2004
DOI: 10.1016/s0094-5765(03)00046-8
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Microbial utilisation of natural organic wastes

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Cited by 9 publications
(4 citation statements)
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“…In addition to the degradation of organic matter, the chemolithotrophic metabolisms capable of degrading carbon monoxide, nitrate, nitrite, and metal chelating agents can be exploited both under aerobic or anaerobic conditions in some cases. Thus, bacteria of the family Rhizobiaceae can aggregate the microbial consortia applied for the detoxification of industrial effluents and for the treatment of organic waste (Ilyin et al 2004;Murto et al 2004;De Vrieze et al 2013;Franke-Whittle and Insam 2013).…”
Section: Applicationmentioning
confidence: 99%
“…In addition to the degradation of organic matter, the chemolithotrophic metabolisms capable of degrading carbon monoxide, nitrate, nitrite, and metal chelating agents can be exploited both under aerobic or anaerobic conditions in some cases. Thus, bacteria of the family Rhizobiaceae can aggregate the microbial consortia applied for the detoxification of industrial effluents and for the treatment of organic waste (Ilyin et al 2004;Murto et al 2004;De Vrieze et al 2013;Franke-Whittle and Insam 2013).…”
Section: Applicationmentioning
confidence: 99%
“…Maintenance of proper pH, temperature, air (oxygen) and moisture conditions and softening of the surface layer of residual biomass with the help of surfactant or urea is helpful. Likewise, fungal treatments in which fungi and actinomycetes directly colonize with the residues or enzymatic treatments using lignolytic enzymes help improving biodelignification process (Ilyin et al 2004;Moreno et al 2015). It further needs exposure of suitable mesophilic and thermophilic conditions that may include combined organic and inorganic complexes like CuSO 4 -gallic acid supplement for aggravating high functional bioconversion activities (Mishra and Jana 2017).…”
Section: Breakdown Of Cellulose and Hemicellulosesmentioning
confidence: 99%
“…Increasing numbers of farmers and agricultural enterprises are adopting microbial agents to replace chemical pesticides, achieving biological control and increasing crop yields (Gouda et al, 2018;Huang et al, 2020;Jiao et al, 2021). Simultaneously, microbial agents are widely used in projects such as sewage treatment and soil remediation, accelerating the degradation of organic waste and reducing environmental pollution (Hasr Moradi Kargar and Hadizadeh Shirazi, 2020;Ilyin et al, 2004;Kim and Cho, 2022;Zhang et al, 2023). In industrial production, particularly in the preparation of bioenergy, microbial agents are expected to replace traditional fossil energy production methods, reducing adverse environmental impacts (Matsushika et al, 2009;Muras et al, 2021).…”
Section: Introductionmentioning
confidence: 99%