초록
본 연구에서는 강원도 5개 지자체에서 발생된 음식물류 폐기물의 특성을 분석하고 메탄가스 발생량을 평가하였다. 시료는 2017년 7월과 9월에 걸쳐 총 2회 채취하였다. 메탄가스 발생가능량을 평가하기 위하여 BMP (biochemical Methane potential) 시험과 원소조성을 이용한 계산방법을 이용하였다. 음식물류 폐기물의 겉보기밀도는 평균 $0.758{\sim}0.850g\;cm^{-3}$, pH는 4.29 ~ 4.75이었다. 물리적 조성 중 주성분은 채소류가 56.43 ~ 72.81%로 가장 높았고, 과일류는 5.31 ~ 8.95%, 곡물류는 1.60 ~ 18.73%, 어육류는 4.47 ~ 12.11%, 여액은 1.76 ~ 3.64%이었다. 평균 수분함량은 69.30 ~ 75.87%, 가연분함량은 22.50 ~ 27.98%, 회분함량은 1.63 ~ 2.48%를 나타내었다. 또한 $BOD_5$는 $17,690.3{\sim}33,154.9mg\;L^{-1}$, $COD_{Cr}$은 $106,212.3{\sim}128,695.5mg\;L^{-1}$, 그리고 $COD_{Mn}$은 $51,266.1{\sim}63,426.3mg\;L^{-1}$의 범위를 보였고 NaCl 함량은 0.81 ~ 1.17%의 범위를 나타내었다. 원소분석 결과 C, H, O, N, S 함량은 각각 44.87 ~ 48.16%, 7.12 ~ 7.57%, 40.13 ~ 43.78%, 3.22 ~ 4.14%, 그리고 0.00 ~ 0.02%를 나타내었다. 음식물류 폐기물의 VS 단위질량당 메탄수율을 살펴보면 BMP 시험에 의한 메탄가스 발생누적량(${0.303{\sim}0.354m_{CH4}}^3\;{kg_{VS}}^{-1}$)은 원소조성과 생분해율을 반영하여 예측한 결과(${0.294{\sim}0.352m_{CH4}}^3\;{kg_{VS}}^{-1}$)와 큰 차이가 없었다.
This research was performed to evaluate the characteristics of food waste from 5 areas in Gangwon Province, Korea and to predict the $CH_4$ gas production rate. Food wastes were sampled in July and September, 2017. The amount of methane gas generation was evaluated through the biochemical methane potential (BMP) test and a calculation method using chemical composition. Average bulk density and pH of the food wastes were in the range of $0.758{\sim}0.850g\;cm^{-3}$ and 4.29 ~ 4.75, respectively. By physical composition, vegetables were the highest with 56.43 ~ 72.81% with fruits recording 5.31 ~ 8.95%, cereals 1.60 ~ 18.73%, fish and meat 4.47 ~ 12.11%, and filtrate 1.76 ~ 3.64%. The average water content was 69.30 ~ 75.87%, and VS and ash content were 22.50 ~ 27.98% and 1.63 ~ 2.48%, respectively. In addition, $BOD_5$, $COD_{Cr}$, and $COD_{Mn}$ were in the ranges of $17,690.3{\sim}33,154.9mg\;L^{-1}$, $106,212.3{\sim}128,695.5mg\;L^{-1}$, and $51,266.1{\sim}63,426.3mg\;L^{-1}$, respectively. The NaCl content ranged from 0.81 to 1.17%. The results of elemental analysis showed that the contents of C, H, O, N, and S were 44.87 ~ 48.1%, 7.12 ~ 7.57%, 40.13 ~ 43.78%, 3.22 ~ 4.14%, and 0.00 ~ 0.02%, respectively. In a comparison of the methane production yield per VS mass of food waste, there was no significant difference between the cumulative amount (${0.303{\sim}0.354m_{CH4}}^3\;{kg_{VS}}^{-1}$) by the BMP test and the theoretical amount (${0.294{\sim}0.352m_{CH4}}^3\;{kg_{VS}}^{-1}$) calculated by chemical composition.