Influence of type, concentration, exposure time, temperature, and presence of organic load on the antifungal efficacy of industrial sanitizers against Aspergillus brasiliensis (ATCC 16404).
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J. Lemos | M. V. Garcia | Andrieli Stefanello | M. Copetti | J. Fracari | Marina Silva | Bibiana Alves dos Santos
[1] R. Wagner,et al. Antifungal efficacy of sanitizers and electrolyzed waters against toxigenic Aspergillus. , 2020, Food research international.
[2] J. Lemos,et al. Comparison of electrolized water and multiple chemical sanitizer action against heat-resistant molds (HRM). , 2020, International journal of food microbiology.
[3] E. Berni,et al. Effect of peracetic acid on ascospore-forming molds and test microorganisms used for bio-validations of sanitizing processes in food plants. , 2020, International journal of food microbiology.
[4] J. Lemos,et al. Spoilage fungi in a bread factory in Brazil: Diversity and incidence through the bread-making process. , 2019, Food research international.
[5] M. V. Garcia,et al. Food industry spoilage fungi control through facility sanitization , 2019, Current Opinion in Food Science.
[6] J. Lemos,et al. Antifungal activity of commercial sanitizers against strains of Penicillium roqueforti, Penicillium paneum, Hyphopichia burtonii, and Aspergillus pseudoglaucus: Bakery spoilage fungi. , 2019, Food microbiology.
[7] Gilson Parussolo,et al. Fungi in air, raw materials and surface of dry fermented sausage produced in Brazil , 2019, LWT.
[8] K. Hodge,et al. Fruit infected with Paecilomyces niveus: A source of spoilage inoculum and patulin in apple juice concentrate? , 2019, Food Control.
[9] R. Stefanello,et al. Efficacy of commercial sanitizers against fungi of concern in the food industry , 2018, LWT.
[10] J. D. Kich,et al. Avaliação da atividade antibacteriana de seis desinfetantes comerciais frente a amostras de SalmonelOs aspectos relacionados a biossegurança, limpeza e desinfecção são os principais componentes de programasla Typhimurium isoladas de suínos , 2018, Acta Scientiae Veterinariae.
[11] É. F. Wigmann,et al. Detection and identification of Penicillium spp. in a frozen chicken nuggets production facility. , 2018, Food microbiology.
[12] Z. Teng,et al. Investigation on chlorine-based sanitization under stabilized conditions in the presence of organic load. , 2018, International journal of food microbiology.
[13] C. Adams,et al. Evaluation of thirteen haloacetic acids and ten trihalomethanes formation by peracetic acid and chlorine drinking water disinfection. , 2017, Chemosphere.
[14] A. Angioni,et al. Presence of Trihalomethanes in ready-to-eat vegetables disinfected with chlorine , 2017, Food additives & contaminants. Part A, Chemistry, analysis, control, exposure & risk assessment.
[15] E. Rico-Munoz. Heat resistant molds in foods and beverages: recent advances on assessment and prevention , 2017 .
[16] Y. Hung,et al. Effects of organic load, sanitizer pH and initial chlorine concentration of chlorine-based sanitizers on chlorine demand of fresh produce wash waters , 2017 .
[17] R. Campana,et al. Assessment of Antimicrobial Activity in Different Sanitizer Products Commonly Used in Food Processing Environment and Home Setting , 2017 .
[18] Ana Allende,et al. A novel electrochemical device as a disinfection system to maintain water quality during washing of ready to eat fresh produce , 2017 .
[19] Y. Hung,et al. The efficacy of EO waters on inactivating norovirus and hepatitis A virus in the presence of organic matter , 2016 .
[20] Cangliang Shen. Evaluation Of Chlorine Efficacy Against Escherichia Coli O157:H7 Survival And Cross-Contamination During Continuous Produces Washing Processwith Water Quality Change , 2014 .
[21] L. Melo,et al. The Influence of Interfering Substances on the Antimicrobial Activity of Selected Quaternary Ammonium Compounds , 2013, International journal of food science.
[22] H. Treichel,et al. Influence of different sanitizers on food contaminant bacteria: effect of exposure temperature, contact time, and product concentration , 2012 .
[23] Daniel Furtado Ferreira,et al. Sisvar: a computer statistical analysis system , 2011 .
[24] F. R. F. Jaenisch,et al. Atividade antibacteriana de desinfetantes para uso na produção orgânica de aves , 2007 .
[25] P. Gilbert,et al. Cationic antiseptics: diversity of action under a common epithet , 2005, Journal of applied microbiology.
[26] A. D. Russell,et al. Antiseptics and Disinfectants: Activity, Action, and Resistance , 2001, Clinical Microbiology Reviews.
[27] F. Alterthum,et al. Anti-septicos e desinfetantes , 1994 .