The use of trophic status indicator as a tool to assess the potential of birch-afforested soils to provide ecosystem services
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A. Chojnacka | B. Kruczkowska | J. Jonczak | Sandra Słowińska | Edyta Regulska | I. Olejniczak | U. Jankiewicz | M. Kondras | Lidia Oktaba | J. Oktaba | Edyta Pawłowicz
[1] You Jin Kim,et al. Ecosystem services-based soil quality index tailored to the metropolitan environment for soil assessment and management. , 2022, The Science of the total environment.
[2] P. Sewerniak,et al. Selected problems of sustainable management of rusty soils in forestry , 2021, Soil Science Annual.
[3] M. Orzechowski,et al. Diagnosis of the trophism of rusty soils on the basis of soil trophic index in selected coniferous stands in the Rupin forestry in the Kurpie Plain, NE Poland , 2021, Soil Science Annual.
[4] J. Álvarez‐Martínez,et al. Large-scale afforestation for ecosystem service provisioning: learning from the past to improve the future , 2021, Landscape Ecology.
[5] C. Walter,et al. Assessment of six soil ecosystem services by coupling simulation modelling and field measurement of soil properties , 2021 .
[6] M. Sławska,et al. Does the enrichment of post-arable soil with organic matter stimulate forest ecosystem restoration—A view from the perspective of three decades after the afforestation of farmland , 2020 .
[7] T. Raab,et al. The influence of birch trees (Betula spp.) on soil environment – A review , 2020 .
[8] A. Hartemink,et al. Soil and environmental issues in sandy soils , 2020 .
[9] C. Gascuel-Odoux,et al. A Framework to Consider Soil Ecosystem Services in Territorial Planning , 2020, Frontiers in Environmental Science.
[10] J. Pranagal,et al. Changes in the stocks of soil organic carbon, total nitrogen and phosphorus following afforestation of post-arable soils: A chronosequence study , 2019, Forest Ecology and Management.
[11] S. Małek,et al. Soil Organic Carbon Accumulation in Post-Agricultural Soils under the Influence Birch Stands , 2019, Sustainability.
[12] Adrienne Grêt-Regamey,et al. Soil quality indicators – From soil functions to ecosystem services , 2018, Ecological Indicators.
[13] Roy Haines-Young,et al. Revision of the Common International Classification for Ecosystem Services (CICES V5.1): A Policy Brief , 2018, One Ecosystem.
[14] J. Remeš,et al. Effect of Agricultural Lands Afforestation and Tree Species Composition on the Soil Reaction, Total Organic Carbon and Nitrogen Content in the Uppermost Mineral Soil Profile , 2018 .
[15] Adrienne Grêt-Regamey,et al. Soil function assessment: review of methods for quantifying the contributions of soils to ecosystem services. , 2017 .
[16] P. Templer,et al. Differential sensitivity to climate change of C and N cycling processes across soil horizons in a northern hardwood forest , 2017 .
[17] Lei Deng,et al. Afforestation Drives Soil Carbon and Nitrogen Changes in China , 2017 .
[18] Philippe C. Baveye,et al. Soil “Ecosystem” Services and Natural Capital: Critical Appraisal of Research on Uncertain Ground , 2016, Front. Environ. Sci..
[19] Hua Chen,et al. Changes of soil C stocks and stability after 70-year afforestation in the Northeast USA , 2016, Plant and Soil.
[20] X. Cheng,et al. Soil microbial community and its interaction with soil carbon and nitrogen dynamics following afforestation in central China. , 2016, The Science of the total environment.
[21] Alfred E. Hartemink,et al. Linking soils to ecosystem services — A global review , 2016 .
[22] R. Lal,et al. Comparison of Soil Quality Index Using Three Methods , 2014, PloS one.
[23] Murray Patterson,et al. A soil change-based methodology for the quantification and valuation of ecosystem services from agro-ecosystems: A case study of pastoral agriculture in New Zealand , 2014 .
[24] L. Ledda,et al. Influence of land use on soil quality and stratification ratios under agro-silvo-pastoral Mediterranean management systems , 2014 .
[25] Brent Clothier,et al. Advances in Soil Ecosystem Services: Concepts, Models, and Applications for Earth System Life Support , 2013 .
[26] Xiaorong Wei,et al. Accumulation of soil organic carbon in aggregates after afforestation on abandoned farmland , 2013, Biology and Fertility of Soils.
[27] A. Tullus,et al. Understorey vegetation in young naturally regenerated and planted birch (Betula spp.) stands on abandoned agricultural land , 2013, New Forests.
[28] B. Emmett,et al. Soil natural capital and ecosystem service delivery in a world of global soil change , 2012 .
[29] F. Müller,et al. Mapping ecosystem service supply, demand and budgets , 2012 .
[30] G. Kraft,et al. Irrigation Effects in the Northern Lake States: Wisconsin Central Sands Revisited , 2012, Ground water.
[31] M. Martina,et al. Potential and limitations of using soil mapping information to understand landscape hydrology , 2011 .
[32] J. Liski,et al. Effects of afforestation and deforestation on boreal soil carbon stocks - Comparison of measured C stocks with Yasso07 model results , 2011 .
[33] Andreas Gensior,et al. Temporal dynamics of soil organic carbon after land‐use change in the temperate zone – carbon response functions as a model approach , 2011 .
[34] J. M. Mirás-Avalos,et al. Determination of the quality index of a Paleudult under sunflower culture and different management systems , 2011 .
[35] M. Patterson,et al. A framework for classifying and quantifying the natural capital and ecosystem services of soils , 2010 .
[36] E. Sharma,et al. Impact of stand age on soil C, N and P dynamics in a 40-year chronosequence of alder-cardamom agroforestry stands of the Sikkim Himalaya , 2009 .
