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Academic literature on the topic 'Insekticider'
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Journal articles on the topic "Insekticider"
Trajčevski, Tanas. "Aceria kuko (Kishida, 1927), (Acari: Eriophyidae) nova vrsta štetnika u fauni Makedonije i uspješnost mjera kemijske zaštite." Glasnik zaštite bilja 41, no. 3 (2018): 84–89. http://dx.doi.org/10.31727/gzb.41.3.10.
Full textĐokić, Maja, Marija Sedak, and Nina Bilandžić. "Insekticid fipronil u proizvodima od peradi u Europskoj uniji." Veterinarska stanica 51, no. 2 (March 27, 2020): 165–74. http://dx.doi.org/10.46419/vs.51.2.7.
Full textGriboedova, O. G., А. S. Zeynalov, and G. E. Larina. "ECOTOXICOLOGICAL MONITORING OF INSEKTICIDES RESIDUES IN PEAR FRUITS." Pomiculture and small fruits culture in Russia 58, no. 1 (October 8, 2019): 122–30. http://dx.doi.org/10.31676/2073-4948-2019-58-122-130.
Full textSchrader, Gerhard. "Zur Kenntnis neuer Insekticide auf Grundlage organischer Phosphorverbindungen." Zeitschrift für Angewandte Entomologie 33, no. 1-2 (August 26, 2009): 328–40. http://dx.doi.org/10.1111/j.1439-0418.1952.tb00673.x.
Full textSedlar, Aleksandar, Vladimir Višacki, Marjan Petrović, Rajko Bugarin, Ondrej Ponjičan, and Jan Turan. "Vertical distribution of insecticides in the protection of the apple summary." Savremena poljoprivredna tehnika 44, no. 4 (2018): 123–28. http://dx.doi.org/10.5937/savpoljteh1803123s.
Full textPajač Živković, Ivana, Valentina Antolković, Bastian Göldel, and Darija Lemić. "Učinkovitost smanjenih doza piretrina u suzbijanju mrežaste stjenice platane." Glasnik zaštite bilja 43, no. 4 (July 24, 2020): 64–70. http://dx.doi.org/10.31727/gzb.43.4.8.
Full textPavliček, Damir, Nina Bilandžić, Ivana Tlak Gajger, and Marija Denžić Lugomer. "Uporaba neonikotinoida i praćenje njihovih rezidua u medonosnim pčelama i pčelinjim proizvodima." Veterinarska stanica 52, no. 5 (June 25, 2021): 565–77. http://dx.doi.org/10.46419/vs.52.5.12.
Full textFarić, Nikolina, Ankica Sarajlić, Karolina Vrandečić, and Ivana Majić. "Potencijal entomopatogenih gljiva Metarhizium spp. u suzbijanju štetnih kukaca." Glasnik zaštite bilja 41, no. 4 (July 27, 2018): 22–30. http://dx.doi.org/10.31727/gzb.41.4.7.
Full textPalfi, Marina, Karolina Vrandečić, Vesna Popijač, and Jasenka Ćosić. "Utjecaj eteričnih ulja na fitopatogene gljive." Poljoprivreda 25, no. 1 (June 10, 2019): 32–40. http://dx.doi.org/10.18047/poljo.25.1.5.
Full textGrubišić, Viktorija, and Darko Periner. "Prikaz oplemenjivačkih programa na vinovoj lozi (Vitis vinifera L.) u Europi." Glasnik zaštite bilja 43, no. 6 (December 14, 2020): 122–37. http://dx.doi.org/10.31727/gzb.43.6.13.
Full textDissertations / Theses on the topic "Insekticider"
Sabel, Emma. "Miljö- och hälsoeffekter av insekticider i svensk äppelodling : Kan det finnas fördelar med att övergå till feromoner?" Thesis, Linnéuniversitetet, Institutionen för biologi och miljö (BOM), 2015. http://urn.kb.se/resolve?urn=urn:nbn:se:lnu:diva-43321.
Full textIt is widely known that the use of chemical pesticides is associated with problems and risks to human health and the environment at a local and global level. The Swedish environmental monitoring shows that pesticides are found in watercourses as well as groundwater despite stricter laws and actions to achieve the national environmental quality goal “Giftfri Miljö” (Non-toxic Environment). Samples of fruit and vegetables conducted by the Swedish Food Administration (Livsmedelsverket) shows that residues are found in approximately half of the samples, particularly in fruit and vegetables imported from abroad. On this basis, the aim of this study was to investigate the environmental and health impacts caused by the use of insecticides in Swedish apple orchards and if there may be any advantages to pass over to pheromones as an alternative method. The result points out eight insecticides approved against insect pests in Swedish orchards in which the active substances are acetamiprid, betacyfluthrin, fenpyroximate, flonicamid, indoxacarb, paraffin oil, pyrethrins and thiacloprid. Of these active substances was a total amount in the order of> 0.1-6 tons used in 2012 in the entire horticulture. Existing statistical evidence is not sufficiently detailed to determine the use specifically in the apple orchards. The estimated dispearsal of each active ingredient on the total area of Swedish apple orchards based on the recommended dose at one and three treatments per season is approximately 25 to 107 000 kilograms per hectare. The mode of action of six of the active substances is directed to the central nervous system while two of them act against the respiratory system. Six of the substances are acutely toxic to mammals if ingested and three are acutely toxic by inhalation. Harmful effects are primarily presented on the liver, kidney, lung and thyroid. The risks to ecosystems and the environment are greatest for pollinators and aquatic organisms which, combined with health effects should be reason enough to switch to alternative methods such as pheromone mating disruption. This study shows that the use of pheromone mating disruption reduces the risks significantly but the ability to turn from insecticide use to pheromones is limited by lack of approved alternatives. In Sweden there are only one pheromone product approved against the codling moth (Cydia pomonella). In order to enhance the ability to reduce the risks of insecticides the current EU legislation needs to facilitate and promote the registration of pheromones and other low-impact alternatives so that they can enter the market and become available for the growers.
