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Abstract

The unique oasis of Zousfana, on the western edge of the Grand Erg Occidental, Taghit is the pearl of the oases of Saoura, a palm grove of 180 ha over an 18 km length crossed by Oued Zouzfana. It regroups the different types of landscapes of an arid zone (erg, hamada, barga – a small hill, oued ...). Taghit is known for its hydraulic civilization, the oasis in its hostile environment has survived thanks to the exploitation of rare groundwater irrigation according to the traditional customs applied to the whole of society. The peasants spur out the water resources through foggaras and traditional wells. But the intervention of modern irrigation techniques in an anarchic way has disrupted the fragile mode of irrigation and the abandonment of the palm grove. The over-exploitation of groundwater by the use of boreholes and motor pumps leads to the drying up of water sources, mists and traditional wells. Today, only 45 000 palm trees are productive and less than 1500 fruit trees. There are 500 fellahs in the entire agricultural area of Taghit, the majority of them is fleeing work in the oasis because of the lack of income from it. When comparing the results of analyses from different campaigns (2015 and 2008), a spectacular increase in the salt concentrations in the groundwater of the different palm groves is noticed. According to our investigations, the main causes of this jump are: the overexploitation of the water tables by motor pumps, the abandonment of land inside the palm grove, the lack of maintenance of the gardens, the exploitation of domestic wastewater in the irrigation. According to this preliminary study, it is important for the State to make farmers aware of the role of their traditional irrigation systems in the continuity of the oasis and life in it.

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Authors and Affiliations

Elhadj Belhadj Elmehdi
Boualem Remini
Cherif Rezzoug
Saaed Hamoudi
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Abstract

The invasive method of medically checking hemoglobin level in human body by taking the blood sample of the patient requiring a long time and injuring the patient is seen impractical. A non-invasive method of measuring hemoglobin levels, therefore, is made by applying the K-Nearest Neighbor (KNN) algorithm and the Artificial Neural Network Back Propagation (ANN-BP) algorithm with the Internet of Thingsbased HTTP protocol to achieve the high accuracy and the low endto- end delay. Based on tests conducted on a Noninvasive Hemoglobin measuring device connected to Cloud Things Speak, the prediction process using algorithm by means of Python programming based on Android application could work well. The result of this study showed that the accuracy of the K-Nearest Neighbor algorithm was 94.01%; higher than that of the Artificial Neural Network Back Propagation algorithm by 92.45%. Meanwhile, the end-to-end delay was at 6.09 seconds when using the KNN algorithm and at 6.84 seconds when using Artificial Neural Network Back Propagation Algorithm.
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Authors and Affiliations

R. Munadi
1
S. Sussi
1
N. Fitriyanti
2
D.N. Ramadan
3

  1. Department Telecomunication Engineering, School of Electric Engineering, Telkom University, Indonesia
  2. Department Physics Engineering, School of Electric Engineering, Telkom University, Indonesia
  3. School of Applied Science, Telkom University, Indonesia
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Abstract

The article focuses on the analysis of the effect of Zr on the properties of the aluminium alloy AlSi9Cu1Mg. The effect of Zr was evaluated depending on the change in mechanical properties and heat resistance during a gradual addition of Zr with an increase of 0.05 wt. % Zr. Half of the cast experimental samples from each variant were heat treated by precipitation hardening T6 (hereinafter HT). The measured values in both states indicate an improvement of the mechanical properties, especially in the experimental variants with a content of Zr ≥ 0.20 wt. %. In the evaluation of Rm, the most significant improvement occurred in the experimental variant with an addition of Zr 0.25 wt. % after HT and E in the experimental variant with addition of Zr 0.20 wt. % after HT. Thus, a difference was found from the results of the authors defining the positive effect of Zr, in particular at 0.15 wt. %. When evaluating the microstructure of the AlSi9Cu1Mg alloy after Zr alloying, Zr phases are already eliminated with the addition of Zr 0.10 wt. %. Especially at higher levels of Zr ≥ 0.20 wt. %, long needle phases with slightly cleaved morphology are visible in the metal matrix. It can be stated that a negative manifestation of Zr alloying is expressed by an increase in gassing of experimental alloys, especially in variants with a content of Zr ≥ 0.15 wt. %. Experimental samples were cast into ceramic moulds. The development of an experimental alloy AlSi9Cu1Mg alloyed with Zr would allow the production of a more sophisticated material applicable to thin-walled Al castings capable of operating at higher temperature loads.

