• 제목/요약/키워드: Reuse of adsorbent

검색결과 17건 처리시간 0.022초

산업도금폐수 처리에 사용된 탄소폼 흡착소재의 중금속 탈착 및 회수에 관한 연구 (Study on Heavy Metal Desorption and Recovery of the Carbon Foam used in Industrial Plating Wastewater Treatment as Adsorbent)

  • 이다영;이창구;김대운;박상현;권지향;이상협
    • 대한환경공학회지
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    • 제38권11호
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    • pp.627-634
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    • 2016
  • 본 연구에서는 탄소폼 흡착소재를 이용하여 산업도금폐수로부터 중금속을 흡착 제거한 후 탈착용액을 이용하여 제거된 중금속을 용출하고 회수하는 과정의 특성을 평가해 보고자 하였다. 용액의 조성에 따른 복합 중금속의 탈착 특성을 살펴본 결과 증류수 조건에서는 용출이 관측되지 않았으며, 탈착용액으로 HCl과 $H_2SO_4 $를 이용한 경우 높은 중금속 농도를 나타내었다. 탈착 용액을 이용함과 더불어 물리적 기술인 초음파 처리를 이용한 경우 중금속의 용출이 증진되는 것을 확인하였으며, 초음파 장치의 출력이 높고 반응 시간이 길수록 효율도 증가하는 것으로 나타났다. 탄소폼 흡착소재를 구리도금 세척수 처리에 적용시켜본 결과 200 반응기부피(Bed volume) 동안 안정적인 제거 성능을 나타내었으며, 흡착된 구리는 탈착용액을 이용하여 용출시킨 후 직류 전원 장치를 이용하여 회수할 수 있었다. 또한 구리가 회수된 탈착용액은 재이용 효율은 84.2%로 나타났다.

Polyamidoxime functionalized with phosphate groups by plasma technique for effective U(VI) adsorption

  • Shao, Dadong;Wang, Xiaolin;Ren, Xuemei;Hu, Sheng;Wen, Jun;Tan, Zhaoyi;Xiong, Jie;Asiri, Abdullah M.;Marwani, Hadi M.
    • Journal of Industrial and Engineering Chemistry
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    • 제67권
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    • pp.380-387
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    • 2018
  • Finding poly(amidoxime) (PAO) based adsorbent with better performance in U(VI) extraction from seawater is a hot research topic. By employing plasma treatment, the bi-functionalized adsorbents containing amidoxime and phosphate (labelled as $PO_4/PAO$) were successfully synthesized. The obtained $PO_4/PAO$ was characterized and applied for the potential extraction of U(VI) from aqueous solution. The results show that $-PO_4$ enhanced the hydrophilicity of PAO. $PO_4/PAO$ possesses good selective sorption ability for U(VI) and excellent reusability. The findings is helpful to understand optimizing performance of PAO based adsorbents for uranium extraction from seawater.

ZnO/SiO2 Prepared by Atomic Layer Deposition as Adsorbents of Organic Dye in Aqueous Solution and Its Photocatalytic Regeneration

  • Jeong, Bora;Jeong, Myung-Geun;Park, Eun Ji;Seo, Hyun Ook;Kim, Dae Han;Yoon, Hye Soo;Cho, Youn Kyoung;Kim, Young Dok
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2014년도 제46회 동계 정기학술대회 초록집
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    • pp.167.2-167.2
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    • 2014
  • In this work, ZnO shell on mesoporous $SiO_2$ ($ZnO/SiO_2$) was prepared by atomic layer deposition (ALD). Diethylzinc (DEZ) and $H_2O$ were used as precursor of ZnO shell. $ZnO/SiO_2$ sample was characterized by X-ray diffraction (XRD), N2 sorption isotherms, X-ray photoelectron spectroscopy (XPS), Scanning electron microscopy (SEM) and Fourier-transform infrared spectroscopy (FT-IR). $ZnO/SiO_2$ showed higher adsorption capacity of MB than that of bare mesoporous $SiO_2$ and the adsorption capacities of $ZnO/SiO_2$ could be regenerated by UV exposure through the photocatalytic degradation of the adsorbed MB. This system could be used for removing organic dye from water by adsorption and reused after saturation of adsorption due to its photocatalytic regeneration.

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Sequential adsorption - photocatalytic oxidation process for wastewater treatment using a composite material TiO2/activated carbon

  • Andriantsiferana, Caroline;Mohamed, Elham Farouk;Delmas, Henri
    • Environmental Engineering Research
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    • 제20권2호
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    • pp.181-189
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    • 2015
  • A composite material was tested to eliminate phenol in aqueous solution combining adsorption on activated carbon and photocatalysis with $TiO_2$ in two different ways. A first implementation involved a sequential process with a loop reactor. The aim was to reuse this material as adsorbent several times with in situ photocatalytic regeneration. This process alternated a step of adsorption in the dark and a step of photocatalytic oxidation under UV irradiation with or without $H_2O_2$. Without $H_2O_2$, the composite material was poorly regenerated due to the accumulation of phenol and intermediates in the solution and on $TiO_2$ particles. In presence of $H_2O_2$, the regeneration of the composite material was clearly enhanced. After five consecutive adsorption runs, the amount of eliminated phenol was twice the maximum adsorption capacity. The phenol degradation could be described by a pseudo first-order kinetic model where constants were much higher with $H_2O_2$ (about tenfold) due to additional ${\bullet}OH$ radicals. The second implementation was in a continuous process as with a fixed bed reactor where adsorption and photocatalysis occurred simultaneously. The results were promising as a steady state was reached indicating stabilized behavior for both adsorption and photocatalysis.

