Search results for "plastic film"

showing 4 items of 14 documents

Effects of Plastic Mulching and Basal Nitrogen Application Depth on Nitrogen Use Efficiency and Yield in Maize

2018

The demand for increased grain production to support population and consumption growth has led to increased interest in field management approaches that incorporate plastic mulching and fertilization management. The purpose of this study was to investigate the effects of plastic mulching and basal nitrogen (N)-fertilizer application depth on N balance estimations, N use efficiency (NUE) and maize yield. The experiment was conducted in 2014 and 2015 with six treatments: no N fertilizer and no mulching (CK), traditional broadcast N fertilizer with mulching (T0), basal N-fertilizer application at a depth of 6 cm with no mulching (T1), basal N-fertilizer application at a depth of 6 cm with plas…

Yield (engineering)PopulationPlastic filmchemistry.chemical_elementPlant Science010501 environmental sciencesengineering.materiallcsh:Plant culture01 natural sciencesroot zoneHuman fertilizationAnimal sciencelcsh:SB1-1110education0105 earth and related environmental sciencesMathematicsOriginal Researcheducation.field_of_studynitrogen losstopdressing nitrogen fertilizer04 agricultural and veterinary sciencesNitrogennitrogen uptakechemistry040103 agronomy & agricultureengineeringtraditional broadcast nitrogen fertilizer0401 agriculture forestry and fisheriesDNS root zoneFertilizerMulchFrontiers in Plant Science
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Closed-loop recycling. A case study of films for greenhouses

2010

Abstract The degradation undergone by plastic films used for greenhouse coverage is the main cause of the worsening of the processability, of the mechanical properties and of the durability of secondary materials obtained by their recycling. This means that this secondary material cannot be processed to produce films for the same applications (closed-loop recycling). In this work different strategies are proposed to improve the processability, some mechanical properties and the resistance to photo-oxidation of these secondary materials. In particular, homopolymer blends or multilayer films where the secondary material is used in combination with virgin polymer give the best results.

chemistry.chemical_classificationMaterials sciencePolymers and PlasticsPlastic filmGreenhousePolymerCondensed Matter PhysicsDurabilitychemistryMechanics of MaterialsMaterials ChemistryDegradation (geology)ExtrusionPolymer blendComposite materialClosed loopPolymer Degradation and Stability
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Soil solarization with biodegradabile materials and its impact on soil microbial communities.

2008

Soil solarization (SS) seems one of the most promising techniques to control soilborne pathogens, but an important limitation to the diffusion of this technique is due to the drawback regarding the disposal of the used plastic materials. A possible solution to this problem is the use of biodegradable plastics. The aim of this study was compare the impact of SS with biodegradable materials with SS with plastic film and others pest management techniques (i.e. organic matter amendment, calcium cyanamide and Dazomet fungicide application) on crop productivity, soilborne disease incidence, weed suppression, and soil chemical (total N, ammonium, nitrate, available phosphorus, organic matter, hydr…

chemistry.chemical_classificationPCR-DGGEeducation.field_of_studyPopulationPlastic filmfood and beveragesSoil ScienceSoil solarizationSoil classificationSoil typeMicrobiologyFluorescent PseudomonaSclerotinia minor.chemistry.chemical_compoundBiodegradable plastic materialchemistryAgronomyDazometBotanySoil waterOrganic matterOrganic matterFusarium oxysporum f. sp. lycopersicieducationFDA
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The early plastisphere of biodegradable and non-biodegradable plastic films in marine environment

2019

Introduction Plastic items are the most common form of marine debris and plastic accumulation in marine ecosystems is a serious environmental issue. One possible solution to reduce the amount of synthetic polymers released in the environment is to substitute them with bio-based polymers. When released in marine environments, plastics are readily colonized by biofilm-forming microorganisms, the so called “plastisphere community”, which may include pathogenic, invasive and plastic-degrading species; the composition and influence of the plastisphere on the fate of plastic is largely unknown. The aim of this study is to investigate the early biofilm formation and the structure and diversity of …

marine environmentplastic filmSettore BIO/19 - Microbiologia Generaleplastisphere
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