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Environmental engineering is the study of engineering that applies to improve the environmental factors like air,water,land resources from the harmful effects of pollution that is increasing day by day. Environment engineering also helps us to provide healthy resources and to make it sustainable.

Environmental engineering is a kind of technology which is concerned with pollution reduction,contamination and deterioration of surroundings in which we live including all the natural resources.

Environmental engineering occurs at the interface of environmental and technical systems which requires a certain mass turnovers even for a single device that is ditributed among various pollution sources like with catalytic exhaust gas converters.

Basically the Environmental engineers study the problems related to water, soil and air pollution, and develop technical solutions needed in order to solve, attenuate or control these problems they develop some technical solutions in a compatible way regarding legislative, economic, social and political issues. In some activities like water supply and sewerage, remediation of contaminated sites and solid waste management, management of surface water and groundwater quality they involve civil engineers also.

The activities of Environmental engineers includes the planning, design, construction and operation of water and waste water treatment facilities in municipalities and industries, modelling and analysis of surface water and groundwater quality, design of soil and remediation systems, planning for the disposal and reuse of wastewaters and sludges, and the collection, transport, processing, recovery and disposal of solid wastes according to accepted engineering practices.

Environmantal situations can be diagnosed by two methods:-

  • Environmental analytics
  • Ecotoxicology and human toxicology

Environmental engineering supports process engineering, water and wastewater treatment (sanitary engineering), environmental chemistry,waste reduction/management, and pollution prevention/cleanup.

Environmental investigation reports ,environmental protection ,standard operating procedures  ,quality-control checks ,To analyze scientific data , environmental improvement programs ,municipal facilities and programs

  • Environmental quality evaluation, improves public health and environment health. The degradation occurs at the human activities results., Development of strategies and methods to prevent environmental degradation or public health risk
  • Development of regulations and requirements for performance of prevention of population or environment quality improvement, protection or remediation projects
  • Design of facilities or programs for pollution prevention or environmental quality improvement, protection or remediation, Evaluation of the results of pollution prevention or environmental quality improvement
  • protection,remediation, Economics assessment , improve efficiency of pollution prevention and , Improvement of environmental quality, Management of system for pollution prevention , Operations of system for pollution prevention, Maintenance of systems for pollution prevention, Environmental engineers are working on all the fields of the environment.

Topics for Environmental engineering Assignment help include :

  • Climate change, Complex and adaptive systems, Contaminant fate and transport
  • Environmental risk assessment and management, Environmental sensors
  • Green technologies, Industrial ecology, Sustainability, Environmental policy, Energy and environment
  • Solid waste management, Hazardous substance treatment and control, Air quality management, Management natural resources , Development of policy¡¯s of environment and regulation , Mitigation of environment, Assessment of environmental impact 
  • Multidisciplinary nature of environmental studies ,Definition, scope and importance, need for public awareness, Natural Resources :Renewable and non-renewable resources ,Natural resources and associated problems
  • Forest resources : Use and over-exploitation, deforestation, case studies. Timber are considered very complex ,extraction, mining, dams and their effects on forest and tribal people,Water resources : Use and over-utilization of surface and ground water
  • floods, Principles of chemical , treatment of water , wastewater , natural waters, chemical equilbria, reaction kinetics, acid base equilibria, chemical precipitation
  • Redox reactions, mass transfer principles, ecosystems, unit function of nature, Trophic structure, energy flow, biochemical cycles, Nature resources, Technical aspects of environment, Air, water and soil pollution
  • waste management, Natural factors of threat of build, Indefinitely sustainable expansion, criteria and indexes, anthropogenic activity on ecosystem , Environment law , Ranking building influence, activity to environment
  • Chemical Thermodynamics, Kinetics, Water Chemistry Fundamentals, Water Quality Standards, Water, Regulations, Pathogens, Biodegradation, Micro, Pollutants
  • Ecotoxicology, Freundlich Isotherms, Sorption, Precipitation, Colloids, Measurement, Analysis, Overview of environmental engineering ,Water/air quality issues,Water supply,Waste water treatment,Hazardous/solid waste management
  • Pollution prevention,Global environmental issues,Public health considerations/environmental laws,Regulations and ethics, Techniques from systems analysis to environmental engineering design
  • Management problems,Reservoir management,Power plant siting,Nuclear waste management,Air pollution control,Transportation planning,Designing projects

