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Water Pollution Prevention and Control Project, 2020, 1(2); doi: 10.38007/WPPCP.2020.010201.

Exploration on Fuzzy Control in Water Pollution Prevention System and Computer-aided Model Construction

Author(s)

Radu-Stefan Ricman

Corresponding Author:
Radu-Stefan Ricman
Affiliation(s)

Pukyong National University, Busan 48513, Republic of Korea

Abstract

Water is the basic resource to maintain human health, promote economic development and biodiversity. However, with the economic growth and the increasingly serious problem of water pollution, it has an impact on the environment and socio-economic development. A comprehensive and accurate assessment of water pollution is essential for the protection of water resources. However, the current water pollution prevention still has problems such as inadequate supervision and detection accuracy, which is not conducive to water pollution prevention. Therefore, this paper constructed a computer-aided model of water pollution prevention system through fuzzy control to help it realize the detection and control of water pollution, so as to reduce pollution and promote environmental development. After applying the computer-aided model for water pollution prevention, the adaptability was 14% higher than before, the water quality prediction effect was 13.4% higher than before, and the water pollution treatment efficiency was 12.5% higher than before. In a word, the computer-aided model can help to quickly detect water pollution sources and improve water sources.

Keywords

Water Pollution Prevention, Computer-aided Model, Fuzzy Control, Model Construction

Cite This Paper

Radu-Stefan Ricman. Exploration on Fuzzy Control in Water Pollution Prevention System and Computer-aided Model Construction. Water Pollution Prevention and Control Project (2020), Vol. 1, Issue 2: 1-10. https://doi.org/10.38007/WPPCP.2020.010201.

References

[1] Deletic Ana, Huanting Wang. Water pollution control for sustainable development. Engineering. (2019) 5(5): 839-840. https://doi.org/10.1016/j.eng.2019.07.013

[2] Jichuan Sheng, Michael Webber, Xiao Han. Governmentality within China's South-North Water Transfer Project: tournaments, markets and water pollution. Journal of Environmental Policy & Planning. (2018) 20(4): 533-549. https://doi.org/10.1080/1523908X.2018.1451309

[3] Yubao Wang. Chinese industrial water pollution and the prevention trends: An assessment based on environmental complaint reporting system (ECRS). Alexandria Engineering Journal. (2020) 60(6): 5803-5812. https://doi.org/10.1016/j.aej.2020.04.015

[4] Martini Sri. Membrane technology for water pollution control: a review of recent hybrid mechanism. Jurnal Rekayasa Kimia & Lingkungan. (2020) 17(1): 83-96. https://doi.org/10.23955/rkl.v17i1.23610

[5] Singh Upma. Water Pollution due to Discharge of Industrial Effluents with special reference to Uttar Pradesh, India-A review. International Archive of Applied Sciences and Technology. (2018) 9(4): 111-121.

[6] Tan Poh-Ling, Fran Humphries. Adaptive or aspirational? Governance of diffuse water pollution affecting Australia's Great Barrier Reef. Water International. (2018) 43(3): 361-384. https://doi.org/10.1080/02508060.2018.1446617

[7] Panda Pratap Kumar, Rahas Bihari Panda, Prasant Kumar Dash. The river water pollution in India and abroad: A critical review to study the relationship among different physico-chemical parameters. American Journal of Water Resources. (2018) 6(1): 25-38.

[8] Chen Sophia Shuang. Assessment of urban river water pollution with urbanization in East Africa. Environmental Science and Pollution Research. (2020) 29(27): 40812-40825. 

[9] Lu Juan. Turnover of environmental protection officials and transboundary water pollution. Environmental Science and Pollution Research. (2020) 28(8): 10207-10223. https://doi.org/10.1007/s11356-020-11530-4

[10] Sharma Rohit. Water pollution examination through quality analysis of different rivers: a case study in India. Environment, Development and Sustainability. (2020) 24(6): 7471-7492. 

[11] Zuxin Xu. Urban river pollution control in developing countries. Nature Sustainability. (2019) 2(3): 158-160. https://doi.org/10.1038/s41893-019-0249-7

[12] Obinna Isiuku Beniah, Enyoh Christian Ebere. A review: Water pollution by heavy metal and organic pollutants: Brief review of sources, effects and progress on remediation with aquatic plants. Analytical Methods in Environmental Chemistry Journal. (2019) 2(03): 5-38. https://doi.org/10.24200/amecj.v2.i03.66

[13] Mingjing He. Waste-derived biochar for water pollution control and sustainable development. Nature Reviews Earth & Environment. (2020) 3(7): 444-460. 

[14] Alvarez Pedro JJ. Emerging opportunities for nanotechnology to enhance water security. Nature nanotechnology. (2018) 13(8): 634-641. https://doi.org/10.1038/s41565-018-0203-2

[15] Subagiyo Lambang. Water quality status of kalimantan water bodies based on the pollution index. Pollution Research. (2019) 38(3): 536-543.