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Abstract

Low emission has a significant impact on air quality in Poland. Low sources are found which lead to high concentrations of pollutants in the area inhabited by humans. The effects of low emissions on health and life in the polluted areas (Małopolska, Silesia) are conducive to radical decisions regarding the quality of solid fuels and their combustion facilities. At present, local anti-smuggling laws have been introduced in the two provinces banning the burning of the most emitting fuels such as mules, flotoconcentrates and lignite. Regional EU-funded programs for the use of renewable energy sources (RES) and energy efficiency improvement will transition to the implementation phase of the approved projects as of 2017. This is expected to significantly reduce energy consumption for heating buildings and replacing old boilers and automatic furnaces with low-emission heating devices. In the case of households, proving that the residential building has adequate energy efficiency characteristics is necessary in order to receive co-financing for replacing an old solid fuel boiler with a new low-emission boiler,. The paper will present the current situation on the regulation of the fuel market in the household and small–scale consumer sector and the proposal for changes to the law on monitoring and control of solid fuel quality. Another important issue will be significant changes in heating up to 500 kW, proposed by the Ministry of Development in October 2016. The proposed regulation precedes the implementation of the Ecodesign Directive, which will come into effect as of 2022 for room heaters and heating furnaces up to 500 kW for solid fuels. All these actions will help reduce low emissions and improve energy efficiency.

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Authors and Affiliations

Tomasz Mirowski
Renata Maczuga
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Abstract

The study aims to estimate metal foam microstructure parameters for the maximum sound absorption coefficient (SAC) in the specified frequency band to obtain optimum metal foam fabrication. Lu’s theory model is utilised to calculate the SAC of metallic foams that refers to three morphological parameters: porosity, pore size, and pore opening. After Lu model validation, particle swarm optimisation (PSO) is used to optimise the parameters. The optimum values are obtained at frequencies 250 to 8000 Hz, porosity of 50 to 95%, a pore size of 0.1 to 4.5 mm, and pore opening of 0.07 to 0.98 mm. The results revealed that at frequencies above 1000 Hz, the absorption efficiency increases due to changes in the porosity, pore size, and pore opening values rather than the thickness. However, for frequencies below 2000 Hz, increasing the absorption efficiency is strongly correlated with an increase in foam thickness. The PSO is successfully used to find optimum absorption conditions, the reference for absorbent fabrication, on a frequency band 250 to 8000 Hz. The outcomes will provide an efficient tool and guideline for optimum estimation of acoustic absorbents.
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Authors and Affiliations

Rohollah Fallah Madvari
1
Mohsen Niknam Sharak
2
Mahsa Jahandideh Tehrani
3
Milad Abbasi
4

  1. Occupational Health Research Center, Department of Occupational Health Engineering, School of Public Health, Shahid Sadoughi University of Medical Sciences, Yazd, Iran
  2. Department of Mechanical Engineering, University of Birjand, Birjand, Iran
  3. Australian Rivers Institute, Griffith University, Queensland, Australia
  4. Social Determinants of Health Research Center, Saveh University of Medical Sciences, Saveh, Iran
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Abstract

For the last few decades there have been reports not only of the occurrence of new invasive species of European water-courses, but also their increasing expansion. One of such species is the Amur sleeper (Perccottus glenii). The present work contains assessment of age and length distribution, condition as well as growth rate and analysis of the parasite fauna of theAmur sleeper from the waters of the Vistula River tributary in its middle course (the Habdziński Canal). During the catch performed in 2017 and 2019, the total of 177 Amur sleepers were recorded in the studied watercourse and a statistically significant sex structure disproportion was observed. Among the specimens caught in 2017 dominant were fishes with lengths of 50.1–60.1 mm whereas in 2019 the majority of the Amur sleeper specimens measured 30.1–50.0 mm.Six age groups were recorded among the caught fish with a clear prevalence of specimens aged 1+ (70.06%). The most frequently recorded parasite of P. glenii was non-quantifiable Trichodina rostrata ciliate for which the Amur sleeper from the Polish waters appeared to be a new host. Moreover, the presence of an acanthocephalan Acanthocephalus lucii, not recorded in Poland in this host before, was observed in the chyme. Also, accidental presence of larvae of the Opisthioglyphe ranae tre-madote, which is a parasite typical of amphibians, was also recorded. Despite unfavourable habitat conditions and in-creased volumes of biogenic substances in the waters of the Habdziński Canal, the Amur sleeper found convenient condi-tions to reside in this small watercourse.

