• Title/Summary/Keyword: Electrolyte pH

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Effect of Electrolysis Condition on Mechanical Property of Ni Electrodeposits (니켈 도금층의 기계적 성질에 미치는 전해조건의 영향)

  • Kang, Soo Young;Lee, Jeong Ja;Yang, Seung Gi;Hwang, Woon Suk
    • Journal of Surface Science and Engineering
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    • v.48 no.2
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    • pp.62-67
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    • 2015
  • Nickel is a commercially important and versatile element in electroplating. The applications of nickel electroplating fall into three main categories: decorative, functional and electroforming. In decorative applications, electroplated nickel is most often applied in combination with electrodeposited chromium. Nickel is deposited on surfaces to improve corrosion and wear resistance or modify magnetic and other properties. Electroforming is electroplating applied to the fabrication of products of various kinds. Nickel is deposited onto a substrate and then removed from it to create a part made entirely of nickel. In this study, mechanical property of Ni electrodeposits in various manufacturing condition such as temperature, current density, pH and electrolyte content, was investigated to understand effect of electrolysis condition on mechanical property. Vickers hardness increased as the temperature and pH increased and current density and electrolyte content decreased and pH increased. The results were explained by cathode overvoltage and hydrogen evolution.

Electrochemical Decolorization of a Rhodamine B using Dimensionally Stable Anode (불용성 전극을 이용한 Rhodamine B의 전기화학적 탈색)

  • Kim, Dong Seog;Park, Young Seek
    • Journal of Korean Society on Water Environment
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    • v.23 no.3
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    • pp.377-384
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    • 2007
  • This study has carried out a performance of dimensionally stable anode for the purpose of decolorization of Rhodamine B (RhB) in water. Seven kinds of 1, 2 and 3 component electrodes were prepared by plating and thermal deposition, which were coated by the oxides of Pt, Ru, Ir, Sn-Sb, Ir-Sn-Sb, Ru-Sn-Sb and Ru-Sn-Ti on Ti metal surface, respectively. Performance for RhB decolorization of the seven electrodes lay in: Ru-Sn-Ti/Ti ${\fallingdotseq}$ Ru-Sn-Sb/Ti > Ir-Sn-Sb/Ti > Sn-Sb/Ti > Ru/Ti > Ir/Ti > Pt/Ti. The effects of electrode area and distance, electrolyte type and concentration, current density and pH were investigated on the decolorization of RhB using Ru-Sn-Ti/Ti electrode. Decolorization of RhB was not influenced by electrode area and distance largely, however wattage was influenced by them. NaCl was superior to the decolorization of RhB than $Na_2SO_4$. Optimum NaCl dosage and current density were 0.5 g/L and $0.183A/cm^2$, respectively. The pH effect of decolorization of RhB was not significant within the range of 3-7.

Transport of PVP-coated Silver Nanoparticles in Saturated Porous Media (포화된 다공성매체에서 PVP-코팅된 은나노입자의 이동성 연구)

  • Bae, Sujin;Jang, Min-Hee;Lee, Woo Chun;Park, Jae-Woo;Hwang, Yu Sik
    • Journal of Soil and Groundwater Environment
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    • v.21 no.1
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    • pp.104-110
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    • 2016
  • The transport of silver nanoparticles (AgNPs) was investigated through a column packed with sand. A series of column experiments were carried out to evaluate the effect of ionic strength (IS), pH, electrolyte type and clay mineral on mobility of polyvinylpyrrolidone-coated silver nanoparticles (PVP-AgNPs). The deposition of PVP-AgNPs was increased with increasing solution ionic strength and decreasing pH. Furthermore, the depositon of PVP-AgNPs was affected by the electrolyte type (NaCl vs. NaNO3) and was shown to be greater at NaNO3 solution. Also, the transport of PVP-AgNPs was greatly increased after the pre-deposition of clay particles on sand. Our results suggest that various environmental factors can influence the mobility of PVP-AgNPs in soil-groundwater systems and should be carefully considered in assessing their environmental risks.

