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Abstract

Despite the growing interest in traditional cuisine, to the present author’s knowledge no linguistic analysis of Polish culinary recipes has been conducted so far. Even though numerous studies of recipes written in other languages, such as English, have been published, the structure and typology of early Polish recipes have, as yet, been ignored. The aim of the present paper is to investigate the earliest known Polish collection Compendium Ferculorum, and collate these fi ndings with what is known about this text type from other languages. Such an analysis will show whether the earliest Polish instructions, which appeared relatively late, i.e. in the 17th century, follow the pattern which is typical of the period or rather that of an earlier stage in the evolution of the recipe, as was the case with the earliest American recipes (Dylewski 2016).

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Authors and Affiliations

Magdalena Bator
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Abstract

Many paper-related products are in daily use all over the world. Although paper is one of the most recycled materials in the European Union, no end-of-waste criteria have been defi ned. Typical paper and cardboard should be recycled, but paper materials with impurities, such as cooking oil, sand, or plastic, are much more problematic. In particular, paper contaminated with cooking oil or butter (e.g., pizza boxes) is diffi cult waste. Also baking parchment paper cannot be stored as waste paper after use. Composting could be a solution, but in many municipal solid waste collection systems, this waste types are collected with the mixed waste stream, what fi nally leads this material to landfi lling or incinerating processes. Parchment paper and pizza box cardboard contain a lot of cellulose and in landfi lls are a source of CO2 and CH4. Incineration of these materials also leads to CO2 emission. The aim of this study was to investigate the degradation of cooking-oil-contaminated paper in media with a low inorganic nitrogen content. Cardboard usually used for packaging purposes was used as pre-test material. Two types of paper usually used in the kitchen were used: pizza box cardboard and parchment paper highly contaminated with cooking oil. Two types of low inorganic nitrogen media were tested: mature municipal waste compost (MSWC) and leaf mold (LM). The decrease of mass of both paper sample types was correlated with process time. Both tested sample types: dry cellulose materials and paper with cooking oil added, were partly or completely decomposed after 6 weeks of bioprocessing in aerobic conditions without an additional dose of inorganic nitrogen. According to waste separation rules, wet paper or paper contaminated with cooking oil have to be stored with other wastes which are „not possible for further use”. This work show possibility to change these rules.
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Bibliography

