Fuel Processing Technology

基本情報

略称: FUEL PROCESS TECHNOL
インパクトファクター: 7.2
ISSN: 0378-3820
研究分野: ENGINEERING TECHNOLOGY
h-index: 125
自己引用率: 5.6%
年間論文数: 296

SCI収録状況: Science Citation Index Expanded
ジャーナル紹介:

An international journal devoted to all aspects of processing and utilization of fuel Fuel Processing Technology(FPT) deals with the scientific and technological aspects of the processing and utilization of clean fuels, fuel-related chemicals and advanced carbon materials and by-products. Preference will be given to the publication of papers on renewables, including the integration of renewables such as solar and wind energy and energy storage into the fuel processing processes, as well as the production and conversion of non-carbon-containing fuels such as hydrogen and ammonia. However, papers on traditional non-nuclear fossil fuels, especially on decarbonisation, will also be considered. While chemical conversion is emphasized, papers on advanced physical conversion processes are also considered for publication in FPT. Papers on the fundamental aspects of fuel structure and properties will also be considered. For a full list of the classifications considered by FPT please click here Benefits to authors We also provide many author benefits, such as free PDFs, a liberal copyright policy, special discounts on Elsevier publications and much more. Please click here for more information on our author services. Please see our Guide for Authors for information on article submission. If you require any further information or help, please visit our Support Center

CiteScore

CiteScore
13.2
SJR
1.45
SNIP
1.595
分野 ランク パーセンタイル
Chemical EngineeringGeneral Chemical Engineering
18 / 273 93%

ジャーナル統計

Monthly
号/年
Time to first decision: 10days Review time: 58days Submission to acceptance: 78days Acceptance to publication: 10days
査読期間
$3000
論文処理料

投稿情報

収録タイプ:

research papers
reviews
short communications
letters to the Editor

関連論文

The limits to biocatalysis: pushing the envelope

Roger A. Sheldon, Dean Brady

2018-05-08 Feature Article

DOI: 10.1039/C8CC02463D

In situ growth of all-inorganic perovskite nanocrystals on black phosphorus nanosheets

Hao Huang, Jia Li, Ya Yi, Jiahong Wang, Yihong Kang, Paul K. Chu, H. C. Ong, Xue-Feng Yu

2018-02-08 Communication

DOI: 10.1039/C8CC00029H

An environmentally friendly natural polymer as a universal interfacial modifier for fullerene and non-fullerene polymer solar cells

Xiaojing Wang, Shuwang Yi, Zhicai He, Xinhua Ouyang, Hong-Bin Wu, Weiguo Zhu, Bin Zhang, Yong Cao

2019-12-04 Paper

DOI: 10.1039/C9SE01079C

An overview of latest advances in exploring bioactive peptide hydrogels for neural tissue engineering

Pooja Sharma, Vijay Kumar Pal, Sangita Roy

2021-04-05 Review Article

DOI: 10.1039/D0BM02049D

Vapor-fed photoelectrolysis of water at 0.3 V using gas-diffusion photoanodes of SrTiO3 layers

Hyosuke Mukohara, Hiroki Sato, Chihiro Tateishi, Hiromasa Sato

2019-12-26 Paper

DOI: 10.1039/C9SE01068H

Redox responsive Pluronic micelle mediated delivery of functional siRNA: a modular nano-assembly for targeted delivery

Sandeep Kadekar, Ganesh N. Nawale, Vadim Le Joncour, Pirjo Laakkonen, Jöns Hilborn, Oommen P. Varghese, Oommen P. Oommen

2021-05-04 Communication

DOI: 10.1039/D1BM00428J

From zinco(ii) arsaketenes to silylene-stabilised zinco arsinidene complexes

Ernesto Ballestero-Martínez, Terrance J. Hadlington, Tibor Szilvási, Shenglai Yao, Matthias Driess

2018-04-16 Communication

DOI: 10.1039/C8CC01928B

Tessellation strategy for the interfacial synthesis of an anthracene-based 2D polymer via [4+4]-photocycloaddition

Renzeng Chen, Danbo Wang, Wenbo Hao, Feng Shao, Yingjie Zhao

2021-05-07 Communication

DOI: 10.1039/D1CC02179F

A hollow neuronal carbon skeleton with ultrahigh pyridinic N content as a self-supporting potassium-ion battery anode

Yongwen Sun, Ya Zhang, Zheng Xing, Denghu Wei, Quanchao Zhuang

2019-12-06 Paper

DOI: 10.1039/C9SE00889F

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