Conversion of Large Scale Wastes into Value-added Products by Justin S.J. Hargreaves, Ian D. Pulford, Malini Balakrishnan,

By Justin S.J. Hargreaves, Ian D. Pulford, Malini Balakrishnan, Vidya S. Batra

Concern in regards to the destiny of waste items produced through quite a lot of business procedures has ended in the belief that they could have capability makes use of and, consequently, worth. on the way to enhance extra sustainable methods and decrease waste garage, using waste as a source has been gaining cognizance world wide. hence, there were numerous reports aimed toward using such wastes. Conversion of enormous Scale Wastes into Value-added Products discusses a variety of chosen periods of large-scale waste and their present functions and capability destiny applications.

This booklet presents a picture of a always evolving box, such as either well-established methods and a force towards constructing suggestions for brand new purposes of wastes. the 1st bankruptcy offers a basic advent to the realm of large-scale waste usage, together with drivers for waste restoration, and secondary strategies and items for waste reuse. next chapters talk about purposes and power purposes in particular periods of large-scale waste:

  • Various forms of waste generated from diverse steel processing operations
  • Waste generated through coal combustion, a tremendous resource of energy new release that produces 1000s of waste
  • Waste electric and digital gear, vital for recycling finite assets and lowering wellbeing and fitness and environmental risks
  • Food waste, an important and numerous waste move with financial and environmental impacts

The ultimate bankruptcy provides a basic end to the wide topic of waste usage, summarizing the themes and addressing destiny tendencies in waste research.

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Extra resources for Conversion of Large Scale Wastes into Value-added Products

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Yang, Y. , Yang, Y. , and Ye, Z. , 2010. Adsorption intrinsic ­kinetics and isotherms of lead ions on steel slag. Journal of Hazardous Materials, 173, 558–562. , 2011. Red mud as an amendment for pollutants in solid and liquid phases. Geoderma, 163, 1−12. Lopez, F. , 1995. Adsorption of Pb2+ on blast furnace sludge. Journal of Chemical Technology & Biotechnology, 62, 200–206. Macquarrie, D. J. and Hardy, J. J. , 2005. Applications of functionalized chitosan in catalysis. Industrial and Engineering Chemistry Research, 44, 8499–8520.

2011). , 2010). , 2012). , 2001). Converter sludge and several other low-cost adsorbents were tested for Cr(VI) removal from wastewater. , 2008). , 2006). , 2012). , 1995). 2 ALUMINIUM Aluminium metal is characterized by light weight, high strength, easy w ­ orkability, good heat and electrical conductivity, and good corrosion resistance. Consequently, it finds use in a variety of applications in packaging, aerospace, buildings, and ­consumer goods. There are currently two routes of aluminium production, namely from the ore (primary production) and from recycling aluminium ­ products (­secondary ­production).

And Ye, Z. , 2010. Adsorption intrinsic ­kinetics and isotherms of lead ions on steel slag. Journal of Hazardous Materials, 173, 558–562. , 2011. Red mud as an amendment for pollutants in solid and liquid phases. Geoderma, 163, 1−12. Lopez, F. , 1995. Adsorption of Pb2+ on blast furnace sludge. Journal of Chemical Technology & Biotechnology, 62, 200–206. Macquarrie, D. J. and Hardy, J. J. , 2005. Applications of functionalized chitosan in catalysis. Industrial and Engineering Chemistry Research, 44, 8499–8520.

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