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Authors and Affiliations

M. Matejka
ORCID: ORCID
M. Kuriš
D. Bolibruchova
R. Pastirčák
ORCID: ORCID
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Abstract

In this study, it was aimed to evaluate the reproductive performance of primiparous and nulliparous Saanen goats following the insemination made cervically via frozen commercial buck semen with short-time controlled internal drug release (CIDR, Eazi-Breed, Pfizer)-based synchronization. In the study, a total of 50 Saanen goats, 26 of which were aged 9 months and 24 of which were aged 2 years, were used. The CIDRs including 0.33 g of progesterone were applied to all the goats for 7 days and while the CIDRs were taken out of the vagina, the 500 IU equine chorionic gonadotropin (eCG) was injected intramuscularly. The first dose was administered in a fixed-time manner with mini straws of 0.25 ml including 300x106 motile frozen spermatozoa 24 hours after the injection without making estrus detection, and the second dose insemination was applied 24 hours later. In the study, although the pregnancy rate, fecundity, prolificacy and multiple birth rate values (83%, 1.25, 1.50 and 60%) obtained in the primiparous goats were found to be higher than those found in the nulliparous age group (80%, 0.84, 1.05 and 38%), they were not statistically significant. It was concluded that the effects of the CIDR-based double-dose insemination applications in the primiparous and nulliparous Saanen breed goats in breeding season for 7 days on fertility were similar and the cervical insemination method, a quick and more practical option compared to the intrauterine insemination, could be used successfully in both age groups.
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Bibliography


