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미세플라스틱

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플라스틱 오염 현황과 그 해결책에 대한 과학기술 정책(한국과학기술한림원)

  • 출처 : 과학기술정보통신부
  • 등록일 : 2019-12-12
  • 조회 : 252
목 차
I. 플라스틱의 종류와 오염실태 ····················································1
1. 플라스틱 개요 ··················································································3
2. 플라스틱 폐기물 발생현황 ······························································13
3. 플라스틱 및 미세플라스틱의 환경오염 실태 ··································24
II. 미세플라스틱의 독성 및 위해성 현황 ···································35
1. 해양 플라스틱 쓰레기의 종류 및 미세플라스틱 성분 ·····················37
2. 생태계에서의 미세플라스틱 ····························································39
3. 해양 미세플라스틱의 생태계 위해성 ··············································44
4. 미세플라스틱에 의한 생태계와 인간의 피해 상황 ··························47
5. 플라스틱 성분별 독성 및 위해성 ···················································52
6. 첨가제(additives)의 독성 및 위해성 ··············································59
7. 흡착성 물질의 독성 및 위해성 ·······················································64
III. 플라스틱 분해 미생물 균주 및 효소의 개발현황 ·················83
1. 플라스틱 분해 미생물 균주 ··························································85
2. 플라스틱 분해 효소 ······································································102
3. 플라스틱 분해를 위한 미생물 균주 및 효소 연구의 국내 현황 ··· 113
IV. 플라스틱 대체재의 개발 및 관련 산업 현황 ······················121
1. 바이오 플라스틱 ···········································································125
2. 분해성 플라스틱 ···········································································131
3. 실용화 단계의 분해성 플라스틱 ···················································138
4. 국내 외 분해성 플라스틱의 기술 개발 동향 ································140
5. 플라스틱 대체재로서의 바이오 플라스틱의 전망 ··························143
V. 결론: 플라스틱 문제에 대한 과학기술 정책 제안 ···············147
1. 미세플라스틱의 검출과 수거 방안 ················································150
2. 미세플라스틱의 인체 독성 및 위해성 해결 방안 ·························152
3. 미세 플라스틱의 생분해 방안 ······················································155
4. 플라스틱 대체재 개발 방안 ··························································156

[전체 내용은 첨부파일을 다운로드 하시기 바랍니다.]
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