• 제목/요약/키워드: natural adsorbents

검색결과 47건 처리시간 0.018초

Arsenic Removal from Water Using Various Adsorbents: Magnetic Ion Exchange Resins, Hydrous Ion Oxide Particles, Granular Ferric Hydroxide, Activated Alumina, Sulfur Modified Iron, and Iron Oxide-Coated Microsand

  • Sinha, Shahnawaz;Amy, Gary;Yoon, Yeo-Min;Her, Nam-Guk
    • Environmental Engineering Research
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    • 제16권3호
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    • pp.165-173
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    • 2011
  • The equilibrium and kinetic adsorption of arsenic on six different adsorbents were investigated with one synthetic and four natural types (two surface and two ground) of water. The adsorbents tested included magnetic ion exchange resins (MIEX), hydrous ion oxide particles (HIOPs), granular ferric hydroxide (GFH), activated alumina (AA), sulfur modified iron (SMI), and iron oxide-coated microsand (IOC-M), which have different physicochemical properties (shape, charge, surface area, size, and metal content). The results showed that adsorption equilibriums were achieved within a contact period of 20 min. The optimal doses of adsorbents determined for a given equilibrium concentration of $C_{eq}=10\;{\mu}g/L$ were 500 mg/L for AA and GFH, 520-1,300 mg/L for MIEX, 1,200 mg/L for HIOPs, 2,500 mg/L for SMI, and 7,500 mg/L for IOC-M at a contact time of 60 min. At these optimal doses, the rate constants of the adsorbents were 3.9, 2.6, 2.5, 1.9, 1.8, and 1.6 1/hr for HIOPs, AA, GFH, MIEX, SMI, and IOC-M, respectively. The presence of silicate significantly reduced the arsenic removal efficiency of HIOPs, AA, and GFH, presumably due to the decrease in chemical binding affinity of arsenic in the presence of silicate. Additional experiments with natural types of water showed that, with the exception of IOC-M, the adsorbents had lower adsorption capacities in ground water than with surface and deionized water, in which the adsorption capacities decreased by approximately 60-95%.

천연광물의 양극성 표면개질을 이용한 상수원수 중 중금속제거 특성 (Heavy Metal Removal from Drinking Water using Bipolar Surface Modified Natural Mineral Adsorbents)

  • 김남열;김영희
    • 한국환경보건학회지
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    • 제45권6호
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    • pp.561-568
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    • 2019
  • Objectives: The most commonly detected heavy metals in rocks and soils, including Pb, Cd, Cu, Fe, Mn and As, are representative pollutants discharged from abandoned mines and have been listed as potential sources of contamination in drinking water. This study focused on increasing the removal efficiency of heavy metals from drinking water resources by surface modification of natural adsorbents to reduce potential health risks. Methods: Iron oxide coating and graft polymerization with zeolites and talc was conducted for bipolar surface modification to increase the combining capacity of heavy metals for their removal from water. The removal efficiency of heavy metals was measured before and after the surface modification. Results: The removal efficiency of Pb, Cu, and Cd by surface modified zeolite showed 100, 92, and 61.5%, respectively, increases compared to 64, 64, and 38% for non-modified zeolite. This implies that bipolar surface modified natural adsorbents have a good potential use in heavy metal removal. The more interesting finding is the removal increase for As, which has both cation and anion characteristics showing 27% removal efficiency where as non-modified zeolite showed only 2% removal. Conclusions: Zeolite is one of the most widely used adsorptive materials in water treatment processes and bipolar surface modification of zeolite increases its applicability in the removal of heavy metals, especially As.

Effect of Several Adsorbents on The Gastrointestinal Absorption of Paraquat

  • Machijima, Hiraku;Nakamura, Hiroyuki;Hatanaka, Tomomi;Sugibayashi, Kenji;Morimoto, Yasunori
    • Archives of Pharmacal Research
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    • 제17권5호
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    • pp.287-293
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    • 1994
  • The effect of several adsorbents on paraquat poisohing was investigated (1) by measuring the saturatd amount of the poison adhered on the adsorbents in vitro and (2) by assaying the blood level of paraquat in the rat in in situ intestinal absorption experiments. Activated charcoal powder, natural aluminum silifonate) were used as adorbents. The steady-state blood level of paraquat in its absorption experiment with the cationic exchange resins was markedly lower than those without the resins or with other adsorbents. A good relationship was achieved between the calculated AUC or adsorptioin rate (in situ) and the saturated adsorption amount (in vitro). The rank order of the effect was sodium polystyene sulfonate > calcium polystyene sulfonate>natural aluminum silicate>activated charcoal powder. The effect of sodium polystyrene sulfonate after intestinal washing with physiological saline ws also measured, and a synergistic effect (marked decrease in blood paraquat level0 was found as compared with the intestinal washing alone. The simultaneous use of G.I. weshing and powerful adsorbent was scientifically proven to be most benefical.