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Authors and Affiliations

Przemysław Czerniejewski
ORCID: ORCID
Angelika Linowska
Adam Brysiewicz
ORCID: ORCID
Natalia Kasowska
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Abstract

The paper presents changes in the production volume of castings made of non-ferrous alloys on the background of changes in total production of casting over the 2000-2019 period, both on a global scale and in Poland. It was found that the dynamics of increase in the production volume of castings made of non-ferrous alloys was distinctly greater than the dynamics of increase in the total production volume of castings over the considered period of time. Insofar as the share of production of the non-ferrous castings in the total production of castings was less than 16% during the first two years of the considered period, it reached the level of 20% in the last four years analysed. This share, when it comes to Poland, increased even to the greater degree; it grew from about 10% of domestic production of castings to over 33% within the regarded 2000-2019 period. The greatest average annual growth rate of production, both on a global scale and in Poland, was recorded for aluminium alloys as compared with other basic non-ferrous alloys. This growth rate for all the world was 4.08%, and for Poland 10.6% over the 2000-2019 period. The value of the average annual growth rate of the production of aluminium castings in Poland was close to the results achieved by China (12%), India (10.3%) and the South Korea (15.4%) over the same period of time. In 2019, the total production of castings in the world was equal to about 109 million tonnes, including over 21 million tonnes of castings made of non-ferrous alloys. The corresponding data with respect to Poland are about 1 million tonnes and about 350 thousand tonnes, respectively. In the same year, the production of castings made of aluminium alloys was equal to about 17.2 million tonnes in the world, and about 340 thousand tonnes in Poland.
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Bibliography