Miranda, Jamilette. "Neurotoxicity after poisonings with organophosphate pesticides in Nicaragua /." Stockholm : Arbetslivsinstitutet, 2003. http://diss.kib.ki.se/2003/91-7045-668-2/.
Full textZdražil, Adam. "Biologické metody monitorování rezistentních populací vybraných škůdců řepky k insekticidům." Master's thesis, Česká zemědělská univerzita v Praze, 2016. http://www.nusl.cz/ntk/nusl-260007.
Full textNygren, Daniel. "Direkta effekter av insekticiden deltametrin på zooplankton och bottenfauna : en fältstudie av bieffekter av insekticidinducerad eliminering av signalkräfta på Gotland." Thesis, Gotland University, Department of Biology, 2009. http://urn.kb.se/resolve?urn=urn:nbn:se:hgo:diva-280.
Full textDirect effects of the insecticide deltamethrin on zooplankton and benthic invertebrates werestudied during an attempt to eradicate signal crayfish. In accordance with earlier studies theresults of this investigation showed that deltamethrin is highly toxic for arthropods, whileRotifera, Oligochaeta and Mollusca have a higher tolerance. This study concludes thatRotifera in treated ponds coped with the actual concentration of deltamethrin used during theeradication attempt but that they probably got a different abundance and changed compositiondue to a new situation in competition and predation. Crustacean zooplankton totallydisappeared, but approximately a month after the treatment they began to recolonise. All thetaxonomical groups of arthropods drastically decreased in abundance, with total eliminationof the most sensitive groups. The concentration of deltamethrin was not higher than that somespecies of Hydracarina and Chironomidae survived.
Zsigmond, Papp. "Voltametrijska karakterizacija i određivanje odabranih neonikotinoida primenom različitih elektroda na bazi ugljenika." Phd thesis, Univerzitet u Novom Sadu, Prirodno-matematički fakultet u Novom Sadu, 2011. https://www.cris.uns.ac.rs/record.jsf?recordId=16819&source=NDLTD&language=en.
Full textThis thesis is concerned with the voltammetric characterization and determination of five neonicotinoid insecticides (imidacloprid, thiamethoxam, clothianidin, nitenpyram and acetamiprid) at different carbon-based electrodes such as carbon paste, glassy carbon and bismuth-film modified glassycarbon. In addition to the investigations in model solutions, the developed highly sensitive differential pulse voltammetric methods were applied for the determination of neonicotinoids in real samples. Neonicotinoids were determined in river water samples, commercial formulations, and their photolytic and photocatalytic degradation was also monitored. To confirm the voltammetric results, comparative measurements were performed by liquid chromatography with diode-array detector and infrared spectrometry. Detection of some degradation products formed during the photodegradation processes was monitored using liquid chromatography with tandem mass-spectrometric detection. The surface structure of CR 5 graphite powder, tricresyl phosphate-based carbon paste electrode and glassy carbon electrode was investigated by scanning electron microscopy.
Jovana, Šućur. "Biopesticidna aktivnost ekstrakata odabranih biljnih vrsta familije Lamiaceae." Phd thesis, Univerzitet u Novom Sadu, Prirodno-matematički fakultet u Novom Sadu, 2015. https://www.cris.uns.ac.rs/record.jsf?recordId=95670&source=NDLTD&language=en.
Full textThe chemical composition of essential oils and aqueous extracts of three types of self-seeding plants of the Lamiaceae family are examined. Apart from the composition, the effects of aqueous extracts on weed and vegetable plants, insects and microorganisms are examined. The effects of essential oils on insects are also examined. Insecticidal activity of examined plants is confirmed. It is also confirmed that the examined plants have no effect on the growth of useful microorganisms present in the soil.
Mányová, Brigita. "Vývoj insekticidů inhibující acetylcholinesterasu." Master's thesis, 2018. http://www.nusl.cz/ntk/nusl-388782.
Full textMlýnská, Jana. "Rezistence blýskáčka řepkového k vybraným insekticidům." Master's thesis, 2010. http://www.nusl.cz/ntk/nusl-87872.
Full textSchoříková, Alexandra. "Rezistence krytonosce šešulového k vybraným insekticidům." Master's thesis, 2015. http://www.nusl.cz/ntk/nusl-250483.
Full textTomáš, Ondrej. "Hodnocení nově připravených insekticidů in vitro." Master's thesis, 2020. http://www.nusl.cz/ntk/nusl-451185.
Full textBooks on the topic "Insekticider"
Vaňková, Jiřina. Bacillus thuringiensis, bakterijní insekticid. Praha: Academia, 1990.
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