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A change from a consumer society to a sustainable and conserver society must focus on for the welfare of the planet and future generations through balance rather than by maximizing the exploitation of resources. This will bring about further growth as an option for both per capita consumption and the population. Muddled and tepid responses make it clear that the society has not developed a vision of what a truly sustainable society looks like. It is essential to bring awareness to the possibility of creating a sustainable society which will incorporate sustainable development goals (SDGs) to generate a future with more possibilities. In order to move towards a sustainable society, it is vital to provide the highest standard of wellbeing, from an environmental, human, and economic perspective. We can contribute by providing technical and scientific studies that can be accessed freely and implemented by all. These works cover the important parameters that can be addressed to achieve sustainability, such as being energetically sustainable, resource-sustainable, environmentally sustainable, fiscally sustainable, and socially sustainable.

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This work has been downloaded 8 times via ebook links.
  1. 8 - pdf (CC BY) at


  • acid mine drainage
  • acidification potential
  • activated carbon
  • adsorption
  • aggregates
  • ammonia nitrogen
  • anionic and cationic dyes
  • bio-plastic straws
  • biogas slurry
  • Biology, Life Sciences
  • CI engine
  • Concentration
  • Corporate social responsibility
  • corporate social responsibility disclosure
  • Ecological science, the Biosphere
  • effective management
  • electrospinning
  • eutrophication potential
  • Fe nanomaterials
  • Fe nanoparticles
  • ferric
  • ferrous
  • global warming potential
  • Green technology
  • Heavy metals
  • hexavalent chromium
  • HHO
  • Industry
  • innovative adsorbent
  • ion exchange resin
  • iron ores
  • iron-enriched scaffold
  • Life Cycle Assessment
  • Life sciences: general issues
  • lignin
  • lignocellulosic
  • liver tissue engineering
  • magnetite nanoparticles
  • Mathematics & science
  • n/a
  • nanofiber
  • Noise
  • optimization
  • organizational performance
  • organosolv
  • palm tree fiber wastes
  • paper straws
  • PCL scaffold
  • prediction
  • public sector scorecard
  • purity
  • recycles
  • Reference, information & interdisciplinary subjects
  • Research & information: general
  • response surface methodology
  • Scientific research
  • slow release
  • smoke
  • sustainable process
  • Sustainable Society
  • sustainable water treatment
  • synthesis methods
  • water treatment residuals


DOI: 10.3390/books978-3-0365-7680-0


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