Abebe G (2008) Reproduction in sheep and goats. In: Yami A, Merkel RC (eds) sheep and goat production handbook for Ethiopia. Chapter 5, pp 60-79.
Andrabi MH, Anwar M, Mehmood A (2015) Efficacy of short term estrus synchronization protocols and timed artificial insemination in subtropical goats. J Anim Plant Sci 25: 298-300.
Baki Acar D, Birdane MK, Özenç E, Yeni D, Doğan İ (2013) Effectiveness of different progesterone analogues and GnRH on reproductive parameters in nulliparous Saanen goats at the end of the transition period. Kafkas Univ Vet Fak Derg 19 (Suppl A): A181-A186.
Bhattacharyya HK, Ganai N, Khan HM (2012) Fertility of local goats of Kashmir using frozen semen of Boer bucks. Wudpecker J Agric Res 1: 346-348.
Ciptadi G, Budiarto A, Ihsan MN, Wisaptiningsih U, Wahyuningsih S (2014) Reproductive performance and success of artificial insemination in Indonesian crossbreed goats in research versus small holder farm. Am Eurasian J Sustain Agric 8: 35-38.
Doğruer G, Karaca F, Koldaş Ürer E, Coşkun N, Merve Köse A, Ateş CT, Özcan O, Sarıbay MK (2019) Determination of efficient CIDR application periods in timed artificial insemination of Damascus goats during the breeding season. Ankara Univ Vet Fak Derg 66: 67-72.
Erarslan C, Karaca F (2017) The effect of cervical inseminations performed in different times on pregnancy rates in Hair goats synchronized with vajinal sponge and ear implant treatments in the breeding season. Atatürk Univ J Vet Sci 12: 63-70.
Freitas VJ, Lopes-Junior ES, Rondina D, Salmito-Vanderley CS, Salles HO, Simplicio AA, Baril G, Saumande J (2004) Puberty in Anglo-Nubian and Saanen female kids raised in the semi-arid of North-eastern Brazil. Small Rumin Res 53: 167-172.
Goonewardene LA, Whitmore W, Jaeger S, Borchert T, Okine E, Ashmawy O, Emond S (1997) Effect of prebreeding maintenance diet on artificial insemination in Alpine and Saanen goats. Theriogenology 48: 151-159.
Holtz W, Sohnrey B, Gerland M, Driancourt MA (2008) Ovsynch synchronization and fixed-time insemination in goats. Theriogenology 69: 785-792.
Ince D (2010) Reproduction performance of Saanen goats raised under extensive conditions. Afr J Biotechnol 9: 8253-8256.
Kaymakçı M (2006) Reproductive Biology. Ege University, Faculty of Agriculture, Publication no: 503, İzmir: 263p.
Kharche SD, Jindal SK, Priyadharsini R, Kumar S, Goel AK, Ramachandran N, Rout PK (2013) Fertility following frozen semen Artificial Insemination in Jamunapari goats. Indian J Anim Sci 83: 1071-1073.
Kulaksız R, Arı UC (2016) Correctness/incorrectness on laparoscopic artificial insemination in sheep and goats. Turkiye Klinikleri J Vet Sci 2: 38-47.
Kulaksız R, Daşkın A (2012) Reproductive performance of primiparous and multiparous saanen goats after laparoscopic intrauterine insemination: a field study. Turk J Vet Anim Sci 36: 201-204.
Kumar D, Naqvi SM (2014) Effect of time and depth of insemination on fertility of Bharat Merino sheep inseminated trans-cervical with frozen-thawed semen. J Anim Sci Technol 56: 8.
Leboeuf B, Restall B, Salamon S (2000) Production and storage of goat semen for artificial insemination. Anim Reprod Sci 62: 113-141.
Leil AZ, El-Shamy AA, El-Badry DA (2020) Clinical application of intrauterine laparoscopic ınsemination in Zaraiby goats using different concentrations of Zaraiby and Boer bucks’ frozen semen. J Appl Vet Sci 5: 61-67.
Menchaca A, Miller V, Salveraglio V, Rubianes E (2007) Endocrine, luteal and follicular responses after the use of the short-term protocol to synchronize ovulation in goats. Anim Reprod Sci 102: 76-87.
Minitab (2019) Minitab® 19 Statistical Software. www.minitab.com/en-us/
Nogueira DM, Lopes ES Jr, de Peixoto RM, Christilis M, Martins SR, Oliveira do Monte AP (2011) Using the same CIDR up to three times for estrus synchronization and artificial insemination in dairy goats. Acta Sci Anim Sci 33: 321-325.
Nur Z, Nak Y, Nak D, Üstüner B, Tuna B, Şimşek G, Sağırkaya H (2013) The use of progesterone-supplemented Co-synch and Ovsynch for estrus synchronization and fixed-time insemination in nulliparous Saanen goat. Turk J Vet Anim Sci 37: 183-188.
Rischen CG, Riese RL (1982) Reproductive management of the dairy goat doe. Iowa State Univ Vet 44: 82-89.
Ritar AJ, Ball PD, O’May PJ (1990) Artificial insemination of Cashmere goats: effects on fertility and fecundity of intravaginal treatment, method and time of insemination, semen freezing process, number of motil spermatozoa and age of females. Reprod Fertil Dev 2: 377-384.
Romano JE, Crabo BG, Christians CJ (2000) Effect of sterile service on estrus duration, fertility and prolificacy in artificially inseminated dairy goats. Theriogenology 53: 1345-1353.
Romano JE (2004) Synchronization of estrus using CIDR, FGA or MAP intravaginal pessaries during the breeding season in Nubian goats. Small Rumin Res 55: 15-19.
Rubianes E, Menchaca A (2003) The pattern and manipulation of ovarian follicular growth in goats. Anim Reprod Sci 78: 271-287.
Simoes J, Baril G, Almeida JC, Azevedo J, Fontes P, Mascarenhas R (2008) Time of ovulation in nulliparous and multiparous goats. Animal 2: 761-768.
Souza JM, Torres CA, Maia AL, Brandão FZ, Bruschi JH, Viana JH, Oba E, Fonseca JF (2011) Autoclaved, previously used intravaginal progesterone devices induces estrus and ovulation in anestrous Toggenburg goats. Anim Reprod Sci 129: 50-55.
Tekin T (2019) Cervical insemination with frozen thawed semen in goats at different breeding age. Kocatepe Vet J 12: 357-362.
Vilariño M, Rubianes E, Menchaca A (2011) Re-use of intravaginal progesterone devices associated with the shortterm protocol for timed artificial insemination in goats. Theriogenology 75: 1195-1200.
Viñoles C, Forsberg M, Banchero G, Rubianes E (2001) Effect of long-term and short-term progestagen treatment on follicular development and pregnancy rate in cyclic ewes. Theriogenology 55: 993-1004.
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Authors and Affiliations

