Shrub encroachment increases soil organic and inorganic carbon in coastal wetlands
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X. Bi | Yuru Wu | Lingmin Meng | Shiwei Zhou | Jiaming Kong
[1] Junliang Liu,et al. Effects of afforestation by aerial sowing on topsoil physicochemical properties in the sandy desert, NW China , 2023, Journal of Soils and Sediments.
[2] S. Yun,et al. Coupling of δ13C and δ15N to understand soil organic matter sources and C and N cycling under different land-uses and management: a review and data analysis , 2022, Biology and Fertility of Soils.
[3] R. Lal,et al. Soil Inorganic Carbon as a Potential Sink in Carbon Storage in Dryland Soils—A Review , 2022, Agriculture.
[4] Lingqing Wang,et al. Influence of soil properties, topography, and land cover on soil organic carbon and total nitrogen concentration: A case study in Qinghai-Tibet plateau based on random forest regression and structural equation modeling. , 2022, The Science of the total environment.
[5] Zhiheng Wang,et al. Plant and microbial pathways driving plant diversity effects on soil carbon accumulation in subtropical forest , 2021 .
[6] Hongjun Yang,et al. Microbial residues as the nexus transforming inorganic carbon to organic carbon in coastal saline soils , 2021, Soil Ecology Letters.
[7] Varun Paul,et al. A review on the possible factors influencing soil inorganic carbon under elevated CO2 , 2021 .
[8] He Li,et al. Mapping quasi-circular vegetation patch dynamics in the Yellow River Delta, China, between 1994 and 2016 , 2021, Ecological Indicators.
[9] G. Alberti,et al. Stand age, degree of encroachment and soil characteristics modulate changes of C and N cycles in dry grassland soils invaded by the N2-fixing shrub Amorpha fruticosa. , 2021, The Science of the total environment.
[10] R. Mao,et al. Shrub encroachment balances soil organic carbon pool by increasing carbon recalcitrance in a temperate herbaceous wetland , 2021, Plant and Soil.
[11] Y. Kuzyakov,et al. Contrasting pathways of carbon sequestration in paddy and upland soils , 2021, Global change biology.
[12] Jingyun Fang,et al. Effects of shrub encroachment on soil aggregates and organic carbon vary in different grasslands in Inner Mongolia, China , 2021, Ecosphere.
[13] Jiang-tao Hong,et al. Significant soil acidification caused by grazing exclusion across China’s grassland areas , 2020, Land Degradation & Development.
[14] X. Bi,et al. Spatial characteristics of soil δ13C and δ15N reveal shrub-induced successional process in a coastal wetland , 2020 .
[15] Yao Huang,et al. Determinants of soil organic carbon sequestration and its contribution to ecosystem carbon sinks of planted forests , 2020, Global change biology.
[16] Jingyun Fang,et al. Shrub encroachment decreases soil inorganic carbon stocks in Mongolian grasslands , 2019, Journal of Ecology.
[17] W. Tan,et al. Factor contribution to soil organic and inorganic carbon accumulation in the Loess Plateau: Structural equation modeling , 2019, Geoderma.
[18] Fanlong Kong,et al. Inorganic carbon sequestration and its mechanism of coastal saline-alkali wetlands in Jiaozhou Bay, China , 2019, Geoderma.
[19] Fusuo Zhang,et al. Cropland acidification increases risk of yield losses and food insecurity in China. , 2019, Environmental pollution.
[20] C. Hopkinson,et al. Global-change controls on soil-carbon accumulation and loss in coastal vegetated ecosystems , 2019, Nature Geoscience.
[21] Jingyun Fang,et al. Soil organic carbon components in inner Mongolian shrub-encroached grasslands , 2019, Plant and Soil.
[22] Jingyun Fang,et al. Shrub encroachment increases soil carbon and nitrogen stocks in temperate grasslands in China , 2019, Land Degradation & Development.
[23] Shanshan Zhu,et al. Divergent accumulation of microbial necromass and plant lignin components in grassland soils , 2018, Nature Communications.
[24] Jingyun Fang,et al. Shrub encroachment is associated with changes in soil bacterial community composition in a temperate grassland ecosystem , 2018, Plant and Soil.
[25] Jingyun Fang,et al. Shrub-encroachment induced alterations in input chemistry and soil microbial community affect topsoil organic carbon in an Inner Mongolian grassland , 2017, Biogeochemistry.
[26] E. Zhang,et al. Organic and inorganic carbon and their stable isotopes in surface sediments of the Yellow River Estuary , 2017, Scientific Reports.
[27] Guangliang Zhang,et al. Selective uptake of nitrogen by Suaeda salsa under drought and salt stresses and nitrogen fertilization using 15N , 2017 .
[28] Junbao Yu,et al. Distribution of carbon, nitrogen and phosphorus in coastal wetland soil related land use in the Modern Yellow River Delta , 2016, Scientific Reports.
[29] Susie R. Wu,et al. Applications of structural equation modeling (SEM) in ecological studies: an updated review , 2016, Ecological Processes.
