Published October 8, 2025 | Version v1

CHORVA KOMPLEKSLARIDA CHIQINDI SUVLARINI MONITORING QILISHDA KO'P PARAMETRLI MA'LUMOT OQIMINI BOSHQARISH MASALASI

Authors/Creators

  • 1. PhD, dotsent, Ma'mun universiteti, Muhammad al-Xorazmiy nomidagi Toshkent axborot texnologiyalari universiteti tadqiqotchisi

Description

Ushbu maqolada chorva komplekslarida chiqindi suvilarni monitoring qilish va tozalash jarayonlarida sensor ma'lumotlari asosida ko'p parametrli ma'lumot oqimini boshqarish masalasi yoritilgan. Tadqiqotda sensor tarmoqlari orqali suvning asosiy parametrlari to'planib, matematik modellar yordamida tahlil qilindi. Tozalash jarayoni dinamikasini tavsiflash uchun differentsial tenglamalar, samaradorlikni baholash uchun indikatorlar va optimallashtirish funktsiyasi ishlab chiqildi. Olingan natijalar COD, BOD, ammoniy va antibiotik qoldiqlari bo'yicha yuqori samaradorlikka erishilganini ko'rsatdi. Taklif etilgan axborot tizimi arxitekturasi real vaqtda monitoring va boshqaruv imkoniyatini berib, chorva komplekslarida ekologik xavfsizlikni ta'minlashga xizmat qiladi.

Files

20_891-124-129-Samandarov.pdf

Files (569.3 kB)

Name Size Download all
md5:84f0b6d918dddbdcd8b8980a4a4c49f6
569.3 kB Preview Download

