• Title/Summary/Keyword: recycling ratio

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Estimation of Optimal Operation Conditions in Step Feed Processes Based on Stoichiometric Nitrogen Removal Reactions

  • Lee, Byung-Dae
    • Journal of the Korean Applied Science and Technology
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    • v.28 no.1
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    • pp.6-9
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    • 2011
  • Step feed process was analyzed stoichiometrically for the optimal operation conditions in this study. In case of optimal operation conditions, minimum R (sludge recycling) value, r (internal recycling ratio) value, and n (influent allocation ratio) value for the step feed process to acquire the maximum TN removal efficiency were identified by theoretical analysis. Maximum TN removal efficiency, based on stoichiometric reaction, can be obtained by controlling n value for the step feed process.

Current Status on the Recycling of Domestic Major Non-ferrous Metal Scraps (국내 범용 비철금속 스크랩의 리싸이클링 현황)

  • Park, Hyungkyu;Sohn, Hosang
    • Resources Recycling
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    • v.24 no.5
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    • pp.72-79
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    • 2015
  • Since there are many kinds of non-ferrous metal, it is difficult to investigate the current status on the recycling of all the non-ferrous metals. Therefore, the survey is confined to some commercially important non-ferrous metals such as copper, aluminum, zinc, lead, nickel and magnesium in this article. Domestic demand and production of these non-ferrous metals in recent years (2010-2014) and recycling ratio of the scraps are estimated briefly here.

Survey on the Recycling of Domestic Commercial Non-ferrous Metal Scraps (국내(國內) 범용(凡用) 비철금속(非鐵金屬)스크랩 리싸이클링 현황(現況))

  • Park, Hyungkyu
    • Resources Recycling
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    • v.22 no.6
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    • pp.81-86
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    • 2013
  • Since there are many kinds of non-ferrous metal, it is difficult to investigate the current status on the recycling of all the non-ferrous metals. Therefore, the survey is confined to some commercially important non-ferrous metals such as copper, aluminum, zinc, lead, nickel and magnesium in this article. Domestic demand and production of these non-ferrous metals in recent years(2010-2012) and recycling ratio of the scraps are estimated briefly here.

Current Status on the Domestic Recycling of Magnesium (국내(國內) 마그네슘 리싸이클링 현황(現況))

  • Park, Hyung-Kyu;Kang, Min-Cheol
    • Resources Recycling
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    • v.20 no.3
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    • pp.3-11
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    • 2011
  • Magnesium has been used as parts of vehicles, case materials of notebook PC and mobile phone, and its demand has been increasing recently. So until now, there has little magnesium scraps from the end of life vehicles or electronic parts, and most scraps has been generated from magnesium processing lines such as melting, die casting and machining. It is to review the present status of magnesium recycling. Here, domestic demand of magnesium, recycling amount and technologies used in domestic recycling companies were surveyed in recent years. In 2010, 8,840 tons of magnesium scraps were processed and used as raw materials for die casting products. The recycling ratio was estimated as 32.5%.

Current Status of Domestic Recycling of Used Metallic Can (국내 금속캔 리싸이클링 현황)

  • Park, Hyungkyu;Shin, Shunmyung
    • Resources Recycling
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    • v.23 no.5
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    • pp.62-67
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    • 2014
  • Used metallic can should be recycled from the point of view of environmental preservation and resource recycling. Metallic can is one of EPR items, and classified into steel can and aluminum can according to the can body material. In Korea about eighty percent of metallic cans are made of steel. In this article, production of cans and current status on domestic recycling of used metallic cans in recent years(2008-2012) were surveyed. Recycled ratio by weight of used steel and aluminum cans was about 80.8% and 81.8%, respectively in 2012. Totally it reached 81.8%.

Current Status on Recycling of Used Metallic Can (국내(國內) 금속캔 리싸이클링 현황(現況))

  • Park, Hyung-Kyu
    • Resources Recycling
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    • v.17 no.6
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    • pp.89-93
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    • 2008
  • It is necessary that used metallic can should be recycled from the point of view of environmental preservation and resource recycling. Metallic can is classified into steel can and aluminum can according to the can body material. In Korea above eighty percent of cans are made from steel. In this article, production of cans and current status on the recycling of the used cans in recent years were surveyed. Recycled weight ratio of steel and aluminum can was about 75.6% and 74%, respectively in 2007. And totally it reached 75.3%.

