1. Aminroosta Tasouji M, Ghorashi AH, Hamedmoosavian MT, Bakhshzad Mahmoudi M. (2018). INACTIVATION OF PISTACHIO CONTAMINANT ASPERGILLUS FLAVUS BY ATMOSPHERIC PRESSURE CAPACITIVE COUPLED PLASMA (AP-CCP). 668-671. http://dx.doi.org/10.15414/jmbfs.2018.8.1.
2. André, S., Zuber, F., Remize, F. (2013). Thermophilic spore-forming bacteria isolated from spoiled canned food and their heat resistance. Results of a French ten-year survey. Int. J. Food Microbiol. 165(2),134e143. http://dx.doi.org/10.1016/j.ijfoodmicro.2013.04.019.
3. Ashton, D., Bernard, D. (1992). Thermophilic anaerobic sporeformers. In: Vanderzantz, C., Splittstoesser, D.F. (Eds.), Compendium of Methods for the Microbiological Examination of Foods, third ed. American Public Health Association, Washington, D.C., pp. 309e316. DOI: 10.2105/MBEF.0222.032.
4. Baynes JW. Role of oxidative stress in development of complications in diabetes. (1991). Diabetes 1991, 40(4):405-12. DOI: 10.2337/diab.40.4.405.
5. Bezverkhnii, N., Monakhov, N.,Petrenko, M., Lapushkina, T., Sakharov, V., Poniaev, S., Bobashev, S. (2020). Experimental studies of the spectral characteristicsof a free glow discharge in the wavelength range of 340-440 nm. Journal of Physics: Conference Series. doi:10.1088/1742-6596/1697/1/012210
6. Brown A.C. (2018). Understanding food: Principles and preparation, Cengage Learn in (part II Food Service chapter 4 Food Safety p. 61).
7. Camacho, J., Santos, M., D´ıaz, L., Poyato, J. (2008). Optical emission spectroscopy of oxygen plasma induced by IR co2 pulsed laser. JOURNAL OF PHYSICS D: APPLIED PHYSICS. doi: 10.1088/0022-3727/41/21/215206.
8. Cheng, L., Mu, W., Jiang, B. (2009). Thermostable L-arabinose isomerase from Bacillus stearothermophilus IAM 11001 for D-tagatose production: gene cloning, purification and characterisation. J. Sci. Food Agric. 90 (8), 1327e1333. http:// dx.doi.org/10.1002/jsfa.3938.
9. Critzer F K-WK, South S, Golden D. (2007). Atmospheric plasma inactivation of foodborne pathogens on fresh produce surfaces. J Food Protect. 2007; 70(10):2290. DOI: 10.4315/0362-028X-70.10.2290.
10. Demirci.A and Ngadi, M. O. (2012). Microbial decontamination in the food industry: Novel methods and applications. Woodhead Publishing Series in Food Science, Technology and Nutrition: No. 234.
11. Esmaeili, Z., Hosseinzadeh S, B., Nemati, A., Nazari, F., Rostami, S. (2021). Development of novel green pesticide system by using cold plasma to control Plodia interpunctella in pistachio. Journal of Food Processing and Preservation. https://doi.org/10.1111/jfpp.15621
12. Guizelini,B., Vandenberghe, L.S., Sella, S.R., Soccol,C. (2012). Study of the influence of sporulation conditions on heat resistance of Geobacillus stearothermophilus used in the development of biological indicators for steam sterilization. Arch. Microbiol. 194 (12), 991e999. http://dx.doi.org/10.1007/s00203-012-0832-z.
13. Guzel-Seydim .Z.B GAK, Seydim AC. (2004). Use of ozone in the food industry. Lebensmittel-Wissenschaft und-Technologie. Lebensmittel-Wissenschaft undTechnologie. 2004;37(4):453-60.
14. Hosseini SI, Farrokhi N, Shokri K, Khani MR, Shokri B. (2018). Cold low pressure O2 plasma treatment of Crocus sativus: An efficient way to eliminate toxicogenic fungi with minor effect on molecular and cellular properties of saffron. Food Chemistry 257 (2018) 310–315. DOI: 10.1016/j.foodchem.2018.03.031.
15. I. Filatova, V. Azharonok, V. Lushkevich, A. Zhukovsky, G. Gadzhieva, K. Spasić, S. Živković, N. Puač, S. Lazović, G. Malović and Z.Lj.Petrović. (2013). Plasma seeds treatment as a promising technique for seed germination improvement. 31st ICPIG, July 14-19, 2013, Granada, Spain.