S. Ozis Altincekic
1
M. Koyuncu
1

  1. Bursa Uludag University, Faculty of Agriculture, Department of Animal Science, 16059, Bursa, Turkey
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Abstract

There are approximately 15 million users of system heat in Poland, but unfortunately nearly 70% of the fuel used in heat production is fossil fuel. Therefore, the CO2 emission reduction in the heat production industry is becoming one of the key challenges. City Heat Distribution Enterprise Ltd. in Nowy Sącz (Miejskie Przedsiębiorstwo Energetyki Cieplnej sp. z o.o.) has been conducting a self-financed research and development project entitled The use of algae as carbon dioxide absorbers at MPEC Nowy Sącz. The project deals with postcombustion CO2 capture using Chlorella vulgaris algae. As a result of tests conducted in a 1000 l hermetic container under optimal temperature and light conditions, the recovery of biomass can be performed in weekly cycles, yielding approximately 25 kilograms of biomass per year. Assuming that half of the dry mass of the algae is carbon, it can be said that 240 grams of carbon is bound in one cycle, which, converted to CO2, gives 880 grams of this gas. Our results showed that around 45.8 kilograms of CO2 per year was absorbed. Additionally, it is possible to use waste materials and by-products of technological processes as a nutrient medium for algae
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Bibliography

