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{{short description|Coastal wetlands where sediments have been deposited by tides or rivers}}
{{short description|Coastal wetlands where sediments have been deposited by tides or rivers}}
[[Image:Tidal flat general sketch.png|upright=1.5|thumb|General sketch-map of a tidal plain, showing the typical tripartition in [[supratidal zone|supratidal]], [[intertidal]] and [[subtidal]] zones. The most apparent character of the area is the development of tidal channels, affecting mainly the [[intertidal zone]]. In this case, the tidal flat is protected seaward by a [[shoal|beach barrier]], but in many cases (low-energy [[water waves|waves]] and [[longshore currents]]) the tidal flats may directly pass into a shallow marine environment.]]
{{Redirect|Sand flat||Sand Flat (disambiguation){{!}}Sand Flat}}
[[Image:Tidal flat general sketch.png|upright=1.45|thumb|General sketch-map of a tidal plain, showing the typical tripartition in [[supratidal zone|supratidal]], [[intertidal]] and [[subtidal]] zones. The most apparent character of the area is the development of tidal channels, affecting mainly the [[intertidal zone]]. In this case, the tidal flat is protected seaward by a [[shoal|beach barrier]], but in many cases (low-energy [[water waves|waves]] and [[longshore currents]]) the tidal flats may directly pass into a shallow marine environment.]]
[[File:Islets off of Roscoff France.jpg|alt=Aerial photograph showing shallow turquoise water and scattered rocky outcrops forming tidal flats near Roscoff in Brittany, France.|thumb|Aerial view of rocky tidal flats off the coast of Roscoff, Brittany, France]]
'''Mudflats''' or '''mud flats''', also known as '''tidal flats''' or, in Ireland, '''slob''' or '''slobs''',<ref>{{Cite web|url=http://www.askaboutireland.ie/enfo/irelands-environment/county-focus/wexford/wexford-sloblands/|title=Sloblands|website=www.askaboutireland.ie}}</ref><ref>{{Cite news|url=https://www.irishtimes.com/news/celebrating-the-slobs-1.48177|title=Celebrating the Slobs|first=Richard|last=Roche|newspaper=The Irish Times}}</ref> are [[coastal wetland]]s that form in intertidal areas where sediments have been deposited by [[tide]]s or [[river]]s. A global analysis published in 2019 suggested that tidal flat ecosystems are as extensive globally as [[mangrove]]s, covering at least {{convert|127,921|km2|mi2|abbr=on}} of the [[Earth]]'s surface.<ref name=Murray>
{{Citation | last1  = Murray | first1 = N.J. | last2 = Phinn | first2 = S.R. | last3 = DeWitt | first3 = M. | last4 = Ferrari | first4 = R. | last5 = Johnston | first5 = R. | last6 = Lyons| first6 = M.B. |last7 = Clinton | first7 = N. |last8 = Thau| first8 = D. | last9 = Fuller | first9 = R.A. | year = 2019 |title = The global distribution and trajectory of tidal flats | journal = Nature | volume = 565 | issue = 7738 | pages = 222–225 | doi = 10.1038/s41586-018-0805-8 | pmid = 30568300 | bibcode = 2019Natur.565..222M | s2cid = 56481043 }}/</ref> They are found in sheltered areas such as [[bay]]s, [[bayou]]s, [[lagoon]]s, and [[estuary|estuaries]]; they are also seen in [[freshwater]] [[lake]]s and [[salt lake|salty lakes]] (or inland seas) alike, wherein many rivers and [[Stream|creeks]] end. Mudflats may be viewed [[geology|geologically]] as exposed layers of [[bay mud]], resulting from deposition of [[estuarine]] [[silt]]s, [[clay]]s and aquatic animal [[detritus]]. Most of the sediment within a mudflat is within the [[intertidal zone]], and thus the flat is submerged and exposed approximately twice daily.


