Komposisi Jenis dan Potensi Serapan Karbon di Taman Kota 1 BSD Tangerang Selatan
Date
2022Jenis/Type
SkripsiSubtype
Undergraduate ThesesAuthor
ISMAIL, KHOLIL
Muhdin
Rusolono, Teddy
Metadata
Show full item recordAbstract
Ruang terbuka hijau perkotaan berperan dalam menyimpan karbon dan menyerap karbon dioksida (CO2) melalui vegetasi. Penelitian ini bertujuan menganalisis komposisi jenis, struktur tegakan, stok karbon, potensi serapan karbon, dan laju serapan karbon tahunan di Taman Kota 1 BSD. Data dikumpulkan pada April 2026 melalui sensus seluruh pohon berdiameter =5 cm. Stok karbon diduga menggunakan dua persamaan alometrik untuk pohon berkayu serta persamaan khusus palem dan kelapa sawit. Hasil inventarisasi mencatat 1.105 individu yang terdiri atas 74 jenis dan 29 famili. Nilai indeks keanekaragaman, kemerataan, kekayaan, dan dominansi berturut-turut sebesar 3,254; 0,756; 10,417; dan 0,083. Stok karbon pohon berkayu berkisar antara 442,56–544,55 ton C dengan potensi serapan CO2 sebesar 1624,21–1998,51 ton CO2 dan laju serapan karbon tahunan sebesar 55,73–68,82 ton CO2/tahun. Kelompok palem dan kelapa sawit memiliki stok karbon sebesar 35,20 ton C dan potensi serapan karbon sebesar 129,15 ton CO2. Samanea saman memiliki stok karbon total tertinggi, sedangkan Dalbergia latifolia memiliki laju serapan karbon tahunan per individu tertinggi. Urban green spaces play an important role in storing carbon and sequestering carbon dioxide (CO2) through vegetation. This study aimed to analyze species composition, stand structure, carbon stock, carbon sequestration potential, and annual carbon sequestration rates in Taman Kota 1 BSD. Data were collected in April 2026 through a census of all trees with diameters = 5 cm. Carbon stocks were estimated using two allometric equations for woody trees and specific equations for palms and oil palms. The inventory recorded 1,105 individuals representing 74 species and 29 families. The diversity, evenness, richness, and dominance indices were 3,254; 0,756; 10,417; and 0,083, respectively. Woody-tree carbon stocks ranged from 442,56 to 544,55 t C, with carbon sequestration potential ranging from 1624,21 to 1998,51 t CO2 and annual carbon sequestration rates from 55,73 to 68,82 t CO2/year. Palms and oil palms stored 35,20 t C, equivalent to a CO2 sequestration potential of 129,15 t CO2. Samanea saman had the highest total carbon stock, whereas Dalbergia latifolia had the highest annual carbon sequestration rate per individual.
Collections
- UF - Forest Management [3293]

