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A national-scale high-resolution runoff risk and channel network mapping workflow for diffuse pollution management

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Abstract

Managing diffuse pollution from agricultural land requires a spatially explicit risk assessment that can be applied over large areas. Major components of such assessments are the precise definition of both channel networks that often originate as small channels and streams, and Hydrologically Sensitive Areas (HSAs) of storm runoff that occur on land surfaces. Challenges relate to regions of complex topography and land use patterns, particularly those which have been heavily modified by arterial drainage. In this study, a national scale, transferrable workflow and analysis were developed using a specifically commissioned LiDAR survey. Research on the first half of Northern Ireland (6927 km2) is reported where field-edge drain to major river channels were mapped from 1 m (16 points per metre) digital terrain models, and in-field HSAs were defined across over 400,000 fields with a median field size of 0.86 ha. Manual drainage mapping supplemented with a novel automated drainage channel correction process resulted in an unparalleled high-resolution national drainage network with 37,320 km of channels, increasing mapped channel density from 0.9 km km−2 to 5.5 km km−2. The HSAs were based on a Soil Topographic Index (STI) system using hillslope and contributing area models combined with soil hydraulic characteristics. In all, 249 km2 of runoff risk HSAs were identified by extracting the top 95th percentile of the modelled STI as the areas with the highest propensity to generate in-field runoff. At field and individual farm scale these targeted risk maps of diffuse pollution were delivered to over 13,000 farmers and form part of the nationwide Soil Nutrient Health Scheme programme.
Original languageEnglish
Article number122110
Pages (from-to)1-11
Number of pages11
JournalJournal of Environmental Management
Volume368
Early online date7 Aug 2024
DOIs
Publication statusPublished online - 7 Aug 2024

Bibliographical note

Copyright © 2024 The Authors. Published by Elsevier Ltd.. All rights reserved.

Data Availability Statement

The data that has been used is confidential.

Funding

This work was undertaken as part of the “Soil Nutrient Health Scheme”, funded by the Department of Agriculture, Environment and Rural Affairs (DAERA), Northern Ireland.

Funders
Department for Employment and Learning, Northern Ireland
AFBI

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 15 - Life on Land
      SDG 15 Life on Land

    Keywords

    • Diffuse pollution
    • Surface runoff
    • LiDAR
    • Hydrologically sensitive area
    • Risk assessment
    • Channel network

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