  1. Agarwal, G., Liu, G. & Lattimer, G. (2014) Pyrolysis and Oxidation of Cardboard. Fire safety science-proceedings of the eleventh international symposium. pp. 124–137. DOI:10.3801/IAFSS. FSS.11-124
  2. Ahmed, S., Hall, A.M. & Ahmed, S.F. (2018) Biodegradation of Different Types of Paper in a Compost Environment. Proceedings of the 5th International Conference on Natural Sciences and Technology (ICNST’18) March 30–31, Asian University for Women, Chittagong, Bangladesh.
  3. Al-Mutairi, N. (2009) Co-composting of manure with fat, oil, and grease: Microbial fingerprinting and phytotoxicity evaluation. Can. J. Civ. Eng. 36(2) pp. 209–218. DOI:10.1139/L08-117
  4. Aluyor, E.O., Obahiagbon, K.O. & Ori-jesu, M. (2009) Biodegradation of vegetable oils: A review. Scientific Research and Essay, 4(6), pp. 543–54.
  5. Andlar, M., Rezic, T., Mardetko, M., Kracher, D., Ludwig, R. & Santek B. (2018) Lignocellulose degradation: An overview of fungi and fungal enzymes involved in lignocellulose degradation. Engineering in Life Sciences, 18 pp. 768–778. DOI:10.1002/ elsc.201800039
  6. Balada, I., Altmann, V. & Šařec, P. (2016) Material waste paper recycling for the production of substrates and briquettes. Agronomy Research 14(3), pp. 661–671.
  7. Bekiroğlu, S., Elmas, G.M. & Yagshiyev, Y. (2017) Contribution to Sustainability and the National Economy Through Recycling Waste Paper from Istanbul’s Hotels in Turkey. BioResources, 12(4), pp. 6924–6955. DOI:10.15376/biores.12.4.6924-6955
  8. Bogaard, J. & Whitmore, P.M. (2002) Explorations of the role of humidity fluctuations in the deterioration of paper. Studies in Conservation, 47(3), pp. 11–15. DOI:10.1179/sic.2002.47.s3.003
  9. Borrego, S., Gómez de Saravia, S., Valdés, O., Vivar, I., Battistoni, P. & Guiamet, P. (2016) Biocidal activity of two essential oils on fungi that cause degradation of paper documents. International Journal of Conservation Science, 7(2), pp. 369–380.
  10. Cichosz, G. & Czeczot, H. (2011) Oxidative stability of edible fats – consequences to human health. Bromat. Chem. Toksykol. XLIV, 1, pp. 50–60
  11. Ciesielczuk, T., Poluszyńska, J., Rosik-Dulewska, Cz., Sporek, M. & Lenkiewicz, M. (2016). Uses of weeds as an economical alternative to processed wood biomass and fossil fuels. Ecological engineering, 95, pp. 485–491. DOI:10.1016/j.ecoleng.2016.06.100
  12. Cuvelier, M.E., Soto, P., Courtois, F., Broyart, B. & Bonazzi, C. (2017) Oxygen solubility measured in aqueous or oily media by a method using a non-invasive sensor. Food Control, 73, part 3, pp. 1466–1473. DOI:10.1016/j.foodcont.2016.11.008
  13. Franica, M., Grzeja, K. & Paszula, S. (2018) Evaluation of quality parameters of selected composts. Archives of Waste Management and Environmental Protection, 20(1), pp. 21–32.
  14. Ghehsareh, M.G., Khosh-Khui, M. & Nazari, F. (2011) Comparison of Municipal Solid Waste Compost, Vermicompost and Leaf Mold on Growth and Development of Cineraria (Pericallis × hybrida ‘Star Wars’). Journal of Applied Biological Sciences, 5 (3), 55–58.
  15. Gumienna, M., & Czarnecki, Z. (2010). The surface-active compounds of microbiological origin. Nauka Przyr. Technol., 4, 4, #51. (in Polish)
  16. Kaakinen, J., Vahaoja, P., Kuokkanen, T. & Roppola, K. (2007) Studies on the Effects of Certain Soil Properties on the Biodegradation of Oils Determined by the Manometric Respirometric Method. J. Automated Methods and Management in Chemistry, 034601. DOI:10.1155/2007/34601
  17. Karahan, S. (2020) Investigation of Recycling Possibilities of Stacked Waste Office Paper for at Least Five Years. GUSTIJ, 10(2) pp. 366 – 373. DOI:10.17714/gumusfenbil.606061
  18. Li, Z., Wrenn, B.A. & Venosa, A.D. (2005) Anaerobic biodegradation of vegetable oil and its metabolic intermediates in oil-enriched freshwater sediments. Biodegradation 16, pp. 341–352. DOI:10.1007/s10532-004-2057-6
  19. Micales, J.A., & Skog, K.E. (1997) The Decomposition of Forest Products in Landfills. International Biodeterioration & Biodegradation, 39, 2–3, pp. 145–158.
  20. Nowińska, A., Baranowska, J. & Malinowski, M. (2019) The analysis of biodegradation process of selected paper packaging waste. Infrastructure And Ecology Of Rural Areas 3, pp. 253–261. DOI:10.14597/INFRAECO.2019.3.1.018
  21. Osono, T. (2019) Functional diversity of ligninolytic fungi associated with leaf litter decomposition. Ecological Research, 35, pp.30–43. DOI:10.1111/1440-1703.12063
  22. Ozimek, A. & Kopeć, M. (2012). Assessment of biological activity of biomass at different stages of composting process with use of the oxitop control measurement system. Acta Agrophysica, 19(2), 379–390.
  23. Perez, J., Munoz-Dorado, J., Rubia, T. & d.l. Martınez, J. (2002) Biodegradation and biological treatments of cellulose, hemicellulose and lignin: An overview. International Microbiology, 5 (2), pp. 53–63. DOI:10.1007/s10123-002- 0062-3
  24. Poluszyńska, J., Ciesielczuk, T., Biernacki, M. & Paciorkowski M. (2021) The effect of temperature on the biodegradation of different types of packaging materials under test conditions. Archives of Environmental Protection, 47(4), pp. 74–83. DOI:10.24425/aep.2021.139503
  25. Rajae, A., Ghita, A.B., Souabi, S., Winterton, P., Cegarra, J. & Hafidi M. (2008) Aerobic biodegradation of sludge from the effluent of a vegetable oil processing plant mixed with household waste: Physical–chemical, microbiological, and spectroscopic analysis. Bioresource technology, 99(18), pp. 8571–8577. DOI:10.1016/j. biortech.2008.04.007
  26. Saletes, S., Siregar, F.A., Caliman, J.P. & Liwang, T. (2004) Ligno- Cellulose Composting: Case Study on Monitoring Oil Palm Residuals. Compost Science & Utilization, 12(4), pp. 372–382. DOI:10.1080/1065657X.2004.10702207
  27. Salihu, I., Mohd, Y.S., Nur, A.Y. & Siti, A.A. (2018) Microbial degradation of vegetable oils: a review, 3, pp. 45–55.
  28. Smirnova. I.E. & Saubenova, M.G. (2001) Use of Cellulose- -Degrading Nitrogen-Fixing Bacteria in the Enrichment of Roughage with Protein. Applied Biochemistry and Microbiology, 37(1), pp. 76–79.
  29. Wan Razali, W.A., Baharuddin, A.S., Talib, A.T., Sulaiman, A., Naim, M.N., Hassan, M.A. & Shirai, Y. (2012) Degradation of oil palm empty fruit bunches (OPEFB) fibre during composting process using in-vessel composter. Bioresources, 7(4), pp. 4786–4805.
  30. Wołczyński, M. & Janosz-Rajczyk, M. (2014) Influence of Initial Alkalinity of Lignocellulosic Waste on Their Enzymatic Degradation. Archives of Environmental Protection, 40(2), pp. 103–113. DOI:10.2478/aep-2014-0019
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Authors and Affiliations

