Welcome to Scholar Publishing Group

Nature Environmental Protection, 2021, 2(2); doi: 10.38007/NEP.2021.020205.

Economic Development and Natural Ecology Based on Data Mining Technology

Author(s)

Sanders Eduard

Corresponding Author:
Sanders Eduard
Affiliation(s)

Departamento de Ingeniería Química, Facultad de Química e Ingeniería Química, Universidad Nacional Mayor de San Marcos, Lima 15081, Peru

Abstract

With the rapid development of human beings, the environment for human survival, living and production is also being constantly destroyed. Effective protection of the natural environment can make it better play its economic, ecological and other values, thus promoting the harmonious development of people and the environment, and improving people’s living conditions. Based on the above reasons, this paper studied the natural environment protection, and focused on the ecological value of natural environment protection. The ecological value evaluation method based on data mining was proposed, and its effect was studied. The research results showed that the evaluation method based on data mining took less time than the traditional evaluation method. The accuracy rate of the evaluation method based on data mining was 7.06% higher than that of the traditional evaluation method, and the natural environment protection technicians were more satisfied with the data mining evaluation method. The evaluation method based on data mining had certain effectiveness. In addition, this paper also put forward some measures to protect the natural environment.

Keywords

Natural Environment Protection, Ecological Value, Data Mining, Evaluation Accuracy

Cite This Paper

Sanders Eduard. Economic Development and Natural Ecology Based on Data Mining Technology. Nature Environmental Protection (2021), Vol. 2, Issue 2: 41-50. https://doi.org/10.38007/NEP.2021.020205.

References

[1]Galecka-Drozda, Anna. "Land cover changes in Natura 2000 areas located in suburban zones: planning problems in the context of environmental protection." Polish Journal of Environmental Studies 28.2 (2018): 587-595.

[2]Li, Yanwei, and Jing Huang. "The evolution of collaborative networks: A social network analysis of Chinese environmental protection policy." Public policy and Administration 38.1 (2021): 34-57.

[3]Hanson, Jeffrey O. "Global conservation of species’ niches." Nature 580.7802 (2020): 232-234.

[4] Ahamed, Tofael. "Sustainable agricultural development: a micro-level GIS-based study on women’s perceptions of environmental protection and entrepreneurship in Japan and Bangladesh." GeoJournal 86.5 (2021): 2071-2103.

[5]Whitburn, Julie, Wayne Linklater, and Wokje Abrahamse. "Meta‐analysis of human connection to nature and proenvironmental behavior." Conservation biology 34.1 (2020): 180-193.

[6]Ford, Alex T. "The role of behavioral ecotoxicology in environmental protection." Environmental science & technology 55.9 (2021): 5620-5628.

[7]Mickiewicz, Pawel. "Environmental protection and integrated development planning in local spatial policy on the example of Poland." Annales Universitatis Apulensis: Series Oeconomica 22.1 (2020): 11-17.

[8]Gayathri, M., R. Shankar, and S. Duraisamy. "Air pollution prediction using data mining technique." International Research Journal of Engineering and Technology (IRJET) 7.8 (2020): 4292-4297.

[9]Ageed, Zainab Salih. "Comprehensive survey of big data mining approaches in cloud systems." Qubahan Academic Journal 1.2 (2021): 29-38.

[10]Yang, Guanghui. "Marine water quality monitoring and management system model based on data mining." Journal of Coastal Research 94.SI (2019): 11-15.

[11]Salih, Sinan Q. "River suspended sediment load prediction based on river discharge information: application of newly developed data mining models." Hydrological Sciences Journal 65.4 (2020): 624-637.

[12]Behrens, Grit, Klaus Schlender, and Florian Fehring. "Data mining methods of healthy indoor climate coefficients for comfortable well-being." Environmental Protection and Natural Resources 29.3 (2018): 7-12.

[13]Ruan, Mengli. "Ambient Air Quality Evaluation and Prediction Model based on Data Mining." Ekoloji 28.108 (2019): 1777-1781.

[14]Olimovich, Allanazarov Quldosh, and Omonov Kamol Khudoymurodovich. "The role and importance of plants in environmental protection." ACADEMICIA: An International Multidisciplinary Research Journal 11.9 (2021): 937-941.

[15]Ren, Chen, Chuck Wah Yu, and Shi-Jie Cao. "Development of urban air environmental control policies and measures." Indoor and Built Environment 32.2 (2021): 299-304.