SOLID WASTE MANAGEMENT

Tiziano ZARRA SOLID WASTE MANAGEMENT

0622500009
DEPARTMENT OF CIVIL ENGINEERING
EQF7
ENVIRONMENTAL AND TERRITORIAL ENGINEERING
2020/2021

OBBLIGATORIO
YEAR OF COURSE 1
YEAR OF DIDACTIC SYSTEM 2017
PRIMO SEMESTRE
CFUHOURSACTIVITY
660LESSONS
Objectives
EXPECTED LEARNING OUTCOMES AND SKILLS TO BE ACQUIRED.
BE ABLE TO DESIGN AND MANAGE THE BUILDING BLOCKS OF INTEGRATED WASTE MANAGEMENT SYSTEMS.
KNOWLEDGE AND UNDERSTANDING.
LEARN THE DIMENSIONAL AND FUNCTIONAL ASSESSMENT PROCEDURES OF THE VARIOUS OPTIONS APPLICABLE FOR THE COLLECTION, TREATMENT AND FINAL DISPOSAL OF WASTE.
ABILITY TO APPLY KNOWLEDGE AND UNDERSTANDING.
ACQUIRE THE KNOWLEDGE USEFUL FOR THE DESIGN OF WASTE TREATMENT AND DISPOSAL PLANTS AT DIFFERENT TERRITORIAL SCALES, ESPECIALLY FOR THE PURPOSE OF SYNERGISTIC INTERACTION WITH THE DIFFERENT TYPES OF WASTE COLLECTION IMPLEMENTED IN URBAN AREAS.
JUDGMENT AUTONOMY.
BE ABLE TO IDENTIFY THE MOST APPROPRIATE METHODS TO CHARACTERIZE THE SOLID WASTE AND TO DESIGN A TREATMENT/DISPOSAL PLANT BY OPTIMIZING THE PROCESS CONSIDERING THE PARTICULAR CASE STUDY AND LOCAL CONTEXT.
COMMUNICATION SKILLS.
BE ABLE TO WORK IN A TEAM, DEVELOP AND DISCUSS THE PROPOSED DESIGN EXERCISES.
ABILITY TO LEARN.
BE ABLE TO USE THE ACQUIRED KNOWLEDGE AND TECHNICAL OPTIONS FOR DIFFERENT CONTEXTS AND REALITIES ILLUSTRATED DURING THE COURSE, CALIBRATING THE BEST SOLUTIONS CRITICALLY AND ACCORDING TO TESTED OPERATING METHODS.
Prerequisites
THERE ARE NOT TEACHING PROGRAMS PROPEDEUTICAL FOR THE EXAM.
FOR THE SPECIFIC TECHNICAL AND SCIENTIFIC CHARACTERISTICS OF THE TOPICS PRESENTED DURING THE COURSE, BASIC KNOWLEDGE OF COMPARTMENTAL ANALYSIS ARE SUGGESTED.
Contents
1. INTRODUCTION (2 HOURS):
EUROPEAN UNION STRATEGY FOR SOLID WASTE MANAGEMENT. THE INTEGRATED SOLID WASTE MANAGEMENT SYSTEM.

2. SOLID WASTE PRODUCTION AND CLASSIFICATION (6 HOURS):
ORIGIN AND CLASSIFICATION OF DIFFERENT KIND OF SOLID WASTE. CHARACTERIZATION AND PRODUCTION TREND OF SOLID WASTE. THE MERCEOLOGICAL CHARACTERIZATION OF MUNICIPAL SOLID WASTE: CRITERIA AND OPERATING PROCEDURES.

3. SOLID WASTE REGULATION (4 HOURS):
EUROPEAN REGULATION IN THE FIELD OF SOLID WASTE MANAGEMENT. THE SOLID WASTE REGULATION ENFORCED IN ITALY: THE TESTO UNICO AMBIENTALE. SOLID WASTE CLASSIFICATION: ORIGIN AND HAZARDOUS CHARACTERISTICS. CER CODE. RESPONSABILITIES IN WASTE MANAGEMENT SYSTEM. LOCAL ORGANIZATION OF SOLID WASTE MANAGEMENT SYSTEMS.

4.SOLID WASTE COLLECTION (6 HOURS):
ADDITIONAL AND INTEGRATED COLLECTION. SEPARATE COLLECTION TRENDS IN ITALY. ORGANIZATION AND DESIGN CRITERIA OF SOLID WASTE SEPARATE COLLECTION SYSTEMS. VEHICLES AND EQUIPMENTS FOR SEPARATE COLLECTION.

5. MATERIAL RECOVERY (2 HOURS):
LEGISLATIVE ADDRESS. PACKAGING PRODUCTION IN ITALY. THE NATIONAL CONSORTIUM FOR PACKAGING RECOVERY (CO.NA.I.). PACKAGING RECOVERY. RECOVERY OF BULKY WASTE AND ELECTRICAL AND ELECTRONIC WASTE (WEEE). ECONOMICAL AND ENVIRONMENTAL ASPECTS OF SOLID WASTE RECOVERY PROCESSES.

6. SOLID WASTE SELECTION (3 HOURS):
SELECTION PROCESS STEPS. SYSTEMS AND TECHNOLOGIES FOR SOLID WASTE SELECTION. DESIGN CRITERIA. SELECTION PROCESS SCHEMES.

