• Title/Summary/Keyword: Food waste composting

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Evaluation of ammonia emission reducing effect by adding waste cooking oil in pilot-scale composting of dairy cattle manure

  • Kazutaka Kuroda;Akihiro Tanaka;Kenichi Furuhashi;Naoki Fukuju
    • Animal Bioscience
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    • v.36 no.10
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    • pp.1612-1618
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    • 2023
  • Objective: In our previous study, we observed that the addition of waste cooking oil (WCO) reduced ammonia (NH3) emissions during laboratory-scale composting of dairy cattle manure under low-aeration condition. Therefore, this study aimed to evaluate the effect of addition of WCO on NH3 emissions reduction during pilot-scale composting of dairy cattle manure, which is close to the conditions of practical composting treatment. Methods: Composting tests were conducted using pilot-scale composting facilities (1.8 m3 of capacity). The composting mixtures were prepared from manure, sawdust, and WCO. Two treatments were set: without WCO (Control) and with WCO added to 3 wt% of manure (WCO3). Composting was conducted under continuous aeration at 40 L/min, corresponding to 22.2 L/(min·m3) of the mixture at the start of composting. The changes in temperatures, NH3 concentrations in the exhaust gases, and contents of the composted mixtures were analyzed. Based on these analysis results, the effect of WCO addition on NH3 emissions and nitrogen loss during composting was evaluated. Results: During composting, the temperature increase of the composting mixture became higher, and the decreases of weight and water content of the mixture became larger in WCO3 than in Control. In the decrease of weight, and the residual weight and water content of the mixture, significant differences (p<0.05) were detected between the two treatments at the end of composting. The NH3 concentrations in the exhaust gases tended to be lower in WCO3 than in Control. Nitrogen loss was 21.5% lower in WCO3 than in Control. Conclusion: Reduction of NH3 emissions by the addition of WCO under low aeration condition was observed in pilot-scale composting, as well as in laboratory-scale composting. This result suggests that this method is effective in reducing NH3 emissions in practical-scale composting.

Study on the Improvement Process for the Food Waste Resource Facility (I) - Focus on Composting Facility of DDM Environmental Resource center - (음식물류 폐기물 자원화시설의 공정개선에 관한 연구(I) - DDM환경자원센터의 퇴비화시설 사례를 중심으로 -)

  • SHIN, Hyun-Gon
    • Journal of the Korea Organic Resources Recycling Association
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    • v.26 no.3
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    • pp.15-22
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    • 2018
  • This study refers to the composting of DDM Environmental Resource Center, which is operating abnormally in the food waste public-resource facilities that are operating nationwide, in accordance with the initial operating conditions. Similar process cases were investigated to examine issues concerning unusual composting facilities in DDM environmental resource centers and to analyse the causes of the issues. In addition, several improvement measures and alternatives for converting abnormal driving facilities into normal driving facilities may be proposed, and major abnormal driver provisions that are highlighted as issues during field application may be resolved.

Studies on the Optimun Activation Condition for Food Waste Composting by Microorganism in Food Waste (음식물 쓰레기 퇴비화를 위한 미생물 최적 활성 조건)

  • Jeong, Jun-Young;Jung, Kwang-Yong;Park, Woo-Kyun
    • Korean Journal of Environmental Agriculture
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    • v.18 no.3
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    • pp.272-279
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    • 1999
  • This study was conducted to evaluate possibility for composting by microorganisms in food waste itself. In the result of counting of microorgansm in food waste, the number of bacteria growing at $30^{\circ}C$ and $50^{\circ}C$ were counted $10^5-10^7CFU/g$ and $10^5-10^6\;CFU/g$ in the almost food waste, respectively. Amylase and protease producing microorgansim were counted $10^3-10^7\;CFU/g$ at $30^{\circ}C$ and $50^{\circ}C$. In the result of composting for 30 days, FW1 was reveal that $CO_2$gas production rate and degradation of organic matter were similar to FW2 but higher than that of FW3, FM1 and FM2. Also, In the cases of change of enzyme producing microorgansim during the composting, FW1 were counted $10^5-10^9\;CFU/g$ at $30^{\circ}C$, $50^{\circ}C$ and $60^{\circ}C$ of incubation temperature, while FM1, added to commercial microbial inoculator, were less than that of FM1. Consequently, It was suggested that FW1 was most suitable condition for composting by microorganisms in food waste and there was no need to use microbial inoculator for composting.

