Please use this identifier to cite or link to this item:https://hdl.handle.net/20.500.12259/86983
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dc.contributor.authorKerpauskas, Paulius-
dc.contributor.authorŪksas, Tomas-
dc.coverage.spatialLT-
dc.date.accessioned2019-05-17T21:30:34Z-
dc.date.available2019-05-17T21:30:34Z-
dc.date.issued2014-
dc.identifier.issn18221823-
dc.identifier.otherVDU02-000048532-
dc.identifier.urihttps://hdl.handle.net/20.500.12259/86983-
dc.description.abstractVisą pasaulio klimatą formuoja ir kuria augalai. Augalai vykdo svarbius apykaitos procesus su juos supančia aplinka. Jie fotosintezės procese ne tik sukuria biomasę, sunaudoja šiuolaikinio žmogaus technologinius teršalus, bet ir mažina šiltnamio efektą sukeliančių dujų (CO2) koncentraciją ore. Augalų energinė apykaita su aplinka yra neišvengiama ir yra svarbi gamtos kuriamoji–atstatomoji sistema. Nagrinėjant augalo energinės apykaitos procesus skatinančius aplinkos anglies dioksido suvartojimą, tuo pačiu ir biomasės didinimą ir aplinkos taršos mažinimą. Nustatyta, kad saulėtu paros metu, augalo lape dirba šiluminis žiotelinis variklis (šiluminio variklio biologinis prototipas), kuris šilumos sąskaita sukuria mechaninę energiją. Augalo lape sukurta mechaninė energija panaudojama asimiliacijos proceso intensyvinimui, aktyvinant energinę ir dujinę lapo apykaitą su aplinkalt
dc.description.abstractThe entire world’s climate is formed by plants. Plants carry out significant metabolic processes with surrounding environment. During the process of photosynthesis they generate biomass, exploit modern technology human emissions, as well as reduce the concentration of greenhouse gas (CO2) in the air. Plant energy exchange with the environment is inevitable and important part of creative–replacement system within the nature. The analysis of plant energy exchange processes promoting the consumption of carbon dioxide consumption and increasing the biomass, hence reducing the pollution of environment has been carried out. Studies have indicated that during the daytime the thermal stomata engine (the biological prototype of the thermal engine) operates in the plant leaf generating its mechanic energy at the expense of heat. The mechanic energy generated in the plant leaf is applied to intensify the process of assimilation, activating the exchange of energy and gas of the leaf with its environmenten
dc.description.sponsorshipVytauto Didžiojo universitetas-
dc.description.sponsorshipŽemės ūkio akademija-
dc.format.extentp. 72-74-
dc.language.isolt-
dc.relation.ispartofŽmogaus ir gamtos sauga 2014 : 20 tarptautinės mokslinės-praktinės konferencijos medžiaga = Human and nature safety 2014 : proceedings of the 20th international scientific-practice conference / Aleksandro Stulginskio universitetas, Vytauto Didžiojo universitetas, Lietuvos mokslų akademija. Akademija, 2014, D. 1-
dc.subjectSaulės energijos transformacijalt
dc.subjectTerminiai procesai augalo lapelt
dc.subjectSolar energy transformationen
dc.subjectThermal processes in the plant leafen
dc.subject.classificationStraipsnis recenzuojamoje Lietuvos tarptautinės konferencijos medžiagoje / Article in peer-reviewed Lithuanian international conference proceedings (P1e)-
dc.subject.otherAplinkos inžinerija / Environmental engineering (T004)-
dc.titleSaulės energijos transformavimas augalo lapo žiotelėse kintant lapo temperatūrailt
dc.title.alternativeSolar energy conversion in leaf stomata of plant under variation of leaf temperatureen
dc.typeresearch article-
dcterms.bibliographicCitation11-
dc.date.updated2014-05-14T14:51Z-
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local.typeP-
item.fulltextNo Fulltext-
item.grantfulltextnone-
crisitem.author.deptŽemės ūkio akademija-
crisitem.author.deptŽemės ūkio akademija-
Appears in Collections:Universiteto mokslo publikacijos / University Research Publications
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