International Journal of Low-Carbon Technologies
INT J LOW-CARBON TEC
影响因子:2.3
是否综述期刊:
是否预警:不在预警名单内
是否OA:
出版国家/地区:United Kingdom
出版社:Oxford University Press
发刊时间:0
发刊频率:
收录数据库:SCIE/Scopus收录/DOAJ开放期刊
ISSN:1748-1317

中科院2-4区医学SCI协投:

影响因子0-3分,2-4个月确保录用

医学全方向沾边就收,无需大修

微信扫码提交文章

期刊介绍
The International Journal of Low-Carbon Technologies is a quarterly publication concerned with the challenge of climate change and its effects on the built environment and sustainability. The Journal publishes original, quality research papers on issues of climate change, sustainable development and the built environment related to architecture, building services engineering, civil engineering, building engineering, urban design and other disciplines. It features in-depth articles, technical notes, review papers, book reviews and special issues devoted to international conferences. The journal encourages submissions related to interdisciplinary research in the built environment. The journal is available in paper and electronic formats. All articles are peer-reviewed by leading experts in the field.
《国际低碳技术杂志》是一份季刊,关注气候变化的挑战及其对建筑环境和可持续性的影响。该杂志发表关于气候变化、可持续发展和建筑环境等问题的原创、高质量的研究论文,涉及建筑、建筑服务工程、土木工程、建筑工程、城市设计和其他学科。它的特色是深入的文章、技术说明、评论论文、书评和专门讨论国际会议的特刊。该杂志鼓励提交与建筑环境中的跨学科研究有关的论文。期刊有纸质和电子两种形式。所有文章均由该领域的领先专家进行同行评审。
年发文量 258
国人发稿量 79.98
国人发文占比 0.31%
自引率 -
平均录取率-
平均审稿周期 27 Weeks
版面费 750 GBP
偏重研究方向 Engineering-Architecture
期刊官网 https://academic.oup.com/ijlct
投稿链接 https://academic.oup.com/ijlct/pages/General_Instructions
期刊高被引文献
Modeling thermal conductivity of Ag/water nanofluid by applying a mathematical correlation and artificial neural network
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/IJLCT/CTZ030
Review on the recent progress of thermochemical materials and processes for solar thermal energy storage and industrial waste heat recovery
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/IJLCT/CTY052
Microstructure and filtration performance of konjac glucomannan-based aerogels strengthened by wheat straw
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/IJLCT/CTX021
Experimental study on the thermal performance of solar air conditioning system with MEPCM cooling storage
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/IJLCT/CTY062
Low-cost automatic multi-axis solar tracking system for performance improvement in vertical support solar panels using Arduino board
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/IJLCT/CTY058
Development of a cooling load prediction model for air-conditioning system control of office buildings
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/IJLCT/CTY057
Technical and economical evaluation of grid-connected renewable power generation system for a residential urban area
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/IJLCT/CTY053
A study on CO2 absorption using hybrid solvents in packed columns
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/ijlct/ctz051
Surrounding rock control of an innovative gob-side entry retaining with energy-absorbing supporting in deep mining
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/IJLCT/CTY054
The impact of architectural spaces’ geometric forms and construction materials on the users’ brainwaves and consciousness status
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/IJLCT/CTX018
Effect of design parameters on thermal performance of integrated phase change material blind system for double skin façade buildings
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/IJLCT/CTZ010
The potential of phase change materials in mitigating cooling load of buildings in UAE
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/ijlct/ctz042
Efficient optimized design of solar power tower plants based on successive response surface methodology
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/ijlct/ctz031
Analysis of energy efficiency improvement of high-tech fabrication plants
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/IJLCT/CTZ041
Assessment of strength development of cemented desert soil
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/ijlct/ctz047
Review of Heat and Mass Transfer Enhancement Techniques and Current Advancement for Adsorption Heating/Cooling Systems
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/ijlct/ctw010
Attaining sustainable high-rise office buildings in warm-summer-cold-winter climates: a case study on Frankfurt
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/IJLCT/CTZ044
Experimental investigation and performance analysis of an Organic Rankine Cycle for low-temperature heat to electricity generation
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/IJLCT/CTZ037
Theoretical and experimental investigations of different area ratios of a supersonic ejector driven by compressed air
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/ijlct/ctz050
Evaluation criteria of independent hybrid energy systems
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/IJLCT/CTZ036
Sensitivity analysis of technical and economic parameters for natural gas management in enhanced oil recovery projects
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/IJLCT/CTY047
Parametric analysis on the performance of a revolutionary rotary Ericsson heat pump/engine
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/IJLCT/CTY055
Introducing the RZ model for definition and optimization of the boundary of low emission zones
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/ijlct/ctz043
Fault diagnosis of air-conditioning refrigeration system based on sparse autoencoder
来源期刊:International Journal of Low-carbon TechnologiesDOI:10.1093/IJLCT/CTZ034
质量指标占比
研究类文章占比 OA被引用占比 撤稿占比 出版后修正文章占比
97.12%100%--
相关指数
影响因子
影响因子
年发文量
自引率
Cite Score
预警情况 查看说明
时间 预警情况
2023年01月发布的2023版不在预警名单中
2021年12月发布的2021版不在预警名单中
2021年01月发布的2020版不在预警名单中
*来源:中科院《 国际期刊预警名单》
JCR分区 WOS分区等级:Q2区
版本 按学科 分区
WOS期刊SCI分区
WOS期刊SCI分区
WOS期刊SCI分区是指SCI官方(Web of Science)为每个学科内的期刊按照IF数值排 序,将期刊按照四等分的方法划分的Q1-Q4等级,Q1代表质量最高,即常说的1区期刊。
(2024-2025年最新版)
THERMODYNAMICS
Q3
ENERGY & FUELS
Q4
中科院分区 查看说明
版本 大类学科 小类学科 Top期刊 综述期刊
2023年12月最新升级版
工程技术4区
THERMODYNAMICS
热力学
4区
ENERGY & FUELS
能源与燃料
4区
2022年12月升级版
工程技术4区
THERMODYNAMICS
热力学
4区
ENERGY & FUELS
能源与燃料
4区
2021年12月基础版
工程技术4区
THERMODYNAMICS
热力学
4区
ENERGY & FUELS
能源与燃料
4区
2021年12月升级版
工程技术4区
THERMODYNAMICS
热力学
4区
ENERGY & FUELS
能源与燃料
4区
2020年12月旧升级版
工程技术4区
THERMODYNAMICS
热力学
4区
ENERGY & FUELS
能源与燃料
4区