'''Mudflats''' or '''mud flats''', also known as '''tidal flats''' or, in Ireland, '''slob''' or '''slobs''',<ref>{{Cite web|url=http://www.askaboutireland.ie/enfo/irelands-environment/county-focus/wexford/wexford-sloblands/|title=Sloblands|website=www.askaboutireland.ie}}</ref><ref>{{Cite web|url=https://www.irishtimes.com/news/celebrating-the-slobs-1.48177|title=Celebrating the Slobs|first=Richard|last=Roche|website=The Irish Times}}</ref> are [[coastal wetland]]s that form in intertidal areas where sediments have been deposited by tides or rivers. A global analysis published in 2019 suggested that tidal flat ecosystems are as extensive globally as [[mangrove]]s, covering at least {{convert|127,921|km2|mi2|abbr=on}} of the Earth's surface.<ref name=Murray>
A recent global [[remote sensing]] analysis estimated that approximately 50% of the global extent of tidal flats occurs within eight countries ([[Indonesia]], [[China]], [[Australia]], [[United States]], [[Canada]], [[India]], [[Brazil]], and [[Myanmar]]) and that 44% of the world's tidal flats occur within Asia ({{convert|56,051|km2|mi2|disp=or|abbr=on}}).<ref name=Murray/> A 2022 analysis of tidal wetland losses and gains estimates that global tidal flats experienced losses of {{convert|7,000|km2|mi2|abbr=on}} between 1999 and 2019, which were largely offset by global gains of {{convert|6,700|km2|mi2|abbr=on}} over the same time period.<ref name="Murray et al. 2022">{{cite journal |last1=Murray |first1=Nicholas J. |last2=Worthington |first2=Thomas A. |last3=Bunting |first3=Pete |last4=Duce |first4=Stephanie |last5=Hagger |first5=Valerie |last6=Lovelock |first6=Catherine E. |last7=Lucas |first7=Richard |last8=Saunders |first8=Megan I. |last9=Sheaves |first9=Marcus |last10=Spalding |first10=Mark |last11=Waltham |first11=Nathan J. |last12=Lyons |first12=Mitchell B. |title=High-resolution mapping of losses and gains of Earth's tidal wetlands |journal=Science |date=13 May 2022 |volume=376 |issue=6594 |pages=744–749 |doi=10.1126/science.abm9583|pmid=35549414 |bibcode=2022Sci...376..744M |s2cid=248749118 |url=http://pure.aber.ac.uk/ws/files/50771054/abm9583_CombinedPDF_v5.pdf }}</ref>
{{Citation | last1 = Murray | first1 = N.J. | last2 = Phinn | first2 = S.R. | last3 = DeWitt | first3 = M. | last4 = Ferrari | first4 = R. | last5 = Johnston | first5 = R. | last6 = Lyons| first6 = M.B. |last7 = Clinton | first7 = N. |last8 = Thau| first8 = D. | last9 = Fuller | first9 = R.A. | year = 2019 |title = The global distribution and trajectory of tidal flats | journal = Nature | volume = 565 | issue = 7738 | pages = 222–225 | doi = 10.1038/s41586-018-0805-8 | pmid = 30568300 | bibcode = 2019Natur.565..222M }}/</ref> They are found in sheltered areas such as [[bay]]s, [[bayou]]s, [[lagoon]]s, and [[Estuary|estuaries]]; they are also seen in [[freshwater]] [[lake]]s and [[salt lake|salty lakes]] (or inland seas) alike, wherein many rivers and creeks end.<ref>Swamps and marshes (with thick and deep mud beneath surfaces in hot season) are either freshwater, salty, or brackish.</ref> Mudflats may be viewed [[geology|geologically]] as exposed layers of [[bay mud]], resulting from deposition of [[estuarine]] [[silt]]s, [[clay]]s and aquatic animal [[detritus]]. Most of the sediment within a mudflat is within the [[intertidal zone]], and thus the flat is submerged and exposed approximately twice daily.


A recent global remote sensing analysis estimated that approximately 50% of the global extent of tidal flats occurs within eight countries ([[Indonesia]], [[China]], [[Australia]], [[United States]], [[Canada]], [[India]], [[Brazil]], and [[Myanmar]]) and that 44% of the world's tidal flats occur within Asia ({{convert|56,051|km2|mi2|disp=or|abbr=on}}).<ref name=Murray/>
In the past tidal flats were considered unhealthy, economically unimportant areas and were often dredged and developed into agricultural land.<ref>{{Cite web|url=http://www.mrcirl.org/marker/marker1701/0701.html|title=Dredging Indian River Lagoon Wetlands 1920 - 1950s|access-date=2011-10-28|archive-date=2013-03-20|archive-url=https://web.archive.org/web/20130320113810/http://www.mrcirl.org/marker/marker1701/0701.html|url-status=dead}}</ref> Some mudflats can be extremely treacherous to walk on. For example, the mudflats surrounding [[Anchorage, Alaska]], are made from fine glacial-silt which does not easily separate out its water, and, although seemingly solid, can quickly gel and become like [[quicksand]] when disturbed by stepping on it. Four people are known to have become stuck up to their waists and drowned when the tide came in, and many others are rescued from the Anchorage mudflats each year.<ref>[https://apnews.com/article/alaska-mud-flats-silt-drowning-96bba1b5a8a463118e3a886ae2b01499 Associated Press - Man dies on Alaskan Mudflat]</ref>  


