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Related Concept Videos

States of Water01:23

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Water exists in any one of the three classical states: solid (ice), liquid (water), and gas (steam or water vapor). The state of water depends on i) the intermolecular forces that draw molecules together and ii) the kinetic energy that leads to movements that pull them apart.
Water freezes when the intermolecular forces are greater than the kinetic energy. Unlike most other substances, water is less dense in its solid state than in its liquid state. This is because each water molecule can form...
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Quality of Water01:19

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In concrete preparation, the quality of water is paramount as it affects the strength and durability of the concrete. Potable water is usually preferred; however, it must not have excessive sodium or potassium to prevent compromising the concrete's integrity. Water quality is typically evaluated based on impurities such as dissolved solids, chlorides, and sulfates, and its pH value is ideally between 6 and 8. Even slightly acidic natural water may be acceptable unless it contains harmful...
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Regulation of Water Intake01:25

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Osmolality refers to the number of solute particles per kilogram of solvent in a solution. Plasma osmolality specifically indicates the total number of solute particles per kilogram of water in blood plasma. This value reflects the body's hydration status and is tightly regulated through mechanisms controlling water intake and output. While water consumption is a conscious decision, the body has intrinsic regulatory systems to maintain fluid balance. Dehydration, a state of water deficit...
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Related Experiment Video

Updated: Feb 6, 2026

Pouring and Running a Protein Gel by reusing Commercial Cassettes
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Water Reclamation and Reuse.

Huijuan Sun1, Huixin Zhang, Rui Xu

  • 1School of Petroleum Engineering, Xi'an Shiyou University, Xi'an Shaanxi, P.R.China.

Water Environment Research : a Research Publication of the Water Environment Federation
|August 22, 2018
PubMed
Summary

This review covers 2017 literature on water reclamation and reuse, focusing on sustainable practices, treatment technologies, implementation, and management strategies for safe wastewater reuse.

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Area of Science:

  • Environmental Science
  • Water Resources Management
  • Sanitary Engineering

Background:

  • Water reclamation and reuse are critical for sustainable water management.
  • The year 2017 saw significant advancements in the field.
  • Addressing water scarcity necessitates innovative reuse strategies.

Purpose of the Study:

  • To review and categorize scientific literature from 2017 on water reclamation and reuse.
  • To identify key developments in sustainable reuse, treatment technologies, implementation, and management.
  • To provide an overview of the state-of-the-art in safe wastewater reuse.

Main Methods:

  • Systematic literature review of publications from 2017.
  • Categorization of research into four key areas: sustainable reuse, treatment technology, implementation, and assessment and management.
  • Analysis of advancements in conventional and novel wastewater treatment methods.

Main Results:

  • The literature highlights progress in developing and improving conventional water treatment methods.
  • Emerging technologies for safe wastewater reuse are increasingly being explored.
  • Research indicates a growing focus on integrated approaches to water reclamation and reuse.

Conclusions:

  • The field of water reclamation and reuse is dynamic, with continuous innovation in treatment and application.
  • Safe and sustainable wastewater reuse is achievable through technological advancements and effective management.
  • Further research and implementation are essential to meet global water challenges.