Assessment of bovine blood sample stability for complete blood count and blood gases and electrolytes analysis during storage

  • Espiritu, Hector M.;Faruk, Shohel Al;Lee, Gyeong-jae;Lopez, Bryan Irvine M.;Lee, Sang-suk;Cho, Yong-il
    • Korean Journal of Veterinary Service
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    • v.42 no.4
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    • pp.265-274
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    • 2019
  • Delayed arrival of blood samples from the field and a large number of samples delivered often causes delay in sample analysis leading to inaccurate measurements. Therefore, this study aimed to assess whether prolonged storage in refrigerator could influence the stability of cattle blood samples and to establish an optimal time limit for complete blood count (CBC) parameters and blood gas and electrolyte (BGE) parameters analyses. Samples collected from healthy cows were tested immediately for CBC and BGE using automated hematology, blood gas and electrolyte analyzers. Samples were kept in refrigerator at 4℃ and analyzed after 6 h, 12 h, 24 h, 48 h, 72 h, 120 h, and 192 h of storage. Mean differences between observations were assessed at 5% significance level using ANOVA and Duncan's multiple range test. Total CBC parameters and the platelet profile remained stable for 192 h, except for MCHC. Among leukocyte-related counts, NEU and EOS remained stable for 192 hours. WBC and LYM, and MONO values produced inconsistent measurements which recovered its initial measurement after 12 h and 24 h of storage, respectively, then remained stable until 120 h. Among the blood gas indices, PCO2, PO2, tCO2, and BE showed declining and significant changes over time, but pH, tHb, and SO2 remained stable for 192 h. Electrolyte status in the blood showed that ions are unstable and tend to change in as early as 6 h of storage. This study established that cattle blood specimens for CBC analysis can be stored for 120 h at 4℃, but specimens for BGE analyses must be tested within 6 to 24 h.

Effect of Acidic Electrolyte Water on Growth and Infection of Phytophthora capsici (고추 역병균(Phytophthora capsici)의 발육과 감염에 미치는 산성전해수의 영향)

  • 이중환;권태룡;문재덕;이준탁
    • Korean Journal Plant Pathology
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    • v.14 no.5
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    • pp.440-444
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    • 1998
  • This experiment was carried out to elucidate the effect of electrolytic water on the growth and infection of Phytophthora capsici. Zoospores of P. capsici did not grow on potato dextrose agar when the pathogen was cultured after suspended in electrolytifc water (pH 2.5, 3.0, 3,5) with HCI solution. When the 100 ml of electrolytic water (pH 2.5, 3.0, 3.5) was irrigated on the red pepper plants that had been inoculated by P. capsici (103 zoospores/ml), the red pepper plants were not infected but irrigated with sterilized water (pH 6.5) the red pepper plants were infected. With this result, it could be concluded that the good sterilization effect on P. capsici might be obtained by applying electrolytic water.

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Fabrication of Disposable pH Sensor with Micro-volume Type (Micro-volume형 일회용 pH 센서 제작)

  • Jung, Ho;Kim, Heung-Rak;Kim, Young-Duk;Jung, Woo-Chul;Kim, Dong-Su;Nam, Hyo-Duk
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2003.07b
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    • pp.950-952
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    • 2003
  • This paper have been studied fabrication and characteristics of disposable pH sensor using MEMS technology. The sensor has two open-well structure, the container for the internal electrolyte and electrode were formed by anisotropically etching a silicon substrate. unlike currently used KCI saturated solution, the structure was introduced hydrogel which take an advantage of miniaturization, bulk product, a low price. PU and CA/TP used to measurement ion detection, one is reference membrane and the other is pH. fabricated sensor is encapsulated entirely with epoxy, finally sensor was estimated various ion sorts and pH ranges.

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Effect of Current Density and pH of Electrolyte on Anion-Exchange Membrane Fouling (전류밀도와 전해질의 pH가 음이온교환막의 막 오염에 미치는 영향)

  • Choi, Jae-Hwan
    • Journal of Korean Society of Environmental Engineers
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    • v.27 no.9
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    • pp.965-969
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    • 2005
  • Current density is an important operating parameter in the ion-exchange membrane process. We observed the effects of fouling of a Neosepta AMX anion-exchange membrane(Tokuyama Soda, Japan) in 0.02 M NaCl solution containing 100 mg/L sodium humate. Membrane fouling was analyzed by measuring the change in the electrical resistance in the under- and over-limiting current density regions. The experimental results found that membrane fouling was negligible at under-limiting current densities, but was increased significantly when an over-limiting current was supplied. After the fouling experiments, the current-voltage curves for the fouled membranes were measured. From the curves, we observed increased electric resistance and reduced limiting current density(LCD), caused by the accumulation of humic acid on the membrane surface. Furthermore, membrane fouling increased as the acidity of the electrolyte solution containing humic acid increased. This occurred because the fouling of an anion-exchange membrane is affected more by the physicochemical properties of the humic substance than by the surface charge of the humate.

