• 제목/요약/키워드: Volume of water retention

검색결과 131건 처리시간 0.026초

Valuable Organic Liquid Fertilizer Manufacturing through $TAO^{TM}$ Process for Swine Manure Treatment

  • Lee, Myung-Gyu;Cha, Gi-Cheol
    • 한국축산시설환경학회지
    • /
    • 제9권1호
    • /
    • pp.45-56
    • /
    • 2003
  • $TAO^{TM}$ System is an auto-heated thermophilic aerated digestion process using a proprietary microbe called as a Phototropic Bacteria (PTB). High metabolic activity results in heat generation, which enables to produce a pathogen-free and digested liquid fertilizer at short retention times. TAO$^{TM}$ system has been developed to reduce a manure volume and convert into the liquid fertilizer using swine manure since 1992. About 100 units have been installed and operated in Korean swine farms so far. TAO$^{TM}$ system consists of a reactor vessel and ejector-type aeration pumps and foam removers. The swine slurry manure enters into vessel with PTB and is mixed and aerated. The process is operated at detention times from 2 to 4 days and temperature of 55 to $65^{\circ}C$. Foams are occurred and broken down by foam removers to evaporate water contents. Generally, at least 30% of water content is evaporated, 99% of volatile fatty acids caused an odor are removed and pathogen destruction is excellent with fecal coliform, rotavirus and salmonella below detection limits. The effluent from TAO$^{TM}$ system, called as the "TAO EFFLUX", is screened and has superb properties as a fertilizer. Normally N-P-K contents of screened TAO Efflux are 4.7 g/L, 0.375 g/L and 2.8 g/L respectively. The fertilizer effect of TAO EFFLUX compared to chemical fertilizer has been demonstrated and studied with various crops such as rice, potato, cabbage, pumpkin, green pepper, parsley, cucumber and apple. Generally it has better fertilizer effects and excellent soil fertility improvement effects. Moreover, the TAO EFFLUX is concentrated through membrane technology without fouling problems for a cost saving of long distance transportation and a commercialization (crop nutrient commodity) to a gardening market, for example.

  • PDF

간수를 이용한 축산폐수의 struvite 결정화 (Struvite Crystallization of Swine Wastewater using Bittern)

  • 류홍덕;김태수;박형순;이상일
    • 한국물환경학회지
    • /
    • 제23권1호
    • /
    • pp.138-143
    • /
    • 2007
  • This study goes in for the observation of the characteristics of nitrogen removal from swine wastewater by struvite crystallization. In addition, the struvite formation potential in supernatants after struvite crystallization was investigated. In the study for nitrogen removal by struvite crystallization, the effects of pH and molar ratio of magnesium (Mg) injected using bittern as Mg source were investigated. Also, the potential of struvite formation in the supernatant with amount of Mg added was carefully observed. As the results, the optimum pH in the removal of nitrogen was 8.8 and sludge volume was increased as pH was raised from 7 to 12 under the condition that the molar ratio of $Mg^{2+}$ to ${NH_4}^+$-N to ${PO_4}^{3-}$-P was 1:1:1. An optimum removal efficiency of ammonia-N was observed at 1 molar ratio of Mg to ${NH_4}^+$-N, showing no further increase at over 1 molar ratio and dramatical deterioration at under 1 molar ratio. However, the sludge volume was increased by increasing the molar ratio of Mg. In the experiments for the potential of struvite formation in the supernatants, initial -log([$Mg^{2+}$][${NH_4}^+$][${PO_4}^{3-}$]) value was much lower than $pK_{sp}$ and gradually reached $pK_{sp}$ at 2 days, as the molar ratio of Mg increased over 1.2. At 31 days, -log([$Mg^{2+}$][${NH_4}^+$][${PO_4}^{3-}$]) value was returned to the initial value. In addition, the supernatants had a potential precipitation of hydroxylapatite due to calcium contained in bittern, $K_2Mg(SO_4)_3$ and $K_3Na(SO_4)_2$ resulting from the decrease of sodium and potassium in supernatants formed after struvite crystallization as times go by. Based on the results, it appears that some retention time and proper dosage of Mg may be needed for the prevention of scale in pipe line.

