• 제목/요약/키워드: SoP

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돈분과 사과착즙박의 혼합 혐기소화액의 황산첨가 pH 조절이 호기성 액비화과정에서의 화학적 특성 변화 (Effect of pH Adjustment by Adding Sulphuric Acid on Chemical Properties in Aerobic Liquefying Process of Co-Digestate of Swine Manure and Apple Pomace)

  • 류종원
    • 유기물자원화
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    • 제28권3호
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    • pp.5-14
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    • 2020
  • 본 연구는 돈분과 사과착즙박 혼합 혐기소화액의 호기성 처리 과정에서 황산(H2SO4)을 이용한 혐기소화액의 pH를 7.0과 6.5 조절 처리가 암모니아 휘발과 화학적 특성 변화에 미치는 영향을 구명하기 위하여 수행하였다. 혐기소화액은 0.3 ㎥ air/㎥·min 조건에서 60일 동안 폭기처리를 실시하였다. 무처리구의 혐기소화액은 호기성 액비화 과정 중 pH가 상승하고, EC와 T-N 함량이 감소하는 경향을 나타내었다. 황산 무처리 혐기소화액은 pH가 높아 액비화 과정에 암모니아 농도가 172.6 mg/L로 높았으나 황산 처리 pH 조절 혐기소화액은 암모니아(NH3) 발생이 유의적으로 감소되었다. 황산 무처리 혐기소화액은 액비화 과정 중 암모늄태 질소 함량이 47.2% 감소되었다. 혐기소화액의 pH 조절 처리구는 암모늄태 질소의 함량이 황산 처리 pH 조절 처리구에 비하여 높았다. 또한, 황산(H2SO4)처리는 혐기소화액에서 질소, 인산 함량의 증가에 영향을 주어 비료 성분이 높아지는 효과를 나타내었다. 따라서 혐기소화액의 황산 첨가에 의한 pH 조절은 호기성 액비화 공정에서 암모니아 휘산 저감과 질소 함량을 높이기 위한 유용한 방법으로 활용될 수 있을 것이다.

Effects of Sodium Sulfite and Extrusion on the Nutritional Value of Soybean Products for Nursery Pigs

