Literature DB >> 26585709

Quaternized pine sawdust in the treatment of mining wastewater.

Anni Keränen1, Tiina Leiviskä1, Inga Zinicovscaia2, Marina V Frontasyeva2, Osmo Hormi3, Juha Tanskanen1.   

Abstract

Mining wastewater was treated using quaternized pine sawdust (QPSD) anion exchanger. The wastewater contained heavy metals (e.g. Sb, As, Co, Cr, Ni, V, U), NO3(-), among others, and a high concentration of SO4(2-). A series of column cycles imitating a real treatment process was conducted (three sorption/desorption cycles, a maintenance cycle with HCl and two sorption/desorption cycles). The effects of contact time and temperature (5°C and 23°C) were studied to assess the applicability of QPSD in the treatment of cold mining effluents. At 5°C, 85% of nickel was removed but the sorption was slower than at 23°C (initial Ni concentration was about 39 µg/l). Nickel was also removed in column efficiently (85-100% reduction). Treatment with HCl during the maintenance cycles did not hinder nickel sorption. Nickel was desorbed with both NaCl and HCl. Contrary to expectations, nitrate was not sorbed. QPSD showed selectivity towards nickel. However, uptake of uranium and cobalt was detected in column. Neutron activation analysis was used to detect metals sorbed onto the QPSD, and uptake of several metals was confirmed.

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Keywords:  Mining wastewater; ion exchange; lignocellulose; neutron activation analysis; regeneration

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Year:  2015        PMID: 26585709     DOI: 10.1080/09593330.2015.1116611

Source DB:  PubMed          Journal:  Environ Technol        ISSN: 0959-3330            Impact factor:   3.247


  1 in total

1.  Functionalized Sugarcane Bagasse for U(VI) Adsorption from Acid and Alkaline Conditions.

Authors:  Shouzheng Su; Qi Liu; Jingyuan Liu; Hongsen Zhang; Rumin Li; Xiaoyan Jing; Jun Wang
Journal:  Sci Rep       Date:  2018-01-15       Impact factor: 4.379

  1 in total

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