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Related Concept Videos

Design Example: Sustainability in Concrete Building01:26

Design Example: Sustainability in Concrete Building

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As the construction industry moves towards more eco-friendly practices, concrete's adaptability and its ability to incorporate sustainable features make it a key material in the drive towards greener building solutions.
There are multiple approaches to achieve sustainability in a commercial concrete building. For instance, construct a concrete parking area under the building, utilizing pervious concrete paver blocks in open areas to facilitate rainwater collection through an underground...
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Sustainable Development01:43

Sustainable Development

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As the human population continues to grow and use resources, we must be mindful of our planet’s natural limits. Sustainable development provides a pathway to maintain and improve human life now while also ensuring that future generations will have the resources that they need. The long-term success of sustainability efforts rests on understanding the interplay between human actions and ecological systems.
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Design Consideration01:22

Design Consideration

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Designing a structure involves a series of considerations, primarily the material's ultimate strength, calculated through tests that measure changes under increased force until the material reaches its breaking point or limit. The ultimate load, where the material breaks, is divided by its original cross-sectional area, resulting in the ultimate normal stress or strength. The ultimate shearing stress is another significant factor taken into account.
The factor of safety is another key...
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Environmental Applications of Microorganisms01:30

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Microorganisms play a pivotal role in maintaining ecosystem balance by recycling essential elements such as carbon, nitrogen, and phosphorus, as well as supporting processes like bioremediation, wastewater treatment, and biofuel production.Microbes in Elemental CyclesIn the carbon cycle, microorganisms decompose organic matter, releasing carbon dioxide via aerobic respiration. This carbon dioxide is subsequently used by photosynthetic organisms to synthesize organic compounds, closing the...
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Design Example: Managing Concrete Workability01:14

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This example deals with managing the workability of concrete for a raft foundation project under hot weather conditions. Workability is crucial for ensuring the concrete is easy to place, compact, and finish. In this scenario, a slump test — a common method to measure the workability of fresh concrete — initially indicated low workability. This was attributed to the rapid water loss from the concrete mix, exacerbated by the high temperatures causing the course aggregates to heat up.
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Yield Criteria for Ductile Materials under Plane Stress01:25

Yield Criteria for Ductile Materials under Plane Stress

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In designing structural elements and machine parts using ductile materials, it is crucial to ensure that these components withstand applied stresses without yielding. Yielding is initially determined through a tensile test, which evaluates the material's response to uniaxial stress. However, tensile stress is insufficient when components face biaxial or plane stress conditions This condition requires advanced criteria to predict failure.
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Updated: Apr 23, 2026

Scalable Step-by-Step Approach of Sustainable Bioplastic Production from Food Waste
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Smart specification for sustainability.

Jane Howarth

    Health Estate
    |October 7, 2014
    PubMed
    Summary

    Implementing smart air filtration specifications in air-handling units (AHUs) can achieve sustainability savings for NHS Trusts. This approach offers cost reductions and productivity gains with minimal financial investment, primarily requiring manpower.

    Area of Science:

    • Healthcare Engineering
    • Environmental Sustainability
    • Supply Chain Management

    Background:

    • National Health Service (NHS) Trusts face increasing pressure to achieve sustainability savings.
    • Air filtration in air-handling units (AHUs) represents a significant area for potential cost reduction and environmental impact mitigation.
    • Current procurement and specification practices for AHU filtration may not be optimized for long-term value.

    Purpose of the Study:

    • To investigate the potential for 'smart specification' of air filtration for AHUs to deliver sustainability savings to NHS Trusts.
    • To assess whether these savings can be achieved without substantial financial investment.
    • To evaluate the impact of manpower investment and third-party supplier involvement on productivity.

    Main Methods:

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    • A review and analysis of air filtration specification and performance across three NHS Trusts.
    • Comparative assessment of 'smart specification' versus traditional methods.
    • Evaluation of cost savings, including hard costs, and productivity metrics.

    Main Results:

    • Smart specification of air filtration for AHUs offers tangible sustainability savings for NHS Trusts.
    • Significant cost reductions and sustainability benefits can be realized without major capital expenditure.
    • The primary investment required is manpower; utilizing third-party suppliers can lead to net productivity gains.

    Conclusions:

    • Smart specification of AHU air filtration is a viable strategy for NHS Trusts to achieve financial and environmental sustainability.
    • The model demonstrates that sustainability goals can be met through optimized processes and resource allocation rather than solely through financial investment.
    • Engaging third-party suppliers for filtration management can enhance operational efficiency and deliver net productivity benefits to healthcare facilities.