Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Production and Decomposition of Mangrove Species Rhizophora apiculata Blume in Surabaya East Coast Indonesia

View through CrossRef
The mangrove ecosystem is supported by the production and decomposition of leaf litter, as well as the release of nutrients into the environment and the neighbouring coastal seas. The release of phosphorus and nitrogen contributes significantly to the improvement of the nutritional values, which benefits marine species and the neighbourhood. In the current study, nutrient release, leaf decomposition rate, litter generation, and mangrove habitat at Surabaya East Coast, Java, Indonesia were all examined. Three transects and three plots in each transect were established. The percentage of initial dry mass remaining in the litter bags were determined by using two sample t-test in Statistica 6.0 software. The decomposition of Rhizophora apiculata leaves was studied by using litter bag technique. They were made of synthetic nylon with the dimension of 15×15×25 cm and mesh size of 1×1.25 mm2. Senescent leaves were used because they present major leaves on the forest floor. According to the findings, daily mangrove litter production (dry weight) varied between 2.15 and 3.28 g/m2. Branch litter (9.43 – 13.27%), reproductive parts (8.20 – 14, 31%), and leaf litter (76.26 – 78.53%) were the other major contributors. The 345.6 ha of mangrove forests along the east coast of Surabaya are the results of reforestation, which has the potential to produce nitrogen and phosphorus at the rates of 109.43 to 173.549 kg/ha/year and 5.467 to 8.12 kg/h/year, respectively. These results imply that decomposition breakdown rates differ across the research area due to the variation in the nutrients availability. Changes in the breakdown of detritus point to variations in nutrient intake, which is crucial for mangrove ecosystems.
Title: Production and Decomposition of Mangrove Species Rhizophora apiculata Blume in Surabaya East Coast Indonesia
Description:
The mangrove ecosystem is supported by the production and decomposition of leaf litter, as well as the release of nutrients into the environment and the neighbouring coastal seas.
The release of phosphorus and nitrogen contributes significantly to the improvement of the nutritional values, which benefits marine species and the neighbourhood.
In the current study, nutrient release, leaf decomposition rate, litter generation, and mangrove habitat at Surabaya East Coast, Java, Indonesia were all examined.
Three transects and three plots in each transect were established.
The percentage of initial dry mass remaining in the litter bags were determined by using two sample t-test in Statistica 6.
0 software.
The decomposition of Rhizophora apiculata leaves was studied by using litter bag technique.
They were made of synthetic nylon with the dimension of 15×15×25 cm and mesh size of 1×1.
25 mm2.
Senescent leaves were used because they present major leaves on the forest floor.
According to the findings, daily mangrove litter production (dry weight) varied between 2.
15 and 3.
28 g/m2.
Branch litter (9.
43 – 13.
27%), reproductive parts (8.
20 – 14, 31%), and leaf litter (76.
26 – 78.
53%) were the other major contributors.
The 345.
6 ha of mangrove forests along the east coast of Surabaya are the results of reforestation, which has the potential to produce nitrogen and phosphorus at the rates of 109.
43 to 173.
549 kg/ha/year and 5.
467 to 8.
12 kg/h/year, respectively.
These results imply that decomposition breakdown rates differ across the research area due to the variation in the nutrients availability.
Changes in the breakdown of detritus point to variations in nutrient intake, which is crucial for mangrove ecosystems.

Related Results

STRUKTUR KOMUNITAS MANGROVE DI KAWASAN MANGROVE BULAKSETRA, KABUPATEN PANGANDARAN
STRUKTUR KOMUNITAS MANGROVE DI KAWASAN MANGROVE BULAKSETRA, KABUPATEN PANGANDARAN
Kawasan mangrove Bulaksetra diinisiasi oleh masyarakat Desa Babakan, Kabupaten Pangandaran yang merehabilitasi kawasan pemukiman nelayan yang rusak oleh tsunami pada tahun 2006 den...
Keanekaragaman dan Kelimpahan Gastropoda pada Ekosistem Mangrove Desa Kramat Kecamatan Mananggu Kabupaten Boalemo, Provinsi Gorontalo
Keanekaragaman dan Kelimpahan Gastropoda pada Ekosistem Mangrove Desa Kramat Kecamatan Mananggu Kabupaten Boalemo, Provinsi Gorontalo
Pesisir Desa Kramat merupakan bagian dari sebaran mangrove di kawasan Teluk Tomini. Tekanan lingkungan akibat aktivitas masyarakat seperti alih fungsi kawasan dan sampah pesisir di...
ANALISIS EFEKTIVITAS APLIKASI WARGAKU SURABAYA DALAM MENUNJANG PELAYANAN PUBLIK MASYARAKAT KOTA SURABAYA
ANALISIS EFEKTIVITAS APLIKASI WARGAKU SURABAYA DALAM MENUNJANG PELAYANAN PUBLIK MASYARAKAT KOTA SURABAYA
Era revolusi industri 4.0 telah memaksa dunia bergerak kedalam trend digital dan internet di berbagai lini kehidupan bermasyarakat. Hal ini telah direspons secara positif oleh peme...
Fauna Biodiversity as Indicator of Mangrove Forest Health on Moti Island, Moti District, Ternate City
Fauna Biodiversity as Indicator of Mangrove Forest Health on Moti Island, Moti District, Ternate City
The health condition of mangrove forests can be determined by assessing forest health indicators. One of the indicators used in determining the health of mangrove forests is faunal...
Diversitas dan Kerapatan Mangrove, Gastropoda, dan Bivalvia di Estuari Perancak, Bali
Diversitas dan Kerapatan Mangrove, Gastropoda, dan Bivalvia di Estuari Perancak, Bali
Penelitian ini bertujuan membandingkan diversitas dan kerapatan mangrove dengan kepadatan gastropoda dan bivalvia di mangrove alami dan rehabilitasi. Pengukuran ekosistem mangrove ...
Diversitas Dan Kerapatan Mangrove, Gastropoda, dan Bivalvia Di Estuari Perancak, Bali
Diversitas Dan Kerapatan Mangrove, Gastropoda, dan Bivalvia Di Estuari Perancak, Bali
Penelitian ini bertujuan membandingkan diversitas dan kerapatan mangrove dengan kepadatan gastropoda dan bivalvia di mangrove alami dan rehabilitasi. Pengukuran ekosistem mangrove ...

Back to Top