Abstract

본 연구에서는 국내 수종 중 낙엽송(Larix kaemferi Carr)을 대상으로 하여 콩기름, 폐콩기름, 오존산화 콩기름, 오존산화 폐콩기름을 첨가하여 제조된 목재펠릿의 특성변화를 조사하였다. 제조된 펠릿의 함수율, 발열량, 회분, 겉보기밀도, 내구성, 흡습률, 원소분석을 측정하여 비교하였다. 펠릿제품의 함수율은 7.66~9.48%로 나타나 목재펠릿의 품질기준 1급인 10% 이하를 만족시켰고, 제조된 각 펠릿의 발열량 측정결과 품질기준(1급) 4,300 kcal/kg을 모두 넘었으며, 기름을 첨가한 모든 펠릿이 대조구보다 높은 발열량을 나타냈다. 회분은 0.34~0.42%로 품질규격 1급인 0.7% 미만의 범주에 속한 것으로 나타났으며, 제조된 펠릿 모두가 겉보기 밀도 품질 기준 1급(640 kg/<TEX>$m^3$</TEX>)을 만족시켰다. 내구성은 콩기름을 첨가한 펠릿, 오존산화 폐콩기름을 첨가한 펠릿이 품질 기준1급(97.5% 이상)을 만족하였다. 전체적인 결과의 흐름을 보았을 때 첨가제를 첨가한 펠릿이 무첨가 펠릿보다 내구성이 좋게 나타났다. 흡습률은 24시간 후 흡습률 시험에서 첨가제를 첨가한 펠릿이 모두 무첨가 펠릿보다 낮은 흡습률을 나타냈으며, 5일 경과 후에도 무첨가 펠릿 보다 첨가제를 첨가한 펠릿이 모두 흡습률 감소 현상을 보였다. 원소분석은 황의 함유량이 목재펠릿의 품질기준 1급(0.05%) 이하를 만족시켰고, 질소 함유량 역시 목재펠릿의 품질기준 1급(0.3%) 이하를 만족시켰다. The study was carried out to investigate the quality characteristics of pellets manufactured with adding soybean oil, waste soybean oil, ozonized soybean oil and ozonized waste soybean oil to Larix kaemferi Carr sawdust. The characteristics of pellet included moisture contents, heating value, ash contents, apparent densities, durabilities, absorption ratio and elementary analysis. Moisture contents were shown 7.66~9.48% which satisfied the first grade (less than 10%) of quality standard of wood pellets announced by Korea Forest Research Institute. The heating value of the manufactured wood pellets in this study exceeded the first grade of quality standard (more than 4,300 kcal/kg) and it appeared that the pellets manufactured with adding oils and ozonized oils had more heating value than the control pellets. Ash contents 0.34~0.42% also passed the first grade (less than 0.7%) of quality standard and apparent densities were adequate for the first grade (640 kg/<TEX>$m^3$</TEX>) on the quality standard. Durabilities of the pellets manufactured with adding soybean oil and ozonized waste soybean oil were shown over the first grade (97.5 kg/<TEX>$m^3$</TEX>) of quality standard. In the general results of durabilities, the pellets manufactured with additives had better values than the control pellets. After 24 hours absorption ratio experiment, absorption ratio of pellets manufactured with additives also appeared much lower moisture absorption than the control pellets and they still had the same results after 5days absorption ratio experiment. Elementary analysis of the sulfur content was satisfied the first grade (less than 0.05%) of quality standard of wood pellets and the nitrogen content was also adequate for the first grade (less than 0.3%) of quality standard of wood pellets.

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