gaseous petrol, by far most of expands originating from inland shale plays. Canada is endowed with abundant natural resources and thecuountry has among the world's most productive agriculture and forestry sectors. Despite its abundance, biomass is not being utilized to its full potential due to lack of supply chain logisticsand low fossil fuel prices. The Biomass Quality Network Canada (BQNC) was established in 2016 through funding from Agriculture Agri-Food Canada (AAFC) to support the advancement of the Canadian bio-products industry in four main sectors: Biochemicals, Bioenergy, Biofuels and Biomaterials. BQNC supports the Canada's bio-products industry by enabling the selection, creation, adoption and maintenance of a central database of internationally recognized quality control andassurance standards in coordination with other national and international standards organizations. Bioenergy has been part f the Canadian energy scene for more than 25 years, ranging from heat and power cogeneration, wood pellets, to liquid biofuels. The recent federal and provincial government directives on fossil carbon emission reduction are likely going to be the key drivers for the development of bioenergy markets in Canada. The talk will highlight the key findings of the BQNC bioenergy sector sub-committee pertaining to biomass resource availability and bioenergy potential with the aim of bridging the gap between supply chain, fuel (quality) and equipment suitability with a focus on central western Canada. Suitable recommendation on quality grading of common Canadian agricultural residues vis-a-vis ISO/ TC238 classification will also be presented Biography: Dr. Khan is the lead scientist for the Thermo Chemical Processing group at InnoTech Alberta and also an Adjunct Professor in the Process Systems Engineering, University of Regina. He is also the sector lead for bioenergy initiative at the BQNC (Biomass Quality Network Canada) and a technical ommittee member on Canadian Mirror Committee to ISO/TC 238:Solid Biofuels. At InnoTech Alberta, his research is focused on biomass thermochemical thermocatalytic conversion pathways to bioenergy, biofuel, bio-chemical or bio-materials. He is a recipient of 2012 Paragon Award for Innovation for the development of innovative catalysts for feed- and process- flexible hydrogen production. He has 3 patents, 1 book chapter, 2 reviews and 30 research articles to his credit. He also served as a Guest Editor for Special Issue on 'Metal Oxides in Catalysis' in Molecular Catalysis Journal, Elsevier, 2018.
机译:生物燃料是通过当代有机程序(例如农业和厌氧同化)产生的燃料,而不是通过土地程序(例如与开发不可再生能源(例如煤炭和天然气)相关的程序)提供的燃料。石油,来自古代的自然问题。生物燃料可以直接从植物中获得,也可以从农业,商业,当地或潜在的现代浪费者中以round回的方式获得。取之不尽用之不竭的生物燃料包括当代碳的困扰,例如,通过光合作用在植物或微藻中发生的那些。生物能源是可持续的能源,可以从有机资源中获取材料。生物质是任何将日光作为合成生命力的天然材料。作为燃料,它可能包含木材,浪费的木材,稻草,排泄物,甘蔗以及各种乡村程序产生的许多其他结果。与2010-11年以来相比,2018年全球生命力需求增长了2.9%,碳排放量增长了2.0%,石油天然气的利用和创造速度增长了5%以上,这可能是利息和收益率增长最快的基础超过30年。可再生能源发展了14.5%,在2017年达到了创纪录的增幅,尽管如此,但这一切都代表了全力出击年龄增长的33%左右。经过三年的减少(2014-16),煤炭利用率(+ 1.4%)和新增量(+ 4.3%)在2018年连续第二年增长。美国录得有史以来最大的石油和气态汽油年度创造增量,到目前为止,大部分增量来自内陆页岩气。加拿大拥有丰富的自然资源,其居于世界上生产力最高的农业和林业部门之列。尽管生物质资源丰富,但由于缺乏供应链物流和较低的化石燃料价格,生物质尚未得到充分利用。加拿大生物质质量网络(BQNC)成立于2016年,由加拿大农业农业食品(AAFC)资助,以支持加拿大生物制品行业在四个主要领域的发展:生化,生物能源,生物燃料和生物材料。 BQNC通过与其他国家和国际标准组织协调,选择,创建,采用和维护国际公认的质量控制和保证标准的中央数据库,为加拿大的生物产品行业提供支持。 25多年来,生物能源已经成为加拿大能源领域的一部分,从热电联产,木屑颗粒到液体生物燃料,一应俱全。最近有关减少化石碳排放的联邦和省政府指令可能将成为加拿大生物能源市场发展的主要驱动力。演讲将重点介绍BQNC生物能源部门小组委员会有关生物质资源可用性和生物能源潜力的主要发现,以弥合供应链,燃料(质量)和设备适用性之间的差距为重点,重点放在加拿大中西部。还将提出关于加拿大常见农业残留物相对于ISO / TC238分类的质量等级的合适建议传记:Khan博士是艾伯塔省InnoTech热化学处理小组的首席科学家,同时还是过程系统的兼职教授里贾纳大学工程系。他还是BQNC(加拿大生物质质量网络)生物能源计划的部门负责人,并且是ISO / TC 238:固体生物燃料的加拿大镜像委员会的技术委员。在艾伯塔省InnoTech公司,他的研究专注于生物质热化学热催化转化为生物能源,生物燃料,生物化学或生物材料的途径。他因开发用于进料和工艺灵活的氢气生产的创新催化剂而获得2012年百利宫创新奖。他拥有3项专利,1本书章节,2条评论和30篇研究论文,值得称赞。他还担任《分子催化期刊》(Elsevier,2018年)``催化中的金属氧化物''特刊的客座编辑。

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