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A critical review of fluoride removal from water by using different types of adsorbents

  • Prashant S. Lingayat;Rampravesh K. Rai
    • Advances in environmental research
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    • 제12권2호
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    • pp.77-93
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    • 2023
  • The water can be contaminated by natural sources or by industrial effluents. One such contaminant is fluoride. Fluoride contamination in the water environment due to natural and artificial activities has been recognized as one of the major problems worldwide. Among the commonly used treatment technologies applied for fluoride removal, the adsorption technique has been explored widely and offers a highly efficient simple and low-cost process for fluoride removal from water. This review paper the recent developments in fluoride removal from surface water by adsorption methods. Studies on fluoride removal from aqueous solutions using various carbon materials are reviewed. Various adsorbents with high fluoride removal capacity have been developed, however, there is still an urgent need to transfer the removal process to an industrial scale. Regeneration studies need to be performed to more extent to recover the adsorbent in field conditions, enhancing the economic feasibility of the process. Based on the review, technical strategies of the adsorption method including the Nano-surface effect, structural memory effect, anti-competitive adsorption and ionic sieve effect can be proposed. The design of adsorbents through these strategies can greatly improve the removal efficiency of fluoride in water and guide the development of new efficient methods for fluoride removal in the future. This paper describes brief discussions on various low-cost adsorbents used for the effective removal of fluoride from water.

자성체 물질을 이용한 수중의 세슘제거 동향 (Cesium removal in water using magnetic materials ; A review)

  • 여우석;조병래;김종규
    • 한국산업융합학회 논문집
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    • 제21권6호
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    • pp.395-408
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    • 2018
  • Even after the Fukushima nuclear accident in 2011, the rate of production of electric energy using nuclear energy is increasing, but there is a great danger such as the radioactive waste produced when using nuclear power, the catastrophic accident of nuclear power plant, and connection with nuclear weapons. In particular, Cs present in the ionic form of alkaline elements has a long half-life (30.17 years) because it is readily absorbed by the organism and emits intense gamma rays, thus presenting a serious radiation hazard. Therefore, it must be completely removed before it can be released into the natural ecosystem, because it can adversely affect not only humans but also natural ecosystems. Many adsorbents and ion exchangers which have high Cs removal efficiency have been used in recent years to completely separate and remove by self separation in water. Many adsorbents and ion exchangers which have high Cs removal efficiency have been used in recent years to completely separate and remove by self separation in water. In addition, researches have been doing to synthesize magnetic materials with adsorbents such as HCF and PB, and it shows a great effect in the removal rate of Cs present in wastewater or the maximum Cs adsorption amount. In particular, when a magnetic material was applied, excellent results were obtained in which only Cs was selectively removed from other cations. However, new problems such as applicability in the sea where Cs is directly released, applicability in various pH ranges, and failure to preserve the magnetizing force possessed by the magnetic body have been found. However, researches using ferromagnetic field with stronger magnetic properties than those of magnetic bodies is considered to be insufficient. Therefore, it is considered that if the researches combining the ferromagnetic field with the magnetization ability and functional adsorbents more actively, the radioactive material Cs which adversely affects the natural ecosystem can be effectively removed.

Simultaneous dry-sorption of heavy metals by porous adsorbents during sludge composting

  • Ozdemir, Saim;Turp, Sinan Mehmet;Oz, Nurtac
    • Environmental Engineering Research
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    • 제25권2호
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    • pp.258-265
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    • 2020
  • Heavy metal removal by using porous mineral adsorbents bears a great potential to decontaminate sludge compost, and natural zeolite (NZ), artificial zeolite (AZ), and expanded perlite (EP) seem to be possible candidates for this purpose. A composting experiment was conducted to compare the efficiency of those adsorbents for removal of iron (Fe), manganese (Mn), chromium (Cr), copper (Cu), zinc (Zn), nickel (Ni), and lead (Pb) from sewage sludge compost with no adsorbent amendment. For this purpose, 10 g of NZ and AZ and 5 g of EP was filled in a small bag made from non-biodegradable synthetic textile and was separately mixed in composting piles. The bags were separated from compost samples at the end of the experiment. AZ and NZ exhibited different reduction potentials depending on the type of heavy metal. AZ significantly reduced Cr (43.7%), Mn (35.8%), and Fe (29.9%), while NZ more efficiently reduced Cu (24.5%), Ni (22.2%), Zn (22.1%), and Pb (21.2%). The removal efficiency of EP was smaller than both AZ and NZ. The results of this simultaneous composting and metal removing study suggest that AZ and NZ can efficiently bind metal during composting process.