  • Burnham, L.L.;Kim, I.H.;Kang, J.O.;Rhee, H.W.;Hancock, J.D.
    • Asian-Australasian Journal of Animal Sciences
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    • 제13권11호
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    • pp.1584-1592
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    • 2000
  • Three hundred nursery pigs were used in two growth assays (avg initial BW of 6.5 and 6.0 kg, respectively) to determine the effects of sodium sulfite ($Na_2SO_3$) as an extrusion aid for soy products used in diets for weanling pigs. In Exp. 1, treatments were arranged as $3{\times}2$ factorial with main effects of soy product [soybean meal (SBM), extruded SBM, and dry-extruded whole soybeans (DEWS)] and concentration of $Na_2SO_3$ (0 and 10 g/kg of soy product). The extruded SBM and DEWS treatments were processed in a dry extruder ($Insta-Pro^{(R)} $, Triple F Nutrition, Des Moines, IA) with barrel temperatures and throughputs of $169^{\circ}C$ and 578 kg/h, and $147^{\circ}C$ and 598 kg/h, respectively. All diets were formulated to 3.5 Mcal/kg DE, with 0.92% lysine for d 0 to 14, and 0.76% lysine for d 14 to 28. For d 0 to 14, there was a tendency for pigs fed diets with $Na_2SO_3$ to have greater ADG (p<0.08), and pigs fed SBM to have greater ADFI (p<0.02), thus pigs fed the extruded soy products has 15% greater gain/feed than those fed SBM (p<0.007). For d 14 to 28, there were no differences in ADG or gain/feed among pigs fed diets with SBM and those fed diets with the extruded soy products (p>0.15). However, pigs fed DEWS had greater ADG than pigs fed extruded SBM, and pigs fed $Na_2SO_3$ had greater ADG and ADFI compared to those not fed $Na_2SO_3$ (p<0.02 and 0.08, respectively). The positive response in ADG and gain/feed to the addition of $Na_2SO_3$ resulted with SBM and extruded SBM treatments, and not with DEWS (interaction effect, p<0.04). Overall (d 0 to 28), pigs fed DEWS had greater ADG (p<0.01) and gain/feed (p<0.08) than pigs fed extruded SBM. Also pigs fed diets with $Na_2SO_3$ had greater ADG, ADFI, and gain/feed compared to those fed diets without $Na_2SO_3$ (p<0.002, 0.04, and 0.04, respectively). Exp. 2 was designed as a $2{\times}3$ factorial with main effects of soy product (SBM and DEWS) and concentration of $Na_2SO_3$ (none, 7.5, and 15.0 g/kg of soy product). As in Exp. 1, all diets were formulated to 3.5 Mcal/kg DE, with 0.92% lysine for d 0 to 13, and 0.76% lysine for d 13 to 53. At a constant processing temperature (148 to $149^{\circ}C$, $Na_2SO_3$ increased throughput of the extruder (578, 595, and 602 kg/h for the 0, 7.5, and 15.0 g/kg additions, respectively). For d 0 to 13, treatment had no effect on ADG or ADFI, but gain/feed decreased for pigs fed SBM with increasing concentrations of $Na_2SO_3$, and increased for pigs fed DEWS with increasing concentrations of $Na_2SO_3$ (SBM vs DEWS sulfite quadratic interaction, p<0.03). For d 13 to 35, pigs fed DEWS had greater ADG (p<0.01) and gain/feed (p<0.001) than pigs fed SBM. Also, ADFI decreased and gain/feed increased with increasing concentrations of $Na_2SO_3$ (linear effects, p<0.04 and 0.01, respectively). Overall, pigs fed the diets with DEWS had greater ADG and gain/feed than pigs fed SBM (p<0.003 and 0.002, respectively), and $Na_2SO_3$ tended to decrease ADFI and increase gain/feed (linear effects, p<0.07 and 0.06, respectively). In conclusion, pigs fed DEWS had greater rate and efficiency of gain than pigs fed SBM. Also, adding $Na_2SO_3$ prior to extrusion increased yield and feed efficiency.

25℃에서 ZnSO4-Fe2(SO4)3-Na2SO4-H2SO4-NaOH-H2O계에 대해 Pitzer식과 Vasil'ev식에 의한 이온평형해석 비교 (Comparison of Ionic Equilibria Analysis of ZnSO4-Fe2(SO4)3-Na2SO4-H2SO4-NaOH-H2O System at 25℃ between Pitzer and Vasil'ev Equation)

  • 이만승;이경주;남상호
    • 분석과학
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    • 제16권2호
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    • pp.159-165
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    • 2003
  • 아연산화광 황산침출액에 적용가능한 이온평형모델을 개발하기 위해 Vasil'ev식과 Pitzer식에 의한 해석방법을 비교하였다. 이온강도가 9 m정도로 증가할수록 Vasil'ev식보다는 Pitzer식에 의한 용액의 이온평형결과가 정확하였다. 아연산화광 황산침출액을 모사하기위해 $25^{\circ}C$에서 $ZnSO_4-Fe_2(SO_4)_3-Na_2SO_4-H_2SO_4-NaOH-H_2O$계에 대해 전해질의 농도를 변화시키며 혼합한 용액의 pH 측정값과 본 연구에서 계산한 pH값은 서로 잘 일치하였다.

