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Wyświetlanie 1-3 z 3
Tytuł:
Oddech codzienny
Daily breath
Autorzy:
Ligor, Tomasz
Rudnicka, Joanna
Ratiu, Ileana Andreea
Monedeiro, Fernanda
Monedeiro-Milanowski, Maciej
Buszewski, Bogusław
Powiązania:
https://bibliotekanauki.pl/articles/1413274.pdf
Data publikacji:
2021
Wydawca:
Polskie Towarzystwo Chemiczne
Tematy:
analiza wydychanego powietrza
lotne związki organiczne
biomarkery
chromatografia gazowa
spektrometria mas
breath analysis
volatile organic compounds
biomarkers
gas chromatography
mass spectrometry
Opis:
The odor of human body has facilitated diagnosis for a long time. Sniffing the body, breath, urine and even feces became one of the useful methods in ancient medicine. For centuries, the sweet smell of the breath was associated with diabetes, the fishy smell was associated with liver disease, measles was associated with the smell of feathers, typhoid with the smell of fresh bread, and tuberculosis with stale beer. Hippocrates also linked the smell of the human body and disease, claiming that the smell of a sick person is different from that of a healthy one. He classified the characteristic odors of the body into sweet, musty, fishy and rotten. The father of chemical analysis of breath was Antonie Lavoisier, who found that carbon dioxide is exhaled by guinea pigs. The pioneer of modem breath analysis was Linus Pauling, who in 1971 presented the results of breath studies using gas chromatography (GC), showing the presence of over 200 substances. Exhaled air containing approximately 78% N2, 17% O2, 3% CO2 and up to 6% water vapor. The exact concentrations of individual inorganic gases depend on many factors, mainly physical exercise, cardiac output, and lung ventilation. A mixture of many volatile organic compounds is a much smaller group of substances at concentrations 100 ppm. The substances in the breath can come from human metabolism and enter into the body by inhaled air and food. Volatile organic compounds present in the breath that can be divided into different chemical classes e.g. saturated hydrocarbons (ethane, pentane, aldehydes), unsaturated hydrocarbons (isoprene), ketones (acetone), sulfur-containing compounds (methyl mercaptan, dimethyl sulfide, dimethyl disulphide, carbon disulphide, carbonyl sulphide) and containing nitrogen (amines). Endogenous substances in the breath can be used to track physiological and pathological processes in the body. Chemical analysis of the breath can provide information regarding biochemical processes in the organism and human health. Compared to many medical diagnostic methods, it is painless, non-invasive and safe. Nowadays, the main purpose of breath analysis is to identify volatile organic compounds that can be used as markers of various diseases. Research focused on detection of lung cancer based on specific volatile organic compounds in the exhaled air is carried out in many laboratories. Rapid and non-invasive methods for early detection of lung cancer and chronic obstructive pulmonary disease is crucial for early diagnosis. This mini review presents background of breath, briefly describes main volatiles, their biochemical origin as well as potential application of exhaled gases analysis.
Źródło:
Wiadomości Chemiczne; 2021, 75, 7-8; 911-922
0043-5104
2300-0295
Pojawia się w:
Wiadomości Chemiczne
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Manganese oxide based aerogels
Autorzy:
Rudnicka, Małgorzata
Łata, Joanna
Kupracz, Piotr
Powiązania:
https://bibliotekanauki.pl/articles/1161877.pdf
Data publikacji:
2018
Wydawca:
Przedsiębiorstwo Wydawnictw Naukowych Darwin / Scientific Publishing House DARWIN
Tematy:
aerogel
cobalt
manganese
nickel
supercritical drying
Opis:
High purity inorganic aerogels synthetized during sol-gel process show considerable potential for large-scale production. Cobalt-manganese oxides, manganese-nickel oxides and cobalt-manganese-nickel oxides aerogels were obtained during gelation process of transition metal salts. All samples were dried in supercritical conditions. Their specific surface was obtained using both Brunauer-Emmet-Teller and Langmuir methods. Moreover, images received from SEM helped to confirm porous structure.
Źródło:
World Scientific News; 2018, 112; 217-225
2392-2192
Pojawia się w:
World Scientific News
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Development and verification of the scale formation model during high temperature oxidation for S235 steel
Autorzy:
Przyłucka, Aleksandra
Cebo-Rudnicka, Agnieszka
Rywotycki, Marcin
Augustyn-Nadzieja, Joanna
Malinowski, Zbigniew
Powiązania:
https://bibliotekanauki.pl/articles/29520237.pdf
Data publikacji:
2020
Wydawca:
Akademia Górniczo-Hutnicza im. Stanisława Staszica w Krakowie. Wydawnictwo AGH
Tematy:
scale
numerical simulation
model of oxidation
Opis:
Every year rapid industrialization and the following urbanization fuel the global demand for steel. The use of steel products contributes to the sustainable development of society. The scale growth mechanism accompanies the high-temperature plastic working of metals and alloys. The article focuses on the thickness of the scale formed as a result of annealing steel samples in a furnace. Samples made of S235 (A283C) steel were heated at two temperatures, 1100ºC and 1200ºC, for 8 minutes. The amount of scale formed was determined on the basis of photos taken with a light microscope. The transformed equations of steel oxidation kinetics were used in the computational part. The scale thickness obtained numerically corresponded to the scale formed in real conditions. The aim of the research was to adjust the scale growth model on steel so that it gives correct results in relation to the actual thickness of the formed oxidized layer.
Źródło:
Computer Methods in Materials Science; 2020, 20, 4; 139-146
2720-4081
2720-3948
Pojawia się w:
Computer Methods in Materials Science
Dostawca treści:
Biblioteka Nauki
Artykuł
    Wyświetlanie 1-3 z 3

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