How do hedgerows influence soil organic carbon stock in livestock-grazed pasture?

Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

StandardStandard

How do hedgerows influence soil organic carbon stock in livestock-grazed pasture? / Ford, Hilary; Healey, John R.; Webb, Bid et al.
Yn: Soil Use and Management, Cyfrol 35, Rhif 4, 31.12.2019, t. 576-584.

Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

HarvardHarvard

APA

CBE

MLA

VancouverVancouver

Ford H, Healey JR, Webb B, Pagella TF, Smith AR. How do hedgerows influence soil organic carbon stock in livestock-grazed pasture? Soil Use and Management. 2019 Rhag 31;35(4):576-584. Epub 2019 Mai 12. doi: 10.1111/sum.12517

Author

RIS

TY - JOUR

T1 - How do hedgerows influence soil organic carbon stock in livestock-grazed pasture?

AU - Ford, Hilary

AU - Healey, John R.

AU - Webb, Bid

AU - Pagella, Tim F.

AU - Smith, Andrew R.

PY - 2019/12/31

Y1 - 2019/12/31

N2 - Hedgerows have the potential to influence ecosystem function in livestock-grazed pasture. Despite this, they are often ignored when quantifying farmland ecosystem service delivery. In this study, we assess the contribution of hedgerows to the ecosystem function of carbon (C) storage, with a particular emphasis on soil organic carbon (SOC). We measured SOC stock (kg C m-2), on an equivalent soil mass basis, at 0-0.15 m depth in pasture adjacent to 38 hedgerows (biotic) and 16 stone walls or fences (abiotic controls) across ten farms in the county of Conwy, Wales, UK. Pasture SOC stock (~7 kg C m-2) was similar adjacent to biotic and abiotic field boundaries, positively associated with soil moisture and negatively with soil bulk density (BD). For biotic boundaries two further variables were significantly associated with SOC stock, distance from hedgerow (decrease in SOC stock) and slope orientation (upslope SOC stock greater than downslope). For pasture adjacent to hedgerows a model combining the aforementioned variables (BD, soil moisture, distance from hedgerow, slope orientation) explained 78% of variation in SOC stock. This study demonstrates that, whilst hedgerows do have subtle positive effects on SOC stock in adjacent pasture, SOC storage adjacent to field boundaries is influenced more by soil moisture content and BD than field boundary type.

AB - Hedgerows have the potential to influence ecosystem function in livestock-grazed pasture. Despite this, they are often ignored when quantifying farmland ecosystem service delivery. In this study, we assess the contribution of hedgerows to the ecosystem function of carbon (C) storage, with a particular emphasis on soil organic carbon (SOC). We measured SOC stock (kg C m-2), on an equivalent soil mass basis, at 0-0.15 m depth in pasture adjacent to 38 hedgerows (biotic) and 16 stone walls or fences (abiotic controls) across ten farms in the county of Conwy, Wales, UK. Pasture SOC stock (~7 kg C m-2) was similar adjacent to biotic and abiotic field boundaries, positively associated with soil moisture and negatively with soil bulk density (BD). For biotic boundaries two further variables were significantly associated with SOC stock, distance from hedgerow (decrease in SOC stock) and slope orientation (upslope SOC stock greater than downslope). For pasture adjacent to hedgerows a model combining the aforementioned variables (BD, soil moisture, distance from hedgerow, slope orientation) explained 78% of variation in SOC stock. This study demonstrates that, whilst hedgerows do have subtle positive effects on SOC stock in adjacent pasture, SOC storage adjacent to field boundaries is influenced more by soil moisture content and BD than field boundary type.

U2 - 10.1111/sum.12517

DO - 10.1111/sum.12517

M3 - Article

VL - 35

SP - 576

EP - 584

JO - Soil Use and Management

JF - Soil Use and Management

SN - 0266-0032

IS - 4

ER -