In the past tidal flats were considered unhealthy, economically unimportant areas and were often dredged and developed into agricultural land.<ref>{{Cite web|url=http://www.mrcirl.org/marker/marker1701/0701.html|title=Dredging Indian River Lagoon Wetlands 1920 - 1950s}}</ref> Several especially shallow mudflat areas, such as the [[Wadden Sea]], are now popular among those practising the sport of [[mudflat hiking]].
On the [[Baltic Sea]] coast of [[Germany]] in places, mudflats are exposed not by tidal action, but by wind-action driving water away from the shallows into the sea. This kind of wind-affected mudflat is called ''[[Windwatt]]'' in German.{{cn|date=September 2022}}
 
On the [[Baltic Sea]] coast of [[Germany]] in places, mudflats are exposed not by tidal action, but by wind-action driving water away from the shallows into the sea. This kind of wind-affected mudflat is called ''[[Windwatt]]'' in German.


==Ecology==
==Ecology==
[[Image:Stewart Island Oban Mudflats.jpg|thumb|Mudflats near [[Oban, New Zealand|Oban]] on [[Stewart Island/Rakiura|Stewart Island]], [[New Zealand]]]]
[[Image:Stewart Island Oban Mudflats.jpg|thumb|Mudflats near [[Oban, New Zealand|Oban]] on [[Stewart Island/Rakiura|Stewart Island]], [[New Zealand]]]]


Tidal flats, along with intertidal [[salt marsh]]es and [[mangrove]] forests, are important [[ecosystem]]s.<ref>{{Cite web|url=https://irlspecies.org/index.php|title=Indian River Lagoon Species Inventory Home|website=irlspecies.org}}</ref> They usually support a large population of wildlife, and are a key habitat that allows tens of millions of migratory [[shorebirds]] to migrate from breeding sites in the northern hemisphere to non-breeding areas in the southern hemisphere. They are often of vital importance to [[migratory bird]]s, as well as certain species of [[crab]]s,<ref>Triño, A. T., & Rodriguez, E. M. (2000). Mud crab (Scylla serrata) culture in tidal flats with existing mangroves. In J. H. Primavera, M. T. Castaños, & M. B. Surtida (Eds.), ''Mangrove-Friendly Aquaculture: Proceedings of the Workshop on Mangrove-Friendly Aquaculture organized by the SEAFDEC Aquaculture Department, January 11–15, 1999, Iloilo City, Philippines'' (pp. 171–176). Aquaculture Department, Southeast Asian Fisheries Development Center. https://repository.seafdec.org.ph/handle/10862/454</ref> [[mollusk]]s and [[fish]].<ref>{{Cite web|url=http://www.env.go.jp/en/nature/npr/ramsar_wetland/pamph/manko_34.pdf|title=Manko - Tidal Flat, Mangrove Forest}}</ref> In the [[United Kingdom]] mudflats have been classified as a [[Biodiversity Action Plan]] priority habitat.
Tidal flats, along with intertidal [[salt marsh]]es and [[mangrove]] forests, are important [[ecosystem]]s.<ref>{{Cite web|url=https://irlspecies.org/index.php|title=Indian River Lagoon Species Inventory Home|website=irlspecies.org}}</ref> They support a large population of wildlife,<ref>Aldea, K. (2022). The Unvegetated Tidal Flats in Catanduanes Island, Philippines: Current and Future Trends. In T. Shinbo, S. Akama & S. Kubota (Eds.), " Interdisciplinary Studies for Integrated Coastal Zone Management in the Region along the Kuroshio: Problem-Based Approach by Kuroshio Science" (pp.76-82).https://kochi.repo.nii.ac.jp/?action=pages_view_main&active_action=repository_view_main_item_detail&item_id=8635&item_no=1&page_id=13&block_id=21</ref> and are a key habitat that allows tens of millions of migratory [[shorebirds]] to migrate from breeding sites in the northern hemisphere to non-breeding areas in the southern hemisphere. They are often of vital importance to [[migratory bird]]s, as well as certain species of [[crab]]s,<ref>Triño, A. T., & Rodriguez, E. M. (2000). Mud crab (Scylla serrata) culture in tidal flats with existing mangroves. In J. H. Primavera, M. T. Castaños, & M. B. Surtida (Eds.), ''Mangrove-Friendly Aquaculture: Proceedings of the Workshop on Mangrove-Friendly Aquaculture organized by the SEAFDEC Aquaculture Department, January 11–15, 1999, Iloilo City, Philippines'' (pp. 171–176). Aquaculture Department, Southeast Asian Fisheries Development Center. https://repository.seafdec.org.ph/handle/10862/454</ref> [[mollusk]]s and [[fish]].<ref>{{Cite web|url=http://www.env.go.jp/en/nature/npr/ramsar_wetland/pamph/manko_34.pdf|title=Manko - Tidal Flat, Mangrove Forest}}</ref> In the [[United Kingdom]] mudflats have been classified as a [[Biodiversity Action Plan]] priority habitat.


