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Utilização do extrato de levedo de cerveja como suplemento de meio à base de glicerol residual para produção de bioinseticida por Bacillus thuringiensis / Utilization of brewer\'s yeast extract as a supplement to medium based on residual glycerol for bioinsecticide production by Bacillus thuringiensisTabuchi, Stéphanie Caroline Tavares 26 July 2013 (has links)
A utilização de bioinseticida à base de Bacillus thuringiensis tem se mostrado eficaz no combate às larvas de insetos veiculadores de doenças como a dengue, elefantíase e malária. O bioinseticida apresenta alta especificidade, ausência de resistência nos insetos alvos e baixo impacto ambiental comparado aos inseticidas químicos. Porém, a difusão do uso de bioinseticida apresenta alguns desafios como o custo da produção e da formulação. O levedo excedente da indústria cervejeira pode tornar a produção do bioinseticida economicamente viável devido ao seu baixo custo, assim como o glicerol, resíduo da produção de biodiesel. A escolha adequada dos componentes do meio de cultivo é essencial para o sucesso de um produto e deve ser realizada buscando-se obter uma alta produtividade com o menor custo. Além disso, no caso do bioinseticida, os componentes do meio exercem uma grande influência no crescimento e na síntese de toxinas pela bactéria. No presente trabalho, propôs-se formular um meio de cultivo para Bacillus thuringiensis var. israelensis utilizando levedo de cerveja e glicerol proveniente da fabricação de biodiesel, visando obter um meio fermentado com elevada toxicidade e de menor custo, comparado aos obtidos atualmente. Inicialmente foi definido um procedimento de preparo do extrato de levedo de cerveja. Constatou-se que o melhor método consiste da esterilização da suspensão de levedo de cerveja (121 ºC por 20 minutos) seguida de filtração qualitativa. Foi definida também a faixa de concentração de extrato de levedo de cerveja que seria utilizada no estudo de composição do meio (10 g/L a 30 g/L). Os ensaios foram realizados em frascos Erlenmeyer de 1000 mL em incubadora de movimento recíproco. Os componentes do meio de cultivo (glicerol residual, extrato de levedo de cerveja, KNO3, CaCl2.2H2O, MgSO4.7H2O, MnSO4, K2HPO4 e KH2PO4) foram avaliados segundo um planejamento experimental e, nas condições estudadas, não exerceram influência significativa sobre a produção de toxinas. Definiu-se então a composição do meio de fermentação em termos de fonte de carbono e nitrogênio. O glicerol e o extrato de levedo de cerveja não exerceram influência significativa sobre o consumo de substrato pela bactéria. Quanto à concentração celular máxima, o aumento da concentração de glicerol apresentou efeito negativo, enquanto o aumento da concentração de extrato de levedo de cerveja apresentou efeito positivo. Embora as concentrações das fontes de carbono e nitrogênio não tenham sido significativas para a atividade larvicida, a interação entre os fatores foi significativa em seu nível negativo. O melhor resultado quanto à atividade larvicida do meio foi apresentado pelo meio composto por 10 g/L de glicerol residual, 30 g/L de extrato de levedo de cerveja, 5 g/L de KNO3, 0,12 g/L de CaCl2.2H2O, 1,5 g/L de MgSO4.7H2O, 0,09 g/L de MnSO4, 1,5 g/L de K2HPO4 e 1,5 g/L de KH2PO4. Essa mesma composição de meio de cultivo foi testada em um ensaio em biorreator, obtendo-se um meio fermentado mais eficiente que o ensaio realizado em incubadora, e com CL50 de 2,43 µL. / The use of bioinsecticide based on Bacillus thuringiensis has been shown to be effective against larvae of insects able to spread diseases such as dengue, malaria and elephantiasis. The bioinsecticide has high specificity, absence of resistance in target insects and low environmental impact compared to chemical insecticides. However, there are some challenges in the way of widespread use of bioinsecticide, such as the costs of production and formulation. The surplus yeast from the brewing industry can make the production of bioinsecticide economically feasible due to its low cost, as well as the residual glycerol from the biodiesel production. The proper choice of the components of the culture medium is essential for the success of a product and must be carried out in order to obtain a high productivity at the lowest cost. Furthermore, in the case of