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Phytofiltration, that is, the use of plants and their associated rhizospheric microorganisms to remove contaminants such as heavy metals from water, is a promising field offering a competitive and sustainable solution.
As the high salinity of industrial wastewater usually restricts microorganisms to remove pollutants, studies about bacterial strains which degraded PHN under hypersaline condition and were used in industrial wastewater plant were limited (Kunst and Rapoport 1995; Metcalf 2003).
Thus, in this work, the perspectives of utilization of microorganisms to remove the by-products, synthesized during the production of 1,3-PD from glycerol was considered.
Even a relatively small decline in the ability of WWTP microorganisms to remove wastewater nutrients (< 10%) could result in a significant pollution event when compounded for all WWTPs within a river.
In this regard, interactions among metals, microbes and plants have attracted much attention because of the biotechnological potential of microorganisms to remove metals directly from polluted media and the possible role of microorganisms in promoting plant growth in metal contaminated soils [ 10].
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As depicted in Figure 2, the goal was to select the best onboard treatment technology in order to eliminate invasive microorganisms and to remove water soluble organics from ballast water, particularly in the harsh environments.
BT is an application of bioremediation that uses microorganism metabolism to remove nutrients from the water bodies and regenerate up to the original condition [ 2, 6, 9], and its operational cost is relatively low [ 15], which generally have a high public interest.
Several reports have articulated the use of microorganisms to efficiently remove Hg from contaminated matrixes via biological reduction (von Canstein et al. 1999 and von Canstein et al. 2002), biosorption (Francois et al. 2012; Velasquez and Dussan 2009), bioaccumulation (Velasquez and Dussan 2009), and biosequestration (Francois et al. 2012).
In particular, the use of microorganisms or bacteria to remove the contaminants in leachate is through assimilating process.
Generally, adsorption using activated carbon and biological treatment using microorganisms are used to remove organic pollutants such as dyes contained in waste water.
Soil microorganisms also help to remove toxins, so fertilize the soil with natural, microbe-rich fertilizers.
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deposits to remove
charges to remove
agents to remove
bodies to remove
organisations to remove
bacteria to remove
agencies to remove
organizations to remove
filings to remove
media to remove
plants to remove
samples to remove
taxes to remove
microorganisms to decolorize
microorganisms to spew
microorganisms to scavenge
microorganisms to form
microorganisms to go
microorganisms to build
microorganisms to oxidize
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