Accommodation space as a framework for assessing the response of mangroves to relative sea‐level rise
Bibliographic Data
| ID | 20153925 |
|---|---|
| Authors | Kerrylee Rogers (0000-0003-1350-4737, School of Earth, Atmospheric and Life Sciences, Faculty of Science, Medicine and Health University of Wollongong Australia, corresponding author) |
| Year | 2021 |
| Volume | 42 |
| Issue | 2 |
| Pages | 163-183 |
| Publication date | 2021-05-01 |
| Peer Reviewed | Yes |
| Open Access | Yes |
| Type | ARTICLE |
| Venue | Singapore Journal of Tropical Geography (JOURNAL) |
| Journal identifiers | ISSN: 0129-7619 • E-ISSN: 1467-9493 |
| Publisher | Wiley (PUBLISHER • GB) |
| DOI | 10.1111/sjtg.12357 |
| OpenAlex | W3145942152 |
| Language | EN |
| Citations received | 7 |
| References cited | 85 |
Mangroves thrive in tidally influenced environments and will be central to any discussion regarding the implications of sea‐level rise for coastal communities. Mangrove forests can respond to sea‐level rise by adjusting their position within a tidal frame that is transitioning upwards, and this response is dependent upon a range of hydrological, sedimentological and ecological factors. The availability of accommodation space, defined as the lateral and vertical space in which mineral and organic sediments and organic material from in situ vegetation can accumulate, is increasingly proposed as a means of conceptualizing the response of shorelines to sea‐level rise. Recent analyses demonstrated the significance accommodation space has on global carbon storage in coastal wetlands over the past few millennia, and likely influence on future carbon sequestration and coastal wetland resilience. Mangrove forest vulnerability is commonly indicated by comparing rates of substrate elevation change to rates of sea‐level rise, but these comparisons may overemphasize mangrove forest vulnerability to sea‐level rise as they do not adequately account for the resilience provided by mineral and organic sediments that previously filled accommodation space and increased substrate elevations beyond critical thresholds for submergence. This paper demonstrates that the geological concept of ‘accommodation space’ applied in a way that incorporates ecological processes and recognizes the full range of processes altering accommodation space may provide a unifying framework for integrating information between disciplines and increasing our understanding of the response of mangrove forests to sea‐level rise. This paper also defines available accommodation space as the space available for sediment accumulation; realized accommodation space as the space that has converted from being available, primarily due to sediment accumulation; and the boundary conditions delimiting both available and realized accommodation space (See Appendix I for the full list of definitions). It is anticipated that this paper will serve as a challenge for researchers across disciplines to collaborate, share and integrate knowledge so that the past is interpreted appropriately and integrated into models, and the best information is available to inform coastal planning and management
Accommodation · Geography · Mangrove · Psychological resilience · Vegetation (pathology) · Wetland · Coastal and Marine Dynamics · Coastal wetland ecosystem dynamics · Ecology · Environmental Science · Geological formations and processes · Geology
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Holocene estuary infill leads to coastal barrier initiation from fluvial sand supply in southeastern Australia
Reliability of mangrove radiocarbon chronologies
Accommodating complexities
Planning for current and future needs of mangroves and their accommodation space. Response to Ken Krauss and Catherine Lovelock
Use of ‘accommodation space’ in tidal wetlands. A commentary on Kerrylee Rogers’ ‘Accommodation space as a framework for assessing the response of mangroves to relative sea‐level rise’
Rapid mangrove sediment accretion in late-Holocene paleochannels of Singapore
Mid-Holocene mangrove succession and its response to sea-level change in the upper Mekong River delta, Cambodia
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Sedimentation Patterns in a Mangal on Magnetic Island Near Townsville, North Queensland, Australia
Groundwater extraction, land subsidence, and sea-level rise in the Mekong Delta, Vietnam
Winners and losers as mangrove, coral and seagrass ecosystems respond to sea-level rise in Solomon Islands
Late Holocene sedimentary and environmental development of the northern Mekong River Delta, Vietnam
Geography as a Great Intellectual Melting Pot and the Preeminent Interdisciplinary Environmental Discipline
Prospects for Geography as an Interdisciplinary Discipline
| Unique citing works | 7 |
|---|---|
| Citations per year | 1,4 |
| Citation span | 2021 - 2025 (5) |
| Citation velocity | recent |
| Highly cited | No |
| Citation types | Neutral: 7 |