PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 14, 2026Earth Planets and Space2 citationsOpen Access

Reconstruction and dynamics of the ~ 5,200 cal BP Penoleken pumice andesitic–dacitic Plinian eruption of the Batur volcanic field, Bali, Indonesia

ISIndranova SuhendroDHDanang Sri HadmokoSSShohei Shibata

Key Points

  • The study aims to validate the characteristics of the Penoleken pumice fall deposit as a product of a Plinian eruption using stratigraphic and quantitative methods.
  • Identification of three pumice layers: PP-base, PP-lower, and PP-upper.
  • Estimation of plume height and mass discharge rates for each layer.
  • Quantitative assessment of total volume and clast compositions.
  • The total bulk volume estimated at 3.1–5.2 km³, classifying as a VEI 5 eruption.
  • Plume heights of 32 km for PP-lower and 35 km for PP-upper with corresponding mass discharge rates.
  • Distinct clast composition between layers indicates progressive magma withdrawal and varying decompression rates.

Abstract

Abstract The ~ 5,200 cal BP Penoleken pumice (PP) fall deposit from the Batur volcanic field (BVF), Bali, Indonesia, has been proposed by previous studies as a product of a Plinian eruption. However, this claim is yet to be justified by standard stratigraphic techniques and quantitative models (e.g., isopach and isopleth maps, flux rate, and volume and plume height estimations). In this study, we identified three pumiceous layers: PP-base, PP-lower, and PP-upper. PP-base originates from a series of phreatomagmatic events, as indicated by the intense stratification between lapilli and ash, and the ubiquitous presence of accretionary lapilli. Meanwhile, both PP-lower and PP-upper correspond to dry magmatic Plinian events, with an estimated plume height and mass discharge rate of 32 km and 1 × 10 8 kg/s and 35 km and 2 × 10 8 kg/s, respectively. The total bulk volume of the PP deposit is estimated at 3.1–5.2 km 3 (PP-lower: 1.0–2.1 km 3 ; PP-upper: 2.1–3.1 km 3 ), hence scaling it as a volcano explosivity index (VEI) 5 eruption. Both PP-lower and PP-upper include similar juvenile clasts (white pumice, grey pumice, scoria, and banded pumice) and lithic clasts, although each clast’s content varies across layers. All juvenile clasts are aphyric, with a SiO 2 groundmass glass composition varying from 65.8–66.8 wt.% (white pumice) through 67.2–69.6 wt.% (grey pumice) to 61.2–62.3 wt.% (scoria). The PP-lower is dominated by white pumice, whereas the PP-upper is dominated by grey pumice and scoria. This contrasting clast composition, and thus different chemical composition between layers, suggests progressive magma withdrawal from upper (trachydacitic) to lower (trachyandesitic) levels of a zoned magma reservoir. Further, in contrast with the white pumice, the grey pumice and scoria clasts have the highest groundmass vesicle and microlite number densities, suggesting that the eruption experienced its highest decompression rate during the PP-upper phase. The present-day BVF's magmatic system fuels dominating basaltic effusive activity. However, future BVF's explosive volcanism of comparable VEI 5 Plinian scale could produce major regional disruption. Graphical Abstract

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Suhendro et al. (2026) studied this question.

synapsesocial.com/papers/69b4fc0eb39f7826a300c998https://doi.org/10.1186/s40623-026-02395-x
Ask AI
Helpful
Bookmark
Share
View Full Paper