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Journal of Analytical and Applied Pyrolysis
基本信息
期刊名称 Journal of Analytical and Applied Pyrolysis
J ANAL APPL PYROL
期刊ISSN 0165-2370
期刊官方网站 https://www.sciencedirect.com/journal/journal-of-analytical-and-applied-pyrolysis
是否OA No
出版商 Elsevier B.V.
出版周期 Bimonthly
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始发年份 1979
年文章数 410
影响因子 5.8(2023)  scijournal影响因子  greensci影响因子
中科院SCI期刊分区
大类学科 小类学科 Top 综述
化学3区 CHEMISTRY, ANALYTICAL 分析化学2区
ENERGY & FUELS 能源与燃料3区
ENGINEERING, CHEMICAL 工程:化工2区
CiteScore
CiteScore排名 CiteScore SJR SNIP
学科 排名 百分位 9.1 1.146 1.211
Chemistry
Analytical Chemistry
21/156 86%
Energy
Fuel Technology
27/128 79%
补充信息
自引率 12.1%
H-index 115
SCI收录状况 Science Citation Index Expanded
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PubMed Central (PMC) http://www.ncbi.nlm.nih.gov/nlmcatalog?term=0165-2370%5BISSN%5D
投稿指南
期刊投稿网址 https://www.editorialmanager.com/JAAP/default.aspx
收稿范围
The Journal of Analytical and Applied Pyrolysis (JAAP) is devoted to the publication of papers dealing with innovative applications of pyrolysis processes, the characterization of products related to pyrolysis reactions, and investigations of reaction mechanism. To be considered by JAAP, a manuscript should present significant progress in these topics. The novelty must be satisfactorily argued in the cover letter. A manuscript with a cover letter to the editor not addressing the novelty is likely to be rejected without review.

More specifically, the Scope of the Journal includes:

Fundamental pyrolysis research on chemical substances and materials comprising:
- experimental studies of pyrolysis reactions such as chemical mechanism and kinetic investigations; this includes preparative pyrolysis methods for the synthesis of novel compounds and mechanisms of high temperature reactions;
- computational and theoretical studies of reaction mechanism, kinetics, and thermodynamics are acceptable, provided they are directly related to experimental data, either new or previously published, but they must be described adequately in the paper;
- computational processing of pyrolysis data, such as advanced pattern recognition and principal component analysis and other multivariate analyses.

Analytical pyrolysis, i.e. the characterization of a material in inert atmosphere by thermally induced degradation reactions;
- exploring chemical composition and structure of materials by revealing thermal and chemical decomposition reactions leading to products fully identified by chemical and spectroscopic methods;
- applications of analytical pyrolysis in environmental, biological, medical, forensic, cultural heritage, food, geochemical, polymer, and materials science;
- new instrumentation and new analytical methods using pyrolysis reactions or to unravel the chemical composition of pyrolysis products.

Applied pyrolysis dealing with the development of pyrolysis processes for producing valuable chemicals and/or energy carriers (gas, liquid, solid or electricity) and/or materials from fossil or renewable feedstock or waste, the recycling of materials, and the disposal of toxic substances. The manuscript must discuss the relationships between pyrolysis conditions and product characteristics. This topic includes:

- various feedstock (fossil fuels, biomass, wastes, polymers, etc.) and the co-processing of different feedstock;

- various thermal processes (slow and fast pyrolysis, torrefaction, carbonization, high pressure pyrolysis, catalytic pyrolysis, deoxygenation, hydropyrolysis, solvent liquefaction).

The combination of a pyrolysis process with other types of treatment (mechanical, biological, or chemical) or materials characterization is within the scope of the journal only if the main focus of the manuscript is the pyrolysis process. Integrated processes combining pyrolysis reactors and products purification are welcome, if different pyrolysis conditions are studied. The computational modeling of pyrolysis reactors or processes should be related to experimental data, either new or previously published, but they must be described adequately in the paper.

The pyrolysis conditions should be described thoroughly (residence times of solid and vapors, temperature distributions, etc.). The pyrolysis products must be chemically characterized. Catalysts should be physically and chemically characterized before reaction, and, when feasible analysis of catalysts after reaction is also desirable. While this may not always be possible, at least qualitative assessments should be made.

The investigation of pyrolysis of a new feedstock or material with conventional methods, but without new development of the pyrolysis process is not sufficiently novel to be considered by JAAP.

