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Pemodelan Systems Dynamics pada Penanganan Sampah di Desa Penambangan Kabupaten Sidoarjo
Author(s) -
Dini Retnowati,
Ahmad Fatih Fudhla,
Ahmad Yani
Publication year - 2021
Publication title -
jurnal teknik industri
Language(s) - English
Resource type - Journals
eISSN - 2622-5131
pISSN - 1411-6340
DOI - 10.25105/jti.v11i3.13076
Subject(s) - physics , forestry , political science , humanities , geography , philosophy
Intisari— Emisi karbon terbesar berasal dari residu yang ditinggalkan dari aktivitas manusia. Pada volume besar dan tak terkendali, emisi ini menjadi penyebab utama pemanasan global. Sumbangsih emisi gas buang juga bersumber dari aktivitas sehari-hari masyarakat. Di negara Indonesia, yang termasuk dalam kategori negara berkembang, aktivitas masyarakat lebih banyak terakumulasi di tingkat desa. Desa Penambangan merupakan desa yang terletak di kabupaten Sidoarjo provinsi Jawa timur yang memiliki luas wilayah kurang lebih 150 Ha dengan jumlah penduduk 5.816 jiwa. Pada penelitian ini dilakukan kajian dengan pendekatan system dynamics bagaimana penanganan sampah di desa tersebut. Model system dynamics yang dihasilkan bisa digunakan untuk bahan pertimbangan pemerintah desa Penambangan dalam menangani sampah. Berdasarkan simulasi model, seiring berjalannya waktu, total tingkat emisi karbon dari sampah desa meningkat rata-rata 10.8% tiap bulan. Dengan melakukan penanganan sampah organing yang lebih komprehensif, emisi karbon berkurang hingga 90.4% dibandingkan kondisi awal di level model. Abstract— The largest carbon emissions come from residues of human activities. In large and uncontrolled volumes, these cause global warming. As an accumulation, The emissions also come from the daily activities of the community. In developing countries such as Indonesia, community activities are mostly accumulated at the village level. “Penambangan” is one of villages located in Sidoarjo, East Java, which has an area of approximately 150 hectares with a population of 5,816 people. In this study, a system dynamics approach was carried out on how to handle waste in the village. The resulting model can be used by local government for consideration in handling them. Based on the model simulation, the total level of carbon emissions of the community increased by an average of 10.8% per month. By carrying out more comprehensive handling of waste, carbon emissions are reduced by 90.4% compared to the initial conditions at the model level.

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