식생체류지의 도시 강우유출수 처리효율 영향인자 조사 연구 (Investigation on the Factors Affecting Urban Stormwater Management Performance of Bioretention Systems)

  • ;;홍정선;김이형
    • 한국물환경학회지
    • /
    • 제33권1호
    • /
    • pp.1-7
    • /
    • 2017
  • 식생체류지는 도시 강우유출수 관리를 위한 저영향개발 및 그린인프라 기술이며, 개발이전의 상태를 최대한 유지하는 강우유출수 관리기술로 자연을 모방하면서 생태계의 다양성을 향상시키는 기술이다. 본 연구는 식생체류지의 물순환 능력과 비점오염물질의 저감효율에 영향을 끼치는 인자를 도출하기 위하여 4개의 식생체류지 시스템에 대하여 연구를 수행하였다. 2개의 식생체류지, 즉 Type A-C와 Type A-FC에는 국화와 매발톱꽃이 식재되었으며, Type B-A와 Type B-JM식생체류지에는 진달래 및 조팝나무와 같은 관목식물이 식재되었다. 연구결과 식생체류지의 유출저감, 저류량 및 오염물질 저감에 영향을 끼치는 인자로는 TV, 침투기작, 여과재의 두께와 식생 종류로 나타났다. Type B-A와 Type B-JM식생체류지 설계시에는 유출저감, 지하수 충진, 긴 체류시간과 첨두유출량 저감과 비점오염물질 저감을 고려하여 설계가 필요한 것으로 나타났다. 반면에 Type A-C와 Type A-FC 식생체류지 설계시에는 지하수 오염 저감을 중요하게 고려하여야 하는 것으로 나타났다.

가열(加熱)·촉매중합법(觸媒重合法)에 의한 목재(木材)·고분자복합체(高分子複合體) 제조(製造)(I) - MMA에 의한 한국산(韓國産) 주요목재(主要木材)의 복합체특성(複合體特性) (On the manufacturing of WPC (Wood Plastic Composites) with Heat-Catalyst Polymerization (I) - On the characteristics of composites made from monomer Methyl MethacryIate and several commercial woods in Korea)

  • 조남석;조재명;안원영
    • Journal of the Korean Wood Science and Technology
    • /
    • 제2권3호
    • /
    • pp.3-16
    • /
    • 1974
  • One of the disadvantages of. wood and wood products is their hydroscopicity or dimensional instability. This is responsible for the loss of green volume of lumber as seasoning degrade. Dimensional stabilization is needed to substantially reduce seasoning defects and degrades and for increasing the serviceability of wood products. Recently, considerable world-wide attention has been drawn to the so-called Wood-Plastic Composites by irradiation-and heat-catalyst-polymerization methods and many research and developmental works have been reported. Wood-Plastic Composites are the new products having the superior mechanical and physical properties and the combinated characteristics of wood and plastic. The purpose of this experiment was to obtain the basic data for the improvement of wooden materials by manufacturing WPC. The species examined were Mulpurae-Namoo (Fraxinus, rhynchophylla), Sea-Namoo (Carpinus laxiflora), Cheungcheung-Namoo (Cornus controversa), Gorosae-Namoo (Acermono), Karae-Namoo(Juglans mandshurica) and Sanbud-Namoo (Prunus sargentii), used as blocks of type A ($3{\times}3{\times}40cm$) and type B ($5{\times}5{\times}60cm$), and were conditioned to about 10~11% moisture content before impregnation in materials humidity control room. Methyl methacrylate (MMA) as monomer and benzoyl peroxide (BPO) as initiator are used. The monomer containing BPO was impregnated into wood pieces in the vacuum system. After impregnation, the treated samples were polymerized with heat-catalyst methods. The immersed weights of monomer in woods are directly proportionated to the impregnation times. Monomer impregnation properties of Cheungcheung-Namoo, Mulpurae-Namoo and Seo-Namoo are relatively good, but in Karae-Namoo, it is very difficult to impregnate the monomer MMA. Fig. 3 shows the linear relation between polymer retentions in wood and polymerization times; that is, the polymer loadings are increasing with polymerization times. Furthermore species, moisture content, specific gravity and anatomical or conductible structure of wood, bulking solvents and monomers etc have effects on both of impregnation of monomer and polymer retention. Physical properties of treated materials are shown in table 3. Increasing rates of specific gravity are ranged 3 to 24% and volume swelling 3 to 10%. ASE is 20 to 46%, AE 14 to 50% and RWA 18 to 40%. Especially, the ASE in relation to absorption of liquid water increases approximately with increase of polymer content, although the bulking effect of the polymerization of monomer may also be influential. WPCs from Mulpurae-Namoo and Cheungcheung-Namoo have high dimensional stability, while its of Karae-Namoo and Seo-Namoo are-very low. Table 4 shows the mechanical properties of WPCs from 6 species. With its specific gravity and polymer loading increase, all mechanical properties are on the increase. Increasing rate of bending strength is 10 to 40%, compression strength 25 to 70%, ;impact bending absorbed energy 4 to 74% and tensile strength 18 to 56%. Mulpurae-Namoo and Cheungcheung-Namoo with high polymer content have considerable high increasing rate of strengths. But incase of Karae-Namoo with inferior monomer impregnation it is very low. Polymer retention in cell wall is 0.32 to 0.70%. Most of the polymer is accumulated in cell lumen. Effective. of polymer retention is 58.59% for Mulpurae-Namoo, 26.27% for Seo-Namoo, 47.98% for Cheungcheung-Namoo, 25.64% for Korosae-Namoo, 9.96% for Karae-Namoo and 25.84% for Sanbud-Namoo.

