Geospatial Visualization and Ecological Risk Assessment of Heavy Metals in Rice Soil of a Newly Developed Industrial Zone in Bangladesh

Author:

Akter Mahmuda1,Kabir Mohammad Humayun1ORCID,Alam Mohammad Ashraful1ORCID,Al Mashuk Hammadullah2,Rahman Mohammad Mizanur1ORCID,Alam Mohammad Saiful1ORCID,Brodie Graham3,Islam S. M. Mofijul4ORCID,Gaihre Yam Kanta5ORCID,Rahman Golum Kibria Muhammad Mustafizur1

Affiliation:

1. Department of Soil Science, Bangabandhu Sheikh Mujibur Rahman Agricultural University (BSMRAU), Gazipur 1706, Bangladesh

2. Soil Science Division, Bangladesh Agricultural Research Institute (BARI), Gazipur 1700, Bangladesh

3. School of Engineering and Physical Sciences, James Cook University, Townsville, QLD 4811, Australia

4. Soil Science Division, Bangladesh Rice Research Institute (BRRI), Gazipur 1701, Bangladesh

5. International Fertilizer Development Center, Muscle Shoals, AL 35661, USA

Abstract

With rapid industrialization in Gazipur areas of Bangladesh, untreated industrial effluents have been polluting rice soils which could exert potential ecological risk. Therefore, four different types of industries including chemical (SL), textile and paints (MIX), dyeing (CK), and sweater and dyeing (RD) were selected to monitor the intensity of heavy metal pollution in rice soils and ecological risk assessment. The di-acid digestion method was used for the determination of Pd, Cd, and Ni, and the DTPA extraction method was used for Fe, Zn, and Cu. ArcGIS was used to visualize the spatial patterns of heavy metal pollution, and different pollution indices were calculated to assess the ecological risk. The highest concentration (mg kg−1) of Cd (0.72), Pb (104.20), and Ni (5.02) was found in soils of the MIX industrial area. The highest concentration (mg kg−1) of Fe (147.65) and Zn (11.27) was found in the SL industry, while the highest Cu (7.67) was found in the CK industry. It was evident from the spatial distribution that the soils of paddy fields adjacent to the different industries are more contaminated than background soil. Although the potential ecological risk of heavy metal was low, different pollution indices indicated low to high pollution. Thus, the adjacent rice field soil of different industries is being contaminated by different heavy metals which may raise ecological risk.

Funder

Bangladesh Bureau of Educational Information and Statistics

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction

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