A Study on the Various Volume Reducing Methods for Wasted EPS Foam (폐스티로폼의 감용방식에 관한 연구)

  • Lim, Joong-Yeon;Choi, Ho-Joon;Hwang, Beong-Bok
    • Proceedings of the Korean Institute of Resources Recycling Conference
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    • 2003.10a
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    • pp.165-169
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    • 2003
  • Current volume reduction methods for wasted expandable polystyrene (EPS) foam are summarized and compared each other. Wasted EPS foam has not been recycled effectively because of its large volume to weight ratio. This has prevented from its proper recycling because of high cost of transportation to recycling plant. Successful recycling of wasted EPS foam results directly from successful, i.e. economically and environmentally, volume reduction of wasted EPS foam. This paper deals with various methods for volume reduction methods of wasted EPS foam. Five typical methods of volume reduction are introduced and they are compared each other in terms of expected PS properties after volume reduction, cost effectiveness of each process, possible effects on environment caused by the volume reduction process, and possible recycled products. The methods include thermal, solvent, far infrared and mechanical compaction. Comparison in this paper is made mostly in qualitative manner. The focus in this study is concentrated on summarizing and comparing existing methods of volume reduction for wasted EPS foam.

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Medium Recycle Process for the Production of scu-PA from Serum Free Medium (무혈청 배지로부터 scu-PA의 생산을 위한 배지의 재사용 공정에 관한 연구)

  • 김영남;박경유
    • KSBB Journal
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    • v.8 no.1
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    • pp.17-22
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    • 1993
  • $1.96{\times}10^{-5}$(IU/cell/hr) of specific scu-PA production rate was obtained from HEK cells in maintaining ca. $8{\times}10^{5}$(cells/ml) of maximum roll density at 10(ml/hr) of perfusion rate with recycling 20% serum free conditioned media. It can be compared to $4{\times}10^{6}$(cells/ml) of maximum cell density and $4.56{\times}10^{-4}$(IU/cell/hr) of specific production rate in cultivating cells with 1% serum containing medium. Thc conversion ratio of scu-PA to tc-UK increased up to 55% as the recycling ratio increased; however, recycling the used medium seemed to have least negative effect on cell growth. It also showed that the recycling process had definitive advantage of using serum free medium in perfusion cultivation of HEK cell line.

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The Fluidity and Comprssive Strength Properties of Lightweight Mortar Using Recycling Water according to Blast Furnace Slag Powder Ratio (고로슬래그미분말 혼입율에 따른 회수수 사용 경량모르타르의 유동성 및 강도특성)

  • Bae, Sung Ho;Lee, Jae In;Kim, Ji Hwan;Oh, Tae Gue;Choi, Se Jin
    • Proceedings of the Korean Institute of Building Construction Conference
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    • 2020.06a
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    • pp.136-137
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    • 2020
  • This study compared and analyzed the fluidity and strength characteristics of mortar using the recycling water, indicates strong alkali properties, as pre-wetting water of artificial light aggregate to increase usage ratio of recycling.

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A Preliminary Study on Tantalum Recycling from Obsolete Condenser by Multidisciplinary Process (융복합기술(融複合技術)에 의한 폐(廢)콘덴서로부터 탄탈륨 재활용(再活用) 기초연구(基礎硏究))

  • Lee, Hoo-In;Kim, Sang-Bae;Kim, Byong-Gon;Choi, Young-Yoon
    • Resources Recycling
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    • v.16 no.6
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    • pp.34-38
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    • 2007
  • For recycling of tantalum from obsolete condenser, physical separations and chlorination of tantalum scraps with $Cl_2$ and $CCl_4$ were investigated. The recovery ratio of tantalum from obsolete condenser was 98% by using a multidisciplinary process of crushing by stamp mill, wet gravity separation by the shaking table, and air classification. In the chlorination reaction of non-oxidized Ta anode with $Cl_2$, the highest weight loss ratio is at least 60%, while in the chlorination reaction of Ta anode with $CCl_4$, the reaction rate for the oxidized Ta anode is faster than that of the non-oxidized Ta anode.