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EN
The aim of this study was to analyze the possibility of improving eastern Poland energy balance by transforming the agricultural areas, destined for food production purposes, to crops with industrial purpose. The problem was analyzed in terms of perspectives, problems and challenges facing the eastern Poland voivodships in order to diversify energy sources. The direction was indicated, which, according to the performed analysis, gives the best chance of improving the present situation, in terms of energetic security and also improving the socio-economic conditions of the inhabitants of these regions. The expediency of exploring opportunities of producing energy from biomass, with particular reference to the Salix viminalis willow, was pointed out.
PL
Celem pracy była analiza możliwości poprawy bilansu energetycznego Polski Wschodniej przez przekształcanie upraw rolniczych o przeznaczeniu żywnościowym na uprawy z przeznaczeniem przemysłowym. Zagadnienie przeanalizowano pod kątem perspektyw, problemów i wyzwań stojących przed województwami Polski Wschodniej w kwestii dywersyfikacji źródeł energii. Wskazano kierunek działań, które według przeprowadzonej analizy dają największe szanse poprawy obecnej sytuacji, zarówno w zakresie bezpieczeństwa energetycznego, jak i poprawy warunków socjalno-ekonomicznych mieszkańców omawianego regionu. Wskazano na celowość poszukiwań możliwości produkcji energii z biomasy, ze szczególnym uwzględnieniem wierzby Salix viminalis.
2
PL
Celem pracy była ocena emisji NOx ze spalania biomasy wierzbowej kilku klonów wierzby krzewiastej (Salix viminalis) pozyskanej w drugim, trzecim i czwartym roku uprawy w rejonie Koszalina, na glebie lekkiej, na zróżnicowanym nawożeniu organicznym i mineralnym.
EN
In the study the influence of combustion of shrubby willow shoots was evaluated in laboratory conditions upon the content of the nitrogen oxide NOx in combustion gases. Analyses covered biomass of nine willow's clones cultivated four years in light soil using compost from municipal sewage sludge and diverse doses of fertilizer Hydrofoska 16. Samples of biomass were taken in two terms (directly after mowing during winter and at the turn of May and June). The combustion of samples of willow biomass from the willow's crop after the harvest in the first and second term in years 2008÷2010 was carried out in temperatures: 300°C, 600°C, 900°C and 1200°C. During combustion the intensity of air flow amounted to 8.0 dm3 ź min-1. Formation of nitrogen oxide NOx during combustion of willow biomass was mostly influenced by temperatures of combustion (73.4%), less influenced by age of acquired willow shoots (10.6%), and joint action of temperature of combustion and age of the willow shoots (8.0%), and relatively little influenced but essential, by day of biomass harvesting (0.3%), fertilizer combinations (0.2%) and the willow clones (0.1%). The differences among extreme levels of factors under investigation concerning content of nitrogen oxide NOx in combustion gases in order of diminishing effects were ranked as follows: temperature of biomass combustion - 212.7 mg/m? NOx, age of the willow's shoots - 71.6 mg/m? NOx, fertilizer combina-tions - 12.0 mg/m? NOx, date of biomass sampling - 8.7 mg/m? NOx and the willow's clones - 8.5 mg/m? NOx. The smallest quantities of nitrogen oxide NOx formed in the process of combustion of biomass developed in temperature 300°C, and the highest in temperature 1200°C. Increase of combustion temperature from 300°C to 1200°C resulted in increase of the content of nitrogen oxide NOx in combustion gases. The smallest quantities of nitrogen oxide NOx produced during combustion of the willow biomass were obtained in fourth year of cultivation, and higher from cultivations in third and second year. The highest quantities of nitrogen oxide NOx produced during combustion of the biomass were generated from "d" objects, where the highest doses of compost and the fertilizer Hydrofoska 16 were applied. On the contrary, the smallest quantities of nitrogen oxide NOx were produced during combustion of biomass from "a" objects, where compost and fertilizer Hydrofoską 16 were not applied. Use of intensive organic and mineral fertilization (object "d") caused essential stronger air pollution by nitrogen oxide NOx than combustion of biomass originating from objects of lower mineral fertilization (object "c"). Higher quantities of nitrogen oxide NOx were produced during combustion of willow biomass from the first term of sampling biomass (February 2008 and 2009 and November 2009) than from the second term of sampling (at the turn of May and June). The highest quantities of the nitrogen oxide NOx were produced during combustion of willow biomass clone 1052 (127.8 mg/m?), and the smallest during combustion of clone 1033 (119.3 mg/m?). Creation of the nitrogen oxides NOx was influenced by double interactions also: fertilizer combinations with temperatures of combustion, fertilizer combinations with age of shoots, temperatures of combustion with term of sampling, temperatures of combustion with age of shoots and date of sampling with age of shoots, and also threefold interaction of temperatures of combustion with term of sampling and age of shoots and fourfold interaction of fertilizer combinations with temperatures of combustion, term of sampling and the age of shoots. Total interactions were responsible for 15.4% of content of nitrogen oxide NOx in combustion gases.
