google.com, pub-9005101102414487, DIRECT, f08c47fec0942fa0

AI served as a double edge sword combating rising pollution in waters.

 

 

Current marine life is experiencing an intensifying series of challenges as a result of human actions and the effects of climate change and rapidly shifting environmental conditions. These environmental changes impact the oceans on various levels. For instance, the existence of individual fish is under threat as well as the entire ecosystem on which millions more human beings depend. These changes are no longer working in separate ways. This means that one change in the environment is usually exacerbating another. Studies, specifically with ocean acidification, have shown through research in marine biology and oceanography that human actions resulting in greater carbon emissions, warmer oceans, changes in the way the oceans flow, and pollution of the coasts are causing changes at a speed at which many types of fish in the oceans are not easily adapting. With the increasing magnitude and need for these problems, scientists have been turning to AI. Although AI has led to the advancement in the scope of the changes researchers make in the oceans, it is essential to understand that it is only an aid.

 

 

Credit: Phys.org

 

A case where one can see how environmental changes have a considerable impact on marine organisms during their most delicate phase of development is found on Florida’s beaches, where sea turtle hatchlings are now facing new challenges on their path from nest to ocean. In the past few years, massive amounts of sargassum seaweed have been reported to be reaching the shores and onto the nesting areas of the turtles. The sargassum growth has been attributed by scientists to warmer ocean waters and nutrient-rich runoff of land-based activities like deforestation. As a result of these factors, the Atlantic waters have become a conducive breeding ground for the growth of a large amount of seaweed. The large amount of seaweed mats on the shores creates a barricade on the path of the turtle hatchlings. This reduces their speed, which makes them more susceptible to predation by birds, crabs, and dehydration/heat. As sea turtles require speed to successfully overcome this brief but pivotal stage of their lives, any delay at all can significantly impact their survival rates. This is an example of the adverse effects of changes in climate that upset delicate ecological processes to make potentially manageable ecosystems into deadly ones.

 

Although these changes are evident in coastlines, other, less evident but perhaps more serious changes are happening beneath the surface in the ocean. Changes in the chemical properties of seawater, such as ocean acidification, pose a threat to marine ecosystems on a regional and global level. The California Current indicates these regions are becoming more acidic than scientists originally estimated. Upwelling is a process where cold, nutrient-ridden, and normally more acidic deep water is carried from the depths closer to the surface. Rising levels of carbon dioxide in the Earth’s atmosphere cause higher levels of absorbing carbon dioxide in surface waters, leading to higher acidity levels than expected on a global average scale. These ecosystems are some of the most productive in the Earth’s oceans, providing sustenance for commercial fishing industries, which in turn provide economic support for coastal communities. Extreme acidity levels make it more difficult for organisms like oysters, clams, and types of plankton to build shells. Since the organisms are a food base in the marine ecosystem, their reduction causes a trickle-up effect that affects fish, their predators, and eventually the human diet. The study demonstrates the significance of regional research in the sense that localized phenomena are responsible for the global climate, which causes Seagrasses to decline drastically.

 

In the face of such growing challenges, artificial intelligence technology has emerged as an essential resource in the field of marine science. With the help of artificial intelligence, datasets such as underwater images, sonar echoes, and satellite imagery can be used to classify species, monitor changes, and find patterns within the aquatic environment. Additionally, artificial intelligence can use algorithms that allow scientists to forecast changes in the patterns of fish migration, detect toxic algal blooms, and analyze the status of the health of coral reefs. Another area where artificial intelligence technology can be used is in underwater unmanned vehicles that can explore the oceans where humans find access challenging, costly, or Even dangerous.

 


Credit: CleanerSeas.com

 

Yet even with such advances, ocean experts say that AI has substantial limitations. AI models rely significantly on the quality and availability of data, which is partial for large swaths of the ocean. Most areas of the ocean-especially deep-sea and developing coastal regions-remain poorly studied, leading to knowledge gaps that can weaken predictions. Algorithms can mirror the biases of the data sets they're trained on, favoring well-monitored species or areas and overlooking others. Moreover, independently, AI cannot interpret ecological context, nor does it account for the complex social and political factors affecting conservation outcomes. Field research, human expertise, and informed decisionmaking cannot be replaced; rather, they must complement AI, experts emphasize. It is only with proper scientific collaboration between researchers, policymakers, and local communities that even the most advanced technological equipment cannot root out the causes of marine degradation.

