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首页> 外文期刊>Environmental Science & Technology >ES&T in the 21st Century: A Data-Driven Analysis of Research Topics, Interconnections, And Trends in the Past 20 Years
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ES&T in the 21st Century: A Data-Driven Analysis of Research Topics, Interconnections, And Trends in the Past 20 Years

机译:21世纪的ES&T:过去20年的研究主题,互联和趋势的数据驱动分析

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摘要

Environmental Science & Technology (ES&T) has served a leadership role in reporting advanced and significant research findings for decades and accumulated tremendous amount of high-quality literature. In this study, we developed tailored text mining methods and analyzed 29 188 papers published in ES&T from 2000 to 2019, and we performed data-driven analyses to reveal some critical information and guidance on what has been published, what topical changes have evolved, and what are the areas that deserve additional attention. While top research keywords remained stable (water, sorption, soil, emiss, oxid, exposur), the trending up and emerging keywords showed clear shift over the years. Keywords related to nanobased materials (nanoparticl, nanomateri, carbon nanotub), climate and energy (climat, ch4, greenhouse gas emiss, mitig, energi), and health (exposur, health/ ingest) demonstrated the strongest uptrend in the past 10 years, while plastics and PFAS were among clear emerging topics in the past 5 years. Cooccurrence analysis showed distinct associations between media (water, soil, air, sediment), chemicals (pcb, humic subst, particulate matt), processes (sorption, remov, degrad), and properties (kinet, mechan, speciat). Furthermore, a rule-based classification deciphered trends, distributions, and interconnections of articles based on either monodomains (air, soil, solid waste, water, and wastewater) or multidomains. It found water and wastewater cross-discipline articles tended to have higher citation values, while air domain tended to stand alone. Water and air monodomains consistently increased their shares in publications (together 56.3% in 2019), while shares of soil studies gradually declined. This study provides new data-driven methods on literature mining and offers unique insights on environmental research landscape and opportunities.
机译:环境科学与技术(ES&T)在报告了几十年的报告和巨大的高质量文学中,在报告先进和重大的研究结果方面提供了领先地位。在这项研究中,我们开发了量身定制的文本挖掘方法,并分析了2000年至2019年在ES&T发布的29篇论文,我们执行了数据驱动的分析,以揭示一些关键信息和指导就发表的内容,哪些题目发生了发展,以及什么应该额外关注的地区是什么。虽然顶级研究关键词仍然稳定(水,吸附,土壤,溢出,氧化,曝光),趋势和新兴关键词在多年上表现出清晰的班次。纳米氧化物材料(纳米粉颗粒,纳米以,碳纳米管),气候和能量(Climat,CH4,温室气体,MITIG,Energi)和健康(曝光,健康/摄取)相关的关键词在过去10年中表现出最强大的上升趋势,虽然塑料和PFA在过去的5年里是清晰的新兴主题之一。 Cooccurrence分析显示介质(水,土壤,空气,沉积物),化学品(PCB,腐殖液,颗粒状泡沫),工艺(吸附,雷莫夫,降级)和性质(电气,机械,规格)之间具有明显的关联。此外,基于规则的分类破译趋势,分布和基于单颗粒(空气,土壤,固体废物,水和废水)或多弥adt的物品的互连。它发现水和废水的交叉学科文章往往具有更高的引文值,而空气域倾向于单独站立。水和空气半肿瘤始终如一地增加了出版物的股票(2019年56.3%),而土壤研究的股票逐渐下降。本研究为文献矿业提供了新的数据驱动方法,并提供了对环境研究景观和机遇的独特见解。

著录项

  • 来源
    《Environmental Science & Technology》 |2021年第6期|3453-3464|共12页
  • 作者单位

    Department of Civil and Environmental Engineering and Andlinger Center for Energy and the Environment Princeton University Princeton New Jersey 08544 United States;

    Princeton University Library Princeton University Princeton New Jersey 08544 United States;

    Princeton University Library Princeton University Princeton New Jersey 08544 United States;

    Department of Civil and Environmental Engineering and Andlinger Center for Energy and the Environment Princeton University Princeton New Jersey 08544 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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