The maintenance of mudflats is important in preventing coastal erosion. However, mudflats worldwide are under threat from predicted [[sea level rise]]s, land claims for development, [[Dredge|dredging]] due to shipping purposes, and [[soil contamination|chemical pollution]].<ref name=Murray/> In some parts of the world, such as East and South-East Asia, mudflats have been reclaimed for [[aquaculture]], [[agriculture]], and industrial development. For example, around the [[Yellow Sea]] region of East Asia, more than 65% of mudflats present in the early 1950s had been destroyed by the late 2000s.<ref>{{ Citation | first1 = J. | last1 = MacKinnon | first2 = Y.I. | last2 = Verkuil | first3 = N.J. | last3 = Murray | year = 2012 | title = IUCN situation analysis on East and Southeast Asian intertidal habitats, with particular reference to the Yellow Sea (including the Bohai Sea)| series = Occasional Paper of the IUCN Species Survival Commission No. 47 | pages =   70 | publisher = IUCN | place = Gland, Switzerland and Cambridge, UK | isbn = 9782831712550 | url = http://www.iucn.org/asiancoastalwetlands/}}</ref><ref>
The maintenance of mudflats is important in preventing coastal erosion. However, mudflats worldwide are under threat from predicted [[sea level rise]]s, land claims for development, [[Dredge|dredging]] due to shipping purposes, and [[soil contamination|chemical pollution]].<ref name=Murray/> In some parts of the world, such as East and South-East Asia, mudflats have been reclaimed for [[aquaculture]], [[agriculture]], and industrial development. For example, around the [[Yellow Sea]] region of East Asia, more than 65% of mudflats present in the early 1950s had been destroyed by the late 2000s.<ref>{{Citation | first1 = J. | last1 = MacKinnon | first2 = Y.I. | last2 = Verkuil | first3 = N.J. | last3 = Murray | year = 2012 | title = IUCN situation analysis on East and Southeast Asian intertidal habitats, with particular reference to the Yellow Sea (including the Bohai Sea) | series = Occasional Paper of the IUCN Species Survival Commission No. 47 | pages = 70 | publisher = IUCN | place = Gland, Switzerland and Cambridge, UK | isbn = 9782831712550 | url = http://www.iucn.org/asiancoastalwetlands/ | access-date = 2014-08-01 | archive-date = 2014-06-24 | archive-url = https://archive.today/20140624015227/http://www.iucn.org/asiancoastalwetlands/ | url-status = dead }}</ref><ref>
{{Citation | last1  = Murray | first1 = N.J. | last2 = Clemens | first2 = R.S. | last3 = Phinn | first3 = S.R. | last4 = Possingham | first4 = H.P. | last5 = Fuller | first5 = R.A. | year = 2014 |title = Tracking the rapid loss of tidal wetlands in the Yellow Sea| journal = Frontiers in Ecology and the Environment | volume = 12 | issue = 5 | pages = 267–272 | doi = 10.1890/130260 | url = https://researchonline.jcu.edu.au/60169/1/130260.pdf }}/</ref> It is estimated that up to 16% of the world tidal flats have disappeared since the mid-1980s.<ref name=Murray/>
{{Citation | last1  = Murray | first1 = N.J. | last2 = Clemens | first2 = R.S. | last3 = Phinn | first3 = S.R. | last4 = Possingham | first4 = H.P. | last5 = Fuller | first5 = R.A. | year = 2014 |title = Tracking the rapid loss of tidal wetlands in the Yellow Sea| journal = Frontiers in Ecology and the Environment | volume = 12 | issue = 5 | pages = 267–272 | doi = 10.1890/130260 | url = https://researchonline.jcu.edu.au/60169/1/130260.pdf }}/</ref> It is estimated that up to 16% of the world tidal flats have disappeared since the mid-1980s.<ref name=Murray/>


Mudflat sediment deposits are focused into the [[intertidal zone]] which is composed of a barren zone and marshes. Within these areas are various ratios of sand and mud that make up the sedimentary layers.<ref name=Reineck>Reineck, H.E, and I.B Singh, ''Depositional Sedimentary Environments,'' 2nd Ed. New York: Springer-Verlag Berlin Heidelberg, 1980, pp. 418-428</ref>  The associated growth of coastal sediment deposits can be attributed to rates of subsidence along with rates of deposition (example: silt transported via river) and changes in sea level.<ref name=Reineck/>
Mudflat sediment deposits are focused into the [[intertidal zone]] which is composed of a barren zone and marshes. Within these areas are various ratios of sand and mud that make up the sedimentary layers.<ref name=Reineck>{{cite book |last1=Reineck |first1=H. E. |first2=I. B. |last2=Singh |title=Depositional Sedimentary Environments |edition=2nd |location=New York |publisher=Springer-Verlag |year=1980 |pages=418–428 |isbn=0-387-10189-6 }}</ref>  The associated growth of coastal sediment deposits can be attributed to rates of subsidence along with rates of deposition (example: silt transported via river) and changes in sea level.<ref name=Reineck/>
   
