| Literature DB >> 27225903 |
Xinxin Zuo1, Houyuan Lu1,2, Jianping Zhang1,2, Can Wang1, Guoping Sun3, Yunfei Zheng3.
Abstract
Phytoliths can occlude some organic carbon during their deposition in plants. This carbon fraction is recognised as an ideal dating material because of its high resistance to decomposition and post-deposition contamination at the time of phytolith formation. However, the reliability of phytolith radiocarbon dating has recently been questioned. The development of a new extraction protocol for phytoliths, with paired dating between phytoliths and other materials from the same sediment, may provide further evidence for the reliability of phytolith dating. We present an improved method for extracting phytoliths from soils. We compared the dating of phytoliths and other materials (e.g., charcoal and plant seeds) recovered at the same depth from seven pits at six archaeological sites in China. The estimated ages of the phytoliths and other materials were generally consistent, except for one outlier. We attribute this inconsistency to the post-depositional processes of phytoliths in soil, rather than to the uptake of old carbon from the soil. Our results clearly show the potential for phytolith carbon dating at archaeological sites in the absence of other dating materials.Entities:
Year: 2016 PMID: 27225903 PMCID: PMC4880898 DOI: 10.1038/srep26769
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Locations of archaeological sites
The figure was generated using GRASS GIS 7.0.3: https://grass.osgeo.org/.
Sites, locations, and weights of selected samples.
| Archaeological sites | Sample code | Location | Cultural period | Other dating materials | Soil dry weight (g) |
|---|---|---|---|---|---|
| Yuancun | YC | Henan province | Yangshao | Charcoal | 25.024 |
| Yingyang | YY | Henan province | Yangshao | Charcoal | 135.645 |
| Wuluoxipo | WLXP | Henan province | Peiligang | Charcoal | 137.222 |
| Xinglefang | XLF | Shanxi province | Miaodigou | Charcoal | 80.16 |
| Huxi | HX | Zhejiang province | Shangshan | Plant residue | 102.4 |
| Tianluoshan | TLS-2 | Zhejiang province | Hemudu | Seeds | 70.513 |
| Tianluoshan | TLS-3 | Zhejiang province | Hemudu | Seeds | 56.75 |
Figure 2Images of phytoliths extracted from soils:
(a,b) images of phytoliths; (c,d) optical microscopy images of phytoliths; (e,f) SEM images of phytoliths.
AMS radiocarbon dating results with uncertainty ±2σ
| Lab ID | Archaeological sites | Sample code | Dating materials | 13/12C Ratio | Conventional age (BP) | 2σ Calibration (Cal BC) |
|---|---|---|---|---|---|---|
| Beta-407469 | Huxi | HX-C | Plant remains | −25.9 0/00 | 7820 ± 30 | 6690–6595 |
| Beta-406654 | Huxi | HX-P | Phytolith | −25.7 0/00 | 7680 ± 30 | 6590–6460 |
| Beta-404827 | Wuluoxipo | WLXP-C | Char | −25.5 0/00 | 6360 ± 30 | 5460–5450 |
| Beta-404848 | Wuluoxipo | WLXP-P | Phytolith | −26.0 0/00 | 6350 ± 30 | 5370–5300 |
| BA07763 | Tianluoshan | TLS-3-C | Flatstalk bulrush | NA | 6045 ± 45 | 5060–4800 |
| Beta-409348 | Tianluoshan | TLS-3-P | Phytolith | −32.1 0/00 | 5940 ± 30 | 4895–4865 |
| BA08204 | Tianluoshan | TLS-2-C | Yagara bulrush seed | NA | 5430 ± 40 | 4200–4170 |
| Beta-409347 | Tianluoshan | TLS-2-P | Phytolith | −31.2 0/00 | 5180 ± 30 | 4040–3955 |
| Beta-392838 | Xinglefang | XLF-C | Char | −24.9 0/00 | 4800 ± 30 | 3645–3625 |
| Beta-409349 | Xinglefang | XLF-P | Phytolith | NA* | 5110 ± 30 | 3970–3910 |
| Beta-404835 | Yuancun | YC-C | Char | −25.2 0/00 | 4970 ± 30 | 3890–3885 |
| Beta-404844 | Yuancun | YC-P | Phytolith | −24.6 0/00 | 5310 ± 30 | 4240–4040 |
| Beta-404837 | Yingyang | YY-C | Char | −26.0 0/00 | 4470 ± 30 | 3340–3080 |
| Beta-404846 | Yingyang | YY-P | Phytolith | −24.40/00 | 5760 ± 40 | 4710–4500 |
*The original sample was too small to provide a δ13C on the original material. However, a ratio including both natural and laboratory effects was measured during 14C detection in order to calculate the true Conventional Radiocarbon Age.
Figure 3EDS analysis of phytolith surface.
1 and 4 are EDS spectra of elongate phytoliths; 2 is EDS spectrum of acicular phytolith; 3 is EDS spectrum of square phytolith.
Figure 4Calibrated two-sigma probability distributions for radiocarbon assays of phytoliths and other materials.