A conceptual modelling framework for assessment multiple soil degradation: A case study in the region of Šumadija and Western Serbia
暂无分享,去创建一个
S. Simić | V. Perović | D. Jaramaz | V. Mrvić | Dragan Čakmak | M. Mitrovic | P. Pavlovic | M. Matic | Olivera Stajković Srbinović | D. Pavlović | M. Matić
[1] S. Piao,et al. Toward a sustainable grassland ecosystem worldwide , 2022, Innovation (Cambridge (Mass.)).
[2] L. Montanarella,et al. Soil priorities in the European Union , 2022, Geoderma Regional.
[3] Donatella Valente,et al. Analysis of soil erosion characteristics in small watershed of the loess tableland Plateau of China , 2022, Ecological Indicators.
[4] R. Kadović,et al. Impact of Tailing Outflow on Soil Quality Around the Former Stolice Mine (Serbia) , 2021, Advances in Understanding Soil Degradation.
[5] J. Lavallee,et al. Combatting global grassland degradation , 2021, Nature Reviews Earth & Environment.
[6] G. Destouni,et al. Soil degradation in the European Mediterranean region: Processes, status and consequences. , 2021, The Science of the total environment.
[7] Yu Wu,et al. Soil pH and Organic Carbon Properties Drive Soil Bacterial Communities in Surface and Deep Layers Along an Elevational Gradient , 2021, Frontiers in Microbiology.
[8] V. Gholami,et al. Machine learning applications for water-induced soil erosion modeling and mapping , 2021, Soil and Tillage Research.
[9] Samaneh Sadat Nickayin,et al. Reporting land degradation sensitivity through multiple indicators: Does scale matter? , 2021 .
[10] Xinzhi Zhou,et al. Landslide susceptibility mapping using hybrid random forest with GeoDetector and RFE for factor optimization , 2021 .
[11] V. Perović,et al. Major drivers of land degradation risk in Western Serbia: Current trends and future scenarios , 2021 .
[12] K. Jones,et al. The Resilient Recurrent Behavior of Mediterranean Semi-Arid Complex Adaptive Landscapes , 2021 .
[13] I. Sabri,et al. Agriculture Land Use Change and Demographic Change in Response to Decline Suspended Sediment in Južna Morava River Basin (Serbia) , 2021, Sustainability.
[14] Wenjie Liu,et al. Soil quality assessment of different Hevea brasiliensis plantations in tropical China. , 2021, Journal of environmental management.
[15] A. Gajić,et al. Classification of Rural Areas in Serbia: Framework and Implications for Spatial Planning , 2021, Sustainability.
[16] Chongjun Tang,et al. Effects of land use and land cover on soil erosion control in southern China: Implications from a systematic quantitative review. , 2021, Journal of environmental management.
[17] I. Săvulescu,et al. Arable lands under the pressure of multiple land degradation processes. A global perspective. , 2021, Environmental research.
[18] L. Montanarella,et al. The relevance of sustainable soil management within the European Green Deal , 2021 .
[19] M. Amin,et al. Integration of social, economic and environmental factors in GIS for land degradation vulnerability assessment in the Pir Panjal Himalaya, Kashmir, India , 2020 .
[20] P. Sandeep,et al. Modeling and Assessment of Land Degradation Vulnerability in Semi-arid Ecosystem of Southern India Using Temporal Satellite Data, AHP and GIS , 2020, Environmental Modeling & Assessment.
[21] Ju-ying Jiao,et al. The magnitude of soil erosion on hillslopes with different land use patterns under an extreme rainstorm on the Northern Loess Plateau, China , 2020 .
[22] André Carnieletto Dotto,et al. Soil degradation index developed by multitemporal remote sensing images, climate variables, terrain and soil atributes. , 2020, Journal of environmental management.
[23] Cóilín Minto,et al. Long-term trends in herring growth primarily linked to temperature by gradient boosting regression trees , 2020, Ecol. Informatics.
[24] L. Montanarella,et al. Land use and climate change impacts on global soil erosion by water (2015-2070) , 2020, Proceedings of the National Academy of Sciences.
[25] Slavoljub Dragićević,et al. Changes in Soil Erosion Intensity Caused by Land Use and Demographic Changes in the Jablanica River Basin, Serbia , 2020, Agriculture.
[26] H. Matinfar,et al. Integrated fuzzy, AHP and GIS techniques for land suitability assessment in semi-arid regions for wheat and maize farming , 2020, Ecological Indicators.
[27] Panos Panagos,et al. Using the USLE: Chances, challenges and limitations of soil erosion modelling , 2019, International Soil and Water Conservation Research.
[28] V. Perović,et al. Pollution indices and sources appointment of heavy metal pollution of agricultural soils near the thermal power plant , 2019, Environmental Geochemistry and Health.
[29] V. Perović,et al. Evaluation of potentially toxic element contamination in the riparian zone of the River Sava , 2019, CATENA.
[30] R. Benavidez,et al. A review of the (Revised) Universal Soil Loss Equation ((R)USLE): with a view to increasing its global applicability and improving soil loss estimates , 2018, Hydrology and Earth System Sciences.
