TY - JOUR
T1 - Effects of mining activities on Nano-soil management using artificial intelligence models of ANN and ELM
AU - Liu, Qi
AU - Peng, Kang
AU - Zeng, Jie
AU - Marzouki, Riadh
AU - Majdi, Ali
AU - Jan, Amin
AU - Salameh, Anas A.
AU - Assilzadeh, Hamid
N1 - Publisher Copyright:
© 2022. Techno-Press, Ltd.
PY - 2022/6
Y1 - 2022/6
N2 - Mining of ore minerals (sfalerite, cinnabar, and chalcopyrite) from the old mine has led in significant environmental effects as contamination of soils and plants and acidification of water. Also, nanoparticles (NP) have obtained global importance because of their widespread usage in daily life, unique properties, and rapid development in the field of nanotechnology. Regarding their usage in various fields, it is suggested that soil is the final environmental sink for NPs. Nanoparticles with excessive reactivity and deliverability may be carried out as amendments to enhance soil quality, mitigate soil contaminations, make certain secure land–software of the traditional change substances and enhance soil erosion control. Meanwhile, there's no record on the usage of Nano superior substances for mine soil reclamation. In this study, five soil specimens have been tested at 4 sites inside the region of mine (<100 m) to study zeolites, and iron sulfide nanoparticles. Also, through using Artificial Neural Network (ANN) and Extreme Learning Machine (ELM), this study has tried to appropriately estimate the mechanical properties of soil under the effect of these Nano particles. Considering the RMSE and R2 values, Zeolite Nano materials could enhance the mine soil fine through increasing the clay-silt fractions, increasing the water holding capacity, removing toxins and improving nutrient levels. Also, adding iron sulfide minerals to the soils would possibly exacerbate the soil acidity problems at a mining site.
AB - Mining of ore minerals (sfalerite, cinnabar, and chalcopyrite) from the old mine has led in significant environmental effects as contamination of soils and plants and acidification of water. Also, nanoparticles (NP) have obtained global importance because of their widespread usage in daily life, unique properties, and rapid development in the field of nanotechnology. Regarding their usage in various fields, it is suggested that soil is the final environmental sink for NPs. Nanoparticles with excessive reactivity and deliverability may be carried out as amendments to enhance soil quality, mitigate soil contaminations, make certain secure land–software of the traditional change substances and enhance soil erosion control. Meanwhile, there's no record on the usage of Nano superior substances for mine soil reclamation. In this study, five soil specimens have been tested at 4 sites inside the region of mine (<100 m) to study zeolites, and iron sulfide nanoparticles. Also, through using Artificial Neural Network (ANN) and Extreme Learning Machine (ELM), this study has tried to appropriately estimate the mechanical properties of soil under the effect of these Nano particles. Considering the RMSE and R2 values, Zeolite Nano materials could enhance the mine soil fine through increasing the clay-silt fractions, increasing the water holding capacity, removing toxins and improving nutrient levels. Also, adding iron sulfide minerals to the soils would possibly exacerbate the soil acidity problems at a mining site.
KW - Ann
KW - Artificial intelligence models
KW - Elm
KW - Management
KW - Mining activities
KW - Nano-soil
KW - Toxin
UR - http://www.scopus.com/inward/record.url?scp=85134386238&partnerID=8YFLogxK
U2 - 10.12989/anr.2022.12.6.549
DO - 10.12989/anr.2022.12.6.549
M3 - Article
AN - SCOPUS:85134386238
SN - 2287-237X
VL - 12
SP - 549
EP - 566
JO - Advances in Nano Research
JF - Advances in Nano Research
IS - 6
ER -