   
Barren zones extend from the lowest portion of the intertidal zone to the marsh areas. Beginning in close proximity to the tidal bars, sand dominated layers are prominent and become increasingly muddy throughout the tidal channels. Common bedding types include laminated sand, ripple bedding, and bay mud. [[Bioturbation]] also has a strong presence in barren zones.
Barren zones extend from the lowest portion of the intertidal zone to the marsh areas. Beginning in close proximity to the tidal bars, sand dominated layers are prominent and become increasingly muddy throughout the tidal channels. Common bedding types include laminated sand, ripple bedding, and bay mud. [[Bioturbation]] also has a strong presence in barren zones.


[[Marshes]] contain an abundance of [[herbaceous plant]]s while the sediment layers consist of thin sand and mud layers. [[Mudcrack]]s are a common as well as wavy bedding planes.<ref name=Reineck/>  Marshes are also the origins of coal/peat layers because of the abundant decaying plant life.<ref name=Reineck/>
[[Marshes]] contain an abundance of [[herbaceous plant]]s while the sediment layers consist of thin sand and mud layers. [[Mudcrack]]s are a common as well as wavy bedding planes.<ref name=Reineck/>  Marshes are also the origins of coal/peat layers because of the abundant decaying plant life.<ref name=Reineck/>
[[Salt pan (geology)|Salt pans]] can be distinguished in that they contain thinly laminated layers of clayey silt. The main source of the silt comes from rivers. Dried up mud along with wind erosion forms silt dunes. When flooding, rain or tides come in, the dried sediment is then re-distributed.<ref name=Reineck/>


[[Salt pan (geology)|Salt pans]] can be distinguished in that they contain thinly laminated layers of clayey silt. The main source of the silt comes from rivers. Dried up mud along with wind erosion forms silt dunes. When flooding, rain or tides come in, the dried sediment is then re-distributed.<ref name=Reineck/>
<gallery class="center" widths="180px">
File:ISS013-E-75163 - View of Tunisia.jpg|alt=Satellite view of the Kneiss Islands, Tunisia|Satellite view of the [[Kneiss|Kneiss Islands]], [[Tunisia]].
File:Skagit_Bay_6308.JPG|Gulls feeding on mudflats in [[Skagit Bay]], [[Washington (state)|Washington]], United States
Image:brewster mudflat.jpg|Mudflats in [[Brewster, Massachusetts]], United States, extending hundreds of yards offshore at the low tide. The line of [[Wrack (seaweed)]] and seashells in the foreground indicates the [[tide|high-water mark]].
</gallery>


[[Image:brewster mudflat.jpg|thumb|Mudflats in [[Brewster, Massachusetts]], [[United States]], extending hundreds of yards offshore at the low tide. The line of [[Wrack (seaweed)|wrack]] and seashells in the foreground indicates the [[tide|high-water mark]].]]
==Cultural Services==
[[File:Skagit_Bay_6308.JPG|thumb|Gulls feeding on mudflats in [[Skagit Bay]], [[Washington (state)|Washington]].]]
Tidal flats provide cultural services that reflect a sense of place, foster social interactions, and support well-being.<ref>{{cite web |last1=Aldea |first1=K. |last2=Tumala |first2=Z.M. |date=2025 |title= Tidal flats' faunal resource utilization in Catanduanes Island, Philippines: gleaning, fishing, and their associated provisioning and cultural services |url= https://www.frontiersin.org/journals/sustainability/articles/10.3389/frsus.2025.1650431/full |url-access= |trans-title= |format= |website= |language= |location= |publisher= |url-status= |archive-url= |archive-date= |access-date= |via= |quote=}}</ref> Intergenerational practices of tidal flat gleaning and fishing are central to tidal flat-dependent communities.<ref>{{cite web |last1=Aldea |first1=K. |last2=Tumala |first2=Z.M. |date=2025 |title= Tidal flats' faunal resource utilization in Catanduanes Island, Philippines: gleaning, fishing, and their associated provisioning and cultural services |url= https://www.frontiersin.org/journals/sustainability/articles/10.3389/frsus.2025.1650431/full |url-access= |trans-title= |format= |website= |language= |location= |publisher= |url-status= |archive-url= |archive-date= |access-date= |via= |quote=}}</ref> Hence, enabling cultural preservation and identity for the coastal communities, which are intricately linked with the tidal flats ecosystem.<ref>{{cite web |last1=Aldea |first1=K. |last2=Tumala |first2=Z.M. |date=2025 |title= Tidal flats' faunal resource utilization in Catanduanes Island, Philippines: gleaning, fishing, and their associated provisioning and cultural services |url= https://www.frontiersin.org/journals/sustainability/articles/10.3389/frsus.2025.1650431/full |url-access= |trans-title= |format= |website= |language= |location= |publisher= |url-status= |archive-url= |archive-date= |access-date= |via= |quote=}}</ref>


