• Title/Summary/Keyword: 유기물화

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Fertilizer and Organic Inputs Effects on CO2 and CH4 Emission from a Soil under Changing Water Regimes (토양 수분 변동 조건에서 시비 및 유기물 투입에 따른 CO2와 CH4 방출 특성)

  • Lim, Sang-Sun;Choi, Woo-Jung;Kim, Han-Yong
    • Korean Journal of Environmental Agriculture
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    • v.31 no.2
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    • pp.104-112
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    • 2012
  • BACKGROUND: Agricultural inputs (fertilizer and organic inputs) and water conditions can influence $CH_4$ and $CO_2$ emission from agricultural soils. This study was conducted to investigate the effects of agricultural inputs (fertilizer and organic inputs) under changing water regime on $CH_4$ and $CO_2$ emission from a soil in a laboratory incubation experiment. METHODS AND RESULTS: Four treatments were laid out: control without input and three type of agricultural inputs ($(NH_4)_2SO_4$, AS; pig manure compost, PMC; hairy vetch, HV). Fertilizer and organic inputs were mixed with 25 g of soil at 2.75 mg N/25 g soil (equivalent to 110 kg N/ha) in a bottle with septum, and incubated for 60 days. During the first 30-days incubation, the soil was waterlogged (1 cm of water depth) by adding distilled water weekly, and on 30 days of incubation, excess water was discarded then incubated up to 60 days without addition of water. Based on the redox potential, water regime could be classified into wetting (1 to 30 days), transition (31 to 40 days), and drying periods (41 to 60 days). Across the entire period, $CH_4$ and $CO_2$ flux ranged from 0 to 13.8 mg $CH_4$/m/day and from 0.4~1.9 g $CO_2$/m/day, and both were relatively higher in the early wetting period and the boundary between transition and drying periods. During the entire period, % loss of C relative to the initial was highest in HV (16.4%) followed by AS (8.1%), PMC (7.5%), and control (5.4%), indicating readily decomposability of HV. Accordingly, both $CH_4$ and $CO_2$ fluxes were greatest in HV treatment. Meanwhile, the lower $CH_4$ flux in AS and PMC treatments than the control was ascribed to reduction in $CH_4$ generation due to the presence of oxidized compounds such as ${SO_4}^{2-}$, $Fe^{3+}$, $Mn^{4+}$, and ${NO_3}^-$ that compete with precursors of $CH_4$ for electrons. CONCLUSION: Green manure such as HV can replace synthetic fertilizer in terms of N input, however, it may increase $CH_4$ emission from soils. Therefore, co-application of green manure and livestock manure compost needs to be considered in order to achieve satisfactory N supply and to mitigate $CH_4$ and $CO_2$ emission.

Removal of Organic Matter and Nitrogen from River Water in a Model System of Floodplain Filtration (홍수터 여과 모형을 이용한 하천수중의 유기물과 질소 제거)

  • Ha, Hyun-Soo;Kim, Sang-Tae;Kim, Seung-Hyun;Jeong, Byeong-Ryong;Lee, Young-Deuk;Eum, Jin-Sup;Ji, Seung-Hwan;Chung, Jong-Bae
    • Applied Biological Chemistry
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    • v.45 no.2
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    • pp.84-91
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    • 2002
  • If contaminated river water is sprayed over the floodplain, organic matter and nitrogen would be removed by microbial processes in the rhizosphere of vegetation during the filtration through soil. In this study we tested the organic matter and nitrogen removal from contaminated river water by the floodplain filtration. Model system of floodplain was constructed using a PVC pipe (15 cm i.d. ${\times}$ 150 cm L) which was packed with a loamy sand soil collected from a floodplain in Nakdong river. The model system was instrumented with soil solution samplers and gas samplers. A river water collected from Omogcheon in Kyongsan was sprayed from top of the model system at three different rates. The concentration of organic matter, DO, $NO_3^-$, $NO_2^-$, $NH_4^+$, $N_2$ and $N_2O$, and redox potential were measured as a function of soil depth for 24 days after the system reached a steady state. When river water was sprayed at the rates of 40.8 and 68.0 $l/m^2/day$, a significant reductive condition for denitrification was developed at below 5-cm depth of the soil. When the water reached at 90-cm depth of the soil, COD and concentration of inorganic nitrogen were lowered, on an average, from 18.7 to 5 mg/l and from 2.7 to 0.4 mg/l, respectively. $N_2$ comprised most of the N gas evolved from denitrification and $N_2O$ concentrations emitted at the surface of soil were less than 1 {\mu}l/l. The effective removal of organic matter and nitrogen by the filtration in the model system of floodplain demonstrates that the native floodplains, which include rhizosphere of vegetation at the top soil, could be more effective in the treatment of contaminated river waters and other industrial waste waters containing high concentration of organic matter and nitrogen.