bioinsecticide, medium components have a major influence on the growth and synthesis of toxins by the bacteria. In the present study it was proposed the formulation of a fermentation medium for Bacillus thuringiensis var. israelensis using brewer\'s yeast and glycerol from the biodiesel manufacturing, seeking to obtain a fermented broth with high toxicity and lower cost compared to those currently obtained. Initially it was defined a procedure to prepare the extract of brewer\'s yeast. It was found that the best method is the sterilization of the brewer\'s yeast suspension (121 °C for 20 minutes) followed by qualitative filtration. The range of brewer\'s yeast extract concentration to be used in the study of the medium composition was also defined (10 g/L to 30 g/L). Assays were performed in 1000 mL Erlenmeyer flasks in a reciprocal motion shaker. The components of the medium (glycerol waste, brewer\'s yeast extract, KNO3, CaCl2.2H2O, MgSO4.7H2O, MnSO4, K2HPO4 e KH2PO4) were evaluated according to an experimental design and, considering the studied conditions, they did not have significant influence on the toxin production. Thus, the composition of the fermentation medium was defined in terms of nitrogen and carbon source. Glycerol and brewer\'s yeast extract did not have any significant influence on the substrate consumption by the bacteria. For the maximum cell concentration, the increase of glycerol concentration showed a negative effect, while increasing the concentration of brewer\'s yeast extract showed a positive effect. Although the concentrations of carbon and nitrogen sources were not significant for the larvicidal activity, the interaction between such factors was significant in its negative level. The best result of larvicidal activity was shown by the following medium: 10 g/L of residual glycerol, 30 g/L of brewer\'s yeast extract, 5 g/L of KNO3, 0.12 g/L of CaCl2.2H2O, 1.5 g/L of MgSO4.7H2O, 0.09 g/L of MnSO4, 1.5 g/L of K2HPO4 and 1.5 g/L of KH2PO4. This same composition of the culture medium was tested in a bench fermenter, resulting in a more efficient fermented broth than the one obtained in shaker flask, and with LC50 of 2.43 µL.
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Utilização do extrato de levedo de cerveja como suplemento de meio à base de glicerol residual para produção de bioinseticida por Bacillus thuringiensis / Utilization of brewer\'s yeast extract as a supplement to medium based on residual glycerol for bioinsecticide production by Bacillus thuringiensisStéphanie Caroline Tavares Tabuchi 26 July 2013 (has links)
A utilização de bioinseticida à base de Bacillus thuringiensis tem se mostrado eficaz no combate às larvas de insetos veiculadores de doenças como a dengue, elefantíase e malária. O bioinseticida apresenta alta especificidade, ausência de resistência nos insetos alvos e baixo impacto ambiental comparado aos inseticidas químicos. Porém, a difusão do uso de bioinseticida apresenta alguns desafios como o custo da produção e da formulação. O levedo excedente da indústria cervejeira pode tornar a produção do bioinseticida economicamente viável devido ao seu baixo custo, assim como o glicerol, resíduo da produção de biodiesel. A escolha adequada dos componentes do meio de cultivo é essencial para o sucesso de um produto e deve ser realizada buscando-se obter uma alta produtividade com o menor custo. Além disso, no caso do bioinseticida, os componentes do meio exercem uma grande influência no crescimento e na síntese de toxinas pela bactéria. No presente trabalho, propôs-se formular um meio de cultivo para Bacillus thuringiensis var. israelensis utilizando levedo de cerveja e glicerol proveniente da fabricação de biodiesel, visando obter um meio fermentado com elevada toxicidade e de menor custo, comparado aos obtidos atualmente. Inicialmente foi definido um procedimento de preparo do extrato de levedo de cerveja. Constatou-se que o melhor método consiste da esterilização da suspensão de levedo de cerveja (121 ºC por 20 minutos) seguida de filtração qualitativa. Foi definida também a faixa de concentração de extrato de levedo de cerveja que seria utilizada no estudo de composição do meio (10 g/L a 30 g/L). Os ensaios foram realizados em frascos Erlenmeyer de 1000 mL em incubadora de movimento recíproco. Os componentes do meio de cultivo (glicerol