[1] Wübbenhorst, H. (1984). 5000 Jahre Giessen von Metallen. Ed. VDG Giesserei-Verlag GmbH, Düsseldorf.
[2] Orłowicz, A.W., Mróz, M., Tupaj, M. & Trytek, A. (2015). Materials used in the automotive industry. Archives of Foundry Engineering. 15(2), 75-78.
[3] Cygan, B., Stawarz, M. & Jezierski, J. (2018) Heat treatment of the SiMo iron castings – case study in the automotive foundry. Archives of Foundry Engineering. 18(4), 103-109.
[4] Bolat, C. & Goksenli, A. (2020) Fabrication optimization of Al 7075/Expanded glass syntactic foam by cold chamber die casting. Archives of Foundry Engineering. 20(3), 112- 118.
[5] Orłowicz, A.W., Mróz, M., Wnuk, G., Markowska, O., Homik, W. & Kolbusz, B. (2016). Coefficient of friction of a brake disc-brake pad friction couple. Archives of Foundry Engineering. 16(4), 196-200.
[6] Kmita, A. & Roczniak, A. (2017). Implementation of nanoparticles in materials applied in foundry engineering. Archives of Foundry Engineering. 17(3), 205-209.
[7] Jemielewski, J. (1970). Casting of non-ferrous metals. Warsaw: Ed. WNT. (In Polish)
[8] Perzyk, M., Waszkiewicz, S., Kaczorowski, M., Jopkiewicz, A. (2000). Casting. Warsaw: Ed. WNT. (In Polish)
[9] Kozana, J., Piękoś, M., Maj, M., Garbacz-Klempka, A. & Żak, P.L. (2020). Analysis of the microstructure, properties and machinability of Al-Cu-Si alloys. Archives of Foundry Engineering. 20(4), 145-153.
[10] Matejka, M., Bolibruchová, D. & Kuriš, M. (2021). Crystallization of the structural components of multiple remelted AlSi9Cu3 alloy. Archives of Foundry Engineering. 21(2), 41-45.
[11] Łągiewka, M. & Konopka, Z. (2012). The influence of material of mould and modification on the structure of AlSi11 alloy. Archives of Foundry Engineering. 12(1), 67- 70.
[12] Ščur, J., Brůna, M., Bolibruchová, D. & Pastirčák, R. (2017). Effect of technological parameters on the alsi12 alloy microstructure during crystallization under pressure. Archives of Foundry Engineering. 17(2), 75-78.
[13] Deev, V., Prusov, E., Prikhodko, O., Ri, E., Kutsenko, A. & Smetanyuk, S. (2020). crystallization behavior and properties of hypereutectic Al-Si alloys with different iron content. Archives of Foundry Engineering. 20(4), 101-107.
[14] Piątkowski, J. & Czerepak, M. (2020). The crystallization of the AlSi9 alloy designed for the alfin processing of ring supports in engine pistons. Archives of Foundry Engineering. 20(2), 65-70.
[15] Tupaj, M., Orłowicz, A.W., Trytek, A. & Mróz, M. (2019). Improvement of Al-Si alloy fatigue strength by means of refining and modification. Archives of Foundry Engineering. 19(4), 61-66.
[16] Soiński M.S., Jakubus A. (2020). Changes in the production of ferrous castings in Poland and in the world in the XXI century. Scientific and Technical Conference ‘Technologies of the Future’. Ed. of the Jacob of Paradies University in Gorzów Wielkopolski. Gorzów Wielkopolski, 25.09.2020. Forthcoming.
[17] Soiński M.S., Jakubus A. (2019). Structure of foundry production in Poland against the world trends in XXI century. in: Industry 4.0. Algorithmization of problems and digitalization of processes and devices. Ed. of the Jacob of Paradies University in Gorzów Wielkopolski. 2019. pp. 113-124. ISBN 978-83-65466-55-6.
[18] Soiński M.S, Jakubus A.(2019). Production of castings in Poland and in the world over the years 2000-2017. in: Industry 4.0. Algorithmization of problems and digitalization of processes and devices 2019. Conference 2018. Ed. of the Jacob of Paradies University in Gorzów Wielkopolski. pp. 73-92. ISBN 978-83-65466-90-7.
[19] Soiński, M.S., Skurka, K., Jakubus, A. & Kordas, P. (2015). Structure of foundry production in the world and in Poland over the 1974-2013 Period. Archives of Foundry Engineering. 15(spec.2), 69-76.
[20] Soiński, M.S., Skurka, K., Jakubus, A. (2015). Changes in the production of castings in Poland in the past half century in comparison with world trends”. in: Selected problems of process technologies in the industry. Częstochowa. Ed. Faculty of Production Engineering and Materials Technology of the Częstochowa University of Technology, 2015. Monograph. pp.71-79. ISBN: 978-83-63989-30-9.
[21] Soiński, M.S., Jakubus, A., Kordas, P. & Skurka, K. (2015). Production of castings in the world and in selected countries from 1999 to 2013. Archives of Foundry Engineering. 15(spec.1), 103-110. DOI: 10.1515/afe-2016-0017.
[22] Modern Casting. 35th Census of World Casting Production. December 2001. 38-39.
[23] Modern Casting. 36th Census of World Casting Production. December 2002. 22-24.
[24] Modern Casting. 37th Census of World Casting Production. December 2003. 23-25.
[25] Modern Casting. 38th Census of World Casting Production. December 2004. 25-27.
[26] Modern Casting. 39th Census of World Casting Production. December 2005. 27-29.
[27] Modern Casting. 40th Census of World Casting Production. December 2006. 28-31.
[28] Modern Casting. 41st Census of World Casting Production. December 2007. 22-25.
[29] Modern Casting. 42nd Census of World Casting Production. December 2008. 24-27
[30] Modern Casting. 43rd Census of World Casting Production. December 2009. 17-21.
[31] Modern Casting. 44th Census of World Casting Production. December 2010. 23-27.
[32] Modern Casting. 45th Census of World Casting Production. December 2011. 16-19.
[33] Modern Casting. 46th Census of World Casting Production. December 2012. 25-29.
[34] Modern Casting. 47th Census of World Casting Production. Dividing up the Global Market. December 2013. 18-23.
[35] Modern Casting. 48th Census of World Casting Production. Steady Growth in Global Output. December 2014. 17-21.
[36] Modern Casting. 49th Census of World Casting Production. Modest Growth in Worldwide Casting Market. December 2015. 26-31
[37] Modern Casting. 50th Census of World Casting Production. Global Casting Production Stagnant. December 2016. 25-29.
[38] Modern Casting. Census of World Casting Production. Global Casting Production Growth Stalls. December 2017. 24-28.
[39] Modern Casting. Census of World Casting Production. Global Casting Production Expands. December 2018. 23-26.
[40] Modern Casting. Census of World Casting Production. Total Casting Tons. Hits 112 Million. December 2019. 22- 25.
[41] Modern Casting. Census of World Casting Production Total Casting Tons Dip in 2019. January 2021. 28-30.
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Authors and Affiliations