산성강하물과 해송엽 엽록소의 관련성 (Relation of Acid Depositions and Chlorophyll Concentration in the Pinus thunbergii Leaf)

  • 이총규;김종갑;황진형
    • 농업생명과학연구
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    • 제45권2호
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    • pp.35-41
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    • 2011
  • 본 연구는 공단지역과 도시지역의 산성강하물과 해송엽의 엽록소 함량과 관련성이 있는 인자를 조사하여 그 관련성을 분석하였다. 해송 임분의 수관통과우 pH는 공단지역이 pH 4.20이었고, 도시지역이 pH 4.87이었다. 공단지역과 도시지역의 해송엽의 엽록소 전체 함량은 각각 0.5984와 0.6784로서 공단지역에서 함량이 낮았다. 지역별 $SO_2$농도는 공단지역이 0.029 ppm, $NO_2$농도는 도시지역이 0.021 ppm이었다. 해송엽의 엽록소 함량과 산성강하물의 인자 상호간의 상관은 pH (r=-0.8769), ${NO_3}^-$ (r=0.6983), ${SO_4}^{2-}$ (r=0.8929)이온, $SO_2$ (r=0.8738), $NO_2$ (r=0.8523)이었다 (p<0.01). 해송엽의 엽록소 함량 (Y)에 관여하는 인자의 회귀 방정식은 Y=4.8979 + 0.7698pH + $0.8412{SO_4}^2$ + $0.8673SO_2$, + $0.8767NO_2$+ $0.8767{NO_3}^-$ ($r^2$=0.8873)이었고, 이때의 설명력은 88%이었다.

제지용(製紙用) 아스플룬드펄프 제조(製造)에 관한 연구(II) -일본 잎갈나무��의 알카리 전처리(前處理)와 아스플룬드 펄프의 과산화물(過酸化物) 표백(漂白)에서 셀룰로오스 안정제(安定劑)의 영향(影響)에 관하여- (Studies on the Asplund Pulping of Wood for Paper Pulp(II) -Effect of some cellulose stabilizers added to the alkaline chip-treatment and the peroxide bleaching on the quality of larchwood asplund pulps-)

  • 임기표
    • Journal of the Korean Wood Science and Technology
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    • 제9권3호
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    • pp.7-15
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    • 1981
  • 우리나라에 대량조림(大量造林)되어 있는 일본잎갈나무는 기계(機械)펄프의 수율(收率)과 백색도(白色度)가 낮아 펄프재(材)로 이용(利用)되지 못하고 있다. 일본잎갈나무의 펄프재(材) 자원화(資源化)와 해예동력(解穢動力) 절약(節約)을 위하여 제지용 Asplund 펄프제조(製造)에서 셀롤로오스 안정제(安定劑)로서 $MgSO_4$, $ZnSO_4$, $Al_2(SO_4)_3$, KI을 택하고 고농도(高濃度) 과산화수소표백(過酸化水素漂白)과 과초산표백(過酢酸漂白)에서 그의 효과(效果)를 조사(調査)하고, ��의 알카리전처리(前處理)와 셀룰로오스안정제(安定劑)를 첨가(添加)한 알카리 전처리가 Asplund 펄프의 기존과산화수소표백(旣存過酸化水素漂白)에 미치는 영향(影響)을 조사(調査)한 결과(結果) 다음과 같이 요약(要約)된다. 1. 0.5%의 셀룰로오스안정제(安定劑)는 염기(塩基)의 종류(種類)에 따라 PH가 다르고($MgSO_4$=PH 5.72, $ZnSO_4$=PH 4.95, $Al_2(SO_4)_3$=pH 2.85), PH에 따라 침전 PH 범위($MgSO_4$=PH6~13, $ZnSO_4$=PH5~12, $Al_2(SO_4)_3$=PH3~10)와 최대(最大)침전 PH($MgSO_4$=PH9~10, $ZnSO_4$=PH6~7, $Al_2(SO_4)_3$=PH3~4)가 달랐다. 2. 일본잎갈나무 Asplund펄프의 고온고농도(高溫高濃度) 과산화수소(過酸化水素) 및 과초산표백(過酢酸漂白)에서 유효(有效)한 셀룰로오스안정제(安定劑)로는 KI, $MgSO_4$, $ZnSO_4$였으나 그의 효과(效果)는 미미하였다. 3. ��의 알카리전처리는 무처리보다 기존과산화수소표백(過酸化水素漂白)에 효과적(效果的)이었으며, 펄프의 강도(强度)와 백색도(白色度)를 향상(向上)시켰으나 수율(收率)은 저하(低下)시켰다. 그러나 셀룰로오스안정제(安定劑) 첨가(添加)는 황산염(黃酸塩)으로 인한 PH저하(低下)를 초래하여 탄산(炭酸)소다 전처리수준(水準)이었으며 ��의 알카리전처리에 첨가(添加)한 셀룰로오스안정제중(安定劑中)에서 해섬후(解纖後)의 과산화수소표백(過酸化水素漂白)에 유효한(有效)한 ��은 $ZnSO_4$, $Al_2(SO_4)_3$와 KI였다. 4. 따라서 산화조건에 효과적(效果的)인 안정제(安定劑)는 KI, $MgSO_4$이나 환원조건에서는 착염(錯塩)인 Zn, Al 염(塩)과 KI가 효과적(效果的)인 것으로 생각된다.