[37] P. Groffman,et al. Climate Variation and Soil Carbon and Nitrogen Cycling Processes in a Northern Hardwood Forest , 2009, Ecosystems.
[38] A. Harasimiuk. Soils and Chemical Cycling of Elements After Land Use Changes (Case Studies) , 2008 .
[39] D. Richardson,et al. Mapping ecosystem services for planning and management , 2008 .
[40] K. Ritz,et al. Soil health in agricultural systems , 2008, Philosophical Transactions of the Royal Society B: Biological Sciences.
[41] M. Olszewska,et al. The effect of afforestation with Scots pine (Pinus silvestris L.) of sandy post-arable soils on their selected properties. II. Reaction, carbon, nitrogen and phosphorus , 2008, Plant and Soil.
[42] M. Olszewska,et al. The effect of afforestation with Scots pine (Pinus silvestris L.) of sandy post-arable soils on their selected properties. I. Physical and sorptive properties , 2008, Plant and Soil.
[43] J. Nicolau,et al. Abandonment of agricultural land: an overview of drivers and consequences , 2007 .
[44] G. Stamou,et al. Soil quality variables in organically and conventionally cultivated field sites , 2006 .
[45] W. Blum. Functions of Soil for Society and the Environment , 2005 .
[46] A. Wall,et al. Soil fertility of afforested arable land compared to continuously , 2005, Plant and Soil.
[47] J. Burger,et al. DEVELOPMENT OF A FOREST SITE QUALITY CLASSIFICATION MODEL FOR MINE SOILS IN THE APPALACHIAN COALFIELD REGION 1 , 2005 .
[48] Douglas L. Karlen,et al. The Soil Management Assessment Framework , 2004 .
[49] Douglas L. Karlen,et al. Soil quality: why and how? , 2003 .
[50] L. Vesterdal,et al. Change in soil organic carbon following afforestation of former arable land , 2002 .
[51] Bojie Fu,et al. Soil nutrients in relation to land use and landscape position in the semi-arid small catchment on the loess plateau in China , 2001 .
[52] Ariel E. Lugo,et al. The Potential for Carbon Sequestration Through Reforestation of Abandoned Tropical Agricultural and Pasture Lands , 2000 .
[53] F. Berendse,et al. Carbon and nitrogen in soil and vegetation at sites differing in successional age , 2000, Plant Ecology.
[54] Ray R. Weil,et al. Land use effects on soil quality in a tropical forest ecosystem of Bangladesh. , 2000 .
[55] K. Rehfuess. Indikatoren der Fruchtbarkeit von Waldböden — zeitliche Veränderungen und menschlicher Einfluß , 1999, Forstwissenschaftliches Centralblatt vereinigt mit Tharandter forstliches Jahrbuch.
[56] James A. Burger,et al. Using soil quality indicators to assess forest stand management , 1999 .
[57] S. Trumbore,et al. Rapid accumulation and turnover of soil carbon in a re-establishing forest , 1999, Nature.
[58] N. Scott,et al. Land-use change: effects on soil carbon, nitrogen and phosphorus pools and fluxes in three adjacent ecosystems , 1999 .
[59] W. E. Larson,et al. The Dynamics of Soil Quality as a Measure of Sustainable Management , 1994 .
[60] M. Zasada,et al. Zastosowanie ITGL w ocenie gleb porolnych z naturalnym odnowieniem brzozy , 2018 .
[61] Costanza Calzolari,et al. A methodological framework to assess the multiple contributions of soils to ecosystem services delivery at regional scale , 2016 .
[62] A. McBratney,et al. The dimensions of soil security , 2014 .
[63] R. Skaggs,et al. Determination of field-effective soil properties in the tidewater region of North Carolina , 2013 .
[64] J. Jonczak. SOIL ORGANIC MATTER PROPERTIES IN STAGNIC LUVISOLS UNDER DIFFERENT LAND USE TYPES , 2013 .
[65] P. Gruba,et al. Wpływ drzewostanu na siedliskowy indeks glebowy , 2011 .
[66] J. Lasota,et al. Zastosowanie siedliskowego indeksu glebowego (SIG) w projektowaniu składu gatunkowego odnawianych lasów , 2011 .
[67] S. Brożek,et al. Odmiany troficzne podtypów gleb jako jednostki niższego rzędu w systematyce gleb w lasach , 2011 .
[68] J. Lasota,et al. Zastosowanie siedliskowego indeksu glebowego (SIG) w diagnozie typów siedlisk leśnych , 2011 .
[69] Katedra Gleboznawstwa. LICZBOWY INDEKS TROFICZNYCH ODMIAN PODTYPÓW GLEB BIELICOWYCH I RDZAWYCH , 2008 .
[70] S. Brożek. Liczbowa wycena 'jakosci' gleb - narzedzie w diagnozowaniu siedlisk lesnych , 2007 .
[71] A. Bruand,et al. Physical properties of tropical sandy soils : a large range of behaviours , 2005 .
[72] C. Gardi,et al. Microarthropod communities as a tool to assess soil quality and biodiversity: a new approach in Italy , 2005 .
[73] S. Brożek. Indeks trofizmu gleb lesnych , 2001 .
[74] Robert F. Powers,et al. Assessing Soil Quality: Practicable Standards for Sustainable Forest Productivity in the United States , 1998 .
[75] M. Mausbach,et al. Soil Quality: A Concept, Definition, and Framework for Evaluation (A Guest Editorial) , 1997 .
[76] Timothy B. Parkin,et al. Defining and Assessing Soil Quality , 1994 .
[77] D. Karlen,et al. A framework for evaluating physical and chemical indicators of soil quality , 1994 .
[78] W. E. Larson,et al. Conservation and enhancement of soil quality , 1991 .