Literature DB >> 25464702

A review on methods of recovery of acid(s) from spent pickle liquor of steel industry.

N Y Ghare, K S Wani, V S Patil.   

Abstract

Pickling is the process of removal of oxide layer and rust formed on metal surface. It also removes sand and corrosion products from the surface of metal. Acids such as sulfuric acid, hydrochloric acid are used for pickling. Hydrofluoric acid-Nitric acid mixture is used for stainless steel pickling. Pickling solutions are spent when acid concentration in pickling solutions decreases by 75-85%, which also has metal content up to 150-250 g/ dm3. Spent pickling liquor (SPL) should be dumped because the efficiency of pickling decreases with increasing content of dissolved metal in the bath. The SPL content depends on the plant of origin and the pickling method applied there. SPL from steel pickling in hot-dip galvanizing plants contains zinc(II), iron, traces of lead, chromium. and other heavy metals (max. 500 mg/dm3) and hydrochloric acid. Zinc(II) passes tothe spent solution after dissolution of this metal from zinc(II)-covered racks, chains and baskets used for transportation of galvanized elements. Unevenly covered zinc layers are usually removed in another pickling bath. Due to this, zinc(II) concentration increases even up to 110 g/dm3, while iron content may reach or exceed even 80 g/dm3 in the same solution. This review presents an overview on different aspects of generation and treatment of SPL with recourse to recovery of acid for recycling. Different processes are described in this review and higher weightage is given to membrane processes.

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Year:  2013        PMID: 25464702

Source DB:  PubMed          Journal:  J Environ Sci Eng


  1 in total

1.  Nanoflakes of chloride zinc-iron-aluminum-based layered double hydroxides obtained from industrial waste: a green approach to mass-scale production.

Authors:  Larissa Bello Neves de Farias; Gregorio Guadalupe Carbajal-Arízaga; Luis Guilherme Giannina Sante; Luciane Effting; Juliana Aparecida Correa da Silva Fernandes; Alesandro Bail
Journal:  RSC Adv       Date:  2021-05-17       Impact factor: 4.036

  1 in total

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