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  4. Runoff-driven export of terrigenous particulate organic matter from a small mountainous river: sources, fluxes and comparisons among different rivers
 
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Runoff-driven export of terrigenous particulate organic matter from a small mountainous river: sources, fluxes and comparisons among different rivers

Journal
Biogeochemistry
Journal Volume
147
Journal Issue
1
Pages
71-86
Date Issued
2020
Author(s)
Qiao J
Bao H
Huang D
Li D.-W
Lee T.-Y
JR-CHUAN HUANG  
Kao S.-J.
DOI
10.1007/s10533-019-00629-7
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85076722392&doi=10.1007%2fs10533-019-00629-7&partnerID=40&md5=c0ff12df8062870a401df4a1d9783c66
https://scholars.lib.ntu.edu.tw/handle/123456789/571770
Abstract
The land-to-ocean export and subsequent preservation of terrestrial particulate organic carbon (POC) in oceans represents a major carbon sink in the global carbon cycle. Small mountainous rivers (SMRs) are hotspots of this process; however, how the sources and fluxes of POC change during rain events in low-gradient SMRs and how they compare with those in steep SMRs are unknown. Here, we combined the bulk properties and lignin phenols to trace changes in POC sources and fluxes in a low-gradient SMR (stream gradient: 0.6%) in southeastern China. Our results were further compared with other SMRs to understand the geomorphological influences on the POC export from SMRs. The results indicated that POC sources changed from aquatic organisms and deep soils during low-flow periods to surface soils and plant debris during high-flow periods. The lignin concentration showed a significant positive relationship with the runoff, suggesting that hydrology played an important role in exporting terrigenous POC in low-gradient SMRs. We further estimated that approximately 22%, 56% and 79% of annual water, POC and particulate lignin were exported during high-flow periods, respectively. Furthermore, we found that with increasing water discharge, the magnitude of the lignin increase was greater in SMRs with smaller stream gradients. Our results suggest that the export of terrigenous POC from low-gradient SMRs is driven by hydrology and is more sensitive to rain events than that in steep SMRs. ? 2019, Springer Nature Switzerland AG.
Subjects
biogeochemistry; carbon sink; comparative study; lignin; mountain stream; nutrient cycling; particulate organic carbon; phenolic compound; rainfall-runoff modeling; runoff; terrigenous deposit; China
SDGs

[SDGs]SDG15

Other Subjects
biogeochemistry; carbon sink; comparative study; lignin; mountain stream; nutrient cycling; particulate organic carbon; phenolic compound; rainfall-runoff modeling; runoff; terrigenous deposit; China
Type
journal article

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