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Tabu Search for the RNA Partial Degradation Problem

both algorithms for instances with false negatives. Blazewicz, J., Figlerowicz, M., Kasprzak, M., Nowacka, M. and Rybarczyk, A. (2011). RNA partial degradation problem: Motivation, complexity, algorithm, Journal of Computational Biology 18(6): 821-834, DOI: 10.1089/cmb.2010.0153. Blazewicz, J., Formanowicz, P., Guinand, F. and Kasprzak, M. (2002). A heuristic managing errors for DNA sequencing, Bioinformatics 18(5): 652-660, DOI: 10.1093/bioinformatics/18.5.652. Blazewicz, J., Formanowicz, P., Kasprzak, M., Jaroszewski

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Degradation of Synthetic Dyes by Laccases – A Mini-Review

.N., ASGHER, M.: Comparative study of natural and synthetic phenolic compounds as efficient laccase mediators for the transformation of cationic dye. Biochem. Eng. J., 56, 2011, 225-231. BOLLAG, J.M., SHUTTLEWORTH, K.L., ANDERSON, D.H.: Laccase mediated detoxification of phenolic compounds. Appl. Environ. Microbiol., 54, 1998, 3086-3091. CAMPOS, R., KANDELBAUER, A., ROBRA, K.H., CAVACO-PAULO, A., GUBITZ, G.M.: Indigo degradation with purified laccases from Trametes hirsuta and Sclerotium rolfsii. J. Biotechnol., 89, 2001, 131

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Degradability of polylactide films by commercial microbiological preparations for household composters

(lactide)s as Robust Renewable Materials. W Mathers R.T. & Meier, M.A. (ed.), Green Polymerization Methods, 201–220. Wiley-VCH. DOI: 10.1002/9783527636167.ch9. 5. Szumigaj, J., Żakowska, Z., Klimek, L., Rosicka-Kaczmarek, A. & Bartkowiak, A. (2008). Assessment of Polylactide Foil Degradation as a Result of Filamentous Fungi Activity. Polish J. Environ. Stud. 17(3), 335–341. 6. Krueger, M., Harms, H. & Schlosser, D. (2015). Prospects for microbiological solutions to environmental pollution with plastics. Appl. Microbiol. Biotechnol. Nov. 99(21); 8857–8874, DOI: 10

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The Degradation of Metal Implants

The Degradation of Metal Implants

The presence of metal implants in the human body causes some dangers, which result from introducing another object into organism. There may occur a biocorrosion, which causes different modifications of implant surface.

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Changes in microbiological properties of soil during fungicide degradation

.N., Lai K., Ijaz A., Nazaries L., Singh B.K., 2018. Metagenomic functional potential predicts degradation rates of a model organophosphorus xenobiotic in pesticide contaminated soils. Frontiers in Microbiology 9(147): 1–12. Ju C., Xu J., Wu X., Dong F., Liu X., Zheng Y., 2016. Effects of myclobutanil on soil microbial biomass, respiration, and soil nitrogen transformations. Environmental Pollution 208: 811–820. Kaczyński P., Łozowicka B., Hrynko I., Wołejko E., 2016. Behaviour of mesotrione in maize and soil system and its influence on soil dehydrogenase

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A preliminary study of the degradation of selected commercial packaging materials in compost and aqueous environments

References Kikolski, P., Dłuska-Smolik, E. & Bolińska, A. (2005). Method of assessment of polymers biodegradability for investigation of their usability to organic recovery by composting. Polimery , 50 (3), 208-212 (in Polish). Żakowska, H. (2002). Packaging wastes. Warszawa, COBRO (in Polish). Adamus, G., Dacko, P., Musioł, M., Sikorska, W., Sobota, M., Biczak, R., Herman, B., Rychter, P., Krasowska, K., Rutkowska, M. & Kowalczuk M. (2006). Degradation of selected synthetic

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The Use of Multi-Criteria Analysis for Identifying Areas Sensitive to Land Degradation and water Retention

References Bajocco, S., Salvati, L. & Ricotta C. (2011). Land degradation versus fire: a spiral process? Progress in Physical Geography, 35(1), 3–18. DOI: 10.1177/0309133310380768. Basso, F., Bove, E., Dumontet, S., Ferrara, A., Pisante, M., Quaranta, G. & Taberner M. (2000). Evaluating environmental sensitivity at the basin scale through the use of geographic information systems and remotely sensed data: an example covering the Agri basin – Southern Italy. Catena, 40, 19–35. DOI: 10.1016/S0341-8162(99)00062-4. Bathurst, J.C., Sheffield, J

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Thermal and thermo-catalytic degradation of polyolefins as a simple and efficient method of landfill clearing

, Polska: Wydawnictwo Politechniki Łódzkiej (in Polish). Tomaszewska, K. & Jóźwiak, W. K. (2009). Aluminosilicates in thermo-catalytic degradation of low density polyethylene, Pol. J. Environ. Stud. 18 1B, 232-236. Pielichowski, K. & Njugana, J. (2005). Thermal degradation of polymeric materials. Shawbury, United Kingdom: Rapra Technology Limited. Reverte, C., Dirion, J. L. & Cabassud, M. (2007). Kinetic model identification and parameters estimation from TGA experiments. J. Anal. Appl

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Cuantification Of Land Degradation Sensitivity Areas In Romania Using European DISMED Data

Romania , Theor Appl Climatol 112: 597–607. Dregne H. E. (1976), Desertification. Symptoms of a crisis, In “Desertification, process, problems, perspectives”. University of Arizona Press. Dregne H. E. (1986), Desertification of arid lands . In “Physics of Desertification”, F. El-Baz and M.H.A. Hassan (Eds.), pp. 4–34 (Dordrecht: Martinus Nijhoff). Dregne H. E. (2002), Land degradation in the drylands , Arid Land Research and Management 16: 99–132. EEA (European Environment Agency) , 2008, Mapping Sensitivity to Desertification (DISMED

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The Effect of Solvent, Hydrogen Peroxide and Dioxide Titanium on Degradation of PCBs, Using Microwave Radiation in Order to Reduce Occupational Exposure

References [1] Fang Y. & Al-Abed S.R. (2008). Dechlorination kinetics of monochlorobiphenyls by Fe/Pd: Effects of solvent, temperature, and PCB concentration, Applied Catalysis B: Environmental , 78, 3-4, 371-380. [2] Wong K.H. & Wong P.K. (2006). Degradation of polychlorinated biphenyls by UV-catalyzed photolysis, Human and Ecological Risk Assessment , 12, 2, 259-269. [3] Wenhai Wu., Jie Xu, Hongmei Z., Zhang Q. & Liao S. (2005). A practical approach to the degradation of polychlorinated biphenyls in transformer oil, Chemosphere , 60, 7, 944

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