CEW543 Environmental Infrastructure Engineering UITM Assignment Sample Malaysia

CEW543 Environmental Infrastructure Engineering is a course offered by Universiti Teknologi MARA (UiTM)! This course is designed to provide students with a comprehensive understanding of the various environmental infrastructure systems and technologies that are used to manage natural resources and protect the environment.

Throughout this course, students will be introduced to the fundamental concepts and principles of environmental infrastructure engineering, including water supply and treatment systems, wastewater treatment, solid waste management, and air pollution control. They will also learn about the various engineering techniques, technologies, and strategies that are used to design and operate these systems effectively.

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Here, we will describe some assignment activities. These are:

Assignment Activity 1: Outline the principles of environmental infrastructure, laws and contemporary issues related to the environmental infrastructure.

Principles of Environmental Infrastructure:

Environmental infrastructure refers to the physical structures, systems, and facilities that support the management and protection of the environment. The principles of environmental infrastructure include:

  1. Sustainability: The infrastructure must be designed and operated in a sustainable manner, considering the long-term environmental, social, and economic impacts.
  2. Resilience: The infrastructure should be able to withstand natural and human-made disasters and be adaptable to changing environmental conditions.
  3. Efficiency: The infrastructure should be designed and operated efficiently to minimize resource use and waste generation.
  4. Integration: Environmental infrastructure should be integrated with other infrastructure systems, such as transportation, water, and energy systems.
  5. Participatory: The development and operation of environmental infrastructure should involve the participation of stakeholders, including the public, government, and private sector.

Laws related to Environmental Infrastructure:

There are several laws and regulations related to environmental infrastructure, including:

  1. Clean Water Act: This law establishes the basic structure for regulating discharges of pollutants into the waters of the United States.
  2. Safe Drinking Water Act: This law protects public health by regulating the nation’s public drinking water supply.
  3. Clean Air Act: This law regulates air emissions from stationary and mobile sources.
  4. Resource Conservation and Recovery Act: This law regulates the management of hazardous waste from the point of generation to disposal.

Contemporary Issues Related to Environmental Infrastructure:

Some of the contemporary issues related to environmental infrastructure include:

  1. Climate Change: Climate change is affecting the design and operation of environmental infrastructure systems, including water, energy, and transportation systems.
  2. Urbanization: The increasing urbanization is putting pressure on environmental infrastructure systems to provide adequate services to growing populations.
  3. Aging Infrastructure: Many of the environmental infrastructure systems are aging, and there is a need for investment in maintenance and upgrades.
  4. Environmental Justice: There is a growing recognition of the need to ensure that environmental infrastructure benefits all communities, including low-income and minority communities.

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Assignment Activity 2: Distinguish and illustrate the sources and control infrastructure related to air, noise, water pollution and solid waste.

Sources and Control Infrastructure of Air Pollution:

Sources of air pollution include both natural and human activities. Natural sources of air pollution include wildfires, volcanic eruptions, and dust storms. Human activities that contribute to air pollution include transportation, industrial processes, and the burning of fossil fuels.

To control air pollution, various measures can be taken such as:

  1. Regulations and laws – Governments can implement regulations and laws that limit the amount of pollutants that industries and vehicles can release into the air.
  2. Cleaner technologies – Industries can switch to cleaner technologies such as using renewable energy sources, reducing emissions from vehicles, and reducing energy consumption.
  3. Carbon capture and storage – Carbon capture and storage (CCS) is a technology that captures carbon dioxide emissions from industrial processes and stores them underground.
  4. Public education – Educating the public about the effects of air pollution and how to reduce their own contributions to it can also help control air pollution.

Sources and Control Infrastructure of Noise Pollution:

Sources of noise pollution include transportation, construction, industrial activities, and recreational activities such as loud music or fireworks.

To control noise pollution, various measures can be taken such as:

  1. Regulations and laws – Governments can implement regulations and laws that limit the amount of noise that industries and vehicles can generate.
  2. Soundproofing – Buildings can be soundproofed to reduce the amount of noise that escapes into the environment.
  3. Noise barriers – Noise barriers can be erected along highways or railways to reduce the amount of noise that reaches nearby residential areas.
  4. Public education – Educating the public about the effects of noise pollution and how to reduce their own contributions to it can also help control noise pollution.

Sources and Control Infrastructure of Water Pollution:

Sources of water pollution include industrial processes, agriculture, sewage and wastewater discharge, oil spills, and littering.

To control water pollution, various measures can be taken such as:

  1. Regulations and laws – Governments can implement regulations and laws that limit the amount of pollutants that industries and individuals can release into bodies of water.
  2. Wastewater treatment – Wastewater treatment plants can be used to treat sewage and wastewater before it is discharged into bodies of water.
  3. Agricultural management – Agricultural practices can be modified to reduce the amount of fertilizers and pesticides that are used, and to prevent soil erosion.
  4. Public education – Educating the public about the effects of water pollution and how to reduce their own contributions to it can also help control water pollution.

Sources and Control Infrastructure of Solid Waste:

Sources of solid waste include households, commercial establishments, and industries.

To control solid waste, various measures can be taken such as:

  1. Recycling – Recycling programs can be implemented to reduce the amount of waste that is sent to landfills.
  2. Landfills – Landfills can be designed and managed to minimize their environmental impact.
  3. Incineration – Incineration can be used to convert solid waste into energy.
  4. Public education – Educating the public about the importance of waste reduction, reuse, and recycling can also help control solid waste.

Assignment Activity 3: Design the control infrastructure related to environmental engineering.

The control infrastructure related to environmental engineering typically involves several components, including sensors, actuators, controllers, and communication networks. The purpose of this infrastructure is to monitor and regulate various environmental parameters to maintain safe and sustainable conditions.

Here are some steps to design a control infrastructure for environmental engineering:

  1. Define the parameters to be monitored: The first step is to identify the environmental parameters that need to be monitored. These may include temperature, humidity, air quality, water quality, and noise level, among others.
  2. Select appropriate sensors: Once the parameters have been identified, select appropriate sensors to measure them. For example, temperature sensors can be used to measure temperature and air quality sensors can be used to measure the concentration of pollutants in the air.
  3. Install sensors: The sensors should be installed at appropriate locations to ensure accurate measurements. For example, temperature sensors should be installed in areas where temperature variations are significant.
  4. Choose appropriate actuators: Based on the measured parameters, appropriate actuators should be selected to regulate the environmental conditions. For example, a heating system can be used to regulate temperature, and a ventilation system can be used to regulate air quality.
  5. Install actuators: The actuators should be installed in a way that enables them to respond to the measured parameters. For example, a ventilation system can be connected to the air quality sensors to activate when the pollutant concentration exceeds a certain threshold.
  6. Select controllers: Controllers are used to regulate the output of the actuators based on the input from the sensors. The controller can be designed based on the specific application and can use various control algorithms such as proportional-integral-derivative (PID) control.
  7. Install controllers: The controllers should be installed and connected to the sensors and actuators to regulate the environmental conditions.
  8. Set up communication network: A communication network should be set up to enable the sensors, actuators, and controllers to communicate with each other. This can be achieved through wired or wireless communication, depending on the application.
  9. Monitor and maintain the system: Once the control infrastructure is installed, it should be regularly monitored and maintained to ensure optimal performance. The sensors should be calibrated, and the controllers should be tuned to maintain safe and sustainable environmental conditions.

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