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Help for complex topics like :

  • Drought, conflicts over water, dams-benefits and problems ,Mineral resources : environmental effects of extracting and using ,mineral resources,Food resources : World food problems, changes caused by agriculture and over-grazing
  • effects of modern agriculture, fertilizer-pesticide problems, water logging,salinity, case studies ,Energy resources ,Land resources Ecosystems ,Energy flow in the ecosystem ,Forest ecosystem ,Grassland ecosystem ,Desert ecosystem 
  • Aquatic ecosystems (ponds, streams, lakes, rivers, oceans, estuaries), Biodiversity and its conservation ,Biodiversity ,Environmental Pollution ,Air pollution ,Soil and Water pollution ,Marine pollution
  • Noise pollution ,Thermal pollution ,Nuclear hazards, Solid waste Management ,Pollution case studies ,Diaster management ,Climate change, global warming, acid rain, ozone layer depletion, nuclear accidents and holocaust
  • Case Studies, Wasteland reclamation ,Consumerism and waste products ,Environment Protection Act, Air (Prevention and Control of Pollution) Act.,Water (Prevention and control of Pollution) Act
  • Wildlife Protection Act ,Forest Conservation Act ,Issues involved in enforcement of environmental legislation ,Public awareness ,Human Population and the Environment, Core Concepts in Environmental Engineering,Hydraulics,Water Supply and Treatment,Wastewater Engineering,Solid Waste Management
  • Environmental Engineering for Developing Countries,Environmental Engineering Design and Project Management,Project Skills and Professional Development,Air Pollution,,Chemistry for Environmental Engineering
  • Environmental Fluid Mechanics,Environmental Analysis,Mathematical and Statistical Modelling,Microbiology for Environmental Engineering,Urban Hydrology and Urban Drainage,Containment Engineering
  • Advanced Water and Wastewater Treatment,Air Pollution Control,Contaminated Land and Groundwater,Design Project,Environmental Management & Decision Making,Environmental Management in Developing Countries,Solid Waste Management,Water Supply and Distribution,water and Wastewater Treatment
  • Catchment water balance, precipitation processes,Runoff and river flow, unsaturated zone vegetation layer, groundwater,Groundwater head and flow,Heterogeneity, anisotropy and hydraulic conductivity
  • Storage, continuity and groundwater flow equations,Radial flow,Aquifer testing, water resources,Hydrological modelling and climate change, flood risk,Flood frequency analysis: discrete estimations,  extreme value theory
  • Flood hydrograph simulation: unit hydrograph method,Conceptual modelling,Flood estimation in urbanised catchments,Flood forecasting,Revision session,,Air pollution,water pollution,solid waste,fate ,transport of contaminants
  • Biotechnological Processes in Environmental Engineering: Biochemical reactions,Stoichometry,Enzyme and microbial kinetics,Detoxification of toxic chemicals,Suspended growth and attached growth treatment processes
  • Biofilm processes including trickling filters and biofilters,Nitrogen and phosphorous removal processes,Sludge treatment processes,Mesophilic and thermophilic systems,Natural systems(wetlands and lagoons).
  • law of mass action for a reaction,dissociation of water,characteristics of solid, liquid and gas phases,structure and function of a cell,hydrologic water cycle, water availability and sources,principles of ecology,fundamentals of earth and atmospheric science,ecosystem,biodiversity,molecular biology
  • material and energy balances ,tracking substances  ,source and ground waters ,soil systems , Pertinent environmental laws  ,simple quantitative engineering models ,qualitative descriptions  ,environmental engineering control
  • Local polluted site-Urban/Rural/Industrial/Agricultural ,Study of common plants, insects, birds ,Study of simple ecosystems-pond, river, hill slopes.

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