Sustainable Environment Research (Oct 2021)

Efficient chemical stabilization of tannery wastewater pollutants in a single step process: Geopolymerization

  • Giacomo Boldrini,
  • Caterina Sgarlata,
  • Isabella Lancellotti,
  • Luisa Barbieri,
  • Marco Giorgetti,
  • Michela Ciabocco,
  • Silvia Zamponi,
  • Mario Berrettoni,
  • Cristina Leonelli

DOI
https://doi.org/10.1186/s42834-021-00106-7
Journal volume & issue
Vol. 31, no. 1
pp. 1 – 11

Abstract

Read online

Abstract The treatment of tannery wastewaters is a complex task due to the complexity of the waste: a mixture of several pollutants, both anionic and cationic as well as organic macromolecules which are very hard to treat for disposal all together. Geopolymers are a class of inorganic binders obtained by alkali activation of aluminosilicate powders at room temperature. Such activation process leads to a cement like matrix that drastically decreases mobility of several components via entrapment. This process taking place in the matrix can be hypothesized to be the in-situ formation of zeolite structures. In this work we use a metakaolin based geopolymer to tackle the problem directly in an actual industrial environment. To obtain a geopolymer, the metakaolin was mixed with 10 wt% of wastewater added with sodium hydroxide and sodium silicate as activating solutions. This process allowed a rapid consolidation at room temperature, the average compressive strength was between 14 and 43 MPa. Leaching tests performed at different aging times confirm a high immobilization efficiency close to 100%. In particular, only the 0.008 and 2.31% of Chromium and Chlorides respectively are released in the leaching test after 7 months of aging.

Keywords