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O trabalho nos deu a oportunidade de demonstrar através de dados científicos algumas das utilidades práticas do extrato pirolenhoso, comprovando sua eficácia em combater fungos e bactérias nocivas à saúde animal e humana, que nas últimas décadas vem se tornando cada vez mais difícil, já que as bactérias e fungos tem adquirido resistência aos medicamentos existentes atualmente, dessa forma este trabalho se propôs a preencher está lacuna e dar um destino ao sub produto da crescente indústria madeireira, através do aproveitamento da fumaça, produzida pela indústria da madeira, utilizando as espécies mais cultivadas e difundidas no pais.

Podemos assim demonstras a sua eficácia e propor uma padronização da técnica de obtenção do extrato pirolenhoso, eliminando assim os riscos de toxicidade do alcatrão, para a produção de um extrato que possa ser utilizado de forma segura, estimulando assim novas pesquisas para que possamos fazer uso do extrato e estimular as pesquisas em vivo, para obtermos produtos naturais que possam fazer frente as bactérias e fungos resistentes que temos atualmente.

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References

Abdel-Kahr, M.M., Hamman, M.M.A., El-Mougy, N.S., Abd-Elgawad, M.M.M. (2015) Pesticide alternatives for controlling root and root knot of cucumber under plastic house conditions. International Journal of Engineering and Innovative Technology, 4, 11, 25-31.

Azevedo, M.M., Ramos, I.F., Cruz, L.C., Vaz, C.P. and Rodrigues, A.P. (2015) Genesis of azole antifungal resistance from agriculture to clinical settings. J. Agric.

Food Chem., 63, 34, 7463-7468.

Busoli, A.C., Bissoli, G. and Pereira, F.G. (2004) Seletividade do extrato pirolenhoso (BIOPIROL) sobre larvas de joaninha Hippodamiaconvergens (Coleoptera:

Coccinelidae) – Faculdade de Ciências Agrárias e Veterinárias/UNESP –

Jaboticabal, São Paulo, Brazil.

Campos, A. D. (2007). Técnicas para produção de extrato pirolenhoso para uso agrícola. Pelotas-RS, Brazil, EMBRAPA (Empresa Brasileira de Agropecuária).

Chan, E.W.C., Chin, H.F., Kor, X.K. and Chong, H.H. (2012) Potent antibacterial activity of wood vinegar from Matang Mangroves, Malaysia. ISME/GLOMIS Electronic Journal, International Society for Mangrove Ecosystems (ISME), 10, 4, 10-12.

Choi, J.Y., Shinde, P.L., Kwon, I.K, Song, Y.H. and Chae, B.J. (2009) Effect of wood vinegar on the performance, nutrient digestibility and intestinal microflora in weanling pigs. Asian-Aust J. Anim. Sci., 22, 2, 267-274.

Crow, W.T.; Luc, J.E. (2014). Field efficacy of furfural as a nematicide on turf.

Journal of Nematology, 46, 1, 8-11.

Doran, W.L. (1932) Acetic acid and pyroligneous extract in comparison with formaldehyde as soil disinfectants. Journal of Agriculture Research, 44, 7, 571-578.

Gujarati D. N. and Porter, D.C. Basic Econometrics. 5. ed. Boston: McGraw-Hill, 2009. 922 p.

33 Higashino, T., Shibata, A., Yatagai, M. (2005) Basic study for establishing specifications for wood vinegar by distillation I. Study of regulations and reproducibility of compounds contained in distilled wood vinegar. Journal of the

Japan Wood Research Society, 51, 3, 180-188.

Ibrahim, D.,Kassim, J.,Sheh-Hong, L. andRusli, W. (2013) Efficacy of pyroligneous acid from Rhizophora apiculata on pathogenic Candida albicans. Journal of Applied

Pharmaceutical Science, 3, 07, 007-013.

Ismail, A.E.; Mohamed, M.M. (2007). Effect of different concentrations of furfural as botanical nematicide and the application methods in controlling Meloidogyne incognita and Rotylenchulus reniformis infecting. Pak. J. Nematol., 25, 1, 45-52.

Kang, M.Y., Heo, K.H., Kim, J.H., Cho, S.S., Seo, P.D. and Rico C.M. (2012) Effects of carbonized rice hull and wood charcoal mixed with pyroligneous acid on the yield, and antioxidant and nutritional quality of rice. Turk J. Agric. For., 36, 45-53.

Kim, D.U., Seo, H.E., Lee, S. and Lee, K. (2008) Effects of wood vinegar mixted with inseticides on the mortalities of Nilaparvatalugens and Laodeophax striatellus (Homoptera: Delphacidae). Animal Cells and Systems, 12, 47-52.

Kook, K. and Kim, K.H. (2002) Effect of supplemental bamboo vinegar on production and meat quality of meat-type ducks. Korean J. Anim. Sci. Technol., 29, 293-300.

Kook, K., Kim, J.E., Jung, K.H., Kim, J.P., Koh, H.B., Lee, J.I., Kim, C.R. and Kim, K.H. (2003) The effects of supplemental levels of bamboo vinegar on growth performance, serum profile and meat quality in fattening Hanwoo cow. Korean J.

Anim. Sci. Technol., 45, 57-68.

Li, H.L. and Ryu, K.S. (2001) Effect of feeding various vinegar on performance and egg quality of laying hens. Korean J. Anim. Sci. Technol., 43, 655-662.

Melo, R.M., Silva, R.M., Barros, R.O.M., Mazorche, R.M., Queiroz, V.T. and Póvoa, H.C.C. (2007) Estudo da atividade antimicrobiana do licor pirolenhoso em bactérias dos gêneros Pseudomonas e Serratia. Revista Científica da FAMINAS, 3, 1, 47.