Tomasz Ciesielczuk
1
ORCID: ORCID
Czesława Rosik-Dulewska
2
ORCID: ORCID

  1. Opole University, Poland
  2. Institute of Environmental Engineering, Polish Academy of Sciences, Zabrze, Poland
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Abstract

The research was intended to develop a biocomposite as an alternative biodegradable material, for the production of, e.g., disposable utensils. The author’s tested thermoplastic maize starch, both without additives and with the addition of crumbled fl ax fi ber in the share of 10, 20 and 30 wt%. The plasticizer added was technical glycerin and the samples were produced by a single-screw extruder. The mechanical strength tests were performed, including the impact tensile test and three-point bending fl exural test. Afterwards, the samples were tested for biodegradability under anaerobic conditions. The methane fermentation process was carried in a laboratory bioreactor under thermophilic conditions with constant mixing of the batch. All samples proved to be highly susceptible to biodegradation during the experiment, regardless of the fl ax fi ber share. The biogas potential was about 600 ml·g-1, and the methane concentration in biogas ranged from 66.8 to 69.6%. It was found, that the biocomposites can be almost completely utilized in bioreactors during the biodegradation process. The energy recovery in the decomposition process with the generation of signifi cant amount of methane constitutes an additional benefi t.

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Authors and Affiliations

Gabriel Borowski
1
ORCID: ORCID
Tomasz Klepka
2
Małgorzata Pawłowska
1
Maria Cristina Lavagnolo
3
Tomasz Oniszczuk
4
Agnieszka Wójtowicz
4
Maciej Combrzyński
4

  1. Faculty of Environmental Engineering, Lublin University of Technology, Lublin, Poland
  2. Faculty of Mechanical Engineering, Lublin University of Technology, Lublin, Poland
  3. Department of Civil Environmental and Architectural Engineering, University of Padova, Italy
  4. Department of Thermal Technology and Food Process Engineering, University of Life Sciences in Lublin, Poland
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Abstract

2-phase composites are often used for high demanding parts that can undergo impact loads. However, most of the papers on dynamic loading concerns layered composites. In our opinion, the impact loads are not considered thoroughly enough. Good examples of 2-phase composites are: (1) a WC/Co cermet or (2) a monolithic ceramic Al2O3/ZrO2. The WC/Co cermet is often modelled as having ductile elasto-plastic Co matrix and ideally elastic WC grains. It is because of very high crushing resistivity of the WC.

In this paper, we present an extension to earlier elaborated models ([44]) with the assumption of ideal elasticity of the grains. The new and general numerical model for high-velocity impact of the 2-phase composites is proposed. The idea of this novelty relies on the introduction of crushability of grains in the composite and thermo-mechanical coupling. The model allows for description of the dynamic response both composite polycrystals made of: (1) 2 different purely elastic phases (e.g. Al2O3/ZrO2) or (2) one elastic phase and the second one plastic (e.g. cermet WC/Co), or (3) 2 elasto-plastic phases with different material properties and damage processes. In particular, the analysis was limited to the cases (2) and (3), i.e. we investigated the WC/Co polycrystal that impacted a rigid wall with the initial velocity equal to 50 m/s.