16. INSO 672. 1st.Revision, 2015. Dry fruits –Determination of the moisture content- test methods.
17. INSO 8923-4. 1st.Revision. Mar. (2014). Microbiology of food and animal feeding stuffs - Preparation of test samples, initial suspension and decimal dilutions for microbiological examination - Part 4: Specific rules for the preparation of products other than milk and milk products, meat and meat products, and fish and fishery products. ICS: 07.100.30.
18. INSO 9899. 1st.Edition 2016. Microbiology of food and animal feeding stuffs – General requirements and guidance for microbiological examinations. ICS: 07.100.30.
19. ISIRI 4179. 1st.revision. Animal and vegetable fats and oils — Determination of peroxide value — Iodometric (visual) endpoint determination.
20. ISIRI 5272. 1st.Revision. Microbiology of food and animal feeding stuffs - Horizontal method for the enumeration of microorganisms Colonyـ count technique at 30 ْ c.
21. ISIRI 8923-1. 1st. Edition. Microbiology of food and animal feeding stuffs – Preparation of test samples, initial suspension and decimal dilutions for microbiological examination Part 1: General rules for the preparation of initial suspension and decimal dilutions.
22. ISO/AWI 11138-6. Sterilization of health care products__ Biological indicator__Part6: Biological indicator for hydrogen peroxide sterilization processes. Edition 1. Technical committee: ISO/TC 198 Sterilization of health care products.
23. ISO 14937. Sterilization of health care products__ General requirement for characterization of a sterilizing agent and the development, validation and routine control of a sterilization process for medical devices.
24. Khalili, F., Shokri, B., Khani, MR., Hassani, M., Zandi, F., Aliahmadi, A. (2018). A study of the effect of gliding arc non-thermal plasma on almonds decontamination. AIP ADVANCES 8, 105024 (2018) https://doi.org/10.1063/1.5044476
25. Khani MR, Shokri B, Khajeh K. (2016). Studying the Performance of Dielectric Barrier Discharge and Gliding Arc Plasma Reactors in Tomato Peroxidase Inactivation. Journal of Food Engineering. S0260-8774(16)30411-3. http://dx.doi.org/10.1016/j.jfoodeng.2016.11.012.
26. Lei Xu, Allen L Garner, Bernard Tao, Kevin M. Keener. (2017). Microbial Inactivation and Quality Changes in Orange Juice Treated by High Voltage Atmospheric Cold Plasma. Food Bioprocess Technol, http://dx.doi.org/10.1007/s11947-017-1947-7.
27. Machala, Z., Janda, M., Hensel, K., Jedlovsky, I., Lesˇtinska, L., Foltin, V., Martisˇovits, V., Morvova, M. (2007). Emission spectroscopy of atmospheric pressure plasmas for bio-medical and environmental applications. Journal of Molecular Spectroscopy 243 (2007) 194–201. doi:10.1016/j.jms.2007.03.001
28. Makari, M., Hojjati, M., Shahbazi, S., Askari,H. (2021). Elimination of Aspergillus flavus from Pistachio Nuts with Dielectric Barrier Discharge (DBD) Cold Plasma and Its Impacts on Biochemical Indices. Journal of Food Quality. DOI: 10.1155/2021/9968711
29. Moiseev, T., Misra, N. N., Patil, S., Cullen, P. J., Bourke, P., Keener, K. M., & Mosnier, J. P. (2014). Post-discharge gas composition of a large-gap DBD in humid air by UV–Vis absorption spectroscopy. Plasma Sources Science and Technology. 23(6), 65033.http://dx.doi.org/10.1088/0963-0252/23/6/065033.
30. Nazina, T.N., Tourova, T.P., Poltaraus, A.B., Novikova, E.V., Grigoryan, A.A., Ivanova, A.E. (2001). Taxonomic study of aerobic thermophilic bacilli: descriptions of Geobacillus subterraneus gen. nov., sp. nov.and Geobacillus uzenensis sp. nov. from petroleum reservoirs and transfer of Bacillus stearothermophilus, Bacillus thermocatenulatus, Bacillus thermoleovorans, Bacillus kaustophilus, Bacillus thermodenitrificans to Geobacillus as thenewcombinations G. stearothermophilus, G. thermocatenulatus, G. thermoleovorans, G. kaustophilus, G. thermoglucosidasius and G. thermodenitrificans. Int. J. Syst. Evol. Microbiol. 51 (2), 433e446. http://dx.doi.org/10.1099/00207713-51-2-433.