[31] V. Perović,et al. Impact of a severe flood on large-scale contamination of arable soils by potentially toxic elements (Serbia) , 2018, Environmental Geochemistry and Health.
[32] Luuk Fleskens,et al. Soil quality – A critical review , 2018 .
[33] T. Zaleski,et al. Pollution indices as useful tools for the comprehensive evaluation of the degree of soil contamination–A review , 2018, Environmental Geochemistry and Health.
[34] P. Podwojewski,et al. Status and Trends of Land Degradation and Restoration and Associated Changes in Biodiversity and Ecosystem Functions , 2018 .
[35] V. Perović,et al. Contamination, risk, and source apportionment of potentially toxic microelements in river sediments and soil after extreme flooding in the Kolubara River catchment in Western Serbia , 2018, Journal of Soils and Sediments.
[36] K. Oost,et al. An assessment of the global impact of 21st century land use change on soil erosion , 2017, Nature Communications.
[37] K. Nkongolo,et al. Microbial Response to Soil Liming of Damaged Ecosystems Revealed by Pyrosequencing and Phospholipid Fatty Acid Analyses , 2017, PloS one.
[38] B. Karadžić,et al. The Soils of Serbia , 2017 .
[39] Panos Panagos,et al. Soil Conservation in Europe: Wish or Reality? , 2016 .
[40] Jacob P. Hochard,et al. Does Land Degradation Increase Poverty in Developing Countries? , 2016, PloS one.
[41] Panos Panagos,et al. The new assessment of soil loss by water erosion in Europe , 2015 .
[42] Antonio Conceição Paranhos Filho,et al. Aplicação da Equação Universal de Perda do Solo (USLE) em Softwares Livres e Gratuitos , 2015 .
[43] Holly K. Gibbs,et al. Mapping the world's degraded lands , 2015 .
[44] I. Blinkov. The Balkans - the most erosive part of Europe? , 2015 .
[45] Elias Symeonakis,et al. Remote Sensing Assessing Land Degradation and Desertification Using Vegetation Index Data: Current Frameworks and Future Directions , 2022 .
[46] J. Fisher,et al. Modeling the carbon cost of plant nitrogen acquisition: Mycorrhizal trade‐offs and multipath resistance uptake improve predictions of retranslocation , 2014 .
[47] M. Stoiljković,et al. Dynamics of soil chemistry in different serpentine habitats from Serbia , 2014 .
[48] B. Abolmasov,et al. Torrential floods and town and country planning in Serbia , 2012 .
[49] M. Danilović,et al. Organic carbon stock in some forest soils in Serbia. , 2012 .
[50] V. Perović,et al. Pedogeochemical mapping and background limit of trace elements in soils of Branicevo Province (Serbi , 2011 .
[51] Jürgen Vogt,et al. Monitoring and assessment of land degradation and desertification: Towards new conceptual and integrated approaches , 2011 .
[52] M. Belić,et al. The Soils of Serbia and Their Degradation , 2011 .
[53] T. Nganje,et al. Heavy Metal Contamination of Surface Soil in Relationship to Land Use Patterns: A Case Study of Benue State, Nigeria , 2010 .
[54] Xiaoying Zheng,et al. Geographical Detectors‐Based Health Risk Assessment and its Application in the Neural Tube Defects Study of the Heshun Region, China , 2010, Int. J. Geogr. Inf. Sci..
[55] Rakesh Kumar Sharma,et al. Ligninolytic Fungal Laccases and Their Biotechnological Applications , 2010, Applied biochemistry and biotechnology.
[56] J. L. Darilek,et al. Evaluating soil quality indices in an agricultural region of Jiangsu Province, China. , 2009 .
[57] M. Schaepman,et al. Proxy global assessment of land degradation , 2008 .
[58] L. Salvati,et al. Territorial disparities, natural resource distribution, and land degradation: a case study in southern Europe , 2007 .
[59] David Pimentel,et al. Soil Erosion: A Food and Environmental Threat , 2006 .
[60] R. Lal,et al. Soil carbon sequestration in sub‐Saharan Africa: a review , 2005 .
[61] M. Schuman. Serbia and Montenegro , 2004 .
[62] Robert J. A. Jones,et al. Indicators for pan-European assessment and monitoring of soil erosion by water , 2004 .
[63] J. Scullion,et al. Effects of metal (Cd, Cu, Ni, Pb or Zn) enrichment of sewage-sludge on soil micro-organisms and their activities , 2002 .
[64] J. Friedman. Greedy function approximation: A gradient boosting machine. , 2001 .
[65] Nada Dragović,et al. Erosion and sedimentation problems in Serbia , 1999 .
[66] C. Pankhurst,et al. Evaluation of soil biological properties as potential bioindicators of soil health , 1995 .
[67] L. Håkanson. An ecological risk index for aquatic pollution control.a sedimentological approach , 1980 .
[68] G. Jenks. The Data Model Concept in Statistical Mapping , 1967 .