residual, extrato de levedo de cerveja, KNO3, CaCl2.2H2O, MgSO4.7H2O, MnSO4, K2HPO4 e KH2PO4) foram avaliados segundo um planejamento experimental e, nas condições estudadas, não exerceram influência significativa sobre a produção de toxinas. Definiu-se então a composição do meio de fermentação em termos de fonte de carbono e nitrogênio. O glicerol e o extrato de levedo de cerveja não exerceram influência significativa sobre o consumo de substrato pela bactéria. Quanto à concentração celular máxima, o aumento da concentração de glicerol apresentou efeito negativo, enquanto o aumento da concentração de extrato de levedo de cerveja apresentou efeito positivo. Embora as concentrações das fontes de carbono e nitrogênio não tenham sido significativas para a atividade larvicida, a interação entre os fatores foi significativa em seu nível negativo. O melhor resultado quanto à atividade larvicida do meio foi apresentado pelo meio composto por 10 g/L de glicerol residual, 30 g/L de extrato de levedo de cerveja, 5 g/L de KNO3, 0,12 g/L de CaCl2.2H2O, 1,5 g/L de MgSO4.7H2O, 0,09 g/L de MnSO4, 1,5 g/L de K2HPO4 e 1,5 g/L de KH2PO4. Essa mesma composição de meio de cultivo foi testada em um ensaio em biorreator, obtendo-se um meio fermentado mais eficiente que o ensaio realizado em incubadora, e com CL50 de 2,43 µL. / The use of bioinsecticide based on Bacillus thuringiensis has been shown to be effective against larvae of insects able to spread diseases such as dengue, malaria and elephantiasis. The bioinsecticide has high specificity, absence of resistance in target insects and low environmental impact compared to chemical insecticides. However, there are some challenges in the way of widespread use of bioinsecticide, such as the costs of production and formulation. The surplus yeast from the brewing industry can make the production of bioinsecticide economically feasible due to its low cost, as well as the residual glycerol from the biodiesel production. The proper choice of the components of the culture medium is essential for the success of a product and must be carried out in order to obtain a high productivity at the lowest cost. Furthermore, in the case of bioinsecticide, medium components have a major influence on the growth and synthesis of toxins by the bacteria. In the present study it was proposed the formulation of a fermentation medium for Bacillus thuringiensis var. israelensis using brewer\'s yeast and glycerol from the biodiesel manufacturing, seeking to obtain a fermented broth with high toxicity and lower cost compared to those currently obtained. Initially it was defined a procedure to prepare the extract of brewer\'s yeast. It was found that the best method is the sterilization of the brewer\'s yeast suspension (121 °C for 20 minutes) followed by qualitative filtration. The range of brewer\'s yeast extract concentration to be used in the study of the medium composition was also defined (10 g/L to 30 g/L). Assays were performed in 1000 mL Erlenmeyer flasks in a reciprocal motion shaker. The components of the medium (glycerol waste, brewer\'s yeast extract, KNO3, CaCl2.2H2O, MgSO4.7H2O, MnSO4, K2HPO4 e KH2PO4) were evaluated according to an experimental design and, considering the studied conditions, they did not have significant influence on the toxin production. Thus, the composition of the fermentation medium was defined in terms of nitrogen and carbon source. Glycerol and brewer\'s yeast extract did not have any significant influence on the substrate consumption by the bacteria. For the maximum cell concentration, the increase of glycerol concentration showed a negative effect, while increasing the concentration of brewer\'s yeast extract showed a positive effect. Although the concentrations of carbon and nitrogen sources were not significant for the larvicidal activity, the interaction between such factors was significant in its negative level. The best result of larvicidal activity was shown by the following medium: 10 g/L of residual glycerol, 30 g/L of brewer\'s yeast extract, 5 g/L of KNO3, 0.12 g/L of CaCl2.2H2O, 1.5 g/L of MgSO4.7H2O, 0.09 g/L of MnSO4, 1.5 g/L of K2HPO4 and 1.5 g/L of KH2PO4. This same composition of the culture medium was tested in a bench fermenter, resulting in a more efficient fermented broth than the one obtained in shaker flask, and with LC50 of 2.43 µL.