  • PDF

역상 액체 크로마토그래피에 의한 Pd(II) - Isonitrosoethylacetoacetate Imine 유도체 킬레이트들의 용리 거동 (Elution Behavior of Pd(II) - Isonitrosoethylacetoacetate Imine Chelates by Reversed Phase High Performance liquid Chromatography)

  • 김인환;신한철;이만호;윤태건;강창희;이원
    • 분석과학
    • /
    • 제5권4호
    • /
    • pp.389-399
    • /
    • 1992
  • 역상 액체 크로마토그래피에 의하여 $Pd(IEAA-NR)_2$ (R=H, $CH_3$, $C_2H_5$, $n-C_3H_7$, $C_6H_5-CH_2$, $n-C_4H_9$) 킬레이트의 용리 거동을 Micropak MCH-5 분리관을 사용하여 연구하고, 아울러 동시 분리분석에 미치는 흐름속도, 이동상의 세기, 분리관의 온도 등 여러 가지 인자들의 영향을 조사 검토하였다. 용리액으로 methanol/water의 이성분 용매를 사용하였으며, 모든 금속 킬레이트의 용매 세기 인자는 $0{\leq}log\;k^{\prime}{\leq}1$의 범위임을 확인하였고, 각 금속 킬레이트의 log k'과 이성분용매 중의 물의 부피분율을 도시한 결과 직선 관계가 성립하였다. 또한 뱃치법으로 측정한 분포비 ($D_c$)값과 k'값을 도시하여 본 결과 직선관계가 성립됨으로써 금속 킬레이트의 용리 메카니즘이 주로 소용매성 효과, 즉 소수성효과에 기인함을 확인하였다. 또한 금속 킬레이트의 머무름에 미치는 용량 인자와 온도와의 관계를 알아본 결과 좋은 직선성을 나타내고 있으며, 직선의 기울기로부터 엔탈피 (${\Delta}H$)와 엔트로피 (${\Delta}S$)를 구하고, 엔탈피와 용량 인자와의 관계로부터 금속 킬레이트의 머무름이 반드시 엔탈피와 관련되어 있다고 할 수 없으며 구조적 성질과도 관계가 있는 것으로 여겨진다.

  • PDF

역상 액체 크로마토그래피에 의한 Ni(II)-Isonitrosoethylacetoacetate Imine 유도체 킬레이트의 용리 메카니즘에 관한 연구 (A Study on the Elution Mechanism of Ni(II)-Isonitrosoethylacetoacetate Imine Chelates by Reversed Phase High Performance Liquid Chromatography)

