
Dairy Course
Master every stage of dairy production, from raw milk quality and farm hygiene to cheese making, butter churning, and spray drying. This course gives you the technical knowledge and hands-on process understanding that dairy plants actually demand. Whether you work on the farm, in the plant, or in quality control, you will finish with skills you can apply immediately.
What you will learn:
This course covers the full dairy production chain, starting with milk composition and animal physiology and moving through pasteurization, homogenization, fermentation, cheese manufacturing, and concentrated dairy products. You will learn how to operate and troubleshoot key processing equipment, including plate heat exchangers, separators, and spray dryers. The curriculum also covers food safety systems, laboratory testing methods, packaging, and cold chain management. You will study dairy plant utilities, sustainability practices, and the economics of running a profitable dairy operation. Emerging technologies such as membrane filtration, high-pressure processing, and automation are included so you stay current with industry developments.
How you study in practice Dairy Course
How you practice Dairy Course
For companies looking to train their teams
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.
Course Content
8 Chapters • 37 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Dairy Science
Foundations of Dairy Science
Lesson 1 • Dairy Animal Physiology and Lactation
Explains mammary gland anatomy, hormonal control of lactation, and milking physiology. Links animal biology to raw milk yield and composition variability.
Lesson 2 • Overview of the Dairy Industry
Covers global and domestic dairy production systems, key stakeholders, and supply chain structure. Establishes industry context for all subsequent technical content.
Lesson 3 • Milk Composition and Properties
Examines the chemical components of milk—fat, protein, lactose, minerals, and water. Understanding composition is essential for processing and quality decisions.
Lesson 4 • Raw Milk Quality Indicators
Introduces somatic cell count, bacterial load, and sensory evaluation as quality metrics. Provides the measurement framework used throughout the course.
Chapter 2HideHide detailsSee detailsMilk Collection and Farm Hygiene
Milk Collection and Farm Hygiene
Lesson 1 • Bulk Tank Management and Cooling
Explains rapid cooling requirements, bulk tank operation, and temperature monitoring. Cooling is the primary on-farm tool for limiting bacterial growth.
Lesson 2 • Hygienic Milking Procedures
Covers pre-milking teat preparation, milking order, and post-milking teat dipping. Proper procedure reduces contamination and mastitis incidence.
Lesson 3 • Milking Equipment and Systems
Describes pipeline, bucket, and robotic milking systems and their components. Equipment selection directly affects milk hygiene and labor efficiency.
Lesson 4 • Cleaning and Sanitization of Equipment
Details pre-rinse, detergent wash, acid rinse, and sanitization cycles for milking equipment. Effective cleaning prevents biofilm formation and microbial contamination.
Lesson 5 • Mastitis Prevention and Udder Health
Addresses mastitis pathogens, detection methods, and prevention strategies. Udder health is the single largest driver of somatic cell count and milk quality.
Chapter 3HideHide detailsSee detailsMilk Reception and Preliminary Processing
Milk Reception and Preliminary Processing
Lesson 1 • Milk Grading and Acceptance Criteria
Defines grading standards based on composition, microbial load, and residue status. Grading determines routing, pricing, and processing suitability.
Lesson 2 • Milk Reception and Intake Testing
Covers sensory checks, platform tests, and rapid analytical methods used at intake. Intake testing is the first quality control gate in the processing plant.
Lesson 3 • Standardization of Fat and Protein
Teaches fat and protein standardization using separators and blending calculations. Standardization ensures consistent product composition and regulatory compliance.
Lesson 4 • Filtration and Clarification
Explains inline filtration, centrifugal clarification, and bactofugation principles. These steps remove physical impurities and reduce spore loads before heat treatment.
Chapter 4HideHide detailsSee detailsHeat Treatment and Pasteurization
Heat Treatment and Pasteurization
Lesson 1 • HTST Pasteurization Systems
Details high-temperature short-time (HTST) plate heat exchanger design, flow diversion valves, and controls. HTST is the dominant continuous pasteurization method in fluid milk plants.
Lesson 2 • Principles of Thermal Processing
Covers microbial thermal death kinetics, D-values, and z-values as the scientific basis for pasteurization. These principles justify time-temperature combinations used in practice.
Lesson 3 • UHT and Extended Shelf-Life Processing
Explains ultra-high temperature (UHT) direct and indirect systems and aseptic filling requirements. UHT enables ambient-stable dairy products with extended distribution range.
Lesson 4 • Vat Pasteurization and Batch Systems
Covers low-temperature long-time (LTLT) batch pasteurization equipment and applications. Batch systems are used for specialty products and small-scale operations.
Lesson 5 • Pasteurization Validation and Verification
Addresses phosphatase testing, temperature recording, and regulatory verification requirements. Validation confirms that heat treatment consistently achieves the required pathogen reduction.
