Module designationSEDC6056 Industrial Biochemistry
Semester(s) in which the module is taught6th Semester
Person responsible for the moduleDr. Rahmad Rizki Fazli, S.Pd., M.Si.
LanguageIndonesian, English (for lecture material)
Relation to curriculumElective Course
Teaching methodsLecture, small group discussion, Case methods.
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 moduleno prerequisites
Module objectives/intended learning outcomesAfter completing the lecture process which is carried out actively, students are able to accurately analyze (B, C4) the industrialization of biochemical products, the industrialization of biotechnology products, get to know Biofarma and the products produced by Biofarma, so that they are able to develop (P4) the skills to implement the bioindustrial knowledge obtained in everyday life (A4) independently, accurately and measurably.After completing the lecture process which is carried out actively, students are able to accurately analyze (B, C4) about PT Paragon, PT Paragon derivative products, job opportunities at PT Paragon and PT Biofarma, so that they are able to develop (P4) skills in implementing the bioindustry knowledge obtained in daily life (A4) independently, accurately and measurably.
ContentThis course is given to strengthen students’ knowledge in understanding Introduction to Industrial Biochemistry, PT Biofarma, PT Paragon, PT Biogen Scientific, PT Bioplast, Career Opportunities at PT Paragon and PT Biofarma, Getting to Know the Beauty Industry, Drugs Industry, Plastic Industry, and Rubber Industry. Students are expected to think critically, be confident, and be disciplined in solving the questions and problems given.
Exams and assessment formatscase methods and task
Study and examination requirements Case methods: 80%Task: 20%
Recommended literatureVoet, D., Voet, J. G., & Pratt, C. W. (2016). Fundamentals of Biochemistry: Life at the Molecular Level (5th ed.). Hoboken, NJ: John Wiley & Sons.Nelson, D. L., & Cox, M. M. (2017). Lehninger Principles of Biochemistry (7th ed.). New York: W. H. Freeman and Company.Mathews, C. K., van Holde, K. E., Appling, D. R., & Anthony-Cahill, S. J. (2013). Biochemistry (4th ed.). Boston: Pearson.Shuler, M. L., & Kargi, F. (2017). Bioprocess Engineering: Basic Concepts (3rd ed.). Upper Saddle River, NJ: Prentice Hall.Bailey, J. E., & Ollis, D. F. (1986). Biochemical Engineering Fundamentals (2nd ed.). New York: McGraw-Hill.Scragg, A. H. (2005). Biotechnology for Engineers: Biological Systems in Technological Processes. New York: Taylor & Francis.Stanbury, P. F., Whitaker, A., & Hall, S. J. (2016). Principles of Fermentation Technology (3rd ed.). Oxford: Butterworth-Heinemannl.SA Akbar, AN Lestari, RR Fazli, G Gunawan. (2025). Harnessing macroalgae for heavy metal phytoremediation: a sustainable approach to aquatic pollution control. BIO Web of Conferences.
Date of last amendmentJanuary 13, 2025