Articles

Dissolved Organic Carbon Dynamics and Controls of Planted Slash Pine Forest Soil in Subtropical Region in Southern China

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  • 1 Key Laboratory of Ecosystem Network Observation and Modeling, Institute of Geographic Sciences and Natural Resources Research, CAS, Beijing 100101, China;
    2 Institute of Metrological Administration and Strategic Planning, National Institute of Metrology, AQSIQ, Beijing 100013, China;
    3 Swedish University of Agricultural Sciences, Department of Forest Ecology and Management, SE-901 83 Ume?, Sweden;
    4 Natural Resources Faculty of Tarbiat Modares University, Noor, Mazandaran, Iran;
    5 University of Chinese Academy of Sciences, Beijing 100049, China

Received date: 2013-01-14

  Revised date: 2013-04-23

  Online published: 2013-06-20

Supported by

this work is supported by the Key Project of CAS Knowledge Innovation (KZCX2-YW-QN301), the National Key Basic Research and Development Program (2010CB833503), the “Strategic Priority Research Program” of the Chinese Academy of Sciences (XDA05050602-1) and the National Natural Science Foundation of China (No.31070438).

Abstract

Soil dissolved organic carbon (DOC) is an active fraction of the soil organic carbon (SOC) pool and links terrestrial and aquatic systems. The degradation of DOC can affect carbon cycling, nutrient dynamics and energy supply to microorganism, and consequently change biogeochemical processes. This study investigated the vertical and seasonal variability of soil DOC concentrations and its controls in a 23-year-old planted slash pine (Pinus elliottii) forest at Qianyanzhou Forest Experimental Station (QFES) in Southern China. Soil solutions were collected at bimonthly intervals at depths of 10, 20 and 30 cm by a mechanical-vacuum extractor from November 2007 to March 2009, and at monthly intervals at depths of 10, 30 and 50cm from April 2009 to October 2010. The DOC concentrations were determined with a total organic carbon (TOC) analyzer. Mean (±standard deviation) DOC concentrations at depths of 10cm, 20cm, 30cm and 50cm were 12.4±4.4, 10.6±6.3, 8.7±2.6, and 8.0±5.9 mg L-1, respectively. Both seasonal and spring means of DOC concentration showed a decreasing trend with increasing depth, while there was no clear trend for the summer, autumn, or winter seasons. DOC concentrations during spring, summer, autumn and winter ranged from 4.8 to 21.5, 4.9 to 26.2, 5.4 to 17.1, 4.9 to 14.6 mg L-1, respectively, their mean DOC concentrations were 10.2, 10.5, 10.8 and 8.3 mg L-1, respectively. No consistent pattern of seasonal variability of DOC concentrations at different depths was observed. No obvious relationship between organic carbon content of forest litter and DOC concentration was found. There was a positive linear relationship between SOC and DOC concentration (R2=0.19, p<0.01), which showed that SOC was one of the main controls of DOC. A positive exponential relationship existed between soil temperature at 5 cm and DOC concentrations at 10 cm depth in slash pine, masson pine (Pinus massoniana) and Chinese fir (Cunninghamia lanceolata) planted forests (R2=0.12, p<0.01). DOC concentrations showed a negative linear relationship with soil moisture at all depths in slash pine forest (R2=0.15, p<0.001), and DOC concentrations at depth of 10 cm demonstrated a negative exponential relationship with soil moisture at 5 cm depth in three planted forests (R2=0.13, p<0.001). Precipitation in sampling months and mean seasonal DOC concentration were not correlated. However, a more detailed analysis of precipitation events at different times before sampling and seasonal DOC concentration showed that the timing of precipitation events prior to sampling had different effects on seasonal DOC concentrations at different depths. Our study highlights the importance of DOC dynamics for the carbon cycle in planted slash pine forest and it provides evidence for evaluating the effects of ecological restoration in subtropical red soil region.

Cite this article

CHU Ying, WANG Shaoqiang, WANG Jingyuan, Matthias PEICHL, Samereh FALAHATAR . Dissolved Organic Carbon Dynamics and Controls of Planted Slash Pine Forest Soil in Subtropical Region in Southern China[J]. Journal of Resources and Ecology, 2013 , 4(2) : 105 -114 . DOI: 10.5814/j.issn.1674-764x.2013.02.002

References

Chow A T, Tanji K K, Gao S, et al. 2006. Temperature, water content and wet-dry cycle effects on DOC production and carbon mineralization in agricultural peat soils. Soil Biology and Biochemistry, 38: 477-488.