M.S. Soiński
1
A. Jakubus
1
ORCID: ORCID

  1. The Jacob of Paradies University in Gorzów Wielkopolski, ul. Teatralna 25, 66-400 Gorzów Wielkopolski, Poland
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Abstract

Since plant responses to selenium nanoparticles (nSe) had not been clarified, this study was carried out to evaluate the effects of nSe (10 and 100 μM) on photosynthesis performance, ion homeostasis, antioxidant system, and phenylpropanoids in strawberry exposed to salt stress. Inductively Coupled Plasma-Mass Spectroscopy analyses indicated that foliar-applied nSe can be taken up by leaves and trans-located to roots. Salinity led to an increase in Na concentration and reductions in Ca and K contents which were relieved by the nSe applications. Moreover, the nSe treatment at 10 μM alleviated the NaCl-induced lesion to PSII functioning, contributing to improvement in water-splitting complex (Fv/Fo) under salinity. The exposure to nSe at a concentration of 100 µM exhibited a moderate stress, determined by the increases in hydrogen peroxide (H2O2) and lipid peroxidation rate (membrane integrity index). The nSe10 treatment increased catalase activity and phenylpropanoid derivatives contents (salicylic acid, catechin, and caffeic acid) and decreased the content of oxidants under salinity condition. Consequently, nSe utilization at a suitable dose can be an effective method to alleviate signs of salt stress via improvements in photosynthesis, ion hemostasis, photosynthesis performance, salicylic acid (a vital signaling defensive hormone), and antioxidant machinery.

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Authors and Affiliations

Reza Soleymanzadeh
Alireza Iranbakhsh
Ghader Habibi
Zahra Oraghi Ardebili
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Abstract

Memory trace is an effect of temporary arousal (perception, experience, action) that causes a specific change in the nervous system. Memory allows to record and recall various information, thus enabling to learn new things. It is an extremely active and dynamic process. The influence of emotions on memory is obvious, largely determined by the close cooperation of the amygdala (responsible for emo-tions) and the hippocampus (memory processes).
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Bibliography