Chapter 5HideHide detailsSee detailsHomogenization and Separation
Homogenization and Separation
Lesson 1 • Equipment Operation and Troubleshooting
Covers startup, shutdown, CIP integration, and common fault diagnosis for separators and homogenizers. Operational competency minimizes downtime and product defects.
Lesson 2 • Cream Separation Principles
Explains centrifugal separation physics, Stokes' law, and separator bowl design. Separation efficiency determines cream yield and skim milk fat content.
Lesson 3 • Partial and Selective Homogenization
Describes partial homogenization of cream streams and its economic and quality advantages. Selective approaches reduce energy use while maintaining product stability.
Lesson 4 • Homogenization Mechanisms
Covers two-stage homogenizer valve design, pressure settings, and fat globule size reduction. Homogenization prevents cream separation and improves texture in fluid milk.
Chapter 6HideHide detailsSee detailsFermented Dairy Products
Fermented Dairy Products
Lesson 1 • Starter Culture Science
Covers lactic acid bacteria taxonomy, metabolic pathways, and culture propagation methods. Starter culture selection determines flavor, texture, and fermentation rate.
Lesson 2 • Kefir and Probiotic Dairy Products
Covers kefir grain biology, probiotic strain selection, and health claim substantiation requirements. Probiotic products require additional viability and stability controls.
Lesson 3 • Yogurt Manufacturing
Details set, stirred, and drinking yogurt production steps, including heat treatment and incubation. Yogurt is the highest-volume fermented dairy product globally.
Lesson 4 • Cultured Buttermilk and Sour Cream
Explains production of cultured buttermilk and sour cream, including fat standardization and culture selection. These products share process logic with yogurt but differ in substrate and texture targets.
Lesson 5 • Fermentation Process Control
Addresses pH monitoring, titratable acidity, temperature control, and defect prevention in fermented products. Process control ensures batch-to-batch consistency and product safety.
Chapter 7HideHide detailsSee detailsCheese Manufacturing
Cheese Manufacturing
Lesson 1 • Cheese Ripening and Flavor Development
Explains proteolysis, lipolysis, and secondary microorganism roles in flavor and texture development. Ripening transforms fresh curd into complex, variety-specific cheese.
Lesson 2 • Salting, Pressing, and Molding
Details dry salting, brine salting, pressing schedules, and mold selection for different cheese types. Salt controls moisture, flavor, and microbial safety in cheese.
Lesson 3 • Milk Coagulation Principles
Explains enzymatic and acid coagulation mechanisms, rennet types, and gel formation kinetics. Coagulation is the defining step that differentiates cheese from other dairy products.
Lesson 4 • Cheese Variety Production
Applies core principles to Cheddar, Mozzarella, Gouda, and soft-ripened cheese production. Variety-specific parameters illustrate how process adjustments create distinct products.
Lesson 5 • Curd Cutting, Cooking, and Draining
Covers curd knife selection, cutting patterns, cooking temperature, and whey expulsion control. These steps determine moisture content and texture of the final cheese.
Chapter 8HideHide detailsSee detailsButter, Cream, and Concentrated Dairy Products
Butter, Cream, and Concentrated Dairy Products
Lesson 1 • Spray Drying and Milk Powder Production
Explains spray dryer design, atomization, inlet and outlet temperature control, and powder properties. Milk powder production requires precise control of moisture, bulk density, and solubility.
Lesson 2 • Butter Churning and Working
Explains continuous and batch churning mechanisms, buttermilk drainage, and butter working. Churning converts cream emulsion to a water-in-fat emulsion with target moisture and texture.
Lesson 3 • Ghee and Anhydrous Milk Fat Production
Details butter melting, moisture removal, and clarification to produce ghee and anhydrous milk fat. These products have extended shelf life due to near-zero moisture content.
Lesson 4 • Cream Processing and Grading
Covers cream separation, fat standardization, pasteurization, and grading for different end uses. Cream quality directly determines butter yield and flavor.
Lesson 5 • Evaporation and Condensed Milk
Covers falling-film evaporator design, multiple-effect evaporation, and sweetened condensed milk production. Evaporation is the primary concentration step before drying.
Your valid completion certificate
This course is for you:
Dairy farm operators: wanting to understand what happens after the milk leaves.
Food science graduates: ready to specialize in a high-demand manufacturing sector.
Quality lab technicians: seeking deeper process context behind the numbers they test.
Career changers from food manufacturing: bringing transferable skills into the dairy industry.
Artisan cheesemakers: looking to formalize intuitive knowledge with rigorous technical grounding.
Agricultural extension workers: advising dairy farmers who need stronger processing literacy.
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