Review articles are invited by the Editors but may also be proposed in writing to the Review Editor. The subject of review articles should be broad enough to appeal to a wide range of readers. Discussion should be concise, but adequate. More detailed discussion may be appropriate in some cases. It is expected that reviews should be critical rather than just catalogs of published data. They should include the most important, recent advances in the topic, whereas papers of low scientific significance should be given very limited coverage.

Out of the scope of JAAP

The Journal does not consider studies based on:

- the activation of carbons and characterization of activated carbons;

- thermal analysis, mass yields without characterization of the pyrolysis products by chemical and spectroscopic methods;

- characterization and application of pyrolysis products, unless clearly related to/aimed at understanding the influence/details of pyrolysis processes and conditions;

- theoretical studies, kinetic modelling etc. which are not complemented with or validated by experimental data

- combustion, gasification or incineration unless specifically related to the interplay between pyrolysis and oxidation reactions.
收录体裁
投稿指南 https://www.sciencedirect.com/journal/journal-of-analytical-and-applied-pyrolysis/publish/guide-for-authors
投稿模板
参考文献格式 https://www.elsevier.com/journals/journal-of-analytical-and-applied-pyrolysis/0165-2370/guide-for-authors
编辑信息
Editors

Marianne Blazsó

Hungarian Academy of Sciences, Budapest, Hungary 

Anthony Dufour

National Centre for Scientific Research, France 

Daniele Fabbri

University of Bologna Department of Chemistry Giacomo Ciamician, Bologna, Italy 

Haoquan Hu

Dalian University of Technology School of Chemical Engineering, Dalian, China 

Shogo Kumagai

Tohoku University Graduate School of Environmental Studies, Sendai, Japan 

Mark Nimlos

National Renewable Energy Laboratory, Golden, Colorado, United States 

Curt Wentrup

University of Queensland School of Chemistry and Molecular Biosciences, Brisbane, Australia 
Reviews Editor

Marianne Blazsó

Hungarian Academy of Sciences, Budapest, Hungary 
Honorary Board

John M. Challinor

ChemCentre, Perth, Australia

Giorgio Montaudo

University of Catania, Catania, Italy

Shin Tsuge

Nagoya University, Nagoya, Japan
Editorial Advisory Board

Franco Berruti

Western University, London, Ontario, Canada

Thallada Bhaskar

Indian Institute of Petroleum CSIR, Dehradun, India

Sylvie Derenne

Sorbonne University, Paris, France

Barney Ellison

University of Colorado Boulder Department of Chemistry and Biochemistry, Boulder, Colorado, United States

Rafael Font

University of Alicante, Alicante, Spain

Shiqiu Gao

Chinese Academy of Sciences, Institute of Process Engineering, State Key Laboratory of Multi-Phase Complex Systems, Zhongguancun, Beijing, China

Manuel Garcia Perez

Washington State University, Pullman, Washington, United States

Roy Goodacre

University of Liverpool, Liverpool, United Kingdom

Mohammad R. Hajaligol

Philip Morris USA Inc, Richmond, Virginia, United States

Haruo Kawamoto

Kyoto University, Kyoto, Japan

Rainer Koch

Carl von Ossietzky University of Oldenburg, Oldenburg, Germany

Qiang Lu

North China Electric Power University, Beijing, China

Francesca Modugno

University of Pisa, Pisa, Italy

Charles A. Mullen

USDA-ARS Eastern Regional Research Center, Wyndmoor, Pennsylvania, United States

Hajime Ohtani

Nagoya Institute of Technology, Nagoya, Japan

Yong Sik Ok

Korea University Division of Environmental Science and Ecological Engineering, Seoul, Korea, Republic of

Clemens Schwarzinger

Johannes Kepler University Linz, Linz, Austria

Ravikrishnan Vinu

Indian Institute of Technology Madras, Chennai, India

Shurong Wang

Zhejiang University State Key Laboratory of Clean Energy Utilization, Hangzhou, China

Richard Ming Wah Wong

National University of Singapore, Singapore, Singapore

Haiping Yang

Huazhong University of Science and Technology State Key Laboratory of Coal Combustion, Wuhan, China

Jale Yanik

Ege University, İzmir, Turkey

Yun Yu

Curtin University Chemical Engineering, Perth, Australia


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