  1. Bordignon, M. & Gamannossi degl’Innocenti, D. (2023). Third Time’s a Charm? As-sessing the Impact of the Third Phase of the EU ETS on CO2 Emissions and Performance. Sustainability, 15(8), 6394. DOI:10.3390/su15086394
  2. Brożyna, J., Strielkowski, W. & Zpěvák, A. (2023). Evaluating the Chances of Implementing the “Fit for 55” Green Transition Package in the V4 Countries. Energies, 16(6), 2764. DOI:10.3390/en16062764
  3. Chłopek, Z., Lasocki, J., Melka, K. & Szczepański, K. (2021). Equivalent Carbon Dioxide Emission in Useful Energy Generation in the Heat-generating Plant – Application of the Carbon Footprint Methodology. Journal of Ecological Engineering, 22(2), pp. 144–154. DOI:10.12911/22998993/130891
  4. Daliry, S., Hallajisani, A., Mohammadi Roshandeh, J., Nouri, H. & Golzary, A. (2017). Investigation of optimal condition for Chlorella vulgaris microalgae growth. Global Journal of Environmental Science and Management, 3(2), pp. 217–230. DOI:10.22034/gjesm.2017.03.02.010
  5. Dyachok, V., Mandryk, S., Huhlych, S. & Slyvka, M. (2020). Study of the Impact of Activators in the Presence of an Inhibitor on the Dynamics of Carbon Dioxide Absorption by Chlorophyll-Synthesizing Microalgae. Journal of Ecological Engineering, 21(5), pp. 189–196. DOI:10.12911/22998993/122674
  6. Dyachok, V., Mandryk, S., Katysheva, V. & Huhlych, S. (2019). Effect of Fuel Combustion Products on Carbon Dioxide Uptake Dynamics of Chlorophyll Synthesizing Microalgae. Journal of Ecological Engineering, 20(6), pp.18–24. DOI:10.12911/22998993/108695
  7. Dziosa, K. & Makowska, M. (2015). The influence of temperature on the growth of biomass of freshwater micro-algae grown in laboratory. Inżynieria i Aparatura Chemiczna, 54(4), pp.152–153. (in Polish)
  8. Erdiwansyah, E., Gani, A., Mamat, R., Mahidin, M., Sudhakar, K., Rosdi, S. M. & Husin, H. (2022). Biomass and wind energy as sources of renewable energy for a more sustainable environment in Indonesia: A review. Archives of Environmental Protection, 48(3), pp. 57–69. DOI:10.24425/aep.2022.142690
  9. Faizal, M., Said, M., Nurisman, E. & Aprianti, N. (2021). Purification of Synthetic Gas from Fine Coal Waste Gasification as a Clean Fuel. Journal of Ecological Engineering, 22(5), pp. 114–120. DOI:10.12911/22998993/135862
  10. Fawzy, S., Osman, A. I., Mehta, N., Moran, D., Al-Muhtaseb, A. H. & Rooney, D. W. (2022). Atmospheric carbon removal via industrial biochar systems: A techno-economic-environmental study. Journal of Cleaner Production, 371, 133660. DOI:10.1016/j.jclepro.2022.133660
  11. Font-Palma, C., Cann, D. & Udemu, C. (2021). Review of cryogenic carbon capture innovations and their potential applications. C - Journal of Carbon Research, 7(3), 58. DOI:10.3390/c7030058
  12. Iglina, T., Iglin, P. & Pashchenko, D. (2022). Industrial CO2 Capture by Algae: A Review and Recent Advances. Sustainability, 14(7), 3801. DOI:10.3390/su14073801
  13. International Energy Agency. (2023). CO2 Emissions in 2022. https://www.iea.org/reports/co2-emissions-in-2022
  14. Izba Gospodarcza Ciepłownictwo Polskie. (2023). Transformacja i rozwój ciepłownictwa systemowego w Polsce. Raport 2023.
  15. Kammerer, S., Borho, I., Jung, J. & Schmidt, M. S. (2023). Review: CO2 capturing methods of the last two decades. International Journal of Environmental Science and Technology, 20(7), pp. 8087–8104. DOI:10.1007/s13762-022-04680-0
  16. Kozieł, W. & Włodarczyk, T. (2011). Algae – biomass production (a reviev). Acta Agrophysica, 17(1), pp. 105–116. http://www.acta-agrophysica.org/Algae-biomass-production-a-reviev,107203,0,2.html
  17. Kupczak, P. (2021). Energy transformation of medium-sized PECs. Energety-ka Cieplna i Zawodowa, 2, pp. 24–27. https://issuu.com/marfi1976/docs/2_2021_energetyka_issuu (in Polish)
  18. Kupczak, P. (2022). How to save energy resources in times of their shortage? Nowa Energia, 85(4), pp. 30–35. (in Polish)
  19. Liu, L., Xia, M., Hao, J., Xu, H. & Song, W. (2021). Biosorption of Pb (II) by the resistant Enterobacter sp.: Investigated by kinetics, equilibriumand thermodynamics. Archives of Environmental Protection, 47(3), pp. 28–36. DOI:10.24425/aep.2021.138461
  20. Madejski, P., Chmiel, K., Subramanian, N. & Kuś, T. (2022). Methods and Techniques for CO2 Capture: Review of Potential Solutions and Applications in Modern Energy Technologies. Energies, 15(3), 887. DOI:10.3390/en15030887
  21. Matejczyk, M., Kondzior, P., Ofman, P., Juszczuk-Kubiak, E., Świsłocka, R., Łaska, G., Wiater, J. & Lewandowski, W. (2023). Atrazine toxicity in marine algae Chlorella vulgaris and in E. coli lux and gfp biosensor tests. Archives of Environmental Protection, 49(3), 87–99. DOI:10.24425/aep.2023.147331
