Module designationSEDC6057 Chemistry of Waste Management
Semester(s) in which the module is taught5th Semester and  7th Semester
Person responsible for the moduleProf. Dr. Abdul Gani, M.Si
LanguageIndonesian, English (for lecture material)
Relation to curriculumElective Course
Teaching methodsLecture, small group discussion, project
Workload (incl. contact hours, self-study hours)2 x 45 hours per semester, comprising:
100 minutes lecture and discussion per week120 minutes structured tasks per week120 minutes learn to be independent per week
Credit points2 SKS = 3.34 ECTS
Required and recommended prerequisites for joining the module
Module objectives/intended learning outcomesAfter actively participating in the lectures, students are able to conclude waste-related problems based on their types, sources, and characteristics, so that they can identify them in order to manage them properly.After actively participating in field study activities, students will be able to obtain information from the community and related officers at markets, temporary disposal sites (TPS), and final disposal sites (TPA) regarding waste management mechanisms, thereby documenting and preparing a survey report to present comprehensively in classroom discussion forums.
ContentThis course provides an in-depth discussion of market/urban waste problems and alternative solutions for their management. It also examines agricultural and plantation waste issues along with possible management solutions. Furthermore, students will conduct field studies at waste sources (markets), temporary disposal sites (TPS), and final disposal sites (TPA), as well as document and prepare reports on their observations related to the waste management process.
Exams and assessment formatsQuiz, assignment, written examinations, and team based project
Study and examination requirements Assignment: 15%Quiz: 10%Project: 50%Final: 25%
Recommended literatureAyilara, M. S., Olanrewaju, O. S., Babalola, O. O., dan Odeyemi, O. 2020. Waste Management through Composting: Challenges and Potentials. Sustainability, 12(4456), 1-23. Dewa. Institut Pertanian Bogor, Bogor, Indonesia. https://repository.ipb.ac.id/handle/123456789/40580.Firmanti, A. 2010. Modul Pengelolaan Sampah Berbasis 3R. Jakarta: Pusat Penelitian dan Pengembangan Pemukiman Badan Penelitian dan Pengembangan Kementerian Pekerjaan Umum. Haji, A.G. 2013. Komponen Kimia Asap Cair Hasil Pirolisis Limbah Padat Kelapa Sawit. Jurnal Rekayasa Kimia dan Lingkungan, 9(3), 109-116. Haji, A.G., Mas’ud, Z.A., dan Pari, G. Pembuatan Arang Aktif dari Sampah Perkotaan dengan Metoda Pemanasan dan Steam. 2012. Jurnal Purifikasi, 12(3).Migristin, R. 2009. Pengelolaan Sampah Plastik. Bandung: Titian Ilmu. Otto Soemarwoto. 1994. Ekologi, Lingkungan Hidup, dan Pembangunan. Jakarta: Djembatan.Rini, W. N. E., Aswin, B., dan Hidayati, F. 2021. Pelatihan Pembuatan Kompos dari Sampah Organik Rumah Tangga dengan Komposter Ember. Jurnal Karya Abdi, 5(3), 116-121.Sujarwo, Tristanti, dan Widyaningsih. 2014. Pengelolaan Sampah Organik dan Anorganik. Yogyakarta: Jurusan Pendidikan Luar Sekolah Universitas Negeri Yogyakarta. Susila Herlambang, dkk. 2017. Petunjuk Teknis Pembuatan Biochar dengan Sistem Selongsong Putar. Yogyakarta: Universitas Pembangunan Nasional Veteran.  Zulkifli, A. 2014. Pengelolaan Limbah Berkelanjutan. Yogyakarta: Graha Ilmu. 
Date of last amendmentAugust 12, 2024