基于文献计量学的玉米秸秆利用及关键共性技术分析

    Analysis of the key generic technologies for the utilization of maize stovers based on bibliometrics

    • 摘要: 为促进玉米秸秆全价值利用,该研究以中国知网(CNKI,China national knowledge infrastructure)数据库和Web of Science(WOS)核心数据库作为数据来源,利用知识图谱可视化软件,绘制玉米秸秆利用领域的知识图谱,以便全面了解玉米秸秆利用领域的研究现状和发展趋势,总结其面临的主要问题,并在此基础上深入挖掘分析玉米秸秆利用关键共性技术。玉米秸秆利用研究大致可分为1990—2007年及2008—2022年两个阶段。在后一阶段,各研究团队逐渐构成以肥料化、饲料化为主,燃料化为辅的玉米秸秆利用研究体系。经文献梳理发现,玉米秸秆利用研究大致经历了3次阶段性热点迁移,每次变化时长约为10a;中国玉米秸秆利用研究已取得较多成果,主要集中在秸秆还田和生物质能源生产方面;通过对知识图谱综合分析发现,玉米秸秆利用的热点方向包括生物质能源生产、土地改良和保护、畜牧业发展和饲料生产。最后,知识工程和归纳法分析结果表明,玉米秸秆利用技术仍存在收运不及时、还田质量低、秸秆制饲料技术不成熟、能源化技术成本高和附加值低等瓶颈。故在农业废弃物资源化利用这一国家重大需求驱动下,该文主要关注并分析了未来研究应重点聚焦的13项玉米秸秆全价值利用关键共性技术。该研究可为促进中国玉米秸秆全价值利用提供参考。

       

      Abstract: This study aims to promote the full-value utilization of corn stover. Data sources were selected as the China Knowledge Infrastructure database and the Web of Science. Visualization software was used to draw knowledge graphs in the field of corn stover use. The current status of research and trends were summarized to analyze the key generic technologies of corn stover use. Two stages were divided in the utilization of corn stoves: 1990-2007 and 2008-2022. In the latter stage, the research system of corn stover use was gradually formed using fertilizer and feed that was supplemented by fuel. A literature review found that the research on corn stover use roughly experienced three phases of hot spot migration, each of which lasted about 10 years. The research was focused mainly on stover returning during the period 1990-2000; The focus of the research was straw returning to the field, straw energy, and feed use during the period 2001-2010; The utilization of corn stover was diversified to gradually form during the period 2011-2022. The utilization of corn stover was achieved mainly in the fields of stover returning and biomass energy production. According to the knowledge graph, the hot directions of corn stover use included biomass energy production, land improvement and protection, animal husbandry development, and feed production. Finally, the knowledge engineering and induction show that there were still some bottlenecks in the technology of corn stover use, such as delayed collection and transportation, low quality of returning, immature technology of stover feed, high cost, and low added value of energy technology. Driven by the important national demand for the utilization of agricultural waste resources, 13 key generic technologies were summarized for the full-value utilization of corn stover, including intelligent control and management of agricultural machinery and equipment, digital agriculture, high-quality field-returning, field-returning under the local conditions, sealed storage, high-yield cellulose strain of screening, selection, and breeding of efficient microbial strains for lignin degradation, strain matching and enzyme application, high-efficiency biomass energy conversion, stover cellulose to ethanol, lignocellulosic sugar, stover cultivation substrate preparation, and bio-based material manufacturing.

       

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