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  Search result  Your search for [subject]Biodegradation, Environmental returned 6 records.  
 
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  Electronic Resource Economic assessment of flash co-pyrolysis of short rotationcoppice and biopolymer waste streams.

by Kuppens, T.; Amsterdam: Elsevier Ltd, 2010.

Subject: Environmental science; Biodegradation, Environmental; Flash co-pyrolysis; Biopolymer; Crotonic acid.

 
     
Relevance: 15.42%
 
     
  Electronic Resource Optimization of Fenton oxidation pre-treatment for B. thuringiensis - Based production of value added products from waste water sludge.

by Pham, T.T.H; Amsterdam: Elsevier Ltd, 2010.

Subject: Ecology; Bacillus thuringiensis; Biodegradation, Environmental; Regression Analysis.

 
     
Relevance: 13.70%
 
     
  Electronic Resource Kinetic studies on the adsorption of phenol, 4-chlorophenol, and 2,4-dichlorophenol from water using activated carbons.

by Ru-Ling Tseng; Amsterdam: Elsevier Ltd, 2010.

Subject: Engineering; Chlorophenols -- Pharmacokinetics; Biodegradation, Environmental; Sodium Hydroxide; Water Pollutants, Chemical -- Chemistry.

 
     
Relevance: 13.14%
 
     
  Book From the forest to the sea : the ecology of wood in streams, rivers, estuaries, and oceans.

by Maser, Chris.; Delray Beach, Florida: St. Lucie Press, 1994.

Subject: Aquatic ecology; Wood -- Environmental aspects; Wood -- Biodegradation -- Environmental aspects.

 
     
Relevance: 12.73%
 
     
  Electronic Resource Decolorization of dye wastewaters by biosorbents: A review.

by Viraraghavan, Thiruvenkatachari; Amsterdam: Elsevier Ltd, 2010.

Subject: Engineering; Biodegradation, Environmental; Chitosan -- Chemistry; Coloring Agents -- Metabolism; Eukaryota -- Metabolism.

 
     
Relevance: 12.46%
 
     
  Electronic Resource Cellulose-based anion exchanger with tertiary amine functionality for the extraction of arsenic(V) from aqueous media.

by Anirudhan, T.S.; Amsterdam: Elsevier Ltd, 2010.

Subject: Chemistry; Cellulose -- Chemistry; Biodegradation, Environmental; Arsenic (V) -- Chemistry; Adsorption.

 
     
Relevance: 11.70%
 
     
 
         
         
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