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Food Waste Composting by Soil Microbial Inoculators (토양미생물제제에 의한 음식물폐기물의 퇴비화 검토)

  • Bae, Il-sang;Jung, Kweon;Jeon, Eun-Mi;Kim, Gwang-Jin;Lee, Dong-Hoon
    • Journal of the Korea Organic Resources Recycling Association
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    • v.8 no.4
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    • pp.160-167
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    • 2000
  • This study was performed to evaluate efficiency of soil microbial inoculator for active composting of food waste. In addition the number of microorganisms in roil microbial inoculator and the effect of seeding in the process of composting were investigated. food waste samples collected from a refectory were analyzed for physical-chemical properties. The samples were adjusted to moisture content of 65% by saw dust and seeded with soil microbial inoculator of 10% by the weight in case of reactor B. The number of microorganisms, aerobic bacteria, actinomyces, yeast, and fungi in soil microbial inoculator were over $2.98{\times}10^9/g$, $3.93{\times}10^7/g$, $1.21{\times} 10^5/g$, and $5.79{\times}10^7/g$, respectively. During the process of composting, the highest temperatures were $63.4^{\circ}C$ at reactor A(unseeded control)after 10 days and $66.8^{\circ}C$ at reactor B(seeded compost) after 4 days. The pH values of reactor A and B rapidly increased after 3 days and after first few days during composting period, respectively. The highest $CO_2$ concentrations were 6.1%(after 10 days) and 10.8%(afer 4 days) in reactor A and B, respectively. The degradation rates of organic matter(rd) between reactor A and B increased by 17.1% and 64.5%, respectively Consequently, the effects of Inoculation on comporting parameter such as temperature increasing, pH change, chemical properties, and the degradation rates of organic matter(rd) were higher in seeded compost than in unseeded control.

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Evaluation of Performance Index for Optimization of Food Waste Treatment and Recovery Facility (음식물류폐기물 자원화시설 최적화를 위한 이행지표 평가)

  • Kim, Jong-Hwan;Park, Joon-Seok;Phae, Chae-Gun
    • Clean Technology
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    • v.22 no.3
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    • pp.181-189
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    • 2016
  • This research was performed to evaluate the food waste recovery facility using optimization performance index. In 2014, the generated amount of food waste occupied approximately 27% in total municipal solid waste. The 97.2% of the food waste was recycled and the others were treated through landfill and incineration in the portion of 0.9% and 1.9%, respectively. In food waste recovery facilities of year 2014, the composting and feed facilities were 49.5% and 22.9%, respectively. The feed facility showed higher scores in all technological, environmental, and especially economical evaluations than those of composting facility. As results of overall optimization performance index, the feed facility has higher score of 61.5 than 52.7 of composting facility. It was demonstrated that the feed facility has the advantage, compared with the composting facility.

Characteristics of compost produced in food waste processing facility (음식물류 폐기물 퇴비화시설에서 생산된 퇴비품질 특성)

  • Lee, Chang-hoon;Park, Seong-jin;Kim, Myeong-sook;Yun, Sun-gang;Ko, Byong-gu;Lee, Deog-bae;Kim, Sung-chul;Oh, Taek-Keun
    • Korean Journal of Agricultural Science
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    • v.42 no.3
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    • pp.177-181
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    • 2015
  • Food waste has been widely considered as a recycling resource to be applied to agricultural lands due to the effects of organic matter and nutrient for plant productivity. but the maturity and salt concentration in the compost produced from food waste processing facilities should be considered firstly, which was little information on compost quality produced from food waste treatment facility. In this study, we examined actual situation of food waste processing facility on the composting of food waste and evaluated the characteristics of composts produced from food waste processing facilities. The quality of composts was analyzed on the basis of the criteria of fertilizer processing manual. The 46% of food waste treatment facility registered composting produced actually the compost mixed with food waste or animal waste. The compost maturity and salt concentration as indicators of the quality of compost were not met 46.8% of composts collected from food waste processing facilities to the criteria of fertilizer processing manual. Also, 15.6%(moisture) were not satisfied with the criteria. In conclusion, the compost produced from food waste processing facilities is firstly required with better compost maturity and reduced salt concentration in order to use to agricultural lands as an amendment.

