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Restiana W. Ariyati
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2 records found
1
Journal article
(2026)
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Bas Bolman, Rizka Akmalia, Isten Tamba, Wesley van Veggel, Heleen Vreugdenhil, Restiana W. Ariyati, Lestari L. Widowati, Ristiawan Agung Nugroho, Sri Rejeki
Coastal communities in Demak, Indonesia, face increasing socio-environmental challenges due to land subsidence, sea level rise, and economic vulnerability. This study assesses the socio-economic feasibility of green mussel (Perna viridis) cultivation on bamboo structures as a Nature-based Solution (NbS) for coastal protection and livelihood improvement. A structured survey was conducted among 337 respondents across 13 villages, focusing on demographic distribution, financial and market feasibility and key barriers. Using Latent Class Cluster Analysis, three distinct clusters were identified. Cluster 1 had balanced demographics and moderate interest in green mussel farming, with concerns over capital and poaching. Cluster 2 showed strong investment interest, easy market access, and highlighted poaching and licensing as key issues. Cluster 3 had the oldest, least educated group, low investment interest, and mentioned lack of capital and skills as key barriers. The study found that proximity to infrastructure and aquaculture exposure influence investment interest in green mussel farming. Younger, educated individuals and aquaculture workers showed more willingness to invest. These insights highlight the importance of tailoring NbS interventions to local socio-economic and geographic contexts. Targeted microcredit schemes, capacity building, community-based monitoring and participatory design processes are necessary to enhance the socio-economic feasibility of green mussel farming on bamboo structures.
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Coastal communities in Demak, Indonesia, face increasing socio-environmental challenges due to land subsidence, sea level rise, and economic vulnerability. This study assesses the socio-economic feasibility of green mussel (Perna viridis) cultivation on bamboo structures as a Nature-based Solution (NbS) for coastal protection and livelihood improvement. A structured survey was conducted among 337 respondents across 13 villages, focusing on demographic distribution, financial and market feasibility and key barriers. Using Latent Class Cluster Analysis, three distinct clusters were identified. Cluster 1 had balanced demographics and moderate interest in green mussel farming, with concerns over capital and poaching. Cluster 2 showed strong investment interest, easy market access, and highlighted poaching and licensing as key issues. Cluster 3 had the oldest, least educated group, low investment interest, and mentioned lack of capital and skills as key barriers. The study found that proximity to infrastructure and aquaculture exposure influence investment interest in green mussel farming. Younger, educated individuals and aquaculture workers showed more willingness to invest. These insights highlight the importance of tailoring NbS interventions to local socio-economic and geographic contexts. Targeted microcredit schemes, capacity building, community-based monitoring and participatory design processes are necessary to enhance the socio-economic feasibility of green mussel farming on bamboo structures.
Journal article
(2025)
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Alejandra Gijón Mancheño, Bagus Maulana, Ad J.H.M. Reniers, Silke A.J. Tas, Tom Wilms, Sri Rejeki, Restiana W. Ariyati, Lestari L. Widowati
Temporary permeable structures of bamboo and brushwood have been implemented for mangrove restoration along retreating coastlines worldwide. However, deriving lessons from previous studies is inhibited by their lack of morphodynamic context, with missing bathymetric data or control comparisons. In this paper, we present a low-tech, low-cost, data collection methodology to support morphodynamic system understanding and modeling of mangrove coastlines. This method was applied to monitor a mangrove restoration project featuring temporary permeable structures of bamboo and PVC, installed in late 2021 on the subsiding muddy coast of Demak, Indonesia. Seabed level changes were regularly tracked with bathymetric surveys and monitoring poles across structures and at a nearby control site. Structures were positioned landward of a chenier, at −0.7 m to −0.9 m relative to mean sea level (MSL), and 30–70 m seaward of the mangrove fringe. Measurements from August 2021 to December 2022 revealed seabed erosion (−0.33 m to −0.4 m) seaward of the structures, with mixed responses landward: two sections eroded (−0.04 m to −0.05 m), one remained stable, and a creek-adjacent section eroded by −0.43 m. At the nearby control site, chenier migration and vertical growth promoted landward accretion, though elevations remained below MSL and thus unsuitable for mangrove colonization. The bathymetric and monitoring pole measurements presented in this study constitute valuable datasets for modeling studies aiming to unravel the dominant processes driving morphodynamic changes. Such models could also inform integrated approaches to mangrove restoration in subsiding coastlines, considering sediment supply, subsidence management, and structure integrity.
...
Temporary permeable structures of bamboo and brushwood have been implemented for mangrove restoration along retreating coastlines worldwide. However, deriving lessons from previous studies is inhibited by their lack of morphodynamic context, with missing bathymetric data or control comparisons. In this paper, we present a low-tech, low-cost, data collection methodology to support morphodynamic system understanding and modeling of mangrove coastlines. This method was applied to monitor a mangrove restoration project featuring temporary permeable structures of bamboo and PVC, installed in late 2021 on the subsiding muddy coast of Demak, Indonesia. Seabed level changes were regularly tracked with bathymetric surveys and monitoring poles across structures and at a nearby control site. Structures were positioned landward of a chenier, at −0.7 m to −0.9 m relative to mean sea level (MSL), and 30–70 m seaward of the mangrove fringe. Measurements from August 2021 to December 2022 revealed seabed erosion (−0.33 m to −0.4 m) seaward of the structures, with mixed responses landward: two sections eroded (−0.04 m to −0.05 m), one remained stable, and a creek-adjacent section eroded by −0.43 m. At the nearby control site, chenier migration and vertical growth promoted landward accretion, though elevations remained below MSL and thus unsuitable for mangrove colonization. The bathymetric and monitoring pole measurements presented in this study constitute valuable datasets for modeling studies aiming to unravel the dominant processes driving morphodynamic changes. Such models could also inform integrated approaches to mangrove restoration in subsiding coastlines, considering sediment supply, subsidence management, and structure integrity.