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1.
Ecotoxicol Environ Saf ; 174: 714-727, 2019 Jun 15.
Artigo em Inglês | MEDLINE | ID: mdl-30878808

RESUMO

Soil contamination with toxic metals is a widespread environmental issue resulting from global industrialization within the past few years. Therefore, decontamination of heavy metal contaminated soils is very important to reduce the associated risks and for maintenance of environmental health and ecological restoration. Conventional techniques for reclamation of such soils are expensive and environmental non-friendly. Phytoremediation is an emerging technology implementing green plants to clean up the environment from contaminants and has been considered as a cost-effective and non-invasive alternative to the conventional remediation approaches. There are different types of phytoremediation including, phytostabilization, phytostimulation, phytotransformation, phytofiltration and phytoextraction, the latter being most extensively acknowledged for remediation of soils contaminated with toxic heavy metals. Recent literature is gathered to critically review the sources, hazardous effects of toxic heavy metals and environmentally sustainable phytoremediation technique for heavy metal polluted soils to offer widespread applicability of this green technology. Different strategies to enhance the bioavailability of heavy metals in the soil are also discussed shortly. It can be concluded that phytoremediation of heavy metal contaminated soils is a reliable tool and necessary for making the land resource accessible for crop production.


Assuntos
Conservação dos Recursos Naturais , Metais Pesados/metabolismo , Plantas/metabolismo , Poluentes do Solo/metabolismo , Biodegradação Ambiental , Disponibilidade Biológica , Solo/química
2.
Water Res ; 143: 399-415, 2018 10 15.
Artigo em Inglês | MEDLINE | ID: mdl-29986249

RESUMO

Sulfide prevails in both industrial and municipal waste streams and is one of the most troublesome issues with waste handling. Various technologies and strategies have been developed and used to deal with sulfide for decades, among which biological means make up a considerable portion due to their low operation requirements and flexibility. Sulfur bacteria play a vital role in these biotechnologies. In this article, conventional biological approaches dealing with sulfide and functional microorganisms are systematically reviewed. Linking the sulfur cycle with other nutrient cycles such as nitrogen or phosphorous, and with continued focus of waste remediation by sulfur bacteria, has led to emerging biotechnologies. Furthermore, opportunities for energy harvest and resource recovery based on sulfur bacteria are also discussed. The electroactivity of sulfur bacteria indicates a broad perspective of sulfur-based bioelectrochemical systems in terms of bioelectricity production and bioelectrochemical synthesis. The considerable PHA accumulation, high yield and anoxygenic growth conditions in certain phototrophic sulfur bacteria could provide an interesting alternative for bioplastic production. In this review, new merits of biological sulfide oxidation from a traditional environmental management perspective as well as a waste to resource perspective are presented along with their potential applications.


Assuntos
Bactérias/metabolismo , Biotecnologia/métodos , Enxofre/química , Eliminação de Resíduos Líquidos/métodos , Bactérias/genética , Biocombustíveis , Reatores Biológicos/microbiologia , Biotecnologia/instrumentação , Nitrogênio/metabolismo , Oxirredução , Fósforo/metabolismo , Sulfetos/química , Sulfetos/metabolismo , Eliminação de Resíduos Líquidos/instrumentação , Águas Residuárias/química
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