Composting Characteristics of Food Waste - Poultry Manure Mixture Inoculated with Effective Microorganisms (유용미생물처리 음식물쓰레기와 계분 혼합물 퇴비화 특성)

  • Hong, Ji-Hyung;Park, Keum-Joo
    • Journal of Animal Environmental Science
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    • v.15 no.1
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    • pp.59-68
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    • 2009
  • This study investigated the evaluation of maturity, stability, nutrient and heavy metal from rotating drum composter of food waste amended with poultry manure composting inoculated with effective microorganisms(EM). Composting were performed for the first, drying reactor($15m^3$) 3 hours and the second, composting reactor($30m^3$) 24 hours, and parameters monitored this period included moisture content, NaCl, pH, electrical conductivity(EC), C/N ratio, organic matter(OM), nutrient content and heavy metal. Changes in compost temperature during composting were maintained constantly in the range of $60{\sim}80^{\circ}C$ using firewood boiler(450 MJ/h). We examined physicochemical parameters and heavy metals in order to assess their effectiveness as stability and maturity, nutrient and harmful indicators such as seed germination rate<60%, potassium 1>%, dm and NaCl>1%, dm at the end of the final compost. The finished compost obtained after decomposition phase at the end of the 2nd composter could not be utilized for land improvement or reclamation.

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Generation of Food Waste from Different Sources and Its Composting Measures at the Apartment Complex (배출원별 음식물 쓰레기 발생 특성 및 아파트 단지에서의 퇴비화 방안 (대전 및 충청남도 지역을 중심으로))

  • Kang, H.;Lee, O.L.;Kim, J.W.;Hur, H.W.;Han, S.H.
    • Journal of the Korea Organic Resources Recycling Association
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    • v.6 no.1
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    • pp.53-66
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    • 1998
  • This study was carried out to investigate the typical composition of food waste from municipal solid wastes (MSW) and unit food waste generation rates from different sources in the model cities and to study the food waste management system from unit household to composting facilities. The annual average food waste composition of MSW was determined as 49% in Taejon and 52% in Chungnam Province, respectively. No big difference in food waste composition was found among the different sources. Since the paper waste generally occupied the half of food waste, over 75% of MSW was found to be compostable or biodegradable. Per capita food waste generation rate, 200~250g/capita day was determined by the direct measurement from 32 households, while 380g/capita day for Chungnam Province and 400 g/capita day for Taejon were estimated by the load count analysis In the sanitary landfills. This difference means people contribute generating food waste at outside house approximately twice as much as that at inside house. Per capita food waste generation rates from several sources were determined as follows; 166~215g/capita day at municipalities, 400g/visitor day at a first class hotel, 170g/student day at a university restaurant. Food waste generation from restaurant was strongly dependant upon it's level or quality; 670g/capita day at the high level restaurant, 190g/capita day at the middle class and 60 g/capita day at the lower class restaurant. The food waste reduction rate in a In situ fermentor showed 30~40g/kg day.