Evaluation of the Bactericidal Activity of Electrolyzed Water against Salmonella Typhimurium and Staphylococcus aureus on Perilla Leaves (전해수를 이용한 들깻잎 중 Salmonella Typhimurium과 Staphylococcus aureus의 저감화 효과 분석)

  • Kim, Se-Ri;Ryu, Kyoung-Yul;Lee, Myoung-Hee;Jung, Chan-Sik;Yoon, Yo-Han;Shim, Won-Bo;Kim, Ju-Hee;Kim, Byung-Seok;Yoo, Soon-Young;Kim, Doo-Ho;Yun, Jong-Chul;Chung, Duck-Hwa
    • Korean Journal of Food Science and Technology
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    • v.44 no.4
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    • pp.467-471
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    • 2012
  • This study was conducted to evaluate the bactericidal activity of weakly alkalic electrolyzed water (WEW) against Salmonella Typhimurium and Staphylococcus aureus on perilla leaves. The influences of organic matter, inform of bovine serum, and the ratio of WEW to perilla leaves on bactericidal activity of WEW were also examined. Treatment of these organisms with 25, 50, 75, and 100 ppm WEW was performed for 1 min, 3 min and 5 min, respectively. Higher bactericidal activity was observed after a treatment with 100 ppm WEW compared to a treatment with 25 ppm WEW by 0.7 $log_{10}CFU/g$. The bactericidal activity of WEW also decreased with increasing bovine serum concentration. At the ratio of 10:1 (WEW: perilla leave), levels of Salmonella Typhimurium and Staphylococcus aureus were only reduced by 0.57 and 0.79 $log_{10}CFU/g$, respectively. It is suggested that the removal of organic debris prior to application of sanitizers and treatment above the ratio of 25:1 (WEW: perilla leave) is needed in order to improve WEW activity.

Evaluation of Initial Moisture Content Effect and Microorganisms Activity in Small-scale Composting Equipment (소규모 퇴비화 장치에서 초기 함수율의 영향 및 분리 균주의 활성도 평가)

  • Juea, Se-Hong;Kong, Sun-Hyung;Choi, Kwang-Soo;Jeun, Hong-gea;Kim, Chang-Won
    • Journal of the Korea Organic Resources Recycling Association
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    • v.5 no.2
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    • pp.29-37
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    • 1997
  • Because food waste have high moisture content, landfill or incineration is not most suitable. The reuse of food waste by composting contribute to solve resourse, environmental, aglicultural problems. The purpose of this research is to optimise operating conditions and to develop new microorganisms for recycling of food waste by ultilizing small-scale composting equipment. The reduction rate of food waste was 75~85% by weight, and it was coincided with moisture reduction. When initial moisture was 25%, 45% and 60%, C/N ratio on based net weight was 9.8, 10.7 and 11. 8, respectively. And it was suitable for composting. But, The developed microorganism, PNU2, was better than existing commercial seed in the activity based on $CO_2$ concentration.

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Evaluating the Influence of Liquid Organic Polymer on Soil Aggregation and Growth of Perennial Ryegrass (유기중합물이 토양의 입단화와 페레니얼 라이그래스의 성장에 미치는 영향)

  • Lee, Sang-Kook;Minner, David
    • Asian Journal of Turfgrass Science
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    • v.25 no.1
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    • pp.69-72
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    • 2011
  • Soil aggregate is a vigorous procedure including soil physical, chemical, and biological processes. Pore space created by binding these particles together improves retention and exchange of air and water. Various researches have reported that the benefits of organic polymers that may increase aggregate stability. The purpose of the study was to determine if a liquid organic polymer mixture has any influence on perennial ryegrass quality or soil aggregation. $Turf2Max^{(R)}$ was applied to two soils as a source of liquid organic polymer. Fine-loamy soil from local Iowa topsoil with 4.0% organic matter was screened and dried. Commercial baseball infield clay, $QuickDry^{(R)}$, was used as the second soil There were three rates of liquid organic polymer (0, 2, and 4%). there was no visual improvement in turf grass color, quality, or growth by using organic polymer. It is possible that aggregate stability increases with use of organic polymer. The aggregate stability study needs to be repeated in the greenhouse and then substantiated under field conditions for these preliminary observations.

Current Status and Future of Vermicomposting Industries in Korea (지렁이 퇴비화 산업 현황 및 향후과제)

  • Kim, Jong-Oh;Lee, Chang-Ho
    • Journal of the Korea Organic Resources Recycling Association
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    • v.9 no.2
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    • pp.52-57
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    • 2001
  • ln this study, the questionnaire survey was performed to obtain the basic data on current situations and challengeable aspects of vermicomposting industries. The questionnaire contained the four main categories such as vermicomposting facilities, feeling marerials, earthworm breeding and cast handling. The results was summarized as followings: 1. Vermicomposting facilities area was becoming larger, and earthworm feed was also expending to various organic sludges. These trends showed that Vermicomposting is being enlightened to treat and recycle the organic wastes in Korea. 2. Present Vermicomposting technology needs the broad land. Because of the high cost of land in Korea, the land saving technology such as multistage must be needed. And present operation practices are mostly based on human power, mechanization and automation is needed. Also, present control practices are based on individual experience need the scientific base control system. 3. Considering situations of organic wastes management in Korea, the technical development and the practical improvement of Vermicomposting as the waste recycling will be needed.

