Kode Mata KuliahBE4091 / 5 SKS
Penyelenggara112 - Bioengineering / SITH
KategoriFinal Project / Thesis / Dissertation
Bahasa IndonesiaEnglish
Nama Mata KuliahPra-rancangan Sistem Produksi HayatiPreliminary Design of Bioproduction System
Bahan Kajian
  1. Bab I Pendahuluan
  2. Bab II Produk, Bahan Baku dan Biosintesis
  3. Bab III Perancangan Proses dan Produk
  4. Bab IV Neraca Massa Unit Operasi Utama
  5. Bab V Neraca Energi Unit Operasi Utama
  6. Bab VI Sistem Utilitas, Pengolahan Limbah, Keamanan, Kesehatan, dan Keselamatan Kerja
  7. Bab VII Rancangan Struktur Keseluruhan dan Tata Letak
  8. Bab VIII Analisis Keekonomian
  1. Chapter I Introduction
  2. Chapter II Products, Raw Materials, and Biosynthesis
  3. Chapter III Process and Product Design
  4. Chapter IV Mass Balance of Main Unit Operations
  5. Chapter V Energy Balance of Main Unit Operations
  6. Chapter VI Utility Systems, Waste Treatment, Safety, Health, and Work Safety
  7. Chapter VII Overall Structure and Layout Design
  8. Chapter VIII Economic Analysis
Capaian Pembelajaran Mata Kuliah (CPMK)
  1. Mampu merancang tata letak sistem produksi yang efektif dan efisien dalam pemakaian lahan melalui pertimbangan keberadaan unit-unit proses, dengan format keteknikan yang baku dan mudah dipahami
  2. Mampu membuat denah sistem produksi dengan pertimbangan keamanan, keselamatan, kenyamanan dan kesehatan dalam lingkungan kerja, disertai dengan penjelasan yang terstruktur
  3. Mampu menyusun diagram alir proses serta mengkuantifikasi neraca massa dan energi sistem yang dirancang menggunakan piranti teknik terkini
  4. Mampu mengidentifikasi kebutuhan terhadap suatu produk
  5. Mampu mendeskripsikan tujuan perancangan mencakup kualitas produk yang dihasilkan
  6. Mampu menentukan batasan-batasan (scoping) proses/produk, seperti kapasitas dan spesifikasi produksi sesuai dengan standar keteknikan (seperti SNI atau ASTM)
  7. Mampu menyebutkan kebutuhan informasi/data untuk membantu perancangan
  8. Mampu merangkum informasi batasan-batasan, waktu dan informasi pendukung lainnya dalam bentuk “Project Charter”
  9. Mampu menjelaskan, mengidentifikasi dan mengkuantifikasi komponen kendali operasional pada suatu jalur biosintesis
  10. Mampu mendeskripsikan karakteristik/sifat-sifat fisik, kimia, dan biologi dari bahan baku dan produk campuran yang terbentuk
  11. Mampu mengevaluasi spesifikasi, material dan alat-alat berdasarkan kapasitas produksi sesuai dengan standar keteknikan (seperti SNI atau ASTM)
  12. Mampu mengestimasi kebutuhan utilitas dan bahan bakunya untuk proses-proses utama dan pendukung
  13. Mampu menganalisis masalah yang muncul akibat keberadaan produk, teknologi proses yang mencakup bahan baku, limbah (lingkungan), keselamatan, keamanan, kesehatan, sosial dan lain sebagainya
  14. Mampu menentukan kelayakan ekonomi yang dirancang meliputi Total Capital Investment, Total Production Cost, Net present Value, Payback Period, Break-even Point dan Analisis Sensitivitas
  1. Capable of designing an effective and efficient production system layout that optimizes land use by considering the placement of process units, using standardized engineering formats that are clear and understandable
  2. Able to create a production system layout considering safety, health, comfort, and safety in the workplace, accompanied by structured explanations.
  3. Capable of developing process flow diagrams and quantifying mass and energy balances of the designed system using modern engineering tools.
  4. Able to identify the needs for a particular product.
  5. Capable of describing the design objectives, including the quality of the resulting product.
  6. Able to determine process/product limitations (scoping), such as production capacity and specifications, in accordance with engineering standards (such as SNI or ASTM).
  7. Capable of specifying the information/data requirements to support in the design process.
  8. Able to summarize boundary information, timelines, and other supporting information in the form of a "Project Charter."
  9. Capable of explaining, identifying, and quantifying operational control components in a biosynthesis pathway.
  10. Capable of describing the physical, chemical, and biological characteristics/properties of raw materials and resulting mixed products.
  11. Able to evaluate specifications, materials, and equipment based on production capacity in accordance with engineering standards (such as SNI or ASTM).
  12. Capable of estimating utility and raw material requirements for main and supporting processes.
  13. Able to analyze problems arising from the presence of products, process technology including raw materials, waste (environment), safety, security, health, social, and other factors.
  14. Capable of determining the economic feasibility of the designed system, including Total Capital Investment, Total Production Cost, Net Present Value, Payback Period, Break-even Point, and Sensitivity Analysis.
Metode PembelajaranKuliah, Praktikum, dan DiskusiLectures, Practicum, Discussions
Modalitas PembelajaranKuliah dan Praktikum: Luring sinkronLectures, Practicum : Offline syncronous
Jenis NilaiABCDE
Metode PenilaianTugas, UTS dan UASAssignments, Midterm exam, Final exam
Catatan Tambahan