  22. Metsoviti, M. N., Papapolymerou, G., Karapanagiotidis, I. T. & Katsoulas, N. (2019). Effect of Light Intensity and Quality on Growth Rate and Composition of Chlorella vulgaris. Plants, 9(1), 31. DOI:10.3390/plants9010031
  23. Nord, L. O. & Bolland, O. (2020). Carbon dioxide emission management in power generation. John Wiley & Sons.
  24. Osman, A. I., Hefny, M., Abdel Maksoud, M. I. A., Elgarahy, A. M. & Rooney, D. W. (2021). Recent advances in carbon capture storage and utilisation technologies: a review. Environmental Chemistry Letters, 19(2), pp. 797–849. DOI:10.1007/s10311-020-01133-3
  25. Rogulj, I., Peretto, M., Oikonomou, V., Ebrahimigharehbaghi, S. & Tourkolias, C. (2023). Decarbonisation Policies in the Residential Sector and Energy Poverty: Mitigation Strategies and Impacts in Central and Southern Eastern Europe. Energies, 16(14), 5443. DOI:10.3390/en16145443
  26. Sarwer, A., Hamed, S. M., Osman, A. I., Jamil, F., Al-Muhtaseb, A. H., Alhajeri, N. S. & Rooney, D. W. (2022). Algal biomass valorization for biofuel production and car-bon sequestration: a review. Environmental Chemistry Letters, 20(5), pp. 2797–2851. DOI:10.1007/s10311-022-01458-1
  27. Schwister, K. & Leven, V. (2020). Verfahrenstechnik für Ingenieure: Ein Lehrund Übungsbuch (mit umfangreichem Zusatzmaterial). Carl Hanser Verlag GmbH Co KG.
  28. Sifat, N. S. & Haseli, Y. (2019). A Critical Review of CO2 Capture Technologies and Prospects for Clean Power Generation. Energies, 12(21), 4143. DOI:10.3390/en12214143
  29. Skawińska, A., Lasek, J. & Adamczyk, M. (2014). Study of CO2 removal processes using microalgae. Inżynieria i Aparatura Chemiczna, 53(4), pp. 292–293. (in Polish)
  30. Skompski, S., Kozłowska, A., Kozłowski, W. & Łuczyńsko, P. (2023). Coexistence of algae and a graptolite-like problematical: a case study from the late Silurian of Podolia (Ukraine). Acta Geologica Polonica, 73(2), pp. 115–133. DOI:10.24425/agp.2022.143599
  31. Szatyłowicz, E., Patyna, A., Biłos, Ł., Płaczek, M. & Witczak, S. (2017). Productivity of microalgae Chlorella vulgaris in laboratory condition. Inżynieria Ekologiczna, 18(3), pp. 99–105. DOI:10.12912/23920629/70264
  32. Tleukeyeva, A., Pankiewicz, R., Issayeva, A., Alibayev, N. & Tleukeyev, Z. (2021). Green Algae as a Way to Utilize Phosphorus Waste. Journal of Ecological Engineering, 22(10), pp. 235–240. DOI:10.12911/22998993/142451
  33. Urbina-Suarez, N. A., Barajas-Solano, A. F., Garcia-Martinez, J. B., Lopez-Barrera, G. L. & Gonzalez-Delgado, A. D. (2021). Cultivation of Chlorella sp. for biodiesel production using two farming wastewaters in eastern Colombia. Journal of Water and Land Development, 50. DOI:10.24425/jwld.2021.138169
  34. Urbina-Suarez, N. A., Barajas-Solano, A. F., Garcia-Martinez, J. B., Lopez-Barrera, G. L. & Gonzalez-Delgado, A. D. (2022). Prospects for using wastewater from a farm for algae cultivation: The case of Eastern Colombia. Journal of Water and Land Development, 52, pp. 172–179. DOI:10.24425/jwld.2022.140387
  35. Urząd Regulacji Energetyki. (2022). Thermal energy in numbers. 2021. (in Polish)
  36. Valdovinos-García, E. M., Barajas-Fernández, J., Olán-Acosta, M. de los Á., Petriz-Prieto, M. A., Guzmán-López, A. & Bravo-Sánchez, M. G. (2020). Techno-Economic Study of CO2 Capture of a Thermoelectric Plant Using Microalgae (Chlorella vulgaris) for Production of Feedstock for Bioenergy. Energies, 13(2), 413. DOI:10.3390/en13020413
  37. Xie, K., Fu, Q., Qiao, G. G. & Webley, P. A. (2019). Recent progress on fabrication methods of polymeric thin film gas separation membranes for CO2 capture. Journal of Membrane Science, 572, pp. 38–60. DOI:10.1016/j.memsci.2018.10.049
  38. Yerizam, M., Jannah, A. & Aprianti, N. (2023). Bioethanol Production from Chlorella Pyrenoidosa by Using Enzymatic Hydrolysis and Fermentation Method. Journal of Ecological Engineering, 24(1), pp. 34–40. DOI:10.12911/22998993/156000
  39. Yu, Y., Fang, X., Li, L. & Xu, Y. (2023). Performance and mechanism of Carrousel oxidation ditch and water Spinach wetland combined process in treating water hyacinth (Pontederia crassipes) biogas slurry. Archives of Environmental Protection, 49(1), pp. 39–46. DOI:10.24425/aep.2023.144735
  40. Zhou, W., Wang, J., Chen, P., Ji, C., Kang, Q., Lu, B., Li, K., Liu, J. & Ruan, R. (2017). Biomitigation of carbon dioxide using microalgal systems: Advances and perspectives. Renewable and Sustainable Energy Reviews, 76, pp. 1163–1175. DOI:10.1016/j.rser.2017.03.065
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Authors and Affiliations