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A Fundamental Study on Composting of Garbage (음식물쓰레기의 퇴비화에 관한 기초적 연구)

  • Jeon, Byung-Gwan;Hur, Dang
    • Journal of the Korea Organic Resources Recycling Association
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    • v.4 no.2
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    • pp.19-25
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    • 1996
  • A fundamental study on composting garbage was performed in a laboratory scale of a high-speed composting reactor. Major parameters were moisture content, temperature and C/N ratio. The results are as follows; pH of the compost was the highest at moisture 60% and anaerobic condition occurred at 70%. It was, also, found that C/N ratio, caused a nitrogen loss due to an occurrence of plentiful $NH_3$. Under controlling Temperature, pH was the highest at $60^{\circ}C$ and an inverse effect for Composting occurred under excessive Temperature as pH at $70^{\circ}C$ was lower than that of soil. The variation of pH and C/N ratio was the lowest when C/N ratio was 25. The results obtained from composting garbage revealed that the best condition of composting occurred under 50 to 60% of moisture content, $60^{\circ}C$ of temperature, and 25 of C/N ratio. It is believed that composting may be finished with in 56 hours if an optimal condition is setting up.

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Relationship of Magnesium Source and MAP Crystallization Efficiency (마그네슘 공급원과 MAP 결정화 효율과의 관계)

  • Ahn, Johwan
    • Journal of the Korea Organic Resources Recycling Association
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    • v.30 no.1
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    • pp.33-39
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    • 2022
  • Batch experiments were conducted to find out the effects of various types of magnesium compounds on phosphorus recovery by magnesium ammonium phosphate (MAP) crystallization. The phosphorus recovery from the centrate of anaerobic digested sludge was performed using magnesium chloride, magnesium hydroxide and magnesium oxide under different pH (7.5, 8.0 and 8.5) and Mg/P molar ratio (1.0, 1.5, 2.0, 2.5) conditions. The phosphorus recovery rate increased with increasing pH and Mg/P molar ratio in all magnesium compounds. At pH 7.5, magnesium oxide showed the highest phosphorus recovery rate, followed by magnesium hydroxide and magnesium chloride. However, at pH 8.5, more than 90% of phosphorus recovery rate was obtained in all Mg/p molar ratios. Thus, it is expected that magnesium hydroxide and magnesium oxide are able to replace magnesium chloride as a magnesium source in terms of phosphorus recovery efficiency and cost.

Disintegration of Sewage Sludge Using Mechanical Pre-treatment (기계식 전처리를 이용한 하수슬러지의 가용화)

  • Lee, Chae-Young;Yoo, Hwang-Ryong
    • Journal of the Korea Organic Resources Recycling Association
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    • v.17 no.3
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    • pp.82-90
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    • 2009
  • Disintegration of sewage sludge (SS) was investigated by batch experiments using mechanical pre-treatment. Mechanical disintegration of SS increased the amount of soluble chemical oxygen demand (SCOD), protein and carbohydrate due to the break-up of cell walls. The mechanical disintegration incorporated with alkaline pre-treatment demonstrated higher amount of SCOD compared with mechanical one only. In terms of anaerobic biodegradability, mechanical pretreatment enhanced the anaerobic biodegradation of SS, leading to the methane production improvement. The improvement in BMP for SS treated with mechanical and alkaline-mechanical pre-treatments were 24.1% and 44.5%, respectively. This result suggested that disintegration of SS was effective for improving anaerobic biodegradability.

Effect of Alkaline Pretreatment on Sludge Aerobic Digestion and Fertilizer Value (알칼리 전처리에 의한 슬러지 호기성 소화 및 액비 특성 변화)

  • Hwang, Eung-Ju
    • Journal of Korean Society of Environmental Engineers
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    • v.30 no.1
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    • pp.90-96
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    • 2008
  • In order to meet the stringent requirement of sludge disposal and to find ecological alternative, aerobic digestion coupled with alkaline pretreatment was studied. The treated sludge was tested for the potential of liquid fertilizer. In the aerobic digestion, it was obvious that the performance of digester B(fed with the sludge pretreated by NaOH) was better than that of digester A(fed with raw sludge) in terms of COD and SS removal. SS and VSS removal rates in digester B were 66% and 69%, respectively. At 5 days, TSS removal rate reached 47% in the digester B, which was 71% of final TSS removal rate. It revealed that the pretreatment process can shorten the retention time of aerobic digestion. 94.1% of TCOD in the raw sludge was reduced by alkaline pretreatment and aerobic digestion. Final SCOD was in the range of 220$\sim$230 mg/L implying the sludge was stabilized. Nitrification and pH drop were observed in the aerobic digestion. Final nitrate concentrations in digester A and B were 445.4 and 223.1 mg/L and final pH in digester B was 3.0. Biological assays reported that leaf size of cucumber seedling increased with nitrate concentration and sludge to soil ratio. The sludge treated by alkaline and aerobic digestion promoted the growth of seedling leaf and stem remarkably compared to raw sludge. In contrast, the aerobically digested sludge without pretreatment improved leaf growth and inhibited stem growth.