Literature DB >> 17400444

Reduction of heavy metal contents in liquid effluents by vermicomposts and the use of the metal-enriched vermicomposts in lettuce cultivation.

C P Jordão1, L L Fialho, J C L Neves, P R Cecon, E S Mendonça, R L F Fontes.   

Abstract

The removal of Cu, Ni and Zn from electroplating effluents by adsorption in cattle manure vermicompost has been discussed. A glass column 38 cm long and 7 cm i.d. was loaded with cattle manure vermicompost and effluents were passed through it. The metal concentrations were measured in the elutant. The experiments on adding effluent aliquots into the columns were continued until the metal concentrations in the elutant reached the maximum values established for effluent discharges in water courses by the Brazilian quality criteria, i.e., Cu=1.0 mg L(-1), Ni=2.0 mg L(-1), and Zn=5.0 mg L(-1). The amount of Cu retention by the vermicompost was determined at the natural effluent pH (2.0). The Zn and Ni retentions were evaluated at the natural effluent pH (6.9 and 7.4, respectively) as well pH 2.0. Vermicompost residues obtained from this process were used for lettuce cultivation. The vermicompost was found to be efficient in removing metals from the electroplating wastes, as well as in the increase of its pH values. Metal retention values were close to 100%. The Cu concentrations in lettuce leaves from the treatment with vermicompost enriched with this metal were below the range of critical toxicity level to plants, i.e., from 20 to 100 mg L(-1). However, the estimated Cu concentrations in the roots from the treatment with vermicompost enriched with Cu were much larger than that of the treatment with the natural vermicompost, reaching 246.3 mg L(-1). The Ni and Zn concentrations in lettuce leaves from the treatments, with vermicomposts enriched with the respective metals, were above the range of critical toxicity levels to plants, i.e., from 10 to 50 mg kg(-1) and from 15 to 30 mg kg(-1), respectively. However, no symptom of toxicity was found visually. Larger accumulations of Cu, Ni and Zn were found in the lettuce leaves than in the roots after the treatments with the uncontaminated vermicompost. A greater absorption of Cu and Ni by roots was found in treatments with vermicompost enriched with these elements, whereas Zn was found preferentially in the leaves. The statistical analysis was done by analyses of variance and regression.

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Year:  2007        PMID: 17400444     DOI: 10.1016/j.biortech.2006.06.023

Source DB:  PubMed          Journal:  Bioresour Technol        ISSN: 0960-8524            Impact factor:   9.642


  3 in total

1.  Accumulation of uranium and heavy metals in the soil-plant system in Xiazhuang uranium ore field, Guangdong Province, China.

Authors:  Zhenghai Wang; Haoyang Qin; Juan Wang
Journal:  Environ Geochem Health       Date:  2019-04-10       Impact factor: 4.609

2.  Utilizing heavy metal-laden water hyacinth biomass in vermicomposting.

Authors:  Natalya N Tereshchenko; Elena E Akimova; Anna D Pisarchuk; Tatyana V Yunusova; Oksana M Minaeva
Journal:  Environ Sci Pollut Res Int       Date:  2014-12-14       Impact factor: 4.223

Review 3.  An overview of the environmental applicability of vermicompost: from wastewater treatment to the development of sensitive analytical methods.

Authors:  Madson de Godoi Pereira; Lourdes Cardoso de Souza Neta; Maurício Paulo Ferreira Fontes; Adriana Nascimento Souza; Thaionara Carvalho Matos; Raquel de Lima Sachdev; Arnaud Victor dos Santos; Marluce Oliveira da Guarda Souza; Marta Valéria Almeida Santana de Andrade; Gabriela Marinho Maciel Paulo; Joselito Nardy Ribeiro; Araceli Verónica Flores Nardy Ribeiro
Journal:  ScientificWorldJournal       Date:  2014-01-21
  3 in total

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