Journal of Tropical Oceanography ›› 2026, Vol. 45 ›› Issue (1): 117-130.doi: 10.11978/YG2025002CSTR: 32234.14.YG2025002
• Paleoceanography • Previous Articles Next Articles
LUO Chuanxiu1(
), LIN Gang2, THILAKANAYAKA Vidusanka A. M.1, WEI Haicheng3(
), XIANG Rong1, YANG Yiping1(
), WAN Sui1, LIANG Shiqing1, SU Xiang1, DU Shuhuan1, ZHANG Lanlan1, LIU Jianguo1, HUANG Yun1, SOE Moe Lwin4
Received:2025-06-27
Revised:2025-07-16
Online:2026-01-10
Published:2026-01-30
Contact:
WEI Haicheng, email: Supported by:CLC Number:
LUO Chuanxiu, LIN Gang, THILAKANAYAKA Vidusanka A. M., WEI Haicheng, XIANG Rong, YANG Yiping, WAN Sui, LIANG Shiqing, SU Xiang, DU Shuhuan, ZHANG Lanlan, LIU Jianguo, HUANG Yun, SOE Moe Lwin. Evidence of micro-charcoal deposited in the lower fan of the Bay of Bengal reveals an arid climate during the early Heirich Stadial 1[J].Journal of Tropical Oceanography, 2026, 45(1): 117-130.
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Fig. 2
Vegetation map of the surrounding area of the northeastern Indian Ocean (modified from Liu et al, 2021). The orange star in the figure represents the study site in this study; the white dots are the positions mentioned in the discussion, among which core YDY10 and core E87-32B are cited from Rahman et al (2025), BAR94-25 is cited from van Der Kaars et al (2012), BAR94-42 is cited from van Der Kaars et al (2010), cores 117KL, 118KL, and 120KL are cited from Galy et al (2008)"
Tab. 1
AMS14C age data, calibration results, and sedimentation rates for core YDY09 (Liu et al, 2019b)"
| 深度/cm | 实验室编号 | 测年材料 | AMS 14C年龄/ a | 日历年龄/ a | δ13C/‰ | 沉积速率/ (cm·ka−1) |
|---|---|---|---|---|---|---|
| 3~4 | 391114 | 混合浮游有孔虫 | 2100±30 | 1669±52 | 1.4 | 2.00 (0~3cm深度) |
| 19~20 | 391115 | 混合浮游有孔虫 | 7260±30 | 7716±42 | 0.8 | 2.64 (3~19cm深度) |
| 30~32 | 391116 | 混合浮游有孔虫 | 9490±30 | 10323±59 | 0.6 | 4.61 (19~31cm深度) |
| 62~63 | 391117 | 混合浮游有孔虫 | 13480±40 | 15688±98 | 0.7 | 6.18 (31~63cm深度) |
| 124~125 | 408431 | 混合浮游有孔虫 | 23290±80 | 27255±105 | 1.3 | 5.21 (63~125cm深度) |
| 168~169 | 408432 | 混合浮游有孔虫 | 42790±600 | 45651±534 | 0.9 | 2.39 (125~169cm深度) |
Fig. 5
Comparison of charcoal records from core YDY09 with paleoenvironmental records. (a) Total charcoal concentration from core YDY09; (b) δ18O record of stalagmites from Mawmluh Cave, northeastern India (Dutt et al, 2015); (c) salinity record from core SO93-126KL in the northern Bay of Bengal, indicating variations in Indian Summer Monsoon precipitation (Kudrass et al, 2001); (d) percentage of evergreen broad-leaved forests from cores YDY10 and E87-32B in the Bay of Bengal (Rahman et al, 2025); (e) percentage of woody charcoal from core YDY09, indicating changes in the amount of woody plant combustion; (f) moving average of δ13C record (light green) of sedimentary organic carbon (Corg-bulk) from cores 117KL, 118KL, and 120KL in the northern Bay of Bengal and its 3 ka shifted data towards the past (dark green), indicating the proportion of C3 and C4 plants in the Himalayan basin (Galy et al, 2008). Black dashed lines indicate the locations of 26 cal ka BP, 17 cal ka BP, and 7 cal ka BP; blue shading indicates the LGM and Early HS1 periods"
Fig. 6
Diagram showing the correlation between selected pollen curves from the marine core BAR94-25 (van Der Kaars, et al, 2012) and BAR94-42 (van Der Kaars et al, 2010) records. The percentage curves with horizontal black bar fill patterns show values calculated using pollen sum defined in the text. The unfilled percentage curves show values calculated using pollen sum excluding pine pollen"
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