Don A, K Kalbitz. 2005. Amounts and degradability of dissolved organic carbon from foliar litter at different decomposition stages. Soil Biology & Biochemistry, 37: 2171-2179.

Fröberg M, D Berggren, B Bergkvist, et al. 2006. Concentration and fluxes of dissolved organic carbon (DOC) in three Norway spruce stands along a climatic gradient in Sweden. Biogeochemistry, 77: 1-23.

Fröberg M, P M Jardine, P J Hanson. 2007. Low dissolved organic carbon input from fresh litter to deep mineral soils. Soil Science Society of America Journal, 71: 347-354.

Gödde M, M B David, M J Christ, et al. 1996. Carbon mobilization from the forest floor under red spruce in the northeastern USA. Soil Biology & Biochemistry, 28(9): 1181-1189.

Guggenberger G, K Kaser, W Zech.1998. Mobilization and immobilization of dissolved organic matter in forest soil. Zeitschrift fur Pflanzenernahrung und Bodenkunde,161: 401-408.

Hansson K, D B Kleja, K Kalbitz, et al. 2010. Amounts of carbon mineralised and leached as DOC during decomposition of Norway spruce needles and fine roots. Soil Biology and Biochemistry, 42:178-185.

Harrison A F, K Taylor, A Scott, et al. 2008. Potential effects of climate change on DOC release from three different soil types on the Northern Pennines UK: examination using field manipulation experiments. Global Change Biology, 14: 687-702.

Kaiser K, Guggenberger G. 2000. The role of DOM sorption to mineral surfaces in the preservation of organic matter in soils. Organic Geochemistry, 31: 711-725.

Kalbitz K, S Solinger, J H Park, et al. 2000. Controls on the dynamics of dissolved organic matter in soils: A review. Soil Science, 165(4): 277-304.

Ma Z Q, Liu Q J, Xu W J, et al. 2007. Carbon storage of artfiical forest in Qiyanzhou, Jiangxi Province. Scientia Silvae Sinicae, 43(11): 1-7. (in Chinese).

Michalzik B, K Kalbitz, J H Park, et al. 2001. Fluxes and concentrations of dissolved organic carbon and nitrogen - a synthesis for temperate forests. Biogeochemistry, 52: 173-205.

Moore T R, W de Souza, J F Koprivnjak. 1992. Controls on the sorption of dissolved organic-carbon by soils. Soil Science, 154: 120-129.

Neff J C, G P Asner. 2001. Dissolved organic carbon in terrestrial ecosystems: Synthesis and a model. Ecosystems, 4: 29-48.

Peichl M, T R Moore, M A Arain, et al. 2007. Concentrations and fluxes of dissolved organic carbon in an age-sequence of white pine forests in Southern Ontario, Canada. Biogeochemistry, 86: 1-17.

Prokushkin A S, S Hobara, S G Prokushkin. 2010. Chapter 11, Behavior of dissolved organic carbon in larch ecosystem. Osawa A et al. (eds.). Permafrost Ecosystems: Siberian Larch Forests, Ecological Studies, Vol. 209, Springer Science+Business Media B.V.

Uselman S M, R G Qualls, J Lilienfein. 2007. Contribution of roots vs. leaf litter to dissolved organic carbon leaching through soil. Soil Science Society of America Journal, 71: 1555-1563.

Wang S Q, Liu J Y, Yu G R, et al. 2004. Effects of land use change on the storage of soil organic carbon: A case study of the Qianyanzhou forest experimental stations in China. Climatic Change, 67: 247-255.

Wang Y D, Wang H M, Ma Z Q, et al. 2009. Contribution of aboveground litter decomposition to soil respiration in a subtropical coniferous plantation in southern China. Asia-Pacific Journal of Atmospheric Sciences, 45: 137-147.

Wen X F, Yu G R, Sun X M, et al. 2006. Soil moisture effect on the temperature dependence of ecosystem respiration in a subtropical Pinus plantation of southeastern China. Agricultural and Forest Meteorology, 137: 166-175.

Yang Y S, Guo J F, Chen G S, et al. 2003. Origin, property and flux of dissolved organic matter in forest ecosystems. Acta Ecologica Sinica, 23(3): 547-558. (in Chinese)

Yu G R, Wen X F, Li Q K, et al. 2005. Seasonal patterns and environmental control of ecosystem respiration in subtropical and temperate forests in China. Science in China (Ser. D: Earth Sciences), 48 (Supp. I): 93-105.
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