  • 김인환;최강렬;이만호;강창희;이원
    • 대한화학회지
    • /
    • 제36권5호
    • /
    • pp.697-708
    • /
    • 1992
  • 역상 액체 크로마토그래피에 의하여 Ni(IEAA-NH)(IEAA-NR)(R = H, $CH_3,\;C_2H_5,\;n-C_3H-7,\;n-C_4H9-,\;CH_5-CH_$) 킬레이트의 동시 분리 및 분석을 위한 최적조건을 Micropak MCH-5 분리관을 사용하여 조사하고, 이들의 용리거동에 대한 인자들과의 관계를 검토하였다. 용리액에서 methanol/water의 이성분 용매를 사용하였으며, 모든 금속 킬레이트의 용매 세기 인자는 $0{\le}logk'{\le}1$의 범위임을 확인하였고, 각 금속 킬레이트의 logk'값과 이성분용매계 중의 물의 부피분율을 도시한 결과 직선 관계가 성립하였다. 또한 뱃치법으로 측정한 분포비(Dc)값과 k'값을 도시하여 본 결과 직선 관계가 성립됨으로써 금속 킬레이트의 용리 메카니즘이 주로 소용매성 효과 즉 소수성효과에 기인함을 확인하였다. 한편 금속 킬레이트의 머무름에 미치는 용량 인자와 온도와의 관계를 조사한 결과 좋은 직선성을 나타내고 있으며, 뿐만 아니라 직선의 기울기로부터 엔탈피(${\delta}H$)와 엔탈피(${\delta}S$)를 구하고, 엔탈피와 용량 인자와의 값을 도시한 결과도 직선관계가 성립하였다. 직선의 기울기로부터 구한 보정 온도(${\beta}$)는 $773.47^{\circ}K$이었다. 이 결과 역상 HPLC에서 Ni(II)-Isonitrosoethylacetoacetate imine 킬레이트의 용리 메카니즘의 주로 소수성 효과에 기인함을 재확인 할 수 있었다.

  • PDF

탄성의치를 사용한 부분무치증 환아의 보철적 수복 (REMOVABLE FLEXIBLE DENTURE FOR CHILDREN WITH OLIGODONTIA : A CASE REPORT)

  • 김진영;이광희;라지영;이동진;안소영;김윤희
    • 대한소아치과학회지
    • /
    • 제36권1호
    • /
    • pp.150-156
    • /
    • 2009
  • 부분무치증 환자에게 사용되어온 기존의 가철성 장치는 wire의 노출로 인한 비심미성과 낮은 유지력 등의 문제점을 가지고 있다. 그 대안으로 제시된 탄성의치는 치은의 자연적인 색조를 투과시키는 얇고 강한 레진유지부로 인해 심미성이 크게 향상 되었으며 전체적인 의치상의 크기를 줄여주어 환자의 감각을 더욱 향상시킨다. 탄성의치의 유연성은 파절가능성을 감소시키며, 내재적 응력의 해소 작용으로 지대치와 잔존 골조직에 전달되는 저작력을 분산시킬 수 있다. 본 증례에서는 부분무치증을 보이는 10세 여아와 6세 남아에서 기존의 가철성 장치를 대체한 탄성의치를 사용하여 양호한 치료결과를 얻었다. 알지네이트로 상하악 인상을 채득하고 교합관계를 인기한 뒤 기공소에 제작을 의뢰하였다. 다음 내원 시 탄성의치를 $90^{\circ}C$의 물에 1분정도 담가두었다가 꺼내어 서서히 식힌 뒤 구강 내에 시적하였다. 레진유지부의 적합성을 확인하고 $Fit-Checker^{(R)}$를 이용해 조직이 심하게 눌리는 곳을 삭제하고 장치를 장착하였다. 두 명의 환아 모두 탄성의치의 더 나은 유지력과 향상 된 심미성에 만족하였다. 탄성의치는 부분무치증 환자에서 기존의 가철성 장치를 대체할 수 있는 좋은 재료로 여겨진다.

