Course description: 3Credit units; 48 hours (32 lectures, 16 practice)
Control forms: test
Course content:
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Proactive management: ISO 14 000 and ISO 9 000 series. Latvian legistlation.
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Process: planning, analysis, documentation, and implementation.
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Operational control, emergency preparedness and response.
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Evaluating and improving performance. Auditing.
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Occupational health and safety management systems.
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Problems: spill prevention reporting, and response, underground storage tanks, Water polution, air polution, hazardous waste management, CP/WM programs.
Literature:
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I.Ritchie, W. Hayes. A Guide to the Implementation of the ISO 14 000 Series on Environmental Managrment. Prentice Hall,1997. 476 pg.
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Course materials.
Mass Transfer processes and Equipment
ĶVT 535
Assistant Professor Jurijs Ozoliņš
Course description: 4Credit units; 64 hours (16 lectures, 48 laboratories)
Control forms: exam
Course content:
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Process characterization. Phase equilibrium calculation. Idial and nonideal systems.
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Mass transfer statics. Material balance, operation line.
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Mass transfer kinetics. Molecular diffusion, Fick’s law, diferential equations. Convective mass transfer.
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Mass transfer equation, driving force, mass transfer coefficients. NTU.
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Basics of mass transfer equipment design.
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Mass transfer for solid-liquid (gas) systems.
Literature:
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Koroļkovs N., Mihailovs I. Masas apmaiņa šķidrumu sorbcijā.- Rīga: Zvaigzne,1975.- 250 lpp.
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Шервуд Т. , Пигфорд Р., Уилкин Ч. Массопередача. Пер. с англ._ Москва: Химия, 1982._ 696 с.
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Берд Р., Стюарт В., Лайтфуд Е. Явление переноса. Пер. с англ. _ Москва: Химия, 1974._ 688 с.
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Рудобашта С. П. Массоперенос в системах с твердой фазой. _ Москва: Химия, 1980._ 248 с.
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Промышленные тепломассообменные процессы и установки. Под ред. Бакластова А. М. _ Москва: Энергоатомиздат, 1986._ 328 с.
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Кафаров В. В. Основы массопередачи. 3 _е изд. _ Москва: Высшая школа, 1979. _ 439 с.
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Касаткин А. Г. Основные процессы и аппараты химической технологии._ Москва: Химия, 1973._ 752 с.
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Ch.J. Geankoplis. Transport Processes and Unit Operations. Prentice Hall,1993. 921 pg.
Contaminated site assessment
KVT 571
Assistant Professor Juris Mālers
Course description: 4Credit units; 64 hours (32 lectures, 32 laboratories)
Control forms: exam
Course content:
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The criteria of contaminated site assessment
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Environmental site preassessment process
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Subsurface assessment of contaminated site: geological and hidrogeological investigation, ecological information
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Contaminant chemistry
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Princples of migration and fate of contaminants
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Determination of the extent and the area of soil and groundwater contamination: soil and groundwater sampling, analisies of soil and groundwater samples, level of watertable, determination of the direction and rate of groundwater movement
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Assessment of subsurface remediation
Literature:
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R. K. Jain, L. V. Urban, G. S. Stacey, H. E. Balbach. Environmental Assessment. McGraw-Hill, Inc., 1993, 526 p.
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Introductory Training Course Environmental Site Assessment. Vol. 1,2,3.- Emergencies Engineering Division, Environment Canada & Gartner Lee International Inc., 1995.
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Subsurface Assessment Handbook for Contaminated Sites./ Report CCME EPC-NCSRP-48E, March 1994, 293 p.
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Guidance Manual on Sampling, Analysis, and Data Management for Contaminated Sites. Vol. 1, Report CCME EPC-NCS62E, December 1993, 79 p.
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ASTM Standards on Environmental Sampling. Sec. ed., 1997, 1010 p.
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Environmental Site Assessment Interpretation Guidelines. Phase 1. / Jacques Whitford Environmental Ltd. , Canada, 1994.- 23 p.
Postgraduate studies
Colloid chemistry
ĶNF 672
Associated Professor Augusts Ruplis
Course description: 10 Credit units; 64 hours lectures
Control forms: Exam
Course content:
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Dispersed systems generalities
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Optical propertes of collodal systems
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Molecular-kinetic properties of colloidal systems
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Adsorption at the solid-gas interface
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Adsorption at the soltion-gas interface
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Adsorption at the solid-solution interface
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Electrical properties of colloidal systems
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Obtaining and purifying colloidal systems
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Stability and coagulation of colloidal systems
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Structur-mechanical properties of dispersed systems
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Basic concepts on aerosols, emulsions, foams and colloidal surfactants
Kinetics of the chemical processes
ĶNF 673
Professor Sergejs Trusovs
Course description: 10Credit units; 32 hours lectures
Control forms: Test
Course content:
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Formal kinetics. The Rate of Chemical Reactions. The Kinetics Classification of the Reactions. Reaction Order and Reaction Molecularity. Temperature Dependence of Reaction Rates.
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Theorics of Kinetics. Arrhenius Theory. Activated Complex Theory.
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Reactions in Solution.
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Chain Reactions.
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Photochemical Reactions.
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Catalysis. The Classification of Catalytic Reactions. Homogeneous catalysis. Heterogeneous Catalysis. Kinetics of Heterogeneous Catalysis Reactions, Principles and Applications.
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Theories of Heterogeneous Catalysis.
Literature:
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P.W. Atkins. Physical Chemistry, New York, W.H. Freeman and Company, 1986, 857p.
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U.Alksnis, Z.Kļaviņš, P.Kūka, A.Ruplis. Fizikālā un koloidālā ķīmija. Rīga, Zvaigzne, 1990, 425 lpp.
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А.Т.Стромберг, Д.П.Семченко. Физическая химия. М., Высшая школа, 1988, 496с.
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Е.Н.Еремин. Основы химической кинетики. М., Высшая школа, 1976, 374с.
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Н.М.Эмануель, Д.Т.Кнорре. Курс химической кинетики. М., Высшая школа, 1969, 400с.
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Е.Т.Денисов. Кинетика гомогенных химических реакций. М., Высшая школа, 1978, 367 с.
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Walter J.Moore. Basic physical chemistry. P.H.I., Inc., 1983, 711p.
Electrical and Electrokinetic Phenomena of coll. Systems ĶNF 674
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