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Effects of Salinity and Moisture Content on Aerobic Composting of Food Wastes (염분도와 수분함량이 음식폐기물의 호기성 퇴비화에 미치는 영향)

  • 박석환
    • Journal of Environmental Health Sciences
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    • v.24 no.1
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    • pp.120-131
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    • 1998
  • This study was performed to define the physicochemical characteristics of food waste and food wastewater, and to find the effect of moisture content variation and salinity variation on aerobic composting for food wastes. In moisture content variation experiment, the samples of 2-1, 2-2, 2-3 and 24 were prepared by the moisture content of 83.8%, 70.9%, 64.8% and 45.1%, respectively. In salinity variation experiment, the samples of 3-1, 3-2, 3-3 and 3-4 were prepared by the salinity of 0.99%, 1. 69%, 1.75% and 2.34%, respectively. In both experiments, aerobic composting reactors were operated by the mode which was composed of half an hour's stirring and 2 hour's aeration per day, for 45 days. The followings are the conclusions that were derived from this study. 1. In the study of physicochemical characteristics of food waste and food wastewater, the values of pH were 4.19 and 3.96, the values of salinity were 0.91% and 1.17%, and the values of conductivity were 7.6 mS/cm and 18.2 mS/cm, respectively. 2. In food waste, the moisture content was 60.3%, organic compound content was 96.1%, total carbon was 48.0%, total nitrogen was 1.5%(therefore, C/N ratio was 32), and the concentration of total phosphorus was 1.34 mg/kg. 3. The time of temperature ascending was delayed, the highest temperature was lowered, the duration period of high temperature was shortened by the increasing of moisture content. In the higher moisture content, anaerobic condition was formed, bad smell was released, insects were gathered and multiplicated, and the reaction rate of composting was reduced. 4. In moisture content experiment, C/N ratios were changed from the range of 31.2-34.8 at the beginning phase to that of 20.4-28.4 at the last phase. 5. In salinity experiment, the reduction rate of volume was increased(40.3%) when the salinity was decreased(0.99%). Also, the reduction rate of mass was increased(51.8%) when the salinity was decreased(0.99%). This fact denotes that salinity hinders the process of composting. 6. the concentrations of total nitrogen and total phosphorus were increased from 0.74% to 1.10%, and from 0.82 mg/kg to 3.44 mg/kg, respectively when the salinity was decreased from 2.34% to 0.99%.

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Food Waste Composting by Using an Inoculum-Mixture Containing New Facultative Anaerobic Bacteria (신규 통성혐기성 세균으로 제조한 발효흙에 의한 음식물 쓰레기의 퇴비화)

  • Hwang, Kyo-Yeol;Lee, Jae-Yeon;Kim, Keun;Sung, Su-Il;Han, Sung-Ho
    • Journal of the Korea Organic Resources Recycling Association
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    • v.9 no.1
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    • pp.65-72
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    • 2001
  • Four newly isolated bacteria from soil were used to manufacture microbial inoculum to compost food waste. The bacteria, GM103, V25, V31, and V35, were identified as Bacillus licheniformis, B. subtilis, B. stearothermophilius, and B, subtilis, respectively. The bacterial strains were efficient to degrade protein and starch and also able to inhibit the growth of plant pathogenic fungus Rhizopus stronifer. The GM103 showed distinct capability in degrading starch, but grow only aerobically. The other three bacterial strains. V25, V31, and V35, could grow both aerobically as well as anaerobically, in 10%(w/v) salt, at $50^{\circ}C$, and had good viability and survival rate in soil. These characteristics of the bacterial strains are very adquate in Korean food composting containing high concentration of salt, especially at home. By mixing the 4 bacterial culture broth with molasses, beet pulp, zeolite, The bacterial inoculum for food waste composting-BIOTOP-CLEAN-was made. The performance of food waste composting by the BIOTOP-CLEAN was compared with that by control(not treated) and HS(other demestic company's inoculum product for food waste composting). The maximum temperature of the food waste during the composting with the BIOTOP-CLEAN was $50^{\circ}C$, while those of the control and HS were $30^{\circ}C$ and $35^{\circ}C$, respectively. The BIOTOP-CLEAN gave the good smell and showed dark brown color, while the control gave bad smell and HS gave less bad smell. These indicates that the food waste composting by the BIOTOP-CLEAN had been well accomplished. The culture broth of V25, V31, V35 were sparyed to the plants of tomato, chinese cabbage, raddish, red pepper every month and the spraying the culture broth to these plant significantly improved the production yield of the crops, due to the control effect of the bacterial strains against the plant pathogens.

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