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chemical-engineering-journal

Use when targeting Chemical Engineering Journal or deciding whether an applied chemical-engineering / functional-materials manuscript fits this venu…

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技能内容

Chemical Engineering Journal (chemical-engineering-journal)

Journal positioning

Chemical Engineering Journal (Elsevier) is a broad, high-volume venue for chemical

engineering with a strong applied and functional-materials emphasis: reaction

engineering and catalysis for environmental and energy applications, adsorption and

separation, functional materials engineered for chemical-engineering processes, and

water/energy treatment and conversion. Where AIChE Journal rewards the transferable

principle, this journal rewards a demonstrated, well-characterized advance on a real

process problem — provided the work still explains why it works, not only that it

works. Papers that report a new material and a property number with no mechanistic or

process insight, or that lack credible benchmarking, are a weak fit. This skill is a

fit / venue-selection / re-framing tool. It does not replace the journal's current

official author guidelines. Before submitting, re-check the live Chemical Engineering

Journal Guide for Authors on the Elsevier site.

When to trigger

  • The author names Chemical Engineering Journal for an applied catalysis, adsorption,

separation, functional-materials, or water/energy-process manuscript.

  • A paper must be re-framed from "we synthesized a material" into an

application-with-mechanism story tied to a chemical-engineering process.

  • The author is choosing between this journal's applied slant and AIChE Journal's

fundamentals bar, or between it and a pure-materials venue.

  • The author needs the journal's performance-and-benchmarking rigor bar and

desk-reject heuristics.

Scope & topic fit

  • Catalysis and reaction engineering for environmental and energy uses: pollutant

degradation, CO2 conversion, photo/electro/thermal catalysis with process relevance.

  • Adsorption and separation: sorbents, ion exchange, and separation processes with

capacity, kinetics, selectivity, and regeneration data.

  • Functional materials engineered for a chemical-engineering function (membranes,

catalysts, sorbents, electrodes) where the process performance is central.

  • Water and wastewater treatment: advanced oxidation, membrane and hybrid processes,

resource recovery, with mechanism and performance under realistic conditions.

  • Energy-related processes: conversion, storage materials in a process context, and

energy-efficient separations where the chemical-engineering advance is clear.

  • Process and reactor engineering for the above, including intensification and scale

considerations.

Method & evidence bar

  • The central claim is a demonstrated applied advance with mechanism: a material or

process that performs better, with direct evidence for why (active site,

transport, structure–performance link), not a property table alone.

  • Performance must be quantified and benchmarked against credible state-of-the-art and

measured under realistic, clearly stated conditions (concentration ranges, matrices,

cycling, stability).

  • Mechanism claims need direct evidence (operando/in-situ characterization, kinetic

analysis, controlled variation), not morphology-property correlation alone.

  • Stability, reusability, and applicability under non-idealized conditions are

expected for any application claim; single-cycle ideal-solution results are weak.

  • Characterization must be appropriate and statistically representative; report

conditions, controls, and reproducibility.

Structure & house style

  • Standard research-article structure (introduction, materials/methods, results,

discussion); the journal also uses highlights and a graphical abstract — re-check

current article types and requirements on the live guide.

  • The introduction frames the process/application gap and the mechanistic question;

the discussion ties structure or process variables to the measured performance.

  • Figures are load-bearing: performance curves with benchmarks and error bars,

mechanism schematics, and characterization supporting the active-site/transport claim.

  • Supporting information carries full synthesis, extended characterization, and

stability/recyclability data; main-text figures must stand alone for the central claim.

Official-submission checklist

  • Before giving submission-ready advice, read ../../resources/source-basis.md and

../../resources/official-source-map.md; start from the Elsevier anchors, then cite

the current Chemical Engineering Journal Guide for Authors page you checked.

  • Search the live site for "Chemical Engineering Journal guide for authors" and follow

the current Elsevier/Editorial Manager version.

  • Re-check article types, highlights and graphical-abstract requirements, and

length/figure expectations.

  • Confirm data-availability and any deposition/sharing requirements for datasets.
  • Re-check competing-interests, funding, author-contribution (CRediT), and AI-use

disclosure requirements.

  • If the live official instructions conflict with this skill, the official

instructions win.

Pre-submission self-check

  • [ ] The contribution is an applied advance with direct mechanistic evidence, not a new material plus a property number.
  • [ ] Performance is benchmarked against credible state-of-the-art under realistic, clearly stated conditions.
  • [ ] Mechanism is supported by operando/in-situ or kinetic evidence, not morphology-property correlation alone.
  • [ ] Stability, reusability, and non-idealized-condition performance are reported for application claims.
  • [ ] Characterization is appropriate, controlled, and statistically representative.
  • [ ] Highlights and graphical abstract represent the actual process advance.

Common desk-reject triggers

  • "New material, better number" with no mechanism and no process relevance.
  • Performance claims without credible benchmarking or measured only under idealized lab conditions.
  • Adsorption/catalysis studies missing stability, regeneration, or realistic-matrix data.
  • Mechanism asserted from morphology alone, with no operando/in-situ or kinetic support.
  • Pure-chemistry or pure-materials paper with chemical-engineering process relevance only as a label.
  • Incremental variant of a known sorbent/catalyst with marginal improvement and no new insight.

Re-routing decision

  • Fundamental, generalizable transport/thermo/reaction-engineering science → aiche-journal.
  • Membrane materials and transport mechanism as the core → journal-of-membrane-science.
  • Systems-level energy conversion / techno-economic scope → applied-energy.
  • Electrode/electrolyte materials for batteries as the core → energy-storage-materials.
  • Environmental-process work with environmental-science framing → environmental-science-and-technology.
  • Catalysis as a chemistry/mechanism advance over process engineering → nature-catalysis.

Output format

[Fit] High / Medium / Low (one-line reason)
[Target] Chemical Engineering Journal
[Topic tags] <2–3 closest applied-CE subtopics>
[Applied advance] <the material/process advance and what it improves, one line>
[Mechanism] <the why-it-works evidence in one line>
[Benchmarking] <state-of-the-art comparison + realistic conditions present?>
[Top risk] <the single most likely reason for rejection>
[Official items to re-check] <article type / highlights / graphical abstract / data policy / disclosures>
[Re-route suggestion] <if not a fit, a better-matched venue>

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原文件路径Engineering-Technology-Journal-Skills/skills/chemical-engineering-journal/SKILL.md

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