• 研究課題をさがす
  • 研究者をさがす
  • KAKENの使い方
  1. 課題ページに戻る

2015 年度 実施状況報告書

Development of Amino-Functionalized New Task Specific Ionic Liquids for Energy Efficient CO2 Capture

研究課題

研究課題/領域番号 26410202
研究機関公益財団法人地球環境産業技術研究機構

研究代表者

フィーローズアラム チョウドリ  公益財団法人地球環境産業技術研究機構, その他部局等, 研究員 (50727279)

研究期間 (年度) 2014-04-01 – 2017-03-31
キーワード環境修復材料 / CO2 capture
研究実績の概要

This project, we developed novel amine-based new task specific ionic liquids (TSILs) for the recovery of CO2 from post-combustion flue gases that will achieve a significant increase in CO2 working capacity with a reduction in cost. The novel TSIL absorbents are neutral molecules which react with CO2 to form an ionic liquid, and subsequently modest elevations in temperature reverse the reaction and yield pure CO2 for disposal. Completed all designed TSILs synthesis and now we are optimizing absorbent, thoroughly measuring all relevant properties, and identify high performance TSILs that will give higher absorption rate, high cyclic capacity and consume the minimal amount of energy. For energy efficient CO2 capture, we are incorporating hindered alkyl substituents in the TSILs that can tune reaction mode, which is bicarbonate (HCO3-) or alkyl carbonate (RCO3-) anion formation> cabamate anion (COO-) and by increasing amino groups into TSILs we substantially increased CO2 loading and cyclic capacity. Three medium hindered amino-functionalized ionic liquids with excellent CO2 performance were identified.

現在までの達成度 (区分)
現在までの達成度 (区分)

1: 当初の計画以上に進展している

理由

The applicant performed gas scrubbing tests with amino-functionalized synthetic TSILs by changing their concentrations, temperatures, and pressures. CO2 capture performances of such 18 sets of single ILs plus 12 sets of blended solvent (ILs + Non-aqueous solvent) and (ILs + Non-aqueous solvent + water) was completed. From the results of screening tests, the applicant identified three high performance TSILs with high absorption rate, high cyclic CO2 capacity and consume the minimal amount of energy. These findings were presented in one international conference and two national conferences.

今後の研究の推進方策

Finalize the optimal ionic liquid(s), perform VLE test under equilibrium condition at different temperature and pressure in order to obtain maximum working capacity. 13C NMR spectroscopy will be used to analyze the CO2-loaded solution species identification. Finally conduct bench-scale test, finalize systems and economic analyses, and develop a path forward for bench-scale and pilot-plant testing.

次年度使用額が生じた理由

The outsourcing chemicals price is higher then the remaining fund. As a result the chemicals purchase was delayed. The specific chemicals will purchase this FY by adjusting the remaining fund.

次年度使用額の使用計画

Last year remaining fund will adjust with this year fund to purchase chemicals, CO2 and N2 gases, laboratory glassware, books, Journals reprints, domistic and foreign conferences.

  • 研究成果

    (3件)

すべて 2016

すべて 学会発表 (3件) (うち国際学会 1件)

  • [学会発表] Ionic Liquid-Amine Solutions as Novel CO2 Capture Absorbents2016

    • 著者名/発表者名
      Firoz Alam Chowdhury, Tsuguhiro Kato
    • 学会等名
      The 96th Annual Meeting of Japan Chemical Society
    • 発表場所
      Doshisha University
    • 年月日
      2016-03-24 – 2016-03-27
  • [学会発表] Structure-Performance Relationships Between Ionic Liquid-Amine Solutions for CO2 Capture2016

    • 著者名/発表者名
      Firoz Alam Chowdhury, Tsuguhiro Kato
    • 学会等名
      The 81st SCEJ Annual Meeting
    • 発表場所
      Kansai University
    • 年月日
      2016-03-13 – 2016-03-15
  • [学会発表] Chemically Tunable Ionic Liquid-Amine Solutions for CO2 Capture2016

    • 著者名/発表者名
      Firoz Alam Chowdhury, Tsuguhiro Kato
    • 学会等名
      The 6th Korea CCS International Conference
    • 発表場所
      Maison Glad Jeju, Korea
    • 年月日
      2016-01-27 – 2016-01-29
    • 国際学会

URL: 

公開日: 2017-01-06  

サービス概要 検索マニュアル よくある質問 お知らせ 利用規程 科研費による研究の帰属

Powered by NII kakenhi