화학공학소재연구정보센터
검색결과 : 8건
No. Article
1 Functional genes reveal the intrinsic PAH biodegradation potential in creosote-contaminated groundwater following in situ biostimulation
Nyyssonen M, Kapanen A, Piskonen R, Lukkari T, Itavaara M
Applied Microbiology and Biotechnology, 84(1), 169, 2009
2 Integration of electrokinetics and chemical oxidation for the remediation of creosote-contaminated clay
Isosaari P, Piskonen R, Ojala P, Voipio S, Eilola K, Lehmus E, Itavaara M
Journal of Hazardous Materials, 144(1-2), 538, 2007
3 Evaluation of chemical pretreatment of contaminated soil for improved PAH bioremediation
Piskonen R, Itavaara M
Applied Microbiology and Biotechnology, 65(5), 627, 2004
4 The influence of lignin content and temperature on the biodegradation of lignocellulose in composting conditions
Vikman M, Karjomaa S, Kapanen A, Wallenius K, Itavaara M
Applied Microbiology and Biotechnology, 59(4-5), 591, 2002
5 Biodegradation of lactic acid based polymers under controlled composting conditions and evaluation of the ecotoxicological impact
Tuominen J, Kylma J, Kapanen A, Venelampi O, Itavaara M, Seppala J
Biomacromolecules, 3(3), 445, 2002
6 Biodegradation of radiolabelled synthetic lignin (C-14-DHP) and mechanical pulp in a compost environment
Tuomela M, Hatakka A, Raiskila S, Vikman M, Itavaara M
Applied Microbiology and Biotechnology, 55(4), 492, 2001
7 Biodegradation of radiolabelled synthetic lignin (C-14-DHP) and mechanical pulp in a compost environment (vol 55, pg 492, 2001)
Tuomela M, Hatakka A, Raiskila S, Vikman M, Itavaara M
Applied Microbiology and Biotechnology, 57(3), 441, 2001
8 Biodegradation of lignin in a compost environment: a review
Tuomela M, Vikman M, Hatakka A, Itavaara M
Bioresource Technology, 72(2), 169, 2000