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Utilization and development of liquid brewer’s yeast mixed with cassava pulp for cattle feed / キャッサバデンプン粕と混合した液状ビール酵母の牛用飼料としての利用と開発に関する研究Sukanya, Kamphayae 23 March 2017 (has links)
京都大学 / 0048 / 新制・論文博士 / 博士(農学) / 乙第13101号 / 論農博第2847号 / 新制||農||1051(附属図書館) / 学位論文||H29||N5033(農学部図書室) / (主査)教授 廣岡 博之, 教授 松井 徹, 准教授 熊谷 元 / 学位規則第4条第2項該当 / Doctor of Agricultural Science / Kyoto University / DFAM
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Voltametrijske metode zasnovane na ugljeničnim elektrodama modifikovane kompozitima na bazi višezidnih ugljeničnih nanocevi i čestica bizmuta ili antimona za određivanje odabranih ciljnih analita / Voltammetric methods based on carbon electrodes modified with multi walled carbon nanotubes and bismuth and antimony particles based composites for determination of selected target analytesPetrović Sandra 12 September 2019 (has links)
<p>Cilj ove doktorske disertacija bio je razvoj novih, osetljivih, selektivnih i ekonomski<br />isplativih voltametrijskih radnih elektroda za praćenje odabranih analita kako u<br />laboratorijskim tako i pri terenskim uslovima. Ispitivana je mogućnost primene ovih radnih elektroda primenom voltametrijskih metoda kako u model rastvorima tako i u pojedinim realnim sistemima. SW-ASV zasnovana na elektrodama od staklastog ugljenika površinski modifikovanim Bi-MWCNT i BiOCl-MWCNT je primenjena za određivanje jona Pb(II) i Cd(II) pri optimizovanim uslovima merenja. Određivanje ciljnih jona vršeno je pri radnom potencijalu od -1,2 V (izmeren u odnosu na zasićenu kalomelovu elektrodu) i vremenu<br />elektrodepozicije jona od 120 s. Sva merenja su izvršena u rastvoru acetatnog pufera čija je pH-vrednost iznosila 4,0. Primenjeni koncentracioni opseg ciljnih analita iznosio je od 5 do 50 μg dm <sup>-3</sup> . Primenom ovog tipa elektrode dobijene su vrednosti granice detekcije za jone Pb(II) i Cd(II) 0,57 μg dm <sup>-3 </sup>i 1,2 μg dm<sup>-3</sup> , redom. Dobijena RSD iznosila je manje od 10% za oba jona. Ova metoda je primenjena i za određivanje ciljnih jona u realnom uzorku porne vode sedimenta a rezultati dobijeni optimizovanom voltametrijskom metodom su u dobroj saglasnosti sa rezultatima koji su dobijeni primenom komparativne GFAAS metode. Bizmut oksihlorid-višezidne ugljenične nanocevi kompozitni materijal je primenjen za površinsko modifikovanje elektrode od staklastog ugljenika za brzo i jednostavno voltametrijsko određivanje tragova Zn(II)-jona primenom SW-ASV metode. BiOClMWCNT/GCE je pokazala linearan analitički odgovor u osegu koncentracija od 2,50 do 80,0 μg dm <sup>-3 </sup>sa dobijenom vrednošću GD 0,75 μg dm<sup>-3 </sup>pri akumulacionom vremenu od 120 s i potencijalu elektrodepozicije -1,40 V u odnosu na ZKE. Merenja su vršena u acetatnom puferu pH 4,5. Dobijena RSD iznosila je 4,8 %. Upoređene su performanse novodizajnirane BiOCl-MWCNT/GCE elektrode i tradicionalne elektrode na bazi bizmut filma (BiF/GCE), MWCNT/GCE, BiF-MWCNT/GCE i nemodifikovane GC elektrode. Novodizajnirana elektroda je primenjena za detekciju i određivanje Zn(II)-jona u realnim uzorcima kao što su<br />dijetetski suplement i pekarski kvasac. Dobijeni rezultati su uporedivi sa deklarisanom vrednošću u slučaju dijetetskog suplementa a u slučaju pekarskog kvasca sa rezultatima dobijenih komparativnom FAAS .<br />Elektroda od ugljenične paste je površinski modifikovana pripremljenim kompozitom<br />koji je izgrađen od višezidnih ugljeničnih nanocevi i čestica Sb<sub>2</sub>O<sub>3.