Paweł Kupczak
1
ORCID: ORCID
Sylwester Kulig
1
ORCID: ORCID

  1. Miejskie Przedsiębiorstwo Energetyki Cieplnej sp. z o.o. w Nowym Sączu, Poland
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Abstract

Sound and vibrations are often perceived via the auditory and tactile senses simultaneously, e.g., in a car or train. During a rock concert, the body vibrates with the rhythm of the music. Even in a concert hall or a church, sound can excite vibrations in the ground or seats. These vibrations might not be perceived separately because they integrate with the other sensory modalities into one multi-modal perception.

This paper discusses the relation between sound and vibration for frequencies up to 1 kHz in an opera house and a church. Therefore, the transfer function between sound pressure and acceleration was measured at different exemplary listening positions. A dodecahedron loudspeaker on the stage was used as a sound source. Accelerometers on the ground, seat and arm rest measured the resulting vibrations. It was found that vibrations were excited over a broad frequency range via airborne sound. The transfer function was measured using various sound pressure levels. Thereby, no dependence on level was found. The acceleration level at the seat corresponds approximately to the sound pressure level and is independent of the receiver position. Stronger differences were measured for vibrations on the ground.

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Authors and Affiliations

Sebastian Merchel
Mehmet Ercan Altinsoy
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Abstract

The article presents an integrated analytical and measurement system for evaluation of the properties of cast metals and alloys. The presented platform is an extension of the SLAG - PROP application with new modules, which allow to use information on metallurgical processes in an even more effective way, as well as to evaluate the finished product. In addition, the construction of a measuring station for the analysis of thermal processes taking place in a metal bath allows for precise observation of phenomena together with their appropriate interpretation. The article presents not only the cooling curves of certain copper alloys. The analysis also covered mechanical properties related to hardness, finished products depending on the mold in which the products were cast. In the literature one can find information about the mechanical properties of products in the improved state, usually after plastic or thermal treatment, omitting their properties obtained as a result of a naturally made casting. The article also presents the method of placing information in the database using a convenient graphical tool.

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Authors and Affiliations

S. Biernat
A.W. Bydałek
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Abstract

The author relates some of her memories of the late Józef Macjon, lecturer at the University of Łódź.
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Authors and Affiliations

Joanna Sowa
ORCID: ORCID

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