34 Nakai, T., Kartal, N., Hata, T. and Imamura, Y. (2007) Chemical characterization of pyrolysis liquids of wood-based composites and evaluation of their bio-efficiency.

Building and Environment, 42, 1236-1241.

O‟neil, M.J. The Merck Index - An Encyclopedia of Chemicals, Drugs, and Biologicals. Cambridge, UK: Royal Society of Chemistry, 2013.

Oliveira, E., Vital, B.R., Pimenta, A.S., Lucia, R.M.D., Ladeira, A.M.M. and Carneiro, A. C. O. (2006) Anatomical structure and charcoal quality of Mimosa tenuiflora (Willd.) Poir. wood. Revista Árvore, 30, 2, 311-318.

Payamara, J. (2011) Usage of wood vinegar as new organic substance. Int. J. of

ChemTech Research, 3, 3, 1658-1662.

Pereira, B.L.C., Carneiro, A.C.O., Carvalho, A.M.M.L., Trugilho, P.F., Melo I.C.N.A. and Oliveira, A.C. (2013) Study of thermal degradation of Eucalyptus wood by thermogravimetry and calorimetry. Revista Árvore, 37, 3, 567-576.

Pereira, C., Salvato, N.A., Lopes, N.S., Campos, S.P., Queiroz, V.T. and Póvoa, H.C.C. (2007) Efeito do licor pirolenhoso sobre diferentes espécies do gênero

Candida. Revista Científica da FAMINAS, 3, 1, 39.

Pimenta, A.S., Bayona, J.M., García, M.T. and Solanas, A.M. (2000) Evaluation of acute toxicity and genotoxicity of liquid products from Eucalyptus grandis wood pyrolysis. Archives of Environ. Cont. and Toxicology, 38, 169-175.

Rakmai, J. (2009) Chemical determination, antimicrobial and antioxidant activities of

Thai wood vinegars. M.Sc. thesis, Prince of Songkhla University, Songkhla,

Thailand, 2009.

Regazzi, A. J. (1993) Test to verify the identity of regression models and equality of some parameters in polynomial orthogonal models. Revista Ceres, 40, 228, 176- 195.

Regazzi, A.J. (1996) Identity tests for regression models. Pesquisa Agropecuária

Brasileira, 31, 1, 1-17.

Santos, R.C., Carneiro, A.C.O., Pimenta, A.P., Castro, R.V., Marinho, I.V., Trugilho, P.F., Alves, I.C.N. and Castro, A.F.N.M. (2013) Energy potential of species from

35 forest management plan for the Rio Grande do Norte State. Ciência Florestal, 23, 02, 493-504.

Silva, R.M., Melo, R.M., Mazorche, R.M., Barros, R.O.M., Queiroz, V.T. and Póvoa, H.C.C. (2007) Estudo da atividade antimicrobiana do licor pirolenhoso sobre bactérias dos gêneros E. coli e Klebsiella. Revista Científica da FAMINAS, 3, 1, 46.

Souza, J.B.G., Ré-poppi, N. and Raposo Jr., J.L. (2012) Characterization of pyroligneous acid used in agriculture by gas chromatography-mass spectrometry.

Journal of Brazilian Chemical Society, 4, 610-617.

Steiner, C. (2008) Charcoal and smoke extract stimulate the soil microbial community in a highely weathered xanthic Ferralsol. Pedobiologia, 51, 359-366. The human metabolome database (http://www.hmdb.ca/)

Thuler, R.T., Bortoli, S.A. and Barbosa, J.C. (2007) Effectiveness of chemical insecticides and plant products for the control of Plutella xylostella. Científica, 35, 2, 166-174.

Tiilikkala, K., Fagernäs, L. and Tiilikkala, J. (2010) History and use of wood pyrolysis liquids as biocide and plant protection product. The Open Agricultural Journal, 4, 111-118.

Togoro, A.H., Silva, J.A.S. and Cazetta, J.O. (2014) Chemical changes in oxisol treated with pyroligneous acid. Ciência e Agrotecnologia, Lavras, 38, 2, 113-121.

Vandeputte, P., Ferrari, S. and Coste, A.T. (2012) Antifungal resistance and new strategies to control fungal infections. Int. J. Microbiol., 2012:713687.

Watarai, S. and Koiwa, M. (2008) Feeding activated charcoal from bark containing wood vinegar liquid (Nekka-Rich) is effective as treatment for Cryptosporidiosis in calves. J. Dairy Sci., 91, 1458-63.

Yang, J., Yang, C., Liang, M., Gao, Z.; Wu, Y.; Ghuang, L. (2016) Chemical composition, antioxidante, and antibacterial activity of wood vinegar from Litchi sinensis. Molecules, 21, 1150, 1-10.

Yantorno, J.A. La indústria de la destilación de leña y sus derivados. Libreria El Ateneo, Buenos Aires, Argentina, 1933.

36 Yin, L.A. (2008) Isolation and characterization of antioxidant compounds from

pyroligneous acid of Rhizophora apiculata. Universiti Sains Malaysia, Penang,

Malaysia, Ph.D. Thesis, 46 p.

Yoshimoto, T. (1994) Present status of wood vinegar studies in Japan for agricultural usage. In Proceedings of the 7th International Congress of the Society for the Advancement of Breeding Researches in Asia and Oceania (SABRAO), Taichung,

Taiwan, p. 811-820.

Zulkarami, B., Ashrafuzzman, M., Husni, M.O and Mohamed, R.I.(2011) Effect of pyroligneous acid on growth, yield and quality improvement of rockmellon in soiless culture. Australian Journal of Crop Science, 5, 12, 1508-1514.

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