ClimateOpenAlex

Heuristic editor, no API keyVerdict: Notable

Radiological characteristics of coal-to-ash transformation: a paired coal-ash assessment of natural radionuclides

Abstract Naturally occurring radioactive materials (NORM) in coal and its combustion residues represent a potential source of environmental contamination, particularly under large-scale energy production and waste…

By Łukaszek-Chmielewska, Rachwał, Rakowska +3Environmental Geochemistry and Health

Score████░░░░░░4.4

Key numbers

  • 40 K

VerdictWorth a reader's time today.

Read the original

Abstract

Abstract Naturally occurring radioactive materials (NORM) in coal and its combustion residues represent a potential source of environmental contamination, particularly under large-scale energy production and waste reuse scenarios. However, the radiological transformation of radionuclides during coal combustion remains insufficiently quantified. This study applies a paired coal–ash approach to assess systematic changes in the activity concentrations of 40 K, 226 Ra, and 232 Th and associated radiological hazard indices. Nine hard coal samples from Poland and international sources, together with their corresponding bottom ashes produced under controlled combustion conditions, were analysed using gamma-ray spectrometry. All coal samples exhibited low radionuclide activities, with concentrations below global average values. In contrast, combustion resulted in a highly consistent and approximately six-fold increase in radionuclide activity and all radiological indices, accompanied by complete directional consistency and very large effect sizes (r = 0.889). This increase reflects the concentration of naturally occurring radionuclides within the mineral residue, as the organic fraction of coal is removed during combustion. These findings demonstrate that combustion acts as a predictable process of radionuclide enrichment and radiological amplification. Enrichment factors ranged from approximately 3.8 to 9.9 across the analysed coal–ash pairs, and the external gamma radiation dose rate exceeded the recommended reference level of 54 nGy h⁻ 1 in all nine ash samples. Although most ash samples remained within recommended radiological limits, the magnitude and uniformity of enrichment indicate a potential risk of secondary environmental contamination and increased environmental exposure—particularly where combustion residues are reused in construction materials or land applications. It should be noted, however, that this study assessed the potential for such impact based on elevated radioactive activity of the ash, rather than on direct observation of radionuclide migration into the environment. The results highlight the need to treat coal combustion residues as radiologically distinct materials—at least under the combustion conditions investigated in the present study—and to incorporate transformation processes into environmental risk assessment and management frameworks.

Aneta Łukaszek-Chmielewska, Marzena Rachwał, Joanna Rakowska, Barbara Piotrowska, Krzysztof Isajenko, Mirosław Szyłak-Szydłowski

The editor's rubric

Heuristic review

DimensionLevelWeightWhat that level means
Leverage██░░░ 216%Reusable within one subfield (a technique, dataset, or protocol a few groups will adopt).
Magnitude███░░ 320%Large gain: roughly 2x, or a clear new state of the art on a hard, unsaturated problem.
Evidence███░░ 320%Solid: multiple benchmarks or cohorts, ablations, fair baselines, released code or data.
Novelty███░░ 310%A genuinely new approach to an open problem.
Trajectory██░░░ 214%Some room to improve with obvious engineering.
Stakes███░░ 320%Meaningful benefit to many people within a few years.

Editor’s rationale

Heuristic triage from title and abstract text only, not a reading of the paper. Cues found: gains (outperforms); novelty (alternative to status quo, new kind, discovery); verification (error bars); scale (scalable); stakes (global scale, energy).

How the score was computed

rank-2026-09-29

Score████░░░░░░4.4

Score = 10 × (75% × adjusted merit / 10 + 15% × attention + 10% × freshness)

Merit
5.4 / 10
Weighted rubric, evidence-gated.
Adjusted merit
4.6 / 10
Shrunk toward the desk prior by editor confidence (46%).
Attention
0%
Citations, upvotes, points, mentions.
Freshness
90%
Half-life decay since publication.
  • Citations0 (reference 15, via openalex, Sep 30, 2026, 11:05 UTC)
  • Field-weighted citation impact0 (reference 3, via openalex, Sep 30, 2026, 11:05 UTC)

The record

  • Reviewed by heuristic-v2 on Sep 29, 2026, 23:53 UTC. Paper type: empirical.
  • Categories: Coal and Its By-products, Radioactivity and Radon Measurements, Atmospheric and Environmental Gas Dynamics, Geochemistry and Petrology, Earth and Planetary Sciences
  • TOP, No.5 in the Climate & Energy edition of September 30, 2026.
  • TOP, No.1 in the Climate & Energy edition of September 29, 2026.