Additional details

References

  • M. Khmaissa, H. Zouari-Mechichi, G. Sciara, E. Record, and T. Mechichi, "Pollution from livestock farming antibiotics an emerging environmental and human health concern: A review," J. Hazard. Mater. Adv., vol. 13, p. 100410, Feb. 2024, doi: 10.1016/j.hazadv.2024.100410.
  • A. Checcucci et al., "Exploring the Animal Waste Resistome: The Spread of Antimicrobial Resistance Genes Through the Use of Livestock Manure," Front. Microbiol., vol. 11, p. 1416, July 2020, doi: 10.3389/fmicb.2020.01416.
  • I. Yaroshenko et al., "Real-Time Water Quality Monitoring with Chemical Sensors," Sensors, vol. 20, no. 12, p. 3432, June 2020, doi: 10.3390/s20123432.
  • I. Ajtai et al., "Wastewater Impact on Surface Water Quality and Suitability of Water Reuse in Agriculture Using a Comprehensive Methodology Based on PCA and Specific Indices," Water, vol. 17, no. 13, p. 2011, July 2025, doi: 10.3390/w17132011.
  • J. L. Mawdsley, R. D. Bardgett, R. J. Merry, B. F. Pain, and M. K. Theodorou, "Pathogens in livestock waste, their potential for movement through soil and environmental pollution," Appl. Soil Ecol., vol. 2, no. 1, pp. 1–15, Mar. 1995, doi: 10.1016/0929-1393(94)00039-A.
  • A. B. Abdullahi, A. R. Siregar, W. Pakiding, and Mahyuddin, "The analysis of BOD (Biological Oxygen Demand) and COD (Chemical Oxygen Demand) contents in the water of around laying chicken farm," IOP Conf. Ser. Earth Environ. Sci., vol. 788, no. 1, p. 012155, June 2021, doi: 10.1088/1755-1315/788/1/012155.
  • P. Samanta, H. Horn, and F. Saravia, "Impact of Livestock Farming on Nitrogen Pollution and the Corresponding Energy Demand for Zero Liquid Discharge," Water, vol. 14, no. 8, p. 1278, Apr. 2022, doi: 10.3390/w14081278.
  • R. Altaf et al., "Phosphorus removal and recovery from livestock wastewater by using modified zirconium‑lanthanum magnetite," J. Water Process Eng., vol. 71, p. 107385, Mar. 2025, doi: 10.1016/j.jwpe.2025.107385.
  • S. Gupta, S. Sireesha, I. Sreedhar, C. M. Patel, and K. L. Anitha, "Latest trends in heavy metal removal from wastewater by biochar based sorbents," J. Water Process Eng., vol. 38, p. 101561, Dec. 2020, doi: 10.1016/j.jwpe.2020.101561.
  • F. Huang, Y. Hong, C. Mo, P. Huang, X. Liao, and Y. Yang, "Removal of antibiotic resistance genes during livestock wastewater treatment processes: Review and prospects," Front. Vet. Sci., vol. 9, p. 1054316, Dec. 2022, doi: 10.3389/fvets.2022.1054316.
  • C. Uluseker et al., "A Review on Occurrence and Spread of Antibiotic Resistance in Wastewaters and in Wastewater Treatment Plants: Mechanisms and Perspectives," Front. Microbiol., vol. 12, p. 717809, Oct. 2021, doi: 10.3389/fmicb.2021.717809.
  • R. Huang et al., "Assessment of veterinary antibiotics from animal manure-amended soil to growing alfalfa, alfalfa silage, and milk," Ecotoxicol. Environ. Saf., vol. 224, p. 112699, Nov. 2021, doi: 10.1016/j.ecoenv.2021.112699.
  • R. L. Knight, V. W. E. Payne, R. E. Borer, R. A. Clarke, and J. H. Pries, "Constructed wetlands for livestock wastewater management," Ecol. Eng., vol. 15, no. 1–2, pp. 41–55, June 2000, doi: 10.1016/S0925-8574(99)00034-8.
  • Z. Lin, M. Li, P. Yan, J. Zhang, H. Xie, and H. Wu, "Constructed wetlands for wastewater treatment and reuse: Two decades of experience from China," Environ. Res., vol. 279, p. 121781, Aug. 2025, doi: 10.1016/j.envres.2025.121781.
  • Y. Park, S. Kim, J. Kim, S. Khan, and C. Han, "UV/TiO2 Photocatalysis as an Efficient Livestock Wastewater Quaternary Treatment for Antibiotics Removal," Water, vol. 14, no. 6, p. 958, Mar. 2022, doi: 10.3390/w14060958.
  • "ПФ-6024-сон 10.07.2020. Ўзбекистон Республикаси сув хўжалигини ривожлантиришнинг 2020–2030 йилларга мўлжалланган концепциясини тасдиқлаш тўғрисида." Accessed: Sept. 26, 2025. [Online]. Available: https://lex.uz/uz/docs/4892953
  • E. T. De Camargo et al., "Low-Cost Water Quality Sensors for IoT: A Systematic Review," Sensors, vol. 23, no. 9, p. 4424, Apr. 2023, doi: 10.3390/s23094424.
  • A. U. Alam, D. Clyne, and M. J. Deen, "A Low-Cost Multi-Parameter Water Quality Monitoring System," Sensors, vol. 21, no. 11, p. 3775, May 2021, doi: 10.3390/s21113775.
  • P. Rekha, K. Sumathi, S. Samyuktha, A. Saranya, G. Tharunya, and R. Prabha, "Sensor Based Waste Water Monitoring for Agriculture Using IoT," in 2020 6th International Conference on Advanced Computing and Communication Systems (ICACCS), Coimbatore, India: IEEE, Mar. 2020, pp. 436–439. doi: 10.1109/ICACCS48705.2020.9074292.
  • J. Ophir Isaac, "IOT - LIVESTOCK MONITORING AND MANAGEMENT SYSTEM," Int. J. Eng. Appl. Sci. Technol., vol. 5, no. 9, Jan. 2021, doi: 10.33564/IJEAST.2021.v05i09.042.
  • F. M. Tangorra, E. Buoio, A. Calcante, A. Bassi, and A. Costa, "Internet of Things (IoT): Sensors Application in Dairy Cattle Farming," Animals, vol. 14, no. 21, p. 3071, Oct. 2024, doi: 10.3390/ani14213071.
  • Axram Nishanov, Batirbek Samandarov, Dawranbek Joldasbaev, and Go'zal Gulmirzaeva, "IoT QURILMALARDA MA'LUMOT UZATISH JARAYONLARINI ADAPTIV BOSHQARISH ALGORITMI," Mar. 2025, doi: 10.5281/ZENODO.15071148.
  • P. Wongburi and J. K. Park, "Big Data Analytics from a Wastewater Treatment Plant," Sustainability, vol. 13, no. 22, p. 12383, Nov. 2021, doi: 10.3390/su132212383.
  • B. Samandarov and B. Geldibayev, "Development of a database of the livestock complex monitoring system using RFID devices," presented at the INTERNATIONAL SCIENTIFIC AND PRACTICAL CONFERENCE ON ACTUAL PROBLEMS OF MATHEMATICAL MODELING AND INFORMATION TECHNOLOGY, Nukus, Uzbekistan, 2024, p. 040003. doi: 10.1063/5.0210270.
  • D. Velásquez et al., "EDAR 4.0: Machine Learning and Visual Analytics for Wastewater Management," Sustainability, vol. 16, no. 9, p. 3578, Apr. 2024, doi: 10.3390/su16093578.
  • G. B. Y. Samandarov Batirbek Satimovich1, "CHORVA KOMPLEKSLARIDA MA'LUMOTLAR OQIMIGA ISHLOV BERISHNING ARXITEKTURAVIY TEXNOLOGIYALARI TAHLILI," Apr. 2023, doi: 10.5281/ZENODO.7856464.
  • H. Lin et al., "Designing a novel Ti3C2 MXene-bridged Z-scheme photocatalyst for effective H2 generation and removal of non-biodegradable norfloxacin: Optimization and mechanism insights," J. Alloys Compd., vol. 1031, p. 181029, June 2025, doi: 10.1016/j.jallcom.2025.181029.
  • M. Bashir, S. Abu Amr, S. Q. Aziz, C. Ng, and S. Sethupathi, "Wastewater Treatment Processes Optimization Using Response Surface Methodology (RSM) Compared with Conventional Methods: Review and Comparative Study," Middle East J. Sci. Res., vol. 23, pp. 244–252, Feb. 2015.