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Title:Razvoj in validacija spektrofotometrične metode za določanje bora v realnih vzorcih tal in rastlinskih tkiv
Authors:ID Verdelj, Nika (Author)
ID Košir, Iztok (Mentor) More about this mentor... New window
ID Kolar, Mitja (Comentor)
Files:.pdf MAG_Verdelj_Nika_2016.pdf (1,67 MB)
MD5: 77F8E223B3E9E58FCCE4E624FB8FEF66
 
Language:Slovenian
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:FKKT - Faculty of Chemistry and Chemical Engineering
Abstract:V sklopu magistrske naloge je bila razvita in validirana spektrofotometrična metoda za določanje bora v realnih vzorcih tal in rastlinskih tkiv. Bor je element, ki ga rastline za pravilno rast potrebujejo med 1 in 2 mg bora/kg zemlje, če pa je koncentracija bora previsoka, deluje toksično. Zato je točno in natančno določanje koncentracije bora v rastlinskih vzorcih in vzorcih tal zelo pomembno. Za določanje smo izbrali spektrofotometrično določanje z barvnim reagentom azometin – H. Metodi, ki se sicer uporabljata za določanje bora v realnih vzorcih tal in rastlinskih vzorcih smo validirali, ter ju primerjali z metodama, pri katerih smo spremenili način ekstrakcije bora iz vzorcev. Pri določanju bora v vzorcih tal smo vročo ekstrakcijo s CaCl2 primerjali s hladno ekstrakcijo s HCl. Pri določanju bora v rastlinskih vzorcih pa smo ekstrakcijo z žarenjem z raztopino HCl primerjali z ekstrakcijo s sušenjem z raztopino HNO3. Ker je v vzorcih tal in rastlinskih vzorcih prisotnih tudi veliko drugih ionov, smo preučili interference – vpliv posameznih ionov na rezultat določitve bora. Preverili smo tudi, kako dodatek tioglikolne kisline, ki zmanjšuje interference pri reakciji, vpliva na rezultate. Ugotovili smo, da je metoda za določanje bora v vzorcih tal bolj natančna in ponovljiva, kadar uporabimo hladno ekstrakcijo s HCl. Metoda za določanje bora v rastlinskih vzorcih pa je bolj natančna in ponovljiva, kadar uporabimo ekstrakcijo s sušenjem z raztopino HNO3. Vse metode so linearne v merilnem območju med 0,5 in 0,75 mg/L. Dodatek tioglikolne kisline ne zmanjšuje samo interferenc pri reakciji, ampak tudi zaznan bor v raztopini.
Keywords:spektrofotometrija, bor, validacija, tla, rastlinska tkiva
Place of publishing:Maribor
Publisher:[N. Verdelj]
Year of publishing:2016
PID:20.500.12556/DKUM-62876 New window
UDC:543.422.3(043.2)
COBISS.SI-ID:20356886 New window
NUK URN:URN:SI:UM:DK:KOFCCTPV
Publication date in DKUM:29.09.2016
Views:2754
Downloads:194
Metadata:XML DC-XML DC-RDF
Categories:KTFMB - FKKT
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Secondary language

Language:English
Title:Development and validation of spectrophotometric method for determination of boron in real samples of soil and plant tissues
Abstract:The master’s dissertation describes the validation of the spectrophotometric method for determining boron in real samples of soil and plant tissues. Boron is an element plants vitally need between 1 and 2 g/kg soil for proper growth, but if its concentration is too high, it has a toxic effect. Therefore it is very important to accurately determine boron concentrations in plant and soil samples. To determine levels of boron, spectrophotometric determination with the azomethine–H colour reagent was chosen. The two established methods for determining boron in real soil and plant samples were validated and compared to the two methods in which boron was extracted from samples in a different manner. When determining boron in soil samples, hot extraction with CaCl2 was compared to the cold extraction with HCl. In determining boron in plant samples, extraction by incinerating and heating with HCl solution was compared to extraction by drying with HNO3 solution. Because many other ions are present in soil and plant samples as well, we examined how the concentrations of these ions affect the results of boron determination. We looked into how the addition of thioglycolic acid, which reduces interferences during the reaction, affects the results. We have established that the method for determining boron in soil samples is more accurate and reproducible if cold extraction with HCl is used, while the method for determining boron in plant samples is more accurate and reproducible if extraction by drying with HNO3 solution is used. All methods are linear in measuring range between 0,05 and 0,75 mg/L Ading thioglycolic acid does not only reduce interferences during the reaction but also decreases the detected concentration of boron in the solution.
Keywords:spectrophotometry, boron, validation, soil, plant tissues


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