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Authors and Affiliations

E. Postek
T. Sadowski
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Abstract

The following discussion concerns modelling of fracture in steel plates during an impact test, in which both target and striker are manufactured from the same material, high-strength high-hardness armour steel – Mars® 300. The test conditions (3 mm thick targets, projectiles with different nose shapes at impact velocity lower than 400 m/s) result in severely damaged components, which results in an analysis of stress states showing material failure. Numerical analyses are performed using two material models: the Johnson-Cook approach, as traditionally used in impact simulations, accounting for the effect of stress triaxiality, strain rate and temperature and for comparison, a simulation by means of the stress triaxiality and Lode angle parameter-dependent Hosford-Coulomb model, also incorporating the effect of the strain rate on a fracture initiation. The aim of the study is to analyse the mechanisms of penetration and perforation observed in the armour steel plates and validation of the modelling approaches.

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Authors and Affiliations

T. Fras
C.C. Roth
D. Mohr
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Abstract

This paper details a finite element analysis of the behaviour of Si-Al geopolymer concrete beam reinforced steel bar under an impulsive load and hyper velocity speed up to 1 km/s created by an air blast explosion. The initial torsion stiffness and ultimate torsion strength of the beam increased with increasing compressive strength and decreasing stirrup ratio. The study involves building a finite element model to detail the stress distribution and compute the level of damage, displacement, and cracks development on the geopolymer concrete reinforcement beam. This was done in ABAQUS, where a computational model of the finite element was used to determine the elasticity, plasticity, concrete tension damages, concrete damage plasticity, and the viability of the Johnson-Cook Damage method on the Si-Al geopolymer concrete. The results from the numerical simulation show that an increase in the load magnitude at the midspan of the beam leads to a percentage increase in the ultimate damage of the reinforced geopolymer beams failing in shear plastic deformation. The correlation between the numerical and experimental blasting results confirmed that the damage pattern accurately predicts the response of the steel reinforcement Si-Al geopolymer concrete beams, concluded that decreasing the scaled distance from 0.298 kg/m3 to 0.149 kg/m3 increased the deformation percentage.
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Authors and Affiliations

Nurul Aida Mohd Mortar
1 2
ORCID: ORCID
Mohd Mustafa Al Bakri Abdullah
1 2
ORCID: ORCID
Kamarudin Hussin
1
ORCID: ORCID
Rafiza Abdul Razak
3
ORCID: ORCID
Sanusi Hamat
4
ORCID: ORCID
Ahmad Humaizi Hilmi
4
Noorfifi Natasha Shahedan
1
ORCID: ORCID
Long Yuan Li
5
ORCID: ORCID
Ikmal Hakem A. Aziz
1
ORCID: ORCID

  1. Universiti Malaysia Perlis, Center of Excellence Geopolymer and Green Technology (CEGeoGTech), Malaysia
  2. Universiti Malaysia Perlis (UniMAP), Faculty of Chemical Engineering Technology, Malaysia
  3. Universiti Malaysia Perlis (UniMAP), Faculty of Civil Engineering Technology, Malaysia
  4. Universiti Malaysia Perlis (UniMAP), Faculty of Mechanical Engineering Technology, Malaysia
  5. University of Plymouth, School of Marine Science and Engineering, Plymouth PL4 8AA, United Kingdom
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Abstract

As the dynamic behavior of the concrete is different from that under static load, this research focuses on the study of dynamic responses of concrete by simulating the split Hopkinson pressure bar (SHPB) test. Finite element code LS-DYNA is used for modeling the dynamic behaviors of concrete. Three continuous models are reviewed and the Holmquist-Johnson-Cook model (HJC) is introduced in detail. The HJC model which has been implemented in LS-DYNA is used to represent the concrete properties. The SHPB test model is established and a few stress waves are applied to the incident bar to simulate the dynamic concrete behaviors. The stress-strain curves are obtained. The stress distributions are analyzed. The crack initiation and propagation process are described. It is concluded that: the HJC model can modeling the entire process of the fracture initiation and fragmentation; the compressive of the concrete is significantly influenced by the strain rates.

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Authors and Affiliations

H.M. An
L. Liu
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Abstract

The use of quantitative methods, including stochastic and exploratory techniques in environmental studies does not seem to be sufficient in practical aspects. There is no comprehensive analytical system dedicated to this issue, as well as research regarding this subject. The aim of this study is to present the Eco Data Miner system, its idea, construction and implementation possibility to the existing environmental information systems. The methodological emphasis was placed on the one-dimensional data quality assessment issue in terms of using the proposed QAAH1 method - using harmonic model and robust estimators beside the classical tests of outlier values with their iterative expansions. The results received demonstrate both the complementarity of proposed classical methods solution as well as the fact that they allow for extending the range of applications significantly. The practical usefulness is also highly significant due to the high effectiveness and numerical efficiency as well as simplicity of using this new tool.

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Authors and Affiliations

Piotr Czechowski
Artur Badyda
Grzegorz Majewski

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