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Original Articles

Effect of residual monomer from polyacrylamide on head lettuce grown in peat substrate

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Pages 2113-2119 | Received 10 Jun 2015, Accepted 12 Sep 2015, Published online: 14 Oct 2015

References

  • Abou-Hadid AF, Abd-Elmoniem EM, El-Shinawy MZ, Abou-Elsound M. 1996. Electrical conductivity effect on growth and mineral composition of lettuce plants in hydroponic system. Acta Hortic. 434:59–66.
  • Anthura. 1998. Cultivation guide Anthurium. Bleiswijk: Anthura B.V; p. 43.
  • Bologna LS, Andrawes FF, Barvenik FW, Lentz RD, Sojka RE. 1999. Analysis of residual acrylamide in field crops. J Chromatogr Sci. 37:240–244.
  • Bosiacki M, Roszyk J. 2010. The comparing methods of mineralization of plant material on the content of heavy metals. ABiD. 4:37–41.
  • Breś W, Golcz A, Komosa A, Kozik E, Tyksiński W. 2008. Nutrition of horticultural plants. Poznan: Poznan University of Life Sciences Publisher; p. 1–191.
  • Castle L. 1993. Determination of acrylamide in mushrooms grown on polyacrylamide gel. J Agric Food Chem. 41:1261–1263.
  • Castle L, Campos MJ, Gilbert J. 1991. Determination of acrylamide monomer in hydroponically grown tomato fruits by capillary gas chromatography-mass spectrometry. J Sci Food Agric. 54:549–555.
  • Chohura P, Kołota E, Komosa A. 2009. Effect of fertilization with Fe chelates on the state of iron nutrition of greenhouse tomato. J Elem. 14:657–664.
  • Dionex. 2004. Fast determination of acrylamide in food samples using accelerated solvent extraction (ASE) followed by Ion chromatography with UVor MS detection. Appl Note. 409:1–4.
  • Eriksson S. 2005. Acrylamide in food products: identification, formation and analytical methodology [ Doctoral Thesis]. Stockholm (Sweden): Department of Environmental Chemistry, Stockholm University. ISBN 91-7155-137-9.
  • European Commission. 2002. Acrylamide-European union risk assessment report [Internet]. [cited 2015 Feb 15]. Vol 24. European Commission; p. 207. Available from: http://ecb.jrc.ec.europa.eu/DOCUMENTS/
  • Friedman M. 2003. Chemistry, biochemistry, and safety of acrylamide. A review. J Agric Food Chem. 51:4504–4526.
  • Górecki R, Danielski-Busch W. 2009. Effect of silicate fertilizers on yielding of greenhouse cucumber (Cucumis sativus L.) in container cultivation. J Elem. 14:71–78.
  • Gül A, Eroğul D, Öztan F, Tepecik M. 2007. Effect of growing media on plant growth and nutrient status of crisp-head lettuce. Acta Hort. 729:367–371.
  • Hakerlerler H, Anac D, Gul A, Saatci N. 1992. Topraksız yetiştirme ortamlarının sera koşullarında yetiştirilen marulun azot fraksiyonlarına ve besin maddeleri miktarına gaetkileri. J Ege Univ Fac Agricult. 29:87–94.
  • Jarosz Z. 2013. The effect of silicon application and type of substrate on yield and chemical composition of leaves and fruit of cucumber. J Elem. 18:403–414.
  • Kamiński W, Kordasz T, Strahl A, Bałuka T, Walczak K. 1972. Analytical methods in agricultural-chemistry stations. Part II. Plant analyses. Pulawy: Institute of Soil Science and Plant Cultivation; p. 65–72.
  • Karimaei MS, Massiha S, Mogaddam M. 2004. Comparison of two nutrient solutions effect on growth and nutrient levels of lettuce (Lactuca sativa L.) cultivars. Acta Hort. 644:69–74.
  • Keramat J, LeBail A, Prost C, Soltanizadeh N. 2011. Acrylamide in foods: chemistry and analysis, a review. Food Bioprocess Tech. 4:340–363.
  • Khoshnama F, Zargarb B, Pourrezab N, Parhamb H. 2010. Acetone extraction and HPLC determination of acrylamide in potato chips. J Iran Chem Soc. 7:853–858.
  • Kleiber T. 2014. Effect of manganese nutrition on content of nutrient and yield of lettuce (Lactuca sativa L.) in hydroponic. Ecol Chem Eng. 21:529–537.
  • Kleiber T, Markiewicz B, Niewiadomska A. 2012. Organic substrates for intensive horticultural cultures: yield and nutrient status of plants, microbiological parameters of substrates. Pol J Environ Stud. 21:1261–1271.
