Related Experiment Video
Updated: Sep 13, 2025

Methods of Soil Resampling to Monitor Changes in the Chemical Concentrations of Forest Soils
Published on: November 25, 2016
Identifying Surface Sulphur Dioxide (SO2) Monitoring Gaps in Saint John, Canada with Land Use Regression and Hot Spot
Tsz Kin Siu1, Christopher S Greene1, Kelvin C Fong1,2
1Department of Earth and Environmental Sciences, Dalhousie University, 6287 Alumni Cres, Halifax, Nova Scotia B3H 4R2, Canada.
Abstract:
Saint John experiences ambient sulphur dioxide (SO2) pollution due to a high density of industrial activities. Despite recent reduction in SO2 emissions, over 90% of the provincial exceedances of air pollutants were related to SO2 or total reduced sulphur (TRS), and over 70% among which occurred in Saint John. Pinpointing intra-urban SO2 hot spots is important for revealing the neighborhoods exposed to high health risk. However, this is challenging due to limited spatial coverage of monitoring. To fill the monitoring gap, we developed two-stage gradient boosting models combining a classifier that discerned between SO2-free and SO2-polluted days and a regressor that estimated daily SO2 levels based on remote sensing data. With a 10-fold cross-validation, the classifier achieved 83% accuracy and the regressors attained R2 of 0.46 and 0.44 for daily mean and maximum SO2 respectively. Based on model outputs, we conducted spatial hot spot analysis and found high SO2 levels spread to northeast, northwest, and southeast Saint John, where SO2 monitoring was absent. Several existing monitoring sites in west Saint John coincided with the hot spots, where SO2 was not regularly measured. Besides the spatiotemporal lags of nearby monitored SO2, wind-related variables such as wind speed and direction had high importance in predicting surface SO2, which might suggest potential impacts to remote unmonitored communities from the transport of SO2. In summary, our findings suggest that certain unmonitored areas in Saint John may experience high SO2 levels. Expansion of monitoring efforts would help inform where and when mitigation should be taken to minimize SO2-related health impacts.
More Related Videos
08:37Measurement of H2S in Crude Oil and Crude Oil Headspace Using Multidimensional Gas Chromatography, Deans Switching and Sulfur-selective Detection
Published on: December 10, 2015
12:26Integrating Remote Sensing with Species Distribution Models; Mapping Tamarisk Invasions Using the Software for Assisted Habitat Modeling SAHM
Published on: October 11, 2016
Related Concept Videos
Levels of Use of a GIS
GIS Software, Hardware, and Sources of GIS Data
Selected Data About Geographic Locations