31. Nehra V, Kumar A, Dwivedi H. (2008). Atmospheric nonthermal plasma sources. International Journal of Engineering (IJE). 2008; 2(1):53.
32. N.N. Misra, K.M. Keener, Paula Bourke, J.P. Mosnier, P. J. Cullen. (2014). In-package atmospheric pressure cold plasma treatment of cherry tomatoes. . Journal of Bioscience and Bioengineering, in-press, http://dx.doi. 10.1016/j.jbiosc.2014.02.005.
33. NUTS & DRIED FRUITS STATISTICAL YEARBOOK 2018/2019.
34. Pignata, C., D'Angelo, D., Basso, D., Cavallero, M., Beneventi, S., Tartaro, D., Meineri, V.,Gilli, G. (2014). Low-tempreture, low-pressure gas plasma application on Aspergillus brasiliensis, Escherichia coli and pistachios. Journal of Applied Microbiology. https://doi.org/10.1111/jam.12448
35. Ratner, B. D., Chilkotti,A., & Lopez, G. P. (1990). Plasma deposition and treatment for biomaterial applications. In R. D'Agostino (Ed.), Plasma deposition, treatment and etching of polymers (pp. 502e506). New York: Academic Press,
36. Rivero, C.W., De Benedetti, E.C., Sambeth, J.E., Lozano, M.E., Trelles, J.A. (2012). Biosynthesis of anti-HCV compounds using thermophilic microorganisms. Bioorg. Med. Chem. Lett. 22 (19), 6059e6062. http://dx.doi.org/10.1016/j.bmcl. 2012.08.045.
37. Ruonan Ma, Guomin Wang, Ying Tian, Kaile Wang, Jue Zhang, Jing Fang. (2015). Non-thermal plasma-activated water inactivation of food-borne pathogen on fresh produce. Journal of Hazardous Materials. 300 (2015) 643-651. http://dx.doi.org/10.1016/j.jhazmat.2015.07.061.
38. Samuel, A. H., Matthews, I. P., & Gibson, C. (1988). Microwave desorption: a combined sterilizer/aerator for the accelerated elimination of ethylene oxide residues from sterilized supplies. Medical Instrumentation, 22, 39e44. http://dx.doi: 10.1016/j.ijfoodmicro.2012.02.009.
39. Sevenier, V., Delannoy, S., André, S., Fach, P., Remize, F. (2012). Prevalence of Clostridium botulinum and thermophilic heat-resistant spores in raw carrots and green beans used in French canning industry. Int. J. Food Microbiol.155 (3), 263e268. http://dx.doi.org/10.1016/j.ijfoodmicro.2012.02.009.
40. Shaobo Deng, Roger Ruan, Chul Kyoon Mok, Guangwei Huang, Xiangyang Lin, Paul Chen. (2007). Inactivation of Escherichia coli on Almonds Using Nonthermal Plasma. Institute of Food technologists, http://dx.doi: 10.1111/j.1750-3841.2007.00275.x.
41. Shintani, H., Sakudo, A., Burke, P., & McDonnell, G. (2010). Gas plasma sterilization of microorganisms and mechanisms of action. Experimental and Therapeutic medicine, 1, 731e738. http://dx.doi: 10.3892/etm.2010.136.
42. Sohbatzadeh, F., Mirzanejhad, S., Shokri, H., Nikpour, M. (2016). Inactivation of Aspergillus flavus spores in a sealed package by cold plasma streamers. Journal of Theoretical and Applied Physics. DOI: 10.1007/s40094-016-0206-z
43. Taehoon Lee, Pradeep Puligundl, Chulkyoon Mok. (2014). Inactivation of foodborne pathogens on the surfaces of different packaging materials using low-pressure air plasma. Food Control 51 (2015) 149e155. http://dx.doi.org/10.1016/j.foodcont.2014.11.021.
44. Wan, Z., Chen, Y., Pankaj, S. K., & Keener, K. M. (2017). High voltage atmospheric cold plasma treatment of refrigerated chicken eggs for control of Salmonella Enteritidis contamination on egg shell. LWT-Food Science and Technology, 76, 124–130. https://doi.org/10.1016/j.lwt.2016.10.051
45. Yang, C., Wang, Y., Jacobs, C. B., Ivanov, I. N., & Venton, B. J. (2017). O2 plasma etching and antistatic gun surface modifications for CNT yarn microelectrode improve sensitivity and antifouling properties. Analytical Chemistry, 89(10), 5605–5611. https://doi.org/10.1021/acs.analchem.7b00785