1. Vetulani J.: Mózg: fascynacje, problemy, tajemnice. Homini, Kraków 2010; 183–229.
2. Domżał T.M.: Pamięć w neurologii: zaburzenia, diagnostyka i leczenie. Forum Medycyny Rodzinnej. 2013; 7 (4): 155–164.
3. Gerardin E.: Morphometry of the human hippocampus from MRI and conventional MRI high field. Université Paris Sud-Paris XI, 2012. English. ffNNT: 2012PA112375ff.
4. Bisaz R., Travaglia A., Alberini C.M.: The neurobiological bases of memory formation: from physiological conditions to psychopathology. Psychopathology. 2014; 47: 347–356.
5. Asok A., Leroy F., Rayman J. B.: Molecular mechanisms of the memory trace. Trends in Neurosciences. 2019; 42 (1): 14–22.
6. Antonova I., Fang-Min Lu, Zablow L., Udo H., Hawkins R.D.: Rapid and long-lasting increase in sites for synapse assembly during late-phase potentiation in rat hippocampal neurons. PLoS One. 2009; 4: e7690.
7. Rasch B., Born J.: About Sleep’s Role in Memory. Physiological Review. 2013; 93: 681–766.
8. Holcman D., Schuss Z.: Time scale of diffusion in molecular and cellular biology. Journal of Physics A: Mathematical and Theoretical. 2014; 47 (17): 28.
9. Kennedy M.B.: Synaptic signaling in learning and memory. Cold Spring Harbor Perspectives in Biology. 2016; 8 (2): a016824.
10. Rymarczyk K., Makowska I., Pałka-Szafraniec K.: Plastyczność dorosłej kory mózgowej. Aktualności Neurologiczne. 2015; 15 (2): 80–87.
11. Maguire E.A., Woollett K., Spiers, H.J.: London taxi drivers and bus drivers: a structural MRI and neuropsychological analysis. Hippocampus. 2006; 16: 1091–1101.
12. Richardson F.M., Price C.J.: Structural MRI studies of language function in the undamaged brain. Brain Structure and Function. 2009; 213 (6): 511–523.
13. Giffin F., Mitchell D.E.: The rate of recovery of vision after early monocular deprivation in kittens. The Journal of Physiology (London). 1978; 274: 511–537.
14. Camina E., Güell F.: The Neuroanatomical, Neurophysiological and Psychological Basis of Memory: Current Models and Their Origins. Frontiers in Pharmacology. 2017; 8: 438.
15. Sperling G.: The information available in brief visual presentations. Psychological Monographs. 1960; 74: 1–30.
16. Vandenbroucke A.R.E., Sligte I.G., Barrett A.B., Seth A.K., Fahrenfort J.J., Lamme V.A.F.: Accurate metacognition for visual sensory memory representations. Psychological Science. 2014; 25: 861–873.
17. Haber R.N.: The impending demise of the icon: a critique of the concept of iconic storage in visual information processing. Behavioral and Brain Science. 1983; 6: 1–54.
18. Jonides J., Lewis R.L., Nee D.E., Lustig C.A., Berman M.G., Moore K.S.: The mind and brain of short- term memory. Annual Review of Psychology. 2008; 59: 193–224.
19. Standing L.: Learning 10,000 pictures. Quarterly Journal of Experimental Psychology. 1973; 25: 207–222.
20. Ogmen H., Herzog M.H.: A New Conceptualization of Human Visual Sensory-Memory. Frontiers in Psychology. 2016; 7: 830.
21. Alberini C.M., Ledoux J.E.: Memory reconsolidation. Current Biology. 2013; 23: R746–750.
22. Nader K., Hardt O.: A single standard for memory: the case for reconsolidation. Nature Reviews Neuroscience. 2009; 10: 224–234.
23. Marchetti G.: Attention and working memory: two basic mechanisms for constructing temporal experiences. Frontiers in Psychology. 2014; 5: 880.
24. Morris R.G.: D.O. Hebb: The Organization of Behavior, Wiley: New York; 1949. Brain Res Bull. 1999; 50 (5–6): 437.
25. Norris D.: Short-term memory and long-term memory are still different. Psychological Bulletin. 2017; 143 (9): 992–1009.
26. Nie J., Zhang Z., Wang B., et al.: Different memory patterns of digits: a functional MRI study. Journal of Biomedical Science. 2019; 26 (1): 22.
27. Alberini C.M.: The role of protein synthesis during the labile phases of memory: revisiting the skepticism. Neurobiology of Learning and Memory. 2008; 89: 234–246.
28. Eriksson J., Vogel E.K., Lansner A., Bergström F., Nyberg L.: Neurocognitive Architecture of Working Memory. Neuron. 2015; 88 (1): 33–46.
29. MacKay D.G., Shafto M., Taylor J.K., Marian D.E., Abrams L., Dyer J.R.: Relations between emotion, memory, and attention: Evidence from taboo Stroop, lexical decision, and immediate memory tasks. Memory & Cognition. 2004; 32: 474–487.
30. Burton L., Vardy S.B., Frohlich J., Dimitri D., Wyatt G., Rabin L.: Affective tasks elicit material-specific memory effects in temporal lobectomy patients. Journal of Clinical and Experimental Neuropsychology. 2004; 26: 1021–1030.
31. Döhnel K., Sommer M., Ibach B., Rothmayr C., Meinhardt J., Hajak G.: Neuronal correlates of emotional working memory in patients with mild cognitive impairment. Neuropsychologia. 2008; 46: 37–48.
32. Talmi D., Luk B.T.C., McGarry L.M., Moscovitch M.: The contribution of relatedness and distinct- iveness to emotionally-enhanced memory. Journal of Memory and Language. 2007; 56 (4), 555–574.
33. Rothermund K., Wentura D., Bak P.M.: Automatic attention to stimuli signalling chances and dangers: Moderating effects of positive and negative goal and action contexts. Cognition & Emotion. 2001; 15: 231–248.
34. Neisser U., Harsch N.: Phantom flashbulbs: false recollections of hearing the news about Challenger. In: Winograd E., Neisser U. eds. Affect and accuracy in recall: Studies of ‘flashbulb’ memories. Cambridge University Press, New York 1992; 9–31.
35. Geller E.S., Farris J.C., Post D.S.: Prompting a consumer behavior for pollution control. Journal of Applied Behavior Analysis. 1973; 6 (3): 367–376.
36. Meis J., Kashima Y.: Signage as a tool for behavioral change: Direct and indirect routes to understanding the meaning of a sign. PLOS One. 2017; 12 (8): e0182975.
37. Wirth M.M.: Hormones, stress, and cognition: The effects of glucocorticoids and oxytocin on memory. Adaptive Human Behavior and Physiology. 2015; 1: 177–201.
38. Kim E.J., Pellman B., Kim J.J.: Stress effects on the hippocampus: a critical review. Learning & Memory. 2015; 22 (9): 411–416.
39. Anderson A.K., Yamaguchi Y., Grabski W., Lacka D.: Emotional memories are not all created equal: evidence for selective memory enhancement. Learning & Memory. 2006; 13 (6): 711–718.
40. Zhu J., Nelson K., Toth J., Muscat J.E.: Nicotine dependence as an independent risk factor for atherosclerosis in the National Lung Screening Trial. BMC Public Health. 2019; 19: 103.
41. Lee H.S., Ghetti A., Pinto-Duarte A., Wang X., Dziewczapolski G., Galimi F., Huitron-Resendiz S., Pina-Crespo J.C., Roberts A.J., Verma I.M.: Astrocytes contribute to gamma oscillations and recognition memory. Proccedings of the National Academy of Science of the United States of America. 2014; 111: E3343–E3352.
42. Pinto-Duarte A., Roberts A.J., Ouyang K., Sejnowsk T.J.: Impairments in remote memory caused by the lack of Type 2 IP3 receptors. GLIA. 2019; 67 (10): 1976–1989.
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Authors and Affiliations