</sub> Kompozitni materijal je okarakterisan primenom TEM, EDS i XRD mernih tehnika. Sb<sub>2</sub>O<sub>3</sub>-MWCNT/CPE je okarakterisana primenom ciklične voltametrije a merenja su vršena u rastvoru hlorovodonične kiseline (pH 2,0). Primenom SW-ASV metode ova radna elektroda je upotrebljena za određivanje jona Pb(II) i Cd(II) u koncentracionom opsegu 2,0-40,0 μg dm <sup>-3 </sup>za Pb(II)-jon i 2,0-40,0 μg dm <sup>-3</sup> za Cd(II)-jon pri čemu su dobijene dobre linearne zavisnosti za oba ciljna jona. Optimalna procedura uključuje primenu Sb2O3-MWCNT/CPE u 0,01 mol dm <sup>-3</sup><br />hlorovodoničnoj kiselini uz vreme elektrodepozicije jona iz rastvora od 120 s na potencijaluod -1,2 V, pri čemu su dobijene vrednosti za GD 1,1 μg dm <sup>-3</sup> Cd(II) i 1,6 μg dm <sup>-3</sup> Pb(II). Optimizovana metoda zasnovana na ovom tipu voltametrijskog senzora je uspešno primenjena za određivanje jona Cd(II) u obogaćenom uzorku česmenske vode, gde su se dobijene vrednosti u saglasnosti sa očekivanom. Elektroda od ugljenične paste površinski je modifikovana primenom Sb<sub>2</sub>O<sub>3</sub>-MWCNT nanokompozitnog materijala i primenjena za direktno voltametrijsko određivanje imidakloprida u model rastvorima. U cilju postizanja što boljih analitičkih performansi optimizovani su eksperimentalni uslovi merenja kao što su pH-vrednost rastvora pomoćnog elektrolita i kondicioniranje površine voltametrijskog senzora. Kao optimalna pH-vrednost pomoćnog elektolita (Britton-Robinsonovog pufera) odabrana je pH 7,0, a ponavljanje ciklusa cikliranja najmanje 4 puta povoljno utiče na stabilnost voltametrijskih signala. Optimizovana metoda primenjena je za SW direktno katodno određivanje imidakloprida u koncentracionom intervalu od 1,41 do 32,77 μg cm <sup>-3</sup> uz dobijeni korelacioni faktor od 0,9995. Na osnovu dobijenih rezultata može se zaključiti da su razvijene analitičke metode pre svega osetljive, selektivne, reproduktivne i jednostavne što omogućava njihovu primenu za veliki broj uzoraka. Merenjima u model i realnim rastvorima dokazana je mogućnost njihove primene u komplikovanim matriksima, pri različitim pH vredostima pri čemu su dobijeni<br />rezultati koji su u saglasnosti sa rezultatima primenjenih komparativnih metoda. Naravno, za dobijanje reprezentativnih rezultata neohodno je izvršiti optimizaciju uslova merenja što podrazumeva sam odabir supstrat-elektrode, odabir površinskog modifikatora i optimizaciju eksperimentalnih uslova merenja.</p> / <p>The aim of this Ph.D. thesis was the development of new, sensitive, selective and economically viable voltametric working electrode for continuous monitoring of different target analytes. The use of these advantaged working electrodes was investigated using voltametric methods both in model solutions and in certain real systems.SW-ASV based on glassy carbon electrode surface modified with Bi- MWCNT and BiOCl-MWCNT were applied for determination of Pb(II) and Cd(II) ions. Voltametric determination of Pb(II) and Cd(II) ions was performed at working potential of -1.2 V (measured against the saturated calomel electrode) and time of electrodeposition of 120 s. All measurements were performed in acetate buffer solution pH 4.0. Concentration range of targetanalites were 5-50 μg dm -3 . Using this type of electrode, obtained detection limits for Pb(II) and Cd(II) ions were 0.57 μg dm -3 and 1.2 μg dm -3 , respectively, with RSD lower than 10%.This method was applied for target ions determination in sediment pore water sample, and obtained results are comparable with those who are obtained using GFAAS method. Bismuth