7. THE BIOLOGICAL TREATMENT OF THE ORGANIC FRACTION OF MUNICIPAL SOLID WASTE (12 HOURS):
LEGISLATIVE ADDRESS. COMPOSTING: PROCESS STEPS, OPERATING PARAMETERS AND PLANT DESIGN TECHNOLOGIES. SUBSTRATES FOR COMPOST PRODUCTION. ANAEROBIC DIGESTION: PROCESS STEPS, OPERATING PARAMETERS AND PLANT DESIGN TECHNOLOGIES. ANAEROBIC CO-DIGESTION. INTEGRATED ANAEROBIC/AEROBIC SYSTEMS.

8. MECHANICAL AND BIOLOGICAL TREATMENTS (6 HOURS):
LEGISLATIVE ADDRESS. MECHANICAL AND BIOLOGICAL TREATMENT (MBT) SYSTEMS: PROCESSES, PRODUCTS AND THEIR UTILIZATION OPTIONS.

9.SOLID WASTE INCINERATION (4 HOURS):
LEGISLATIVE ADDRESS. CHEMICAL AND PHYSICAL CHARACTERIZATION OF SOLID WASTE FOR INCINERATION. COMBUSTION, PYROLYSIS AND GASIFICATION PROCESSES. SOLID WASTE INCINERATION SYSTEMS.

10. GASEOUS EMISSION TREATMENT (5 HOURS):
LEGISLATIVE ADDRESS. GASEOUS EMISSIONS FROM SOLID WASTE INCINERATION. SYSTEMS AND TECHNOLOGIES FOR THE REMOVAL OF MAIN POLLUTANTS. PROCESS SCHEMES.

11. SANITARY LANDFILL (8 HOURS):
LEGISLATIVE ADDRESS. LANDFILL LIFE CYCLE. CHEMICAL, PHYSICAL AND BIOLOGICAL PROCESSES IN LANDFILLS. PRETREATMENTS OF WASTE FOR ITS LANDFILLING. DESIGN AND OPERATING CRITERIA. COLLECTION, TREATMENT AND DISPOSAL OF LEACHATE. BIOGAS HANDLING. POST-CLOSURE MANAGAMENT.

12. INTEGRATED SOLID WASTE MANAGEMENT SYSTEM IN CAMPANIA REGION (2 HOURS):
REGULATION EVOLUTION. TECHNICAL SOLUTIONS DESIGNED AND IMPLEMENTED. THE REGIONAL PLAN FOR SOLID WASTE MANAGEMENT.
Teaching Methods
THE COURSE DEVELOPS THROUGH BOTH LECTURES (40 HOURS/4 CFU) AND EXERCISES (20 HOURS/2 CFU) IN THE CLASSROOM. DESIGN PRACTICES ARE COMPLEMENTED WITH THE NECESSARY EXPLANATIONS OF METHODOLOGIES AND THEORETICAL CRITERIA.
TECHNICAL VISIT AT OPERATING TREATMENT/DISPOSAL PLANTS ON THE REGIONAL TERRITORY ARE SCHEDULED.
THE COURSE FREQUENCY IS NOT REQUIRED TO ACCESS THE EXAM.
Verification of learning
THE VERIFICATION OF LEARNING IS ASSESSED THROUGH AN ORAL EXAM WITH THE OBJECTIVE TO ACHIEVE THE EFFECTIVE ACHIEVEMENT OF THE STUDENT OF THE PREPARED FORMATION OBJECTIVES. THE ORAL EXAMINATION INCLUDES THEORICAL, TECHNICAL AND APPLICATION QUESTIONS IN THE COURSE'S TOPICS. PROPOSITION, DISCUSSION AND PERFORMANCE OF REAL EXAMPLES WILL BE USED FOR THE VERIFICATION OF COMPREHENSIVE, COMMUNICATION AND KNOWLEDGE SKILLS.
AT LEAST 3 QUESTIONS ABOUT THE DIFFERENT THEMES OF THE COURSE WILL BE FORMULATED.
THE FINAL EVALUATION WILL BE EXPRESSED IN THIRTY.
THE MINIMUM EVALUATION LEVEL (18) IS ATTRIBUTED WHEN THE STUDENT HAS A SUFFICIENT KNOWLEDGE OF THEORETICAL, TECHNICAL, STANDARD INSTRUMENTS AND SHOWS A LIMITED CAPACITY TO USE THE STUDY CONTEXT.
THE MAXIMUM LEVEL (30) IS ATTRIBUTED WHEN THE STUDENT DEMONSTRATES EXCELLENT AND DEEPENED KNOWLEDGE OF THE METHODOLOGIES AND OF THE INSTRUMENTS AND HAS A NOTABLE CAPACITY TO USE THE STUDY CONTEXT.
THE LODE IS ATTRIBUTED WHEN THE CANDIDATE SHOWS AN EXCELLENT MASTERY OF THE EMETODOLOGIES AND THE INSTRUMENTS AND EXHIBITION OF LANGUAGE MASTERPIECE AND AUTONOMOUS PROCESSING CAPACITY ALSO IN CONTEXTS DIFFERENT FROM THOSE PROPOSED BY THE TEACHER.
Texts
COURSE NOTES AND TEXTBOOKS

SIRINI P., TCHOBANOGLOUS G., NOTO LA DIEGA R.C. (2010). INGEGNERIA DEI RIFIUTI SOLIDI. MCGRAW HILL ED.

D’ANTONIO G. (1997). TRATTAMENTO DEI RIFIUTI SOLIDI URBANI. TECNICHE E SISTEMI DI SMALTIMENTO FINALE, MAGGIOLI EDITORE, RIMINI.
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