 

 

작성 2026.02.03 13:18 수정 2026.03.10 11:51

RSS피드 기사제공처 : The Young Press / 등록기자: Jaden Hong 무단 전재 및 재배포금지

해당기사의 문의는 기사제공처에게 문의

댓글 0개 (/ 페이지)
댓글등록- 개인정보를 유출하는 글의 게시를 삼가주세요.
등록된 댓글이 없습니다.
Shorts NEWS 더보기
자전거 타기와 인생은 똑 같다. 자전거와 인생 이야기 #쇼츠 #short..
자산 30억인데 밥 굶는다? 강남 노인들의 눈물겨운 흑자 도산
디알젬의 거침없는 진격: 초음파까지 접수 완료!
삼성의 역습? 엔비디아의 1,500조 파트너 낙점!
벤츠E 300 주행후기, 음이온 2억개 공기정화, 연비향상 50%가 동시..
내 아이 입으로 들어가는 건 무조건 확인! 경기도 농업의 미친 변화
주말에 뭐해? 도서관에서 갓생 살자!
봄의 생명력으로 마음을 채우다
중동발 경제 한파 터졌다! 한일 재무수장 도쿄서 긴급 회동, 왜?
중동발 경제 쇼크, 우리는 살아남을 수 있을까요?
마약 치료 실적 5배 폭발! 경기도가 작정하고 만든 이것
노후파산의 비명, "남은 건 빚뿐입니다"
"내 집 재개발, 가만히 있다가 2년 날릴 뻔했습니다"
"버리면 쓰레기, 팔면 황금? 경기도의 역발상!"
안산 5km 철도 지하화…71만㎡ 미래도시 탄생
78만 평의 반전! 기흥호수의 대변신
2026 전세 쇼크: "이제 전세는 없습니다"
서울 살 바엔 용인? 수지 17억의 비밀
의사가 진료 중에 AI를 켠다?
벚꽃보다 찐한 설렘! 지금 일본은 분홍빛 매화 폭포 중
기름값 200달러? 중동 발 퍼펙트 스톰이 온다!
신학기 감염병 비상! "수두·볼거리" 주의보
2026 경기국제보트쇼의 화려한 개막
"1초라도 늦으면 끝장" 경기도 반도체 올케어 전격 가동!
엔비디아, 실적은 역대급인데 왜 주가는 폭락할까?
안성 동신산단, 반도체 소부장 거점 조성 본격화
서울 집값 폭락? 당신이 몰랐던 13%의 진실
대치동 은마아파트 화재 재건축 지연 논란까지 확산
유튜브 NEWS 더보기

일론 머스크의 경고, 2030년 당신의 책상은 사라진다

부의 이동심리, 타워팰리스가 던지는 경제적 신호

그대는 소중한 사람 #유활의학 #마음챙김 #휴식

나 홀로 뇌졸중, 생존 확률 99% 높이는 실전 매뉴얼

숨결처럼 다가온 희망. 치유.명상.수면.힐링

통증이 마법처럼 사라지다./유활도/유활의학/유활파워/류카츠대학/기치유

O자 다리 한국, 칼각 일본? 앉는 습관 하나가 평생 건강을 좌우한다

겨울마다 돌아오는 ‘급성 장폭풍’… 노로바이러스, 아이들 먼저 덮쳤다

아오모리 강진, 철도·항만·도심 모두 멈췄다… 충격 확산

경기도, 숨겨진 가상자산까지 추적했다… 50억 회수한 초정밀 징수혁신으로 대통령상 수상

간병 파산 막아라... 경기도 'SOS 프로젝트' 1천 가구 숨통 틔웠다 120만 원의 기적,...

100세 시대의 진짜 재앙은 '빈곤'이 아닌 '고독', 당신의 노후는 안전합니까...

브레이크 밟았는데 차가 '쭉'... 눈길 미끄러짐, 스노우 타이어만 믿다간 '낭패...

"AI도 설렘을 알까?"... 첫눈 오는 날 GPT에게 '감성'을 물었더니

응급실 뺑뺑이 없는 경기도, '적기·적소·적시' 치료의 새 기준을 세우다

GTX·별내선·교외선이 바꾼 경기도의 하루… 이동이 빨라지자 삶이 달라졌다

행복은 뇌에서 시작된다. 신경과학이 밝혀낸 10가지 습관

행복은 뇌에서 시작된다 신경과학이 밝혀낸 10가지 습관

자신을 칭찬할 수 있는 용기, 삶을 존중하는 가장 아름다운 습관

아이젠사이언스생명연, AI 신약 개발 초격차 확보 전략적 동행