oxychloride-multiwalled carbon nanotubes composite material was applied for surface modification of the glass-carbon electrode for quick and simple voltametric determination of Zn(II) ions using the SW-ASV method. BiOCl-MWCNT/GCE showed a linear analytical response in a concentration from 2.50 to 80.0 μg dm -3 with a value of detection limit 0.75 μg dm -3 at a acumulation time of 120 s and an electrodeposition potential of -1.40 V vs. saturated calomel electrode. Measurements were carried out in acetate buffer pH 4.5. The obtained value of the RSD was 4.8%. The performance of the newly designed BiOCl-MWCNT/GCE electrode, traditional bismuth-based electrode (BiF/GCE), MWCNT/GCE, BiF-MWCNT/GCE and unmodified GC electrodes were compared. The applied electrode shows very good electroanalytic properties when determining this target ion. Obtained results are in good agreement with declared value in case of dietetic suplement, and in the brewer’s yeast sample results were comparable with FAAS results. Carbon paste electrode surface modified with new composite material based on multiwalled carbon nanotubes and Sb2O3 particles. The composite is characterized by TEM, EDS and XRD measurment. Sb2O3- MWCNT/CPE was characterized by cyclic voltammetry and measurements were carried out in a hydrochloric acid solution (pH 2.0). Using the SWASV method, this working electrode was used to determine Pb(II), Cd(II) ions in the concentration range from 2.0 to 40.0 μg dm -3 for Pb(II) and 2.0-40.0 μg dm -3 for Cd(II) ions. Newly designed sensor showed good linear dependences for both target ions. The most optimal procedure involving application of Sb2O3-MWCNT/CPE in .01 mol dm -3 hydrochloric acid, with electroposition time of target ions 120 s at a electrodeposition potential of -1.2 V. Obtained values of LOD 1,1 μg dm -3 for Cd(II) and for 1,6 μg dm -3 Pb(II) ions. An optimized method based on this type of voltametric sensor has been successfully applied for determination of Cd(II) ion in a spiked tap water sample. Results obtained during this measurment were in tune with expected results. CPE was surface modified using Sb2O3-MWCNT nanocomposite material and tested for direct voltametric determination of imidacloprid in model solutions. In order to achieve the best analytical performance, experimental conditions of measurement such as the pH value of the supporting electrolyte and conditioning of the voltametric sensor surface havebeen optimized. As an optimum pH value of the supporting electrolyte (Britton-Robinson buffer), a pH 7.0 was selected, and the repeating cycles of the cycling process at least 4 times favorably influenced the stability of the voltametric signals. The optimized method was applied for the SW direct cathodic determination of imidacloprid in the concentration range from 1.41 to 32.77 μg cm -3 with obtained correlation factor of 0.9995. Based on results it can be concluded that developed analytical methods are sensitive, selective, reproducibile and simple, which can enable their application for various number of samples. Measurements in the model and real solutions have demonstrated the possibility of their application in complicated matrices, at different pH, whereby obtained results are in accordance with the results of the applied comparative methods. For obtainig of representative results it is necessary to optimize conditions of measurment which include: selection of substrat electrode, surface modifier and optimization of experimental condition.</p>
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