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폐기물 배출해역 퇴적물의 생물학적 독성평가 연구

Biological Toxicity Assessment of Sediment at an Ocean Dumping Site in Korea

  • 투고 : 2021.10.29
  • 심사 : 2022.02.25
  • 발행 : 2022.02.28

초록

본 연구에서는 폐기물 배출해역의 퇴적물이 해양생물에 미치는 영향을 평가하기 위해 2016~2019년 3개 배출해역; 동해병, 서해병, 동해정 해역의 9개 정점에서 채취한 퇴적물 시료들을 대상으로 국내 해양폐기물공정시험기준에 의거하여 저서성단각류(Monocorophium acherusicum)와 발광박테리아(Vibrio fischeri)를 이용한 독성시험을 수행하였다. 시험결과, 상대평균생존율(저서성단각류)과 상대발광저해율(발광박테리아)이 각각 30 % 이하로서 '독성없음'으로 판정되었으나, t검정을 이용한 독성 평가 결과에서는 총 12개(2016년 6개, 2017년 1개, 2018년 1개, 2019년 4개)의 저서성단각류 시료에서 대조구와 유의한 차이를 나타내었다(p<0.05). 저서성단각류의 독성원인 탐색을 위해 퇴적물 내 8종 중금속 함량(Cr, As, Ni, Cd, Cu, Pb, Zn, Hg)과 저서성단각류 상대평균생존율의 단순선형회귀분석을 수행한 결과, Cr의 저서성단각류 독성 기여도가 가장 높았다(p=0.000, R2=0.355). 또한, 매년 독성영향이 가장 높은 정점(DB-85)의 시료에서 Cr이 여전히 가장 높은 농도로 검출되었으며, 해양환경기준을 매년 초과하였다. 해양폐기물공정시험기준의 생태독성판정 기준 적용 시 '독성없음'으로 평가되는 퇴적물 오염도가 대조구와의 통계적 유의성 검정, 독성원인확인 평가를 적용할 경우 독성영향을 수용 가능한 수준으로 판단하기 어려우므로 향후 종민감도분포곡선을 활용한 정량적 위해성 평가를 통한 준거치를 도출하여 생태독성 영향 판단 기준의 재설정을 고려할 필요가 있다.

The effect of sediments in a waste dumping area on marine organisms was evaluated using sediment toxicity tests with a benthic amphipod (Monocorophium acherusicum) and bioluminescent bacterium (Vibrio fischeri) in accordance with the Korean Standard Method for Marine Wastes (KSMMW). Nine sites in the East Sea-Byeong, East Sea-Jeong, and Yellow Sea-Byeong areas were sampled from 2016 to 2019. The test results showed that the relative average survival rate (benthic amphipods) and relative luminescence inhibition rate (luminescent bacteria) were below 30%, which were judged to be "non-toxic." However, in the t-test, a total of 12 benthic amphipod samples (6, 1, 1, and 4 in 2016, 2017, 2018, and 2019, respectively) were significantly different (p<0.05) from the control samples. To identify the source of toxicity on benthic amphipods, a simple linear regression analysis was performed between the levels of eight heavy metals (Cr, As, Ni, Cd, Cu, Pb, Zn, and Hg) in sediments and the relative average survival rate. The results indicated that Cr had the highest contribution to the toxicity of benthic amphipods (p = 0.000, R2 = 0.355). In addition, Cr was detected at the highest concentration at the DB-85 station and exceeded the Marine Environment Standards every year. Although the sediments were determined as "not toxic" according to the ecotoxicity criteria of the KSMMW, the results of the statistical significance tests and toxicity identification evaluation indicated that the toxic effect was not acceptable. Therefore, revising the criteria for determining the toxic effect by deriving a reference value through quantitative risk assessment using species sensitivity distribution curves is necessary in the future.

키워드

과제정보

본 연구는 해양수산부 "폐기물 해양배출 종합관리시스템 구축사업(20212200D18-01)"의 일부로 수행되었습니다. 현장조사에 많은 도움을 주신 해양과학기술원 온누리호 승조원분들께 감사드립니다.

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