post-tsunami conservation and sustainable rehabilitation ...€¦ · post-tsunami conservation and...

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Post-Tsunami Conservation and Sustainable Rehabilitation of Coral Reefs in Marine National Park, Thailand Sakanan Plathong 1 , Songtam Suksawang 2 , Pinsak Suraswadi 3 , Supasit Bunpienphol 3 and Phongtheera Buapet 4 1 Department of Biology, Faculty of Science, Prince of Songkla University, Thailand 2 Department of National Park, Widelife and Plant Conservation, Thailand 3 Department of Marine and Coastal Resources, Thailand 4 Faculty of Technology and Environment, Prince of Songkla University, Thailand 1 st Asia Parks Congress, Sendai International Center, Sendai City, Miyagi Prefecture, Japan 13-17 November 2013

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Page 1: Post-Tsunami Conservation and Sustainable Rehabilitation ...€¦ · Post-Tsunami Conservation and Sustainable Rehabilitation of Coral Reefs in Marine National Park, Thailand Sakanan

Post-Tsunami Conservation and Sustainable

Rehabilitation of Coral Reefs in Marine National Park, Thailand

Sakanan Plathong1, Songtam Suksawang2, Pinsak Suraswadi3,

Supasit Bunpienphol3 and Phongtheera Buapet4

1Department of Biology, Faculty of Science, Prince of Songkla University, Thailand

2Department of National Park, Widelife and Plant Conservation, Thailand 3Department of Marine and Coastal Resources, Thailand

4Faculty of Technology and Environment, Prince of Songkla University, Thailand

1st Asia Parks Congress, Sendai International Center, Sendai City, Miyagi Prefecture, Japan 13-17 November 2013

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A

B

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Debris impact

• Impacts from terrestrial debris, particularly in developed coastal areas and tourist destinations.

• debris, which were found, consisted of beach chairs, large umbrellas, boats, boat engines, furniture, kitchenware, rooftops, pieces of woods, and large amount of different materials.

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Sediment covered benthic organisms, anoxic, bacteria colonization: rather severe at site 2 at Talibong, directly hit and greater slope

• Impacts induced by excessive sedimentation. Several shallow-water reefs were covered with sediments.

• After a period of approximately 1 week, traces of fungus were found on the sediment surface.

• Traces of fungus and bacteria on the sediment surface disappeared after 2 weeks.

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Sediment cover

Cover all

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Recovery methods • Recovery efforts must be carried

out immediately since results of past studies had indicated that overturned corals, which were left in the sand, died in period of less than one week.

• By restoring the corals immediately after they were overturned, the corals were given the chance to survive and reproduce.

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• They were uprooted and detached from the hard substrates. The detached pieces of sea fans were larger than one meter.

• More than 300 sea fans were uprooted by the impacts of the tsunami. If left unattended, these sea fans would not be able to survive.

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Experiment of cement & Epoxy

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Fumihito IWASE Biological Institute on Kuroshio

Dr. Fumihito IWASE, Biological Institute on Kuroshio.

Mr. Tadashi Kimura, recommend project to JICA

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Coral culture

• Collecting eggs and sperms from the wild. After fertilization, they are reared in the laboratory until they develop into planula larvae.

• Thereafter, they are released back into the coral reef.

• It is also possible to maintain the culture and allow the planula to settle and develop into new colonies, which ensures high survival rate.

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Rationales and approaches in selecting

suitable rehabilitation methods

• Although there are several approaches to rehabilitated coral reefs, which were damaged by the tsunami, each approach is suitable for a particular area and situation.

• No single rehabilitation approach can be considered suitable for all areas. The rationales for selecting a suitable rehabilitation method are as followed.

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Reef is damaged and the cause(s) is no longer

present

Investigate the environmental conditions and the

causes of coral reef degradation or damages

Source of coral fragments

or colonies is absent

Transplantation

onto artificial

substrates

Allow natural

recovery through

environmental

conservation

Provide hard

substrates, such

as concrete

structure

Hard substrates

are present

Transplantation

onto natural

substrates

Hard substrates

are absent

Reef has been affected by

the impacts from coastal

developments

Reef is damaged and the cause(s) is

still present

Assess the potential for

natural recovery

Coral settlements are present Coral settlements are absent

Hard substrates are

present

Hard substrates

are absent Source of coral fragments or healthy

colonies is present (large reef)

Coral culture

Produce new

coral colonies

for

transplantation

Reef is affected by new impacts from

debris, breakages and overturns

Debris removal and

repair

Improvement of water

quality

Release larvae

into water

column

Settlement plates

Monitoring of recovery progress

Guideline for the selection of coral reef rehabilitation method.

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Gap analysis

• Lack of well coordination between agencies • Lack of long term monitoring • Lack of knowledge and experiences • Lack of public involvement

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No words can describe the devastation that the Tsunami had caused to the lives lost and those who are affected both directly and indirectly

by this disaster.

On the other hand, as quoting one of the volunteer divers,

“The Tsunami has actually washed all of us

to be here and work together”.

We ourselves, as much as the Tsunami, have all, in one way, or another abused our sea in different ways.

It is the time now to start helping nature and give back to our sea. We hope this phenomenon can be the start of our mission to recover

and keep the sea as beautiful as nature intended for us and future generations.

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Special Thanks Japan Fund for Global Environment

Natural Environment Coexistence Technology Association (NECTA)