4.7 Article

Algal blooms modulate organic matter remineralization in freshwater sediments: A new insight on priming effect

期刊

SCIENCE OF THE TOTAL ENVIRONMENT
卷 784, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.scitotenv.2021.147087

关键词

Algal debris accumulation; SOM mineralization; End products; Endogenous contribution; Priming effect

资金

  1. National Natural Science Foundation of China [41877482, 41471075]
  2. Major Science and Technology Program for Water Pollution Control and Treatment of China [2017ZX07203-003, 2017ZX07603-005]

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This study reveals that algal debris can enhance total carbon oxidation rate in sediments, facilitating SOM mineralization with iron reduction and sulfate reduction playing crucial roles in the early stages. Furthermore, algal debris has a positive priming effect on SOM mineralization, intensifying the mineralization process.
This study provides a novel insight into the degradation of sediment organic matter (SOM) regulated by algae-derived organic matter (AOM) based on priming effect. We tracked the dynamics of SOM mineralization products and pathways, together with priming effects (PE) using the compound-specific stable isotope (delta C-13) technique following addition of low- and high-density algal debris in sediments. We found that algal debris increased the total carbon oxidation rate, and resulted in denitrification and methanogenesis-dominated SOM mineralization. While iron reduction and sulphate reduction played important roles in the early period of algal accumulation. Total carbon oxidation rate and anaerobic rates (R-anaerobic) were higher in the amended treatments compared with that in the control. Analysis indicated that algal debris had a positive PE on SOM mineralization, which caused an intensified mineralization in the initial phase with over 80% of dissolved inorganic carbon deriving from SOM degradation. Total carbon oxidation rate of SOM deduced from priming effect (RTCOR-PE) was similar to R-anaerobic, further indicating SOM mineralization was a critical source of the end products. These findings deviate the causal focus from the decomposition of AOM, and confirm the accumulation of AOM as the facilitator of SOM mineralization. Our study offers empirical evidences to advance the traditional view on the effect of AOM on SOM mineralization. (C) 2021 Elsevier B.V. All rights reserved.

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