National Repository of Grey Literature 9 records found  Search took 0.01 seconds. 
Evaluation of basic characteristics of thermal water with separation methods
Skálová, Lucie ; Mravcová, Ludmila (referee) ; Vávrová, Milada (advisor)
The presence of inorganic ions is one of the criteria for thermal water assessing. The most important anions that affect the water quality and allow their use for therapeutic purposes, include sulfates, chlorides, nitrates and bicarbonates. Ions (as sodium, potassium, calcium and magnesium) are the significant cations. The ion chromatography is used for separation of these substances and also some methods based on electrophoretic migration of ions in an electric field. The electromigration method of isotachophoresis was chosen for determination of selected ions in water samples collected from thermal boreholes in Pasohlávky.
Optimization of a method for the determination of inorganic ions using capillary electrophoresis
Špačková, Simona ; Bezděková, Jaroslava (referee) ; Vaculovičová, Markéta (advisor)
Inorganic ions are one of the most important group chemicals. Their importance is crucial for all living organisms on the planet and monitoring of their content is essential for this purpose in clinical or environmental analysis but also in the food industry, agriculture or many other industries. Many analytical methods for ion detection have been designed and used, depending on the area of their use. Recently, numerous methods have been adapted to areas where not primarily intended. One such methods may be, for example, laser ablation with inductively coupled plasma mass spectrometry, which has recently begun to affect the analysis of biological samples. As a complementary method, able to detect also non-metallic ions is capillary electrophoresis. In this master thesis, the possibility of applying capillary electrophoresis with indirect photometric detection for the separation of inorganic ions in cell lysates of HeLa cells by capillary electrophoresis was verified. Main attention was paid to chloride ions. The ability to separate inorganic compounds in cellular material using salicylic acid as an absorbing anion in the base electrolyte was tested.
Determination of inorganic corrosion inhibitors by ion chromatography
Kapiasová, Anna ; Kubíčková, Anna (advisor) ; Kozlík, Petr (referee)
Corrosion inhibitors are substances that prevent the internal surface of the cooling system from corrosion. Inorganic corrosion inhibitors contain inorganic anions that passivate the surface, thereby preventing the diffusion of oxygen into the system and protecting the surface from oxidation. This study is aimed at the development and validation of a method for the determination of inorganic corrosion inhibitors (specifically chlorides, nitrites, nitrates, hydrogen phosphates, sulfates and molybdates) by ion chromatography. The optimal separation of anions was achieved with a mobile phase consist of 3.3 mM sodium carbonate and 3.3 mM sodium bicarbonate (pH= 10.1) at 45 řC using the column Metrosep A Supp 7 (250 × 4.0 mm with particle size of 5 µm) (Metrohm, Switzerland). Under these conditions the analysis took 48 minutes. After validation, the method was used to determine corrosion inhibitors in real coolant samples. The peaks of the individual anions contained in the coolants were verified by spiking with standards of anions. The anion concentrations were determined from the areas of these peaks using the calibration curves. Key words ion chromatography, engine coolants, corrosion inhibitors, inorganic ions
Development of the electrophoretic method for determination of phosphates and borates in cooling mixtures
Listakhava, Iryna ; Křížek, Tomáš (advisor) ; Kubíčková, Anna (referee)
In this diploma thesis, a method of routine analysis of commercial coolants was developed, focused on the simultaneous determination of inorganic anions - phosphates and borates - as corrosion inhibitors in fresh mixtures and the markers of recycling quality. The method was developed for the instrumental technique of capillary zone electrophoresis with indirect detection at 254 nm. The following were optimized: background electrolyte (its composition, concentration, pH), measured samples (coolant dilution, suitable internal standard) and measurement conditions (capillary length, sample dosing). The influence of the sample matrix on the measurement results, the robustness of the calibration line (or the agreement of the response with the actual analyte concentration) and also the repeatability of the method were tested. Optimizations and tests resulted in a method based on a standard addition with the following parameters: background electrolyte of pH = 11.50 containing sodium chromate at 10 mmol l-1 concentration and CTAB at 1 mmol l-1 concentration; dilution of the coolant sample 20-50×, addition of internal standard MES at 0,1 mmol l-1 concentration, electrokinetic sample injection at -5 kV for 10 s, capillary length 50.0 cm, inner diameter 75 μm. The repeatability of the method expressed as a...