Paulina Fałek
1
Artur Fałek
1
Monika Kager
2
Richard Kager
3
Piotr Walkowicz
2
Marcin Kubiak
2
Elżbieta Starosławska
2
Franciszek Burdan
2 4

  1. Independent Public Healthcare, Puławy, Poland
  2. St. John’s Cancer Center, Lublin, Poland
  3. Public Independent Clinical Hospital Number 4, Lublin, Poland
  4. Human Anatomy Department, Medical University of Lublin, Lublin, Poland
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Abstract

Analyses of subfossil cladocerans (Crustacea: Cladocera) and chironomids (Diptera: Chironomidae) were applied to examine water-level changes in a small and oligotrophic lake in southern Finland over the past 2000 years. Major changes in the invertebrate communities occurred ca. 400 AD onwards when the littoral cladoceran Alonella nana started to replace the planktonic Eubosmina as the dominant species and chironomids Psectrocladius sordidellus group and Zalutschia zalutschicola increased. These changes were most likely due to a decreasing water level and an enlarging proportion of the littoral area, providing suitable vegetative habitats, e.g. aquatic bryophytes (mosses), for these taxa. The lowering water level reached its minimum just before the Medieval Warm Period, ca. 800-1000 AD, after which the lake level rose again and remained high until modern times. A prominent change in the chironomid assemblages occurred during the 20th century when Ablabesmyia monilis and Chironomus anthracinus type increased, presumably due to changes in water chemistry, caused by anthropogenic load of pollutants.

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Authors and Affiliations

Liisa Nevalainen
Tomi P. Luoto
Kaarina Sarmaja- Korjonen
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Abstract

This paper reports on 29 species of lichenicolous fungi collected in the Hornsund region and Sørkapp Land area, Spitsbergen. New to science are Hystrix gen. nov., Slellifraga gen. nov., Dactylospora cladoniicola sp. nov., Hystrix peltigericola sp. nov., Stellifraga cladoniicola sp. nov. and Zwackhiomyces macrosporus sp. nov. A further 15 species are new to Svalbard.

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Authors and Affiliations

Vagn Alstrup
Maria Olech

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