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Effects of Different Dietary Acidifier Sources of Calcium and Phosphorus on Ammonia, Methane and Odorant Emission from Growing-finishing Pigs

  • Kim, I.B.;Ferke, P.R.;Powers, W.J.;Stein, H.H.;Van Kempe, T.A.T.G.
    • Asian-Australasian Journal of Animal Sciences
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    • 제17권8호
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    • pp.1131-1138
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    • 2004
  • The objective of this study was to investigate the effects of different sources of Ca and P on urine and ileal digesta pH, and ammonia ($NH_{3}$), methane ($CH_{4}$), and odor emission. In experiment 1, eight pigs (commercial three-way cross; initial BW 67$\pm$3 kg) were arranged in a repeated 4$\times$4 Latin Square design. All pigs were equipped with a T-cannula in the distal ileum. Four corn-soybean meal based diets were formulated. Diet 1 was the control in which dicalcium phosphate (DCP) and limestone ($CaCO_{3}$) were used as the sources of inorganic P and Ca. In Diets 2 and 3, ${H_{3}}{PO_{4}}$, monocalcium phosphate (MCP), and $CaSO_{4}$replaced DCP and $CaCO_{3}$ as the inorganic sources of P and Ca. Diet 4 was similar to Diet 1 except that it was fortified with HCl to provide an acid load similar to that of diet 2. Urine and ileal digesta pH were determined in pigs fed each of these diets. In Exp. 1, urine pH decreased (p<0.05) in animals consuming diets containing ${H_{3}}{PO_{4}}$-$CaSO_{4}$ (5.85$\pm$0.38) and MCP-$CaSO_{4}$(5.73$\pm$0.30) compared with the DCP-$CaCO_{3}$ diet (6.89$\pm$0.24). In the pigs consuming ${H_{3}}{PO_{4}}$-$CaSO_{4}$, ileal digesta pH decreased compared with the control (5.52$\pm$0.28 vs. 6.66$\pm$0.17; p<0.05). Based on the results of Exp. 1, a total of four trials were performed in environmental chambers for determining how $NH_{3}$, $NH_{4}$, and odor were affected by the different dietary Ca and P sources (Exp. 2). In Exp. 2, pigs fed the ${H_{3}}{PO_{4}}$-$CaSO_{4}$ diet had decreased (30%) $NH_{3}$ emissions compared with the control (p<0.05). Also, a combination of MCP-$CaCO_{3}$-$CaCl_{12}$ decreased $NH_{3}$ emission by 15% (p<0.05). Emission of $CH_{4}$ was decreased only with the ${H_{3}}{PO_{4}}$-$CaSO_{4}$ diet with 14% (p<0.05). Odorant emission of phenolics and volatile fatty acids increased roughly three-fold with the DCP-$CaSO_{4}$ diet but was not affected by other test diets. In conclusion, acidogenic Ca and P sources in swine diets can decrease the urinary pH and reduce $NH_{3}$ and $CH_{4}$ emission from swine facilities.