[30] Xianglan Li,et al. Dynamics of soil organic and inorganic carbon in the cropland of upper Yellow River Delta, China , 2016, Scientific Reports.
[31] Jingyun Fang,et al. Effects of shrub encroachment on soil organic carbon in global grasslands , 2016, Scientific Reports.
[32] F. Maestre,et al. A multifaceted view on the impacts of shrub encroachment. , 2016, Applied vegetation science.
[33] W. Tan,et al. Effect of different vegetation cover on the vertical distribution of soil organic and inorganic carbon in the Zhifanggou Watershed on the loess plateau , 2016 .
[34] Qiang Liu,et al. Spatial and Seasonal Variations of Soil Carbon and Nitrogen Content and Stock in a Tidal Salt Marsh with Tamarix chinensis, China , 2016, Wetlands.
[35] Yanpeng Cai,et al. “Fertile island” effects of Tamarix chinensis Lour. on soil N and P stoichiometry in the coastal wetland of Laizhou Bay, China , 2016, Journal of Soils and Sediments.
[36] B. Öhlander,et al. Nitrogen uptake and cycling in Phragmites australis in a lake-receiving nutrient-rich mine water: a 15N tracer study , 2015, Environmental Earth Sciences.
[37] Yanpeng Cai,et al. Leaf carbon, nitrogen and phosphorus stoichiometry of Tamarix chinensis Lour. in the Laizhou Bay coastal wetland, China , 2015 .
[38] Meng Gao,et al. Seasonal changes in soil TN and SOC in a seawall-reclaimed marsh in the Yellow River Delta, China , 2015, Journal of Coastal Conservation.
[39] N. He,et al. Forest type affects the coupled relationships of soil C and N mineralization in the temperate forests of northern China , 2014, Scientific Reports.
[40] A. Schrijver,et al. Can shrub species with higher litter quality mitigate soil acidification in pine and oak forests on poor sandy soils , 2014 .
[41] Santiago Soliveres,et al. Do changes in grazing pressure and the degree of shrub encroachment alter the effects of individual shrubs on understorey plant communities and soil function? , 2014, Functional ecology.
[42] J. Coutinho,et al. Soil C and N dynamics in a Mediterranean oak woodland with shrub encroachment , 2013, Plant and Soil.
[43] Philip Smith,et al. Widespread decreases in topsoil inorganic carbon stocks across China's grasslands during 1980s–2000s , 2012 .
[44] B. Bestelmeyer,et al. A synthetic review of feedbacks and drivers of shrub encroachment in arid grasslands , 2012 .
[45] Pete Smith,et al. Significant soil acidification across northern China's grasslands during 1980s–2000s , 2012 .
[46] Hanna J. Poffenbarger,et al. Salinity Influence on Methane Emissions from Tidal Marshes , 2011, Wetlands.
[47] J. Reynolds,et al. Impacts of shrub encroachment on ecosystem structure and functioning: towards a global synthesis. , 2011, Ecology letters.
[48] X. Wu,et al. Quantifying soil organic carbon in complex landscapes: an example of grassland undergoing encroachment of woody plants , 2011 .
[49] Y. Kuzyakov,et al. 13C fractionation at the root-microorganisms-soil interface: A review and outlook for partitioning studies , 2010 .
[50] P. Rovira,et al. Aboveground litter quality changes may drive soil organic carbon increase after shrub encroachment into mountain grasslands , 2010, Plant and Soil.
[51] R. B. Jackson,et al. Sheep Grazing Decreases Organic Carbon and Nitrogen Pools in the Patagonian Steppe: Combination of Direct and Indirect Effects , 2009, Ecosystems.
[52] Jiyuan Liu,et al. Soil inorganic carbon storage pattern in China , 2008 .
[53] J. Groninger,et al. Changes in intrasystem N cycling from N2-fixing shrub encroachment in grassland: multiple positive feedbacks , 2006 .
[54] Robert W. Howarth,et al. Nitrogen as the limiting nutrient for eutrophication in coastal marine ecosystems: Evolving views over three decades , 2006 .
[55] J. Blair,et al. Influence of shrub encroachment on aboveground net primary productivity and carbon and nitrogen pools in a mesic grassland , 2004 .
[56] R. B. Jackson,et al. Ecosystem carbon loss with woody plant invasion of grasslands , 2002, Nature.
[57] T. Coplen. Letter to the Editor: New IUPAC guidelines for the reporting of stable hydrogen, carbon, and oxygen isotope-ratio data , 1995, Journal of research of the National Institute of Standards and Technology.
[58] W. Wang,et al. Soil carbon storage and carbon sources under different Spartina alterniflora invasion periods in a salt marsh ecosystem , 2021 .
[59] Leilei Ding,et al. Shrub Encroachment Shapes Soil Nutrient Concentration, Stoichiometry and Carbon Storage in an Abandoned Subalpine Grassland , 2019, Sustainability.
[60] K. Reddy,et al. Effects of freshwater input on trace element pollution in salt marsh soils of a typical coastal estuary, China , 2015 .