개질 수소 정제용 PSA 공정을 위한 CO 흡착제의 성능 평가 (The Evaluation of CO Adsorbents Used in PSA Process for the Purification of Reformed Hydrogen)

  • 박진남
    • 한국수소및신에너지학회논문집
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    • 제27권6호
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    • pp.628-635
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    • 2016
  • Natural gas reformed hydrogen is used as a fuel of fuel cell vehicle, PSA process is used for the purification of reformed hydrogen. In this study, the performance of CO adsorbent in PSA process was evaluated. Zeolite adsorbents used in the commercial PSA process is used. The physical and chemical properties of adsorbents were characterized using BET apparatus, XRD, and FE-SEM. The breakthrough apparatus modified from GC was used for the CO breakthrough experiment, the quantitative analysis of CO adsorption capacity was performed using CO breakthrough curve. Zeolite 10X and 13X showed superior CO adsorption capacity than activated alumina. The CO adsorption capacity of zeolite 10X is more than twice of zeolite 13X even the BET surface area is low. It seems that the presence of $Ca^{2+}$ cation in zeolite 10X is beneficial to the adsorption of CO.

나노세공체 흡착제에 의한 천연가스의 흡착 및 저장 (Adsorption and Storage of Natural Gas by Nanoporous Adsorbents)

  • 정성화;장종산
    • 공업화학
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    • 제20권2호
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    • pp.117-125
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    • 2009
  • 차세대 청정 연료로 각광받고 있는 천연가스를 자동차 등의 이동원의 동력원으로 사용하기 위해 높은 에너지 밀도로 저장하는 것은 매우 중요하다. 특히 상온 및 과히 높지 않은 압력(35~40 기압)에서 흡착을 이용하여 천연가스를 저장(ANG)하는 것은 압축에 의한 CNG 및 냉각에 의한 LNG에 비해 경제적이고 안전하며 사용이 용이한 특성이 있다. 그러나 상업적으로 통용되기 위해 필요한 저장 용량을 얻을 수 있는 경제적인 흡착제가 현재 알려져 있지 않아 다양한 연구가 계속되고 있다. 최근에 많은 연구가 되고 있는 MOF (metal-organic frameworks)를 포함한 나노 세공체도 하나의 답이 될 수 있다. 본 총설에서는 ANG 밀도를 높이기 위해 필요한 흡착제의 물성과 상업적으로 적용하기 위해 요구되는 흡착제 물성에 대해 요약하였다. 높은 에너지 밀도를 위해서는 넓은 표면적, 큰 미세 세공 부피, 적당한 세공 크기 및 높은 밀도 등이 필요하고 낮은 흡탈착 에너지 및 빠른 흡탈착 속도가 요구된다. 또한 탈착시 상압에서 잔존하는 천연가스의 양이 적어 실제 활용할 수 있는 천연가스의 양(delivery)이 높아야 한다. 현재 매우 활발히 연구되고 있는 나노 세공체를 천연가스 저장물질로 적용하고자 하는 연구도 다양하게 이루어지고 있으며 이러한 물성을 만족하는 나노세공체가 개발되기를 기대한다.

Wastewater treatment using a hybrid process coupling adsorption on marl and microfiltration

  • Maimoun, Bakhta;Djafer, Abderrahmane;Djafer, Lahcene;Marin-Ayral, Rose-Marie;Ayral, Andre
    • Membrane and Water Treatment
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    • 제11권4호
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    • pp.275-282
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    • 2020
  • Hranfa's marl, a local natural mineral, is selected for the decontamination by adsorption of aqueous effluents in textile industry. Its physicochemical characterization is first performed. It is composed mainly of Calcite, Quartz, Ankerite and Muscovite. Its specific surface area is 40 ㎡ g-1. Its adsorption performance is then tested in batch conditions using an industrial organic dye, Bemacid Red E-TL, as a model pollutant. The measured adsorption capacity of Hranfa's marl is 16 mg g-1 which is comparable to that of other types of natural adsorbents. A hybrid process is tested coupling adsorption of the dye on marl in suspension and microfiltration. An adsorption reactor is inserted into the circulation loop of a microfiltration pilot using ceramic membranes. This makes possible a continuous extraction of the treated water provided that a periodic replacement of the saturated adsorbent is done. The breakthrough curve obtained by analyzing the dye concentration in the permeate is close to the ideal one considering that no dye will cross the membrane as long as the adsorbent load is not saturated. These first experimental data provide proof of concept for such a hybrid process.