갈수기 정수장운영관리 사례 - 갈수기 pH저감제(황산)투입에 의한 정수처리효율 향상 (Improvement of Water Treatment Efficiency by pH Decreasing Agent (H2SO4) for Droughty Seasons)

  • 가길현;김윤용;이준호;안치화;한인섭;민병대
    • 한국물환경학회지
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    • 제24권4호
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    • pp.415-422
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    • 2008
  • Drinking water treatment is enhanced by coagulant dosages and chlorine injection because of pH increase in raw water in droughty seasons such as spring and fall. But water quality deterioration is occurred by increase in residual aluminium and disinfection by-products. Coagulation process can be used to control natural organic matter (NOM) during water treatment. The effect of coagulation process appeared to depend on the pH of water rather than coagulant dosages. In this study, for water treatment in high pH season $H_2SO_4$ was applied for pH adjustment at full scale. Before and after pH adjustment by $H_2SO_4$ injection, water quality of drinking water was evaluate. In the result of investigation of total organic carbon (TOC) removal in high pH season, TOC was removed approximately 30~40%, which showed decrease in water treatment efficiency. Also, it is increased both particle numbers and residual Al concentration in the water. After $H_2SO_4$ injection for adjustment to pH<7.5 in settled water, treated water turbidity decreased in 0.047 NTU from 0.059 NTU, and particle numbers of filtered water decreased in 20/mL from 90/mL. On the other side, TOC removal efficiency increased in approximately 10% after adjustment of pH. In the result of decrease in pH in raw water through more coagulants and prechlorine without $H_2SO_4$ injection, trihalomethanes (THMs) concentration increased in $16{\mu}g/L$ from $8{\mu}g/L$.

Maskless Screen Printing Process using Solder Bump Maker (SBM) for Low-cost, Fine-pitch Solder-on-Pad (SoP) Technology

  • Choi, Kwang-Seong;Lee, Haksun;Bae, Hyun-Cheol;Eom, Yong-Sung
    • 마이크로전자및패키징학회지
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    • 제20권4호
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    • pp.65-68
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    • 2013
  • A novel bumping process using solder bump maker (SBM) is developed for fine-pitch flip chip bonding. It features maskless screen printing process. A selective solder bumping mechanism without the mask is based on the material design of SBM. Maskless screen printing process can implement easily a fine-pitch, low-cost, and lead-free solder-on-pad (SoP) technology. Its another advantage is ternary or quaternary lead-free SoP can be formed easily. The process includes two main steps: one is the thermally activated aggregation of solder powder on the metal pads on a substrate and the other is the reflow of the deposited powder on the pads. Only a small quantity of solder powder adjacent to the pads can join the first step, so a quite uniform SoP array on the substrate can be easily obtained regardless of the pad configurations. Through this process, an SoP array on an organic substrate with a pitch of 130 ${\mu}m$ is, successfully, formed.

대전지역 산성강우의 화학적 특성에 관한 연구 (A Study on the Chemical Characteristics of Acid Rain in Taejon City)

  • 구자공;박경렬
    • 한국대기환경학회지
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    • 제9권2호
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    • pp.147-153
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    • 1993
  • From March 1990 to August 1991, every each 5mm bulk precipitation samples were collected at one residental area in Taejon City to investigate chemical characteristics of acid rain. Major ion concentrations of rain samples $(pH, SO_4^{2-}, NO_3^-, CL^-, NH_4^+, Na^+, K^+, Ca^{2+}, Mg^{2+})$ were analysed and compared with the concentration of air pollutants (T. S. P, $SO_2, NO_x$) that were measured by Ministry of Environment. The results of statistical analysis are as followings. Rain pH was relatively high on October and January and relatively low on August, November and February. Major anion is sulfate, and it's concentration is 2.36 times higher than nitrate's, and major cations are ammonium, sodium and calcium ion. Monthly variation of sulfate and calcium concentrations are higher than the others. Ion concentration and rain pH were correlated negatively with rainfall amount. Major ions in rain samples were $SO_4^{2-}, NO_3^-, NH_4^+, Ca^{2+}$ and regression equations are proposed by multiple regression of measured data. Also, regression equation between air pollutants(T. S. P, $SO_2$) and $SO_4^{2-}, Na^+, K^+, Ca^{2+}, Mg^{2+} ions in rain samples were made. From this wer can predict rain pH.