3
Content available Ciepło spalania biomasy wierzbowej
PL
Biomasa jest obecnie w Polsce głównym źródłem energii odnawialnej. Udział biomasy w bilansie paliwowym w 2008 roku w Polsce wyniósł 87,7%, a w UE-25 - 46,0% [3]. Podstawowym paliwem stałym z biomasy jest biomasa leśna, ale znaczenia nabierają także paliwa z biomasy rolniczej. Do nich zalicza się biomasę drzew i krzewów szybko rosnących, a głównie wierzby krzewiastej, trawy wieloletnie, słoma oraz pozostałości organiczne. W procesie spalania biomasy wytwarza się ciepło. Ilość tego ciepła zależna jest od rodzaju biomasy, jej wilgotności i gatunku roślin. Kryteriami określającymi jakość paliwa są: ciepło spalania, wilgotność paliwa, zawartość części lotnych, zawartość popiołu, wartość opałowa paliwa i ziarnistość paliwa [2, 5]. Ciepło spalania określa się doświadczalnie w kalorymetrze do paliw stałych. W literaturze mało jest opracowań dotyczących związku pomiędzy technologią pozyskania biomasy, a ciepłem spalania biomasy wierzbowej. Celem pracy była ocena ciepła spalania biomasy wierzbowej kilku klonów wierzby krzewiastej (Salix viminalis), pozyskanej w drugim, trzecim i czwartym roku uprawy w rejonie Koszalina, na glebie lekkiej, przy zróżnicowanym nawożeniu organicznym i mineralnym.
EN
The aim of this study was to assess the calorific value in analytic state of willow biomass of several clones of willow (Salix viminalis), acquired in the second, third and fourth year of cultivation in the region of Koszalin, on light soil, under different organic and mineral fertilization. Biomass of nine willow clones grown for four years on light soil with application of compost from sewage sludge and different doses of Hydrofoska 16 fertilizer were included in the studies. Biomass samples were taken twice (immediately after mowing in winter and at the turn of May and June). Calorific value of willow biomass from years 2007÷2009 was mainly affected by years of willow cultivation, less influenced by willow clones, and relatively less influenced by date of sampling of biomass and lowest influenced although significantly by combination of fertilizer. The sum of interaction variation was 38.1%, with significant interactions resulted from 17.2% of variability. The differences between extreme levels of studied factors in order of decreasing effects were ranked as follows: growing years - 411 kJźkg-1 dm, willows clones - 321 kJźkg-1 dm, date of biomass sampling - 60 kJźkg-1 dm and combinations of fertilizer - 52 kJźkg-1 dm. Also double interactions: willow clones with fertilization, willow clones with years of cultivation, fertilization with years of cultivation, date of samples taking with years of cultivation and the triple interactions: willow clones with fertilization and years of cultivation, willow clones with fertilization and sampling date and fertilization with date of sampling and year of cultivation had impact on calorific value in analytic state. The highest calorific value of biomass was obtained after the third year of cultivation with clone 1033, from the second sampling period and from objects fertilized only with compost ("b") and the lowest - after the second year of cultivation with clone 1047, from the first date of sampling and objects intensively fertilized with compost (dose of 15 tonnes of fresh mass and 1125 kgźha-1 of Hydrofoska 16 fertilizer ("d").
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