==Selected example areas==
==Selected example areas==
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* [[Arcachon Bay]], [[France]]  
* [[Arcachon Bay]], [[France]]  
* [[Banc d'Arguin]], [[Mauritania]]
* [[Banc d'Arguin]], [[Mauritania]]
* [[Banquerohan Wetlands]], [[Catanduanes]], [[Philippines]]
* [[Chamiza Wetland]], [[Chile]]
* [[Gigmoto Bay]], [[Catanduanes]], [[Philippines]]
* [[Great Rann of Kutch]], [[India]]
* [[Great Rann of Kutch]], [[India]]
* [[Belhaven, Scotland|Belhaven]], [[East Lothian]] [[Scotland]], [[United Kingdom]]
* [[Belhaven, Scotland|Belhaven]], [[East Lothian]] [[Scotland]], [[United Kingdom]]
* [[Bridgwater Bay]] and [[Morecambe Bay]], [[United Kingdom]]
* [[Bridgwater Bay]] and [[Morecambe Bay]], [[United Kingdom]]
* [[Cape Cod Bay]], [[Massachusetts]], [[United States]]
* [[Cape Cod Bay]], [[Massachusetts]], United States
* [[Cook Inlet]], [[Alaska]], [[United States]]
* [[Cook Inlet]], [[Alaska]], United States
* [[Lindisfarne|Lindisfarne Island]], [[England]], [[United Kingdom]]
* [[Lindisfarne|Lindisfarne Island]], [[England]], [[United Kingdom]]
* [[Minas Basin]], [[Nova Scotia]], [[Canada]]
* [[Minas Basin]], [[Nova Scotia]], [[Canada]]
* [[Moreton Bay]], [[Queensland]], [[Australia]]
* [[Moreton Bay]], [[Queensland]], [[Australia]]
* [[North Slob]], [[Wexford]], [[Ireland]]
* [[North Slob]], [[Wexford]], [[Republic of Ireland|Ireland]]
* [[Padilla Bay]], [[Washington (state)|Washington]], [[United States]]
* [[Kneiss|Kneiss Archipelago]], [[Tunisia]]
* [[Plymouth Bay]], [[Massachusetts]], [[United States]]
* [[Padilla Bay]], [[Washington (state)|Washington]], United States
* [[Port of Tacoma]], [[Washington (state)|Washington]], [[United States]]
* [[Plymouth Bay]], [[Massachusetts]], United States
* [[Port Susan]], [[Warm Beach]], [[Washington (state)|Washington]], [[United States]]
* [[Port of Tacoma]], [[Washington (state)|Washington]], United States
* [[Skagit Bay]], [[Washington (state)|Washington]]
* [[Port Susan]], [[Warm Beach]], [[Washington (state)|Washington]], United States
* [[Snettisham]] [[Norfolk]] [[England]], [[United Kingdom]]
* [[Skagit Bay]], [[Washington (state)|Washington]], United States
* [[Snettisham]], [[Norfolk]] [[England]], [[United Kingdom]]
* [[Wadden Sea]]: [[Netherlands]], [[Germany]], [[Denmark]]
* [[Wadden Sea]]: [[Netherlands]], [[Germany]], [[Denmark]]
* West coast of [[Andros, Bahamas|Andros Island, Bahamas]]
* West coast of [[Andros, Bahamas|Andros Island, Bahamas]]
* [[Yellow Sea|West Sea]] : [[South Korea]]
* [[Yellow Sea]]: [[China]], [[North Korea]], [[South Korea]]([[Getbol, Korean Tidal Flats|Getbol]])


== See also ==
== See also ==
{{Portal|Wetlands}}
{{Portal|Wetlands}}
* [[Getbol, Korean Tidal Flats|Getbol]]
* [[Herringbone cross bed]]s
* [[Herringbone cross bed]]s


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{{Authority control}}
{{Authority control}}


[[Category:Landforms]]
[[Category:Mudflats]]
[[Category:Wetlands]]
[[Category:Coastal geography]]