Chintin, Chitosan, Cellulose 및 혼합 Beads의 중금속 이온 흡착특성에 관한 연구 (Study on the adsorption of Heavy Metals by Chitin, Chitosan, Cellulose and its Composite Beads)

  • 전수진;유병태
    • 환경위생공학
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    • 제10권2호
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    • pp.1-12
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    • 1995
  • Under accelerated industrial developments environment pollution comes out to be very stirious. Especially the ions of heavy metal from wastewater, even if they are minimal, accumulated in ecology circle and do finally injury to human health. The general process for removal of heavy metals include coagulation and following sedimentation, ion -exchange and active carbon adsorption and sedimentation that applicate in popular, needs the expense of coagulant the additional treatment of sludge on the general process of coagulation and sedimentation. It is also a serious problem that the second pollution caused by coagulant. However chelating adsorption that uses natural chelating high- molecular compound has not pollution problem Among chelating high- molecules, the diminishing chitin that contained in crustaceans as crawfish and crab in our country with affluent water resources are easy to get. So it is advantageous to use this ubiquitous material for removing heavy metals because we could reuse natural resource. In this research, the author tested the effectiveness of the adsorption and removal of heavy metal ions by chitin and its derivatives. Chitin and cellulose became beads and used as flocculant, in this test. The results are as follows . First, bead showed higher removal ratio than powder in the comparative test on adsorbents such as chitin, chitosan and cellulose. Secondly, in the variety test by the kinds of adsorbent and time. chitosan bead and cellulose bead that showed the highest removal ratio. One hour need to remove the ions of heavy metal. Thirdly, the results of the adsorption degree test by pH revealed high removal ratio adsorption of chitin, cellulose and chitosan bead in alkalin condition but chitosan bead in acidic condition.

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Carbon molecular sieves from soybean straw-based activated carbon for CO2/CH4 separation

  • Xu, Yuxian;Chen, Xiaochuan;Wu, Dan;Luo, Yongjin;Liu, Xinping;Qian, Qingrong;Xiao, Liren;Chen, Qinghua
    • Carbon letters
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    • 제25권
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    • pp.68-77
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    • 2018
  • Soybean straw (SS)-based activated carbon was employed as a precursor to prepare carbon molecular sieves (CMSs) via chemical vapor deposition (CVD) technique using methane as carbon source. Prior to the CVD process, SS was activated by 0.5 wt% $ZnCl_2$, followed by a carbonization at $500^{\circ}C$ for 1 h in $N_2$ atmosphere. $N_2$ (77 K) adsorption-desorption and $CO_2$ (273 K) adsorption tests were carried out to analyze the pore structure of the prepared CMSs. The results show that increasing the deposition temperature, time or methane flow rate leads the decrease in $N_2$ adsorption capacity, micropore volume and average pore diameter of CMSs. The adsorption selectivity coefficient of $CO_2/CH_4$ achieves as high as 20.8 over CMSs obtained under the methane flow rate of $30mL\;min^{-1}$ at $800^{\circ}C$ for 70 min. The study demonstrates the prepared CMSs are a candidate adsorbent for $CO_2/CH_4$ separation.

잔류성.생물축적성 물질 피해저감을 위한 미세플라스틱(Microplastic) 관리방안 (Microplastic Management for Preventing Risk of Persistent/Bioaccumulative Substance)

  • 박정규;간순영
    • 환경정책연구
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    • 제13권2호
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    • pp.65-98
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    • 2014
  • 해양환경의 플라스틱은 풍화작용에 의해 매우 작은 크기로 부서지는데, 이를 미세플라스틱이라고 한다. 해수에 오염된 잔류성이 크거나 생물축적성이 있는 유기물질은 미세플라스틱에 잘 흡착되며, 이들 물질이 흡착된 미세플라스틱을 해양생물이 섭취하면 먹이사슬을 통해 점차 생물축적된다. 이는 결국 해양생태계의 건강성을 파괴하고 사람을 포함한 상위포식자에게 피해를 끼친다. 해양 오염물질의 흡착제로서의 역할뿐 아니라, 미세플라스틱 그 자체에서 내분비계 교란물질이 용출되어 해양생물에 피해를 입히기도 한다. 우리나라는 잔류성이나 생물축적성이 큰 물질에 대해서는 화학물질 측면에서 규제하고 있으나, 이는 육상에서의 관리에 국한되어 있다. 만약 이들 물질이 해양생태계로 유입되면, 결국 미세플라스틱 흡착 여부에 의해 그 피해가 증가하게 된다. 이에 해양생태계 내에서의 잔류성 생물축적성 물질의 피해를 저감하기 위해서는 우선 미세플라스틱의 관리가 엄격해야 할 것이다. 이에 미세플라스틱 자체를 유해물질로 지정하여 엄격히 관리하거나, 생분해성 플라스틱 이용 확대, 재활용 및 재사용 촉구, clean-up 프로그램의 확대 등을 통해 해양생태계 내로의 플라스틱 유입을 저감하는 노력이 요구된다.

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