Search results for " DEGRADATION"

showing 10 items of 510 documents

Straw uses trade-off only after soil organic carbon steady-state

2018

Soil organic matter (SOM) is the key for a healthy soil and a relevant property to achieve the sustainability on soil management. However, soils are still net exporters of organic matter. One example is the use of wheat straw residue for industrial and energy applications, which has gained attention in the last years. The offfarm use of this abundant and low cost resource should follow sustainability criteria to avoid soil degradation and SOM losses. Straw residue incorporation is recognized as a recommended management practice to control erosion and mitigate CO2 emissions by increasing SOM. The goal of this work was: i) to evaluate the steady-state carbon (C) level in relation to C input a…

regional straw assessement.Sòls ErosióAgricultural engineering010501 environmental scienceslcsh:Plant culture01 natural sciencesSoil managementlcsh:Agriculturesoil carbon sequestrationSoil retrogression and degradationOrganic matterlcsh:SB1-1110Cropping system0105 earth and related environmental scienceschemistry.chemical_classificationSoil healthSoil organic matterMediterranean durum wheat-based systemlcsh:S04 agricultural and veterinary sciencesSoil carbonSettore AGR/02 - Agronomia E Coltivazioni ErbaceechemistryCarbon input maintainSoil water040103 agronomy & agriculture0401 agriculture forestry and fisheriesEnvironmental scienceRegional straw assessementAgronomy and Crop Science
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Proposing a Novel Predictive Technique for Gully Erosion Susceptibility Mapping in Arid and Semi-arid Regions (Iran)

2019

© 2019 by the authors. Gully erosion is considered to be one of the main causes of land degradation in arid and semi-arid territories around the world. In this research, gully erosion susceptibility mapping was carried out in Semnan province (Iran) as a case study in which we tested the efficiency of the index of entropy (IoE), the Vlse Kriterijumska Optimizacija I Kompromisno Resenje (VIKOR) method, and their combination. Remote sensing and geographic information system (GIS) were used to reduce the time and costs needed for rapid assessment of gully erosion. Firstly, a gully erosion inventory map (GEIM) with 206 gully locations was obtained from various sources and randomly divided into t…

remote sensingsustainable developmentgully erosionland degradationstatistical modelland managementlcsh:Qlcsh:ScienceRemote Sensing
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Numerical simulation of bed degradation and bed armouring

1999

river bed erosion degradation
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Vegetation as biomaterial in Environmental Engineering

2017

It is particularly important to focus attention on environmental technology and related procedures and materials. Bioengineering techniques and materials are needed to reduce the human impact on the environment. As an example, plants and plant materials can be used for erosion control and slope protection to reduce risk events; vegetation used for green roofs and walls is also an important bioengineering measure to protect buildings and adsorbing rainwater, containing air pollution and greenhouse gas emissions, and extending roof life. The use of plants for river bank protection and erosion control has a long tradition in Europe. Literature shows that climate is one of controlling factor of…

river degradation
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Evolution des paysages Sahélines au cours des six dernières décennies dans la région de Niamey : de la disparition de la brousse tigrée à l'encroutem…

2010

In the Sahel, the rapid increase of the population during the last decades and the climate variation lead to an important environmental degradation. This work aims to measure the impacts of the human pressure on ecosystem during the six last decades. A diachronic cartography of a 100 km² area close to Niamey was done with aerial photographs (1950 and 1975) and GPS measurements (2009). Results showed that the tiger bush vegetation was completely cleared between 1950 and 2009 while the fallow decreases from 7 % to 1 %. In the sandy valley, the increase of cultivated fields from 20,7 % (1950) to 69,4 % (1975) favoured wind and water erosions which allowed surface soil crusting. Between 1975 an…

région de Niameyhuman pressureaerial photographsphotos aériennesSahel[SDU.STU] Sciences of the Universe [physics]/Earth Sciencessoil crustingsoils degradation[SDU.STU]Sciences of the Universe [physics]/Earth Sciencesdégradation des solspression anthropiqueencroûtement SahelNiame
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Social Memory and the Resilience of Communities Affected by Land Degradation

2017

social memorySocial memorybusiness.industryland degradationEnvironmental resource management0211 other engineering and technologiesSoil Science021107 urban & regional planningSoil resilience02 engineering and technology010501 environmental sciencesDevelopment01 natural sciencesGeographyLEDDRA ProjectLand degradationEnvironmental ChemistryResilience (network)businessresiliencesocial memory; land degradation; resilience; LEDDRA Project0105 earth and related environmental sciencesGeneral Environmental ScienceLand Degradation & Development
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Influence of Calcium Carbonate Nanoparticles on the Soil Burial Degradation of Polybutyleneadipate-Co-Butylenetherephthalate Films.

2022

A polybutyleneadipate-co-butylenetherephthalate (PBAT) sample, commercially known as Ecoflex®, was processed via melt extrusion with CaCO3 nanoparticles coated with a hydrophobic coating. Blown films of PBAT and two composites with nanofiller (2% and 5%wt) were prepared and degradation tests in soil at 30 °C up to 180 days were carried out with weight loss measurements. Furthermore, biodegradation test according to ISO 14851 was carried out at 30 °C. The effect of CaCO3 on soil burial degradation was assessed by surface wettability and SEM. ATR-FTIR and XPS analyses highlighted chemical modifications induced by soil degradation. CaCO3 nanoparticles decreased surface wettability …

soil burial testGeneral Chemical Engineeringpolymer degradationEcoflex®Settore CHIM/05 - Scienza E Tecnologia Dei Materiali Polimericibiodegradable polymers; soil burial test; Ecoflex<sup>®</sup>; poly(butyleneadipate-co-butyleneterephtalate); calcium carbonate; nanoparticles; polymer degradationSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiSettore CHIM/03 - Chimica Generale E Inorganicabiodegradable polymersGeneral Materials Sciencecalcium carbonatenanoparticlespoly(butyleneadipate-co-butyleneterephtalate)Settore CHIM/02 - Chimica FisicaNanomaterials (Basel, Switzerland)
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Soils, environmental awareness and ecological footprint in the European countries

2008

soil degradationSettore AGR/14 - Pedologiadesertificationsoil science
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An integrated geomorphologic-economic approach for valuing direct damage in agricultural areas caused by erosion process in a mediterranean environme…

2010

soil erosion GIS land degradation landslide land use damage index erosion features erosion scenario
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Effective Practices in Mitigating Soil Erosion from Fields

2017

Soil erosion by water is a natural process that cannot be avoided. Soil erosion depends on many factors, and a distinction should be made between humanly unchangeable (e.g., rainfall) and modifiable (e.g., length of the field) soil erosion factors. Soil erosion has both on-site and off-site effects. Soil conservation tries to combine modifiable factors so as to maintain erosion in an area of interest to an acceptable level. Strategies to control soil erosion have to be adapted to the desired land use. Knowledge of soil loss tolerance, T, i.e., the maximum admissible erosion from a given field, allows technicians or farmers to establish whether soil conservation practices need to be applied …

soil erosion soil loss tolerance on-site and off-site erosion impacts soil conservation burned areas erosion modeling for soil conservationSoil biodiversityAgroforestrycomplex mixturesSoil managementNo-till farmingEnvironmental protectionSoil functionsSoil retrogression and degradationEnvironmental scienceSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliDryland salinitySoil conservationSurface runoff
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