Optimization of a method for the determination of inorganic ions using capillary electrophoresis
Špačková, Simona ; Bezděková, Jaroslava (referee) ; Vaculovičová, Markéta (advisor)
Inorganic ions are one of the most important group chemicals. Their importance is crucial for all living organisms on the planet and monitoring of their content is essential for this purpose in clinical or environmental analysis but also in the food industry, agriculture or many other industries. Many analytical methods for ion detection have been designed and used, depending on the area of their use. Recently, numerous methods have been adapted to areas where not primarily intended. One such methods may be, for example, laser ablation with inductively coupled plasma mass spectrometry, which has recently begun to affect the analysis of biological samples. As a complementary method, able to detect also non-metallic ions is capillary electrophoresis. In this master thesis, the possibility of applying capillary electrophoresis with indirect photometric detection for the separation of inorganic ions in cell lysates of HeLa cells by capillary electrophoresis was verified. Main attention was paid to chloride ions. The ability to separate inorganic compounds in cellular material using salicylic acid as an absorbing anion in the base electrolyte was tested.
Development of electrophoretic method for determination of sulphate in blood plasma
Hnízdilová, Lucie ; Křížek, Tomáš (advisor) ; Hraníček, Jakub (referee)
Cílem této bakalářské práce bylo vyvinout metodu pro stanovení síranů v krevní plazmě pomocí kapilární zónové elektroforézy. Byla použita křemenná kapilára o vnitřním průměru 50 μm a efektivní délce 41,5 cm. Plazmatické proteiny byly sráženy acetonitrilem. Jako optimální základní elektrolyt byla určena 0,4M kyselina mravenčí s 15mM chromanem draselným. Separační napětí bylo 25 kV. Vzorek byl dávkován napětím -5 kV po dobu 40 s. K vyhodnocení byla využita nepřímá UV detekce při 260 nm. Vzhledem ke složité matrici je vhodné provést kvantifikaci metodou standardního přídavku. Po vztažení ploch píků na vnitřní standard (500μM chlorečnany) byla relativní směrodatná odchylka 5,97 %. Výhodou této metody oproti dříve používaným srážecím metodám je krátká doba analýzy a jednodušší úprava vzorku. Klíčová slova kapilární elektroforéza, anorganické ionty, sírany, krevní plazma
Electrophoretical determination of corrosion inhibitors in engine coolants
Smrž, Dominik ; Kubíčková, Anna (advisor) ; Coufal, Pavel (referee)
A determination of corrosion inhibitors in engine coolants represent a difficult analytical problem due to their different physicochemical properties. Nowadays a lot of instrument methods are needed to determine them. The aim of this work was the development of methods for their determination using only one instrumentation. Capillary zone electrophoreses was chosen as a suitable technique. Three electrophoretic methods for three groups of corrosion inhibitors were developed. Firstly, method for determination of inorganic anions was developed in range from 5 to 50 ppm with limit of detection around 1 ppm. Background electrolyte contains sodium chromate, CTAB and CHES solution. Analytes were detected indirectly at 450 nm. Another method was for determination of organic acids anions. They were determined in range from 5 to 500 ppm. Limit of detection for each analyte was around 1 ppm. Measurement was made with PDC a CTAC water solution. Indirect detection was used for this determination at 350 nm. Last developed method can be use for determination of aryltrizoles in range from 5 to 500 ppm. Limit of detection was around 1 ppm. As a background electrolyte was used sodium tetraborate solution. The developed methods were validated and their suitability for determination of corrosion inhibitors in real...
Evaluation of basic characteristics of thermal water with separation methods
Skálová, Lucie ; Mravcová, Ludmila (referee) ; Vávrová, Milada (advisor)
The presence of inorganic ions is one of the criteria for thermal water assessing. The most important anions that affect the water quality and allow their use for therapeutic purposes, include sulfates, chlorides, nitrates and bicarbonates. Ions (as sodium, potassium, calcium and magnesium) are the significant cations. The ion chromatography is used for separation of these substances and also some methods based on electrophoretic migration of ions in an electric field. The electromigration method of isotachophoresis was chosen for determination of selected ions in water samples collected from thermal boreholes in Pasohlávky.
Behavior of sheathless and electrodeless electrospray electrophoresis during inorganic ion separation
Tarantová, Anna ; Foret, František
This work is aimed at optimization of a separation process in a thin capillary for future application in mass spectrometry (CE-MS). We have used an experimental design where the voltage only on the capillary entrance was applied. The opposite end was sharpened into an electrospray tip and situated opposite to the grounded vacuum inlet electrode. This system is called a sheathless and electrodeless interface.

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