Effect of Sulfate Source on Removal Efficiency in Electrokinetic Bioremediation of Phenanthrene-Contaminated Soil (Pnenanthrene-오염토양의 동전기 생물학적복원에서 제거효율에 대한 황산염원의 영향)

  • Kim, Sang-Joon;Park, Ji-Yeon;Lee, You-Jin;Yang, Ji-Won
    • KSBB Journal
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    • v.21 no.6 s.101
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    • pp.428-432
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    • 2006
  • This study investigated the effect of sulfate source on removal efficiency in electrokinetic bioremediation which needs sulfate to degrade contaminants by an applied microorganism. The representative contaminant and the applied microorganism were phenanthrene and Sphingomonas sp. 3Y, respectively. When magnesium sulfate was used, the magnesium ion combined with hydroxyl ion electrically-generated at cathode to cause the decrease of electrolyte pH, and then the microbial activity was inhibited by that. When ammonium sulfate and disodium sulfate were used to solve the pH control problem, the pH values of electrolyte and soil solution were maintained neutrally, and also the high microbial activity was observed. With the former sulfate source, however, ammonium retarded the phenanthrene degradation, and so the removal efficiency decreased to 12.0% rather than 21.8% with magnesium sulfate. On the other hand, the latter improved the removal efficiency to 27.2%. This difference of removal efficiency would be outstanding for an elongated treatment period.

$Al_2O_3/SiO_2$, $HfO_2/SiO_2$ 적층 감지막의 두께 최적화를 통한 Electrolyte Insulator Semiconductor 소자의 pH 감지감도특성 비교

  • Gu, Ja-Gyeong;Jang, Hyeon-Jun;Jo, Won-Ju
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.02a
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    • pp.448-448
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    • 2012
  • 최근에 pH 감지막의 감지감도특성을 평가하기 위해 electrolyte insulator semiconductor (EIS) 구조가 유용하게 이용되고 있다. EIS는 간단한 구조와 pH 용액에 빠른 응답속도, 낮은 단가 및 집적이 용이하다는 장점이 있다. EIS 구조에서 화학적 용액에 대한 감지감도 평가 중 가장 중요하게 작용하는 부분이 감지막이다. 이 감지막은 감지 대상 물질과 물리적으로 직접 접촉되는 부분으로서 일반적으로 기계적/화학적 강도가 우수한 실리콘 산화막($SiO_2$)이 많이 사용되어져 왔다. 최근에는 기존의 $SiO_2$ 보다 성능이 향상된 감지막을 개발하기 위하여 $Al_2O_3$, $HfO_2$, $ZrO_2$, 그리고 $Ta_2O_5$와 같은 고유전 상수(high-k)를 가지는 물질들을 EIS 센서의 감지막으로 이용하는 연구가 활발하게 진행되고 있다. High-k 물질 중 $Al_2O_3$는 산성에서 알칼리성 영역까지의 넓은 화학안정성을 가지며 화학용액에 대해 내구성이 우수한 특성을 가진다. $HfO_2$은 내식성이 뛰어나며 출력특성이 높은 장점을 가진 물질이다. 본 실험에서는 특성이 다른 두 물질을 EIS의 감지막으로 각각 사용하여 두께에 따른 의존성을 평가하였다. 제작한 EIS 구조의 pH 센서를 바이오 센서에 적용하였을 때 신호대 잡음비(SNR: signal to noise)가 여전히 취약하다는 문제점이 있었다. 이런 문제점을 보완하기 위하여 감지막의 물리적 두께는 점점 얇아지게 되었고 그 결과 높은 출력 특성을 얻게 되었지만, 감지막이 얇아짐에 따라서 화학 용액 중의 이온 침투로 인한 감지막 자체의 손상 또한 심각한 문제로 대두되었다. 이로 인해 최적화 된 감지막의 두께를 얻을 필요가 있다. 결론적으로 $Al_2O_3$, $HfO_2$ 두 감지막 모두 두께가 23 nm일 때 가장 우수한 특성을 보였으며, $Al_2O_3$를 감지막으로 사용하였을 경우 화학적 용액에 대해 내구성이 뛰어났고, $HfO_2$을 사용하였을 때에는 화학적 용액에 대한 안정성 보다는 pH 용액변화에 따른 향상된 감지감도특성을 보였다.

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