Latest revision as of 22:40, 15 February 2026


General sketch-map of a tidal plain, showing the typical tripartition in supratidal, intertidal and subtidal zones. The most apparent character of the area is the development of tidal channels, affecting mainly the intertidal zone. In this case, the tidal flat is protected seaward by a beach barrier, but in many cases (low-energy waves and longshore currents) the tidal flats may directly pass into a shallow marine environment.
Aerial photograph showing shallow turquoise water and scattered rocky outcrops forming tidal flats near Roscoff in Brittany, France.
Aerial view of rocky tidal flats off the coast of Roscoff, Brittany, France

Mudflats or mud flats, also known as tidal flats or, in Ireland, slob or slobs,[1][2] are coastal wetlands that form in intertidal areas where sediments have been deposited by tides or rivers. A global analysis published in 2019 suggested that tidal flat ecosystems are as extensive globally as mangroves, covering at least 127,921 km2 (49,391 sq mi) of the Earth's surface.[3] They are found in sheltered areas such as bays, bayous, lagoons, and estuaries; they are also seen in freshwater lakes and salty lakes (or inland seas) alike, wherein many rivers and creeks end. Mudflats may be viewed geologically as exposed layers of bay mud, resulting from deposition of estuarine silts, clays and aquatic animal detritus. Most of the sediment within a mudflat is within the intertidal zone, and thus the flat is submerged and exposed approximately twice daily.

A recent global remote sensing analysis estimated that approximately 50% of the global extent of tidal flats occurs within eight countries (Indonesia, China, Australia, United States, Canada, India, Brazil, and Myanmar) and that 44% of the world's tidal flats occur within Asia (56,051 km2 or 21,641 sq mi).[3] A 2022 analysis of tidal wetland losses and gains estimates that global tidal flats experienced losses of 7,000 km2 (2,700 sq mi) between 1999 and 2019, which were largely offset by global gains of 6,700 km2 (2,600 sq mi) over the same time period.[4]

In the past tidal flats were considered unhealthy, economically unimportant areas and were often dredged and developed into agricultural land.[5] Some mudflats can be extremely treacherous to walk on. For example, the mudflats surrounding Anchorage, Alaska, are made from fine glacial-silt which does not easily separate out its water, and, although seemingly solid, can quickly gel and become like quicksand when disturbed by stepping on it. Four people are known to have become stuck up to their waists and drowned when the tide came in, and many others are rescued from the Anchorage mudflats each year.[6]

On the Baltic Sea coast of Germany in places, mudflats are exposed not by tidal action, but by wind-action driving water away from the shallows into the sea. This kind of wind-affected mudflat is called Windwatt in German.[citation needed]

Ecology[edit | edit source]

Mudflats near Oban on Stewart Island, New Zealand

Tidal flats, along with intertidal salt marshes and mangrove forests, are important ecosystems.[7] They support a large population of wildlife,[8] and are a key habitat that allows tens of millions of migratory shorebirds to migrate from breeding sites in the northern hemisphere to non-breeding areas in the southern hemisphere. They are often of vital importance to migratory birds, as well as certain species of crabs,[9] mollusks and fish.[10] In the United Kingdom mudflats have been classified as a Biodiversity Action Plan priority habitat.

The maintenance of mudflats is important in preventing coastal erosion. However, mudflats worldwide are under threat from predicted sea level rises, land claims for development, dredging due to shipping purposes, and chemical pollution.[3] In some parts of the world, such as East and South-East Asia, mudflats have been reclaimed for aquaculture, agriculture, and industrial development. For example, around the Yellow Sea region of East Asia, more than 65% of mudflats present in the early 1950s had been destroyed by the late 2000s.[11][12] It is estimated that up to 16% of the world tidal flats have disappeared since the mid-1980s.[3]

Mudflat sediment deposits are focused into the intertidal zone which is composed of a barren zone and marshes. Within these areas are various ratios of sand and mud that make up the sedimentary layers.[13] The associated growth of coastal sediment deposits can be attributed to rates of subsidence along with rates of deposition (example: silt transported via river) and changes in sea level.[13]

Barren zones extend from the lowest portion of the intertidal zone to the marsh areas. Beginning in close proximity to the tidal bars, sand dominated layers are prominent and become increasingly muddy throughout the tidal channels. Common bedding types include laminated sand, ripple bedding, and bay mud. Bioturbation also has a strong presence in barren zones.