  • PDF

도공층의 공극과 인쇄적성에 관한 연구(제4보) -안료 배합 비율이 미치는 영향- (Studies on the Pore of Coating Layer and Printability (IV) -Effects of Blending Ratio of Pigments-)

  • 김창근;이용규
    • 펄프종이기술
    • /
    • 제33권3호
    • /
    • pp.29-36
    • /
    • 2001
  • This paper was made to evaluate the effect of the blending ration of GCC and No. 1 clay on the printability by investigating the structure of pore such as the pore rate, the number of pores, pore size and distribution of coated paper. The coated structure is mainly depended on the results of correlation between pigment and binder. It means that the structure of the pore occurred is chiefly affected by the blending ratio of GCC and No. 1 clay. This physical properties of the pore have a close relation with ink set-off associated with the drying rate and the penetration in ink into base paper and with printing gloss. Therefore it was needed to find out how the pore structure and the printability will be changed by modifying the blending ratio of GCC and No. 1 clay to vary the pore structure of coated paper. Below are the results of measurement: As the blending ratio of clay going up, water retention, sedimentation volume. smoothness, and paper gloss were increased, but relatively brightness and opacity were decreased. Pore rate was the highest at the blending ratio of No. 1 clay to GCC, 70:30. In this case, average pore radius was also increased. Ink receptivity and K&N ink receptivity were improved with the increase of the blending ratio of GCC, where was, ink setting was vice versa. No difference was observed in the weight of ink, but ink repellance decrease with the decrease of blending ratio of GCC.

  • PDF

코코넛 코이어와 피트모스 혼합 모래 토양의 물리·화학적 특성 (Physicochemical Properties of Root Zone Soil Based on Sand Blending with Coconut Coir and Peat Moss)

  • 김영선;배은지;최문진;김태웅;이긍주
    • 한국환경농학회지
    • /
    • 제41권2호
    • /
    • pp.101-107
    • /
    • 2022
  • BACKGROUND: Soil amendment was necessary applied for the sand that had been used to root zone of green ground in golf course because of its low water retention power and cation exchangeable capacity. This study was conducted to evaluate the effect of the mixed ratio of peat moss and coconut coir as soil amendment materials on the soil physicochemical properties applied to rootzone based on sand. METHODS AND RESULTS: The soil amendments were blended at 0, 3, 5, 7 and 10% by soil volume. The pH in the peat moss treatment was lower than that of control (0% soil amendment), and pH and electrical conductivity (EC) in the coconut coir were higher. The blending ratio of peat moss was negatively correlated with pH of rootzone soil (p<0.01), and that of coconut coir positively with EC (p<0.01). As compared with control, capillary porosity, the physical factors such as air-filled porosity, total porosity, and hydraulic conductivity of rootzone soil were increased by applying peat moss and coconut coir. For correlation coefficients between percentage of soil amendments and soil physical factors, peat moss and coconut coir were positively correlated with porosity and hydraulic conductivity (p<0.01). CONCLUSION(S): These results indicated that the application of peat moss and coconut coir affected on the change of physicochemical properties of rootzone soil, and improved soil porosity and hydraulic conductivity.

액중 전기선 폭발법을 이용한 Fe3O4/Fe/그래핀 나노복합체 분말의 제조 및 전기화학적 특성 (Fabrication of Fe3O4/Fe/Graphene nanocomposite powder by Electrical Wire Explosion in Liquid Media and its Electrochemical Properties)

  • 김유영;최지습;이회진;조권구
    • 한국분말재료학회지
    • /
    • 제24권4호
    • /
    • pp.308-314
    • /
    • 2017
  • $Fe_3O_4$/Fe/graphene nanocomposite powder is synthesized by electrical wire explosion of Fe wire and dispersed graphene in deionized water at room temperature. The structural and electrochemical characteristics of the powder are characterized by the field-emission scanning electron microscopy, X-ray diffraction, Raman spectroscopy, field-emission transmission electron microscopy, cyclic voltammetry, and galvanometric discharge-charge method. For comparison, $Fe_3O_4$/Fe nanocomposites are fabricated under the same conditions. The $Fe_3O_4$/Fe nanocomposite particles, around 15-30 nm in size, are highly encapsulated in a graphene matrix. The $Fe_3O_4$/Fe/graphene nanocomposite powder exhibits a high initial charge specific capacity of 878 mA/g and a high capacity retention of 91% (798 mA/g) after 50 cycles. The good electrochemical performance of the $Fe_3O_4$/Fe/graphene nanocomposite powder is clearly established by comparison of the results with those obtained for $Fe_3O_4$/Fe nanocomposite powder and is attributed to alleviation of volume change, good distribution of electrode active materials, and improved electrical conductivity upon the addition of graphene.