Green Energy & Environment

Green Energy & Environment

绿色能源与环境

  • 1区 中科院分区
  • Q1 JCR分区

期刊简介

《Green Energy & Environment》是由KeAi Publishing Communications Ltd.出版社于2016年创办的英文国际期刊(ISSN: 2096-2797,E-ISSN: 2468-0257),该期刊长期致力于工程:化工领域的创新研究,主要研究方向为Energy-Renewable Energy, Sustainability and the Environment。作为SCIE收录期刊(JCR分区 Q1,中科院 1区),本刊采用OA开放获取模式(OA占比1%),以发表工程:化工领域等方向的原创性研究为核心(研究类文章占比80.77%%)。凭借严格的同行评审与高效编辑流程,期刊年载文量精选控制在130篇,确保学术质量与前沿性。成果覆盖Web of Science、Scopus等国际权威数据库,为学者提供推动工程技术领域高水平交流平台。

投稿咨询

投稿提示

Green Energy & Environment审稿周期约为 15 Weeks 。该刊近年未被列入国际预警名单,年发文量约130篇,录用竞争适中,主题需确保紧密契合工程技术前沿。投稿策略提示:避开学术会议旺季投稿以缩短周期,语言建议专业润色提升可读性。

  • 工程技术 大类学科
  • English 出版语言
  • 是否预警
  • SCIE 期刊收录
  • 130 发文量

中科院分区

中科院 SCI 期刊分区 2023年12月升级版

Top期刊 综述期刊 大类学科 小类学科
工程技术
1区
ENGINEERING, CHEMICAL 工程:化工 CHEMISTRY, PHYSICAL 物理化学 ENERGY & FUELS 能源与燃料 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY 绿色可持续发展技术
1区 2区 2区 2区

中科院 SCI 期刊分区 2022年12月升级版

Top期刊 综述期刊 大类学科 小类学科
工程技术
1区
CHEMISTRY, PHYSICAL 物理化学 ENERGY & FUELS 能源与燃料 ENGINEERING, CHEMICAL 工程:化工 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY 绿色可持续发展技术
1区 1区 1区 1区

JCR分区

按JIF指标学科分区 收录子集 分区 排名 百分位
学科:CHEMISTRY, PHYSICAL SCIE Q1 25 / 178

86.2%

学科:ENERGY & FUELS SCIE Q1 16 / 170

90.9%

学科:ENGINEERING, CHEMICAL SCIE Q1 8 / 170

95.6%

学科:GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY SCIE Q1 8 / 91

91.8%

按JCI指标学科分区 收录子集 分区 排名 百分位
学科:CHEMISTRY, PHYSICAL SCIE Q1 21 / 178

88.48%

学科:ENERGY & FUELS SCIE Q1 19 / 173

89.31%

学科:ENGINEERING, CHEMICAL SCIE Q1 10 / 171

94.44%

学科:GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY SCIE Q1 12 / 91

87.36%

CiteScore

CiteScore SJR SNIP CiteScore 排名
CiteScore:16.8 SJR:1.982 SNIP:1.689
学科类别 分区 排名 百分位
大类:Energy 小类:Renewable Energy, Sustainability and the Environment Q1 27 / 270

90%

期刊发文

  • Endeavors on the development of efficient and sustainable supported metal catalysts for chemical synthesis on solid-liquid interfaces

    Author: Yang, Chao; Cui, Lifeng

    Journal: GREEN ENERGY & ENVIRONMENT. 2023; Vol. 8, Issue 1, pp. 1-3. DOI: 10.1016/j.gee.2022.03.004

  • Visible-light degradation of azo dyes by imine-linked covalent organic frameworks

    Author: Xue, Hongbo; Xiong, Sen; Mi, Kai; Wang, Yong

    Journal: GREEN ENERGY & ENVIRONMENT. 2023; Vol. 8, Issue 1, pp. 194-199. DOI: 10.1016/j.gee.2020.09.010

  • paper Efficient quantum dot sensitized solar cells via improved loading amount management

    Author: Wang, Wei; Xie, Yiling; He, Fangfang; Wang, Yuan; Xue, Weinan; Li, Yan

    Journal: GREEN ENERGY & ENVIRONMENT. 2023; Vol. 8, Issue 1, pp. 213-223. DOI: 10.1016/j.gee.2021.04.002

  • Ionic liquids-SBA-15 hybrid catalysts for highly efficient and solvent-free synthesis of diphenyl carbonate

    Author: Wang, Songlin; Zhang, Qiying; Cui, Chengxing; Niu, Hongying; Wu, Cailing; Wang, Jianji

    Journal: GREEN ENERGY & ENVIRONMENT. 2023; Vol. 8, Issue 1, pp. 183-193. DOI: 10.1016/j.gee.2021.02.010

  • Electrochemical synthesis of FeNx doped carbon quantum dots for sensitive detection of Cu2+ion

    Author: Sun, Siyuan; Bao, Weijie; Yang, Fan; Yan, Xingru; Sun, Yang; Zhang, Ge; Yang, Wang; Li, Yongfeng

    Journal: GREEN ENERGY & ENVIRONMENT. 2023; Vol. 8, Issue 1, pp. 141-150. DOI: 10.1016/j.gee.2021.04.0052468-0257

  • 3D flower-like mesoporous Bi4O5I2/MoS2 Z-scheme heterojunction with optimized photothermal-photocatalytic performance

    Author: Song, Sijia; Xing, Zipeng; Wang, Ke; Zhao, Huanan; Chen, Peng; Li, Zhenzi; Zhou, Wei

    Journal: GREEN ENERGY & ENVIRONMENT. 2023; Vol. 8, Issue 1, pp. 200-212. DOI: 10.1016/j.gee.2021.03.013

  • Carbon materials toward efficient potassium storage: Rational design, performance evaluation and potassium storage mechanism

    Author: Qiu, Daping; Hou, Yanglong

    Journal: GREEN ENERGY & ENVIRONMENT. 2023; Vol. 8, Issue 1, pp. 115-140. DOI: 10.1016/j.gee.2022.05.007

  • Techno-economic assessment of a chemical looping splitting system for H2 and CO Co-generation

    Author: Peng, Hao; Di, Zichen; Gong, Pan; Yang, Fengling; Cheng, Fangqin

    Journal: GREEN ENERGY & ENVIRONMENT. 2023; Vol. 8, Issue 1, pp. 338-350. DOI: 10.1016/j.gee.2022.02.012