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Effects of a Chelated Copper as Growth Promoter on Performance and Carcass Traits in Pigs

  • Zhao, J.;Allee, G.;Gerlemann, G.;Ma, L.;Gracia, M.I.;Parker, D.;Vazquez-Anon, M.;Harrel, R.J.
    • Asian-Australasian Journal of Animal Sciences
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    • 제27권7호
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    • pp.965-973
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    • 2014
  • Three studies were conducted to investigate whether a chelated Cu can replace $CuSO_4$ as a growth promoter in pigs. In Exp. 1, a total of 240 piglets (Large White${\times}$Landrace, $7.36{\pm}0.10kg$) were randomly allocated to 1 of 3 treatments with 8 replicates and 10 piglets per pen. Treatments included a NRC control ($CuSO_4$, 6 mg/kg), two Cu supplementations from either $CuSO_4$ or $Cu(HMTBa)_2$ at 170 mg/kg. Pigs fed $Cu(HMTBa)_2$ were 6.0% heavier than pigs fed either the NRC control or 170 mg/kg $CuSO_4$ (p = 0.03) at the end of the experiment. During the 42 days of experimental period, pigs fed $Cu(HMTBa)_2$ gained 9.0% more (p = 0.01), tended to eat more feed (p = 0.09), and had better feed efficiency (p = 0.06) than those fed $CuSO_4$. Compared with the 6 mg/kg $CuSO_4$ NRC control, liver Cu was increased 2.7 times with 170 mg/kg $CuSO_4$ supplementation, and was further increased with $Cu(HMTBa)_2$ (4.5 times, p<0.05). In Exp. 2, a total of 616 crossbred piglets (PIC, $5.01{\pm}0.25kg$) were randomly allocated to 1 of 4 treatments with 7 replicates and 22 piglets per pen. Treatments included a NRC control (from $CuSO_4$), and three pharmaceutical levels of Cu (150 mg/kg) supplemented either from C$CuSO_4$, tri-basic copper chloride ($Cu_2[OH]_3C1$), or $Cu(HMTBa)_2$. Pigs fed $CuSO_4$ or $Cu(HMTBa)_2$ had better feed efficiency (p = 0.01) and tended to gain more (p = 0.08) compared with those fed the NRC control. Pigs fed $Cu_2[OH]_2C1$ were intermediate. Pigs fed $Cu(HMTBa)_2$ had the highest liver Cu, which was significantly higher than those fed ($Cu_2[OH]_3C1$) or the negative control (p = 0.01). In Exp. 3, a total of 1,048 pigs (PIC, $32.36{\pm}0.29kg$) were allotted to 6 treatments with 8 replicates per treatment and 20 to 22 pigs per pen. The treatments included a NRC control with 4 mg/kg Cu from $CuSO_4$, a positive control with 160 mg/kg Cu from $CuSO_4$, and incremental levels of $Cu(HMTBa)_2$ at 20, 40, 80, and 160 mg/kg. During the overall experimental period of 100 days, no benefit from 160 mg/kg $CuSO_4$ was observed. Pigs fed $Cu(HMTBa)_2$ had increased ADG (linear and quadratic, $p{\leq}0.05$) and feed efficiency (linear and quadratic, $p{\leq}0.05$) up to 80 mg/kg and no further improvement was observed at 160 mg/kg for the whole experimental period. Pigs fed 80 mg/kg $Cu(HMTBa)_2$ weighed 1.8 kg more (p = 0.07) and were 2.3 kg heavier in carcass (p<0.01) compared with pigs fed 160 mg/kg $CuSO_4$. In addition, loin depth was increased with increased $Cu(HMTBa)_2$ supplementation with pigs fed 80 mg/kg $Cu(HMTBa)_2$ had the greatest loin depth (p<0.05). In summary, $Cu(HMTBa)_2$ can be used to replace high $CuSO_4$ as a growth promoter in nursery and grower-finisher pigs.