The sediment makes up the sea floor and plays an important role as a habitats for living things in the sea. However, pollution of coastal sediment due to internal and external factors such as inflow of contaminants from land and self-pollution becoming more serious, the needs for management of sediment that play an important role in ecology, is increasing. In particular, the review and evaluation of the effects of sediment in marine development projects including reclamation and dredging, have significance in terms of proactive protection and management of surrounding ecosystems. This study proposed the improvement measures for marine sediment management standards on the sea area utilization consultation for the development of public water. For the purpose, The evaluation and management standards of domestic and overseas marine sediments were reviewed and compared. The sediment environment guidelines under the Marine Environment Management Act of Korea were reviewed. Accordingly, the cases of Canada and NOAA, which have various evaluation standards consist of comprehensive factors, were analyzed. For analysis of operational cases, the port and fishing port development projects for the last five years (2016-2020) that are considered to have the greatest impact on sediments among the sea area use consultations were also reviewed. Finally, this study suggested that the assessment factors for ecological hazards and potential human risks should be considered in the sediment environmental standards in the sea area utilization consultation system.
본 연구에서는 패류양식장이 밀집되어 있는 고성·자란만 22개 정점, 거제·한산만 15개 정점, 진해만 18개 정점에 대하여 계절별(2월, 5월, 8월, 11월)로 퇴적물 환경인자(화학적산소요구량, 강열감량, 산휘발성황화물, 총유기탄소)와 저서 다모류 인자(출현 종 수, 서식밀도, 다양도, 균등도)에 대하여 분석하였다. 총유기탄소와 저서 다모류 다양도간의 상관계수가 0.61로 가장 높고 유의한 상관성(P<0.01)을 보여, 어장환경평가를 위한 대표인자로 설정하였다. 그 결과 두 인자간의 상관성에 의한 어장환경평가 기준 총유기탄소는 Peak Point 15 mg/g dry, Warning Point 26 mg/g dry, Contaminated Point 31 mg/g dry이었으며, 저서 다모류 다양도의 경우 H'≥2.6은 Good, 2.6>H'≥2.1은 Moderate, 2.1>H'≥1.2는 Poor, H'<1.2는 Bad로 분류되었다. 본 연구결과는 어장관리를 위한 환경기준 설정에 과학적 기여를 할 수 있을 것으로 판단된다.