Thermocatalytic and Semiconductor Sensors for Monitoring Gas Mixtures

Authors

  • Eshkobilova M. E. Samarkand State Institute of architecture
  • Abdurakhmanova Z. E. Assistant of the Department of Pharmacology of the Samarkand State Medical University

DOI:

https://doi.org/10.51699/wjau.v2i6.69

Keywords:

thermocatalytic, circumstance, element, measuring, hydrogen

Abstract

Today in the world, special attention is paid to the creation of express and inexpensive chemical sensors for reliable and unambiguous control of leaks and accumulations of natural gas. Analysis of the development of gas sensors in industrially developed countries has shown that the use of thermocatalytic and semiconductor sensors is the most promising for preventing explosion. The composition of the catalyst of the measuring and compensating sensing element of the methane sensor is established in the work. Using a technique to ensure selectivity with the use of the above catalysts, a thermocatalytic sensor was manufactured for the selective determination of methane in the presence of carbon monoxide and hydrogen.

References

Эшкобилов Ш. А., Эшкобилова М. Э., Абдурахманов Э. А. Определение природного газа в атмосферном воздухе и технологических газах //Экологические системы и приборы. – 2015. – №. 9. – С. 11-14.

Сидикова Х. Г., Эшкобилова М. Э., Абдурахманов Э. МЕТРОЛОГИЧЕСКИЕ ХАРАКТЕРИСТИКИ ПОЛУПРОВОДНИКОВОГО СЕНСОРА ОКСИДА УГЛЕРОДА //Universum: химия и биология. – 2021. – №. 11-1 (89). – С. 48-53.

Эшкобилова М. Э., Насимов А. М. Газоанализатор (тпг-сн4) для мониторинга метана на основе термокаталитических и полупроводниковых сенсоров //Universum: химия и биология. – 2019. – №. 6 (60). – С. 17-20.

Эшкобилов Ш. А., Эшкобилова М. Э., Абдурахманов Э. А. Определение природного газа в атмосферном воздухе и технологических газах //Экологические системы и приборы. – 2015. – №. 9. – С. 11-14.

Abdurakhmanov, E., Murodova, Z. B., Eshkobilova, M. E., & Sidikova, K. G. (2021, September). Development of a selective sensor for the determination of hydrogen. In IOP Conference Series: Earth and Environmental Science (Vol. 839, No. 4, p. 042086). IOP Publishing.

Eshkobilova, M. E., & Khudoyberdieva, F. B. (2023). Composition and structure of composite building materials. INTERNATIONAL JOURNAL OF SOCIAL SCIENCE & INTERDISCIPLINARY RESEARCH ISSN: 2277-3630 Impact factor: 7.429, 12(01), 1-4.

Kholmirzayev, F. F., Eshkobilova, M. E., Urokov, D. M., & Abdurakhmanov, E. (2018). The influence of temperature on the sensitivity of a semiconductor methane sensor. In Materials of the Republican conference" Development of analytical chemistry in Uzbekistan”. Tashkent (pp. 78-81).

Eshkobilov Sh, A., Eshkobilova, M. E., & Abdurakhmanov, E. (2015). Determination of natural gas in atmospheric air and technological gases. Ecological systems and devices, 9, 11-5.

Eshkobilova, M. E., Abdurakhmanov, I. E., & Nasimov, A. M. (2018). Some metrological characteristics of a semiconductor methane sensor. SamSU scientific Bulletin, (1), 136-140.

Abdurakhmanov, E., Eshkabilova, M. E., Muminova, N. I., Sidikova, K. G., & Pardaeva, S. M. (2022). Template Synthesis of Nanomaterials based on Titanium and Cadmium Oxides by the Sol-Gel Method, Study of their Possibility of Application As A Carbon Monoxide Sensor (II). Journal of Pharmaceutical Negative Results, 1343-1350.

Sidikova K. G., Eshkobilova M. E., Abdurakhmanov E. Термокаталитический сенсор для селективного мониторинга природного газа //VI-Mеждународные научные практической конференции GLOBAL SCIEN CEAND INNOVATIONS. – 2019. – С. 235-238.

Эшкобилов, Ш. А., Эшкобилова, М. Э., & Абдурахманов, Э. А. (2015). Разработка катализатора для чувствительного сенсора природного газа. Символ науки, (3), 7-12.

Эшкобилов, Ш. А., Эшкобилова, М. Э., & Абдурахманов, Э. А. (2015). Катализатор для селективного термокаталитического сенсора природного газа. Химическая промышленность, 92(5), 261-264.

Абдурахманов, И. Э., Сидикова, Х. Г., Эшкобилова, М. Э., Насимов, А. М., Мурадова, З. Б., & Абдурахманов, Э. (2020). Разработка сенсора и сигнализатора непрерывного контроля сh4 для систем автоматизированного микроклимата. Science and Education, 1(1), 185-193.

Эшкобилова М. Э., Абдурахманов Э. А. Эшкобилов Шухрат Абдугафарович //ISSN 2410-700X. – С. 7.

Ibragimova D. N., Khusainova Z. J. HEMOLYTIC DISEASE IN THE FETUS AND NEWBORNS //World Bulletin of Public Health. – 2022. – Т. 9. – С. 190-194.

Murodovna J. D., Narzikulovna I. D. Use of Beclometasone Dipropionate in the Treatment of Allergic Rhinitis in Pregnant Women //Web of Synergy: International Interdisciplinary Research Journal. – 2023. – Т. 2. – №. 4. – С. 367-369.

Narzikulovna, I. D. (2023). New Generation of Analgesics: A Promising Approach for Pain Management. Scholastic: Journal of Natural and Medical Education, 2(5), 217-221.

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Published

2023-06-11

How to Cite

E., E. M. ., & E., A. Z. . (2023). Thermocatalytic and Semiconductor Sensors for Monitoring Gas Mixtures. World Journal of Agriculture and Urbanization, 2(6), 9–13. https://doi.org/10.51699/wjau.v2i6.69

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