  • Kleiber T, Starzyk J, Bosiacki M. 2013. Effect of nutrient solution, Effective Microorganisms (EM-a), and assimilation illumination of plants on the induction of the growth of lettuce (Lactuca sativa L.) in hydroponic cultivation. Acta Agrobot. 66:27–38.
  • Kozik E, Tyksiński W, Komosa A. 2008. Effect of chelated and mineral forms of micronutrients on their content in leaves and the yield of lettuce. Part I. Manganese. Acta Sci Pol Hortorum Cultus. 7:73–82.
  • Kozik E, Wojciechowska E, Golcz A, Mieloszyk E. 2015. Zawartość wybranych mikroskładników w liściach sałaty (Lactuca sativa L. var. capitata L.) w zależności od poziomu i postaci zastosowanego żelaza. Nauka Przyr Technol. 9. doi:10.17306/J.NPT.2015.1.13
  • León A, Viña S, Frezza D, Chaves A, Chiesa A. 2007. Estimation of chlorophyll contents by correlations between SPAD-502 meter and chroma meter in butterhead lettuce. Commun Soil Sci Plant Anal. 38:2877–2885.
  • Loren S, Fikry F, Frank W, Lentz D, Sojka E. 1999. Analysis of residual acrylamide in field crops. J Chromatogr Sci. 37:240–244.
  • Marcus C, Xiaojuan H, Greg Q, David S. 2002. Degradation on polyacrylamides. Part I. Linear polyacrylamide. Polymer. 44:1331–1337.
  • Matraszek R, Szymańska M, Wróblewska M. 2002. Effect of nickel on yielding and mineral composition of the selected vegetables. Acta Sci Pol Hort Cultus. 1:13–22.
  • Michalak J, Gujska E, Kuncewicz A. 2013. RP-HPLC-DAD studies on acrylamide in cereal-based baby foods. J Food Compos Anal. 32:68–73.
  • Mroczek E, Konieczny P, Kleiber T, Waśkiewicz A. 2014. Response of hydroponically grown head lettuce on residual monomer from polyacrylamide. Food Add Contam Part A. 31:1399–1405.
  • NICNAS. 2002. Acrylamide –Priority Existing Chemical Assessment Report No 23. Commonwealth of Australia: National Industrial Chemicals Notification and Assessment Scheme.
  • Results of a BGVV Information Seminar. 2002. Acrylamide in food - serious problem or exaggerated risk? Berlin: Bundesinstitut für gesundheitlichen Verbraucherschutz und Veterinärmedizin.
  • Samborski S, Rozbicki J. 2004. Kalibracja chlorofilometru do oceny odżywienia zbóż azotem. Post Nauk Rol. 5:27–37.
  • Skog K, Alexander J. 2006. Acrylamide and other hazardous compounds in heat-treated foods. Abington: Ed. Woodhead Publishing Limited; p. 536.
  • Stadler R, Blank I, Varga N, Robert F, Hau J, Guy P, Robert M, Riediker S. 2002. Acrylamide from Maillard reaction products. Nature. 419:449–450.
  • Tareke E, Rydber P, Karlsson P, Eriksson S, Törnqvist M. 2002. Analysis of acrylamide, a carcinogen formed in heated foodstuffs. J Agric Food Chem. 50:4998–5006.
  • Tareke E, Rydberg P, Karlsson P, Eriksson S, Törnqvist M. 2000. Acrylamide a cooking carcinogen? Chem Res Toxicol. 13:517–522.
  • US EPA Method 8032A:SW-846 Rev 1; U.S. Environmental Protection Agency, Office of Solid Waste, December 1996
  • Wallace A, Wallace G, Abouzam A. 1986. Effect of excess level of a polymer as a soil conditioner on yield and mineral nutrition of plants. Soil Sci. 141:377–379.
  • Wang H, Feng F, Guo Y, Shuang S, Choi MMF. 2013. HPLC-UV quantitative analysis of acrylamide in baked and deep-fried Chinese foods. J Food Compos Anal. 31:7–31.
  • Wang H, Lee AWM, Shuanga S, Choi MMF. 2008. SPE/HPLC/UV studies on acrylamide in deep-fried flour-based indigenous Chinese foods. Microchem J. 89:90–97.
  • Wenz T, Calle M, Anklam E. 2003. Analytical methods for the determination of acrylamide in food products: a review. Food Addit Contam. 20:885–902.
  • Winsor G, Adams P. 1987. Diagnosis of mineral disorders in plants. Glasshouse Crops. 3:119–125.
  • Żyżelewicz D, Nebesny E, Oracz J. 2010. Acrylamide- formation, physicochemical and biological properties. Bromat Chem Toksykol. XLIII:415–427.

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