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Human health risks from arsenic in soils: Does one model fit all?
Dibyendu Sarkar
, Rupali Datta
Department of Civil, Environmental and Ocean Engineering
University of Texas at San Antonio
Research output
:
Contribution to journal
›
Article
›
peer-review
9
Scopus citations
Overview
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Dive into the research topics of 'Human health risks from arsenic in soils: Does one model fit all?'. Together they form a unique fingerprint.
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Earth and Planetary Sciences
Model
100%
Risk
100%
Arsenic
100%
Human Health
100%
Site
22%
Shape
11%
Investigation
11%
Rate
11%
Utilization
11%
Difference
11%
Assumption
11%
Cost
11%
Laboratory
11%
Soil Type
11%
Estimate
11%
Stable
11%
Incubation
11%
Pesticide
11%
Risk Assessment
11%
Soil Property
11%
Farming System
11%
Sodium
11%
Agricultural and Biological Sciences
Models
100%
Risk
100%
Humans
100%
Soil
100%
Bioavailability
42%
Soil Types
14%
Laboratories
14%
Pesticide
14%
Soil Properties
14%
Risk Assessment
14%
Soil Physicochemical Properties
14%
Engineering
Arsenic
100%
Human Health
100%
Fit Model
100%
Models
11%
Properties
11%
Applications
11%
Laboratories
11%
Potential Difference
11%
Sodium
11%
Physicochemical Property
11%
Investigator
11%
Reactivity
11%
Pesticide
11%
Pharmacology, Toxicology and Pharmaceutical Science
Arsenic
100%
Health Hazard
100%
Bioavailability
33%
Absence
11%
Risk Assessment
11%
Arsenical
11%
Pesticide
11%
Cancer Risk
11%