Engineering and application of polysaccharides and proteins-based nanobiocatalysts in the recovery of toxic metals, phosphorous, and ammonia from wastewater: A review

Int J Biol Macromol. 2023 Jul 1;242(Pt 1):124585. doi: 10.1016/j.ijbiomac.2023.124585. Epub 2023 Apr 25.

Abstract

Global waste production is anticipated reach to 2.59 billion tons in 2030, thus accentuating issues of environmental pollution and health security. 37 % of waste is landfilled, 33 % is discharged or burned in open areas, and only 13.5 % is recycled, which makes waste management poorly efficient in the context of the circular economy. There is, therefore, a need for methods to recycle waste into valuable materials through the resource recovery process. Progress in the field of recycling is strongly dependent on the development of efficient, stable, and reusable yet inexpensive catalysts. In this case, growing attention has been paid to the development and application of nanobiocatalysts with promising features. The main purpose of this review paper is to: (i) introduce nanobiomaterials and describe their effective role in the preparation of functional nanobiocatalysts for the recourse recovery aims; (ii) provide production methods and the efficiency improvement of nanobaiocatalysts; (iii) give a comprehensive description of valued resource recovery for reducing toxic chemicals from the contaminated environment; (iv) describe various technologies for the valued resource recovery; (v) state the limitation of the valued resource recovery; (vi) and finally economic importance and current scenario of nanobiocatalysts strategies applicable for the resource recovery processes.

Keywords: Biological macromolecules; Energy, renewable; Nanobiocatalyst; Resource recovery; Sustainability.

Publication types

  • Review

MeSH terms

  • Ammonia
  • Environmental Pollution
  • Polysaccharides
  • Recycling
  • Waste Management*
  • Wastewater*

Substances

  • Wastewater
  • Ammonia
  • Polysaccharides