Marshes contain an abundance of herbaceous plants while the sediment layers consist of thin sand and mud layers. Mudcracks are a common as well as wavy bedding planes.[13] Marshes are also the origins of coal/peat layers because of the abundant decaying plant life.[13] Salt pans can be distinguished in that they contain thinly laminated layers of clayey silt. The main source of the silt comes from rivers. Dried up mud along with wind erosion forms silt dunes. When flooding, rain or tides come in, the dried sediment is then re-distributed.[13]

Cultural Services[edit | edit source]

Tidal flats provide cultural services that reflect a sense of place, foster social interactions, and support well-being.[14] Intergenerational practices of tidal flat gleaning and fishing are central to tidal flat-dependent communities.[15] Hence, enabling cultural preservation and identity for the coastal communities, which are intricately linked with the tidal flats ecosystem.[16]

Selected example areas[edit | edit source]

See also[edit | edit source]

References[edit | edit source]

  1. "Sloblands". www.askaboutireland.ie.
  2. Roche, Richard. "Celebrating the Slobs". The Irish Times.
  3. 3.0 3.1 3.2 3.3 Murray, N.J.; Phinn, S.R.; DeWitt, M.; Ferrari, R.; Johnston, R.; Lyons, M.B.; Clinton, N.; Thau, D.; Fuller, R.A. (2019), "The global distribution and trajectory of tidal flats", Nature, 565 (7738): 222–225, Bibcode:2019Natur.565..222M, doi:10.1038/s41586-018-0805-8, PMID 30568300, S2CID 56481043/
  4. Murray, Nicholas J.; Worthington, Thomas A.; Bunting, Pete; Duce, Stephanie; Hagger, Valerie; Lovelock, Catherine E.; Lucas, Richard; Saunders, Megan I.; Sheaves, Marcus; Spalding, Mark; Waltham, Nathan J.; Lyons, Mitchell B. (13 May 2022). "High-resolution mapping of losses and gains of Earth's tidal wetlands" (PDF). Science. 376 (6594): 744–749. Bibcode:2022Sci...376..744M. doi:10.1126/science.abm9583. PMID 35549414. S2CID 248749118.
  5. "Dredging Indian River Lagoon Wetlands 1920 - 1950s". Archived from the original on 2013-03-20. Retrieved 2011-10-28.
  6. Associated Press - Man dies on Alaskan Mudflat
  7. "Indian River Lagoon Species Inventory Home". irlspecies.org.
  8. Aldea, K. (2022). The Unvegetated Tidal Flats in Catanduanes Island, Philippines: Current and Future Trends. In T. Shinbo, S. Akama & S. Kubota (Eds.), " Interdisciplinary Studies for Integrated Coastal Zone Management in the Region along the Kuroshio: Problem-Based Approach by Kuroshio Science" (pp.76-82).https://kochi.repo.nii.ac.jp/?action=pages_view_main&active_action=repository_view_main_item_detail&item_id=8635&item_no=1&page_id=13&block_id=21
  9. Triño, A. T., & Rodriguez, E. M. (2000). Mud crab (Scylla serrata) culture in tidal flats with existing mangroves. In J. H. Primavera, M. T. Castaños, & M. B. Surtida (Eds.), Mangrove-Friendly Aquaculture: Proceedings of the Workshop on Mangrove-Friendly Aquaculture organized by the SEAFDEC Aquaculture Department, January 11–15, 1999, Iloilo City, Philippines (pp. 171–176). Aquaculture Department, Southeast Asian Fisheries Development Center. https://repository.seafdec.org.ph/handle/10862/454
  10. "Manko - Tidal Flat, Mangrove Forest" (PDF).
  11. MacKinnon, J.; Verkuil, Y.I.; Murray, N.J. (2012), IUCN situation analysis on East and Southeast Asian intertidal habitats, with particular reference to the Yellow Sea (including the Bohai Sea), Occasional Paper of the IUCN Species Survival Commission No. 47, Gland, Switzerland and Cambridge, UK: IUCN, p. 70, ISBN 9782831712550, retrieved 2014-08-01{{citation}}: CS1 maint: deprecated archival service (link)
  12. Murray, N.J.; Clemens, R.S.; Phinn, S.R.; Possingham, H.P.; Fuller, R.A. (2014), "Tracking the rapid loss of tidal wetlands in the Yellow Sea" (PDF), Frontiers in Ecology and the Environment, 12 (5): 267–272, doi:10.1890/130260/
  13. 13.0 13.1 13.2 13.3 13.4 Reineck, H. E.; Singh, I. B. (1980). Depositional Sedimentary Environments (2nd ed.). New York: Springer-Verlag. pp. 418–428. ISBN 0-387-10189-6.
  14. Aldea, K.; Tumala, Z.M. (2025). "Tidal flats' faunal resource utilization in Catanduanes Island, Philippines: gleaning, fishing, and their associated provisioning and cultural services".
  15. Aldea, K.; Tumala, Z.M. (2025). "Tidal flats' faunal resource utilization in Catanduanes Island, Philippines: gleaning, fishing, and their associated provisioning and cultural services".
  16. Aldea, K.; Tumala, Z.M. (2025). "Tidal flats' faunal resource utilization in Catanduanes Island, Philippines: gleaning, fishing, and their associated provisioning and cultural services".

External links[edit | edit source]

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