CHINESE JOURNAL OF ENERGETIC MATERIALS
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水下爆炸冲击波对日本刺星珊瑚生理损伤效应研究
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1安徽理工大学化工与爆破学院, 安徽 淮南 232001;2.3中电投广西核电有限责任公司, 广西 防城港 538000;3.2广西科学院,广西海洋科学院(广西红树林研究中心),广西红树林保护与利用重点实验室, 广西 北海 536000

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安徽理工大学高层次引进人才科研启动基金(2025yjrc0004)安徽省新型爆炸材料与爆破技术工程研究中心基金(AHBP2024B-05)


Study on the Physiological Damage Effects of Cyphastrea Japonica Induced by Underwater Explosion Shock Waves
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1School of Chemical and Blasting Engineering, Anhui University of Science and Technology, Huainan 232001, China;2.3Guangxi Nuclear Power Co., Ltd., China Power Investment Corporation, Fangchenggang, 538000, China;3.2Guangxi Key Laboratory of Mangrove Conservation and Utilization, Guangxi Academy of Marine Sciences (Guangxi Mangrove Research Center), Guangxi Academy of Sciences, Beihai 536000, China

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    摘要:

    水下爆破技术是资源勘探和海洋工程建设中必不可少的施工手段,但其产生的爆炸冲击波会对周边造礁石珊瑚造成不同程度损伤,影响珊瑚礁生态系统稳定。以日本刺星珊瑚共生体为研究对象,从珊瑚宿主、共生虫黄藻和微生物群3个维度揭示爆炸冲击波对日本刺星珊瑚生理损伤效应。研究结果表明:日本刺星珊瑚抵抗爆炸冲击波阈值为6.74MPa,珊瑚蛋白质含量随冲击波强度增加而下降,最高降幅达59.6%;在11.01 MPa冲击波作用下,虫黄藻密度下降87%,光合速率下降49%,珊瑚出现明显白化。爆炸冲击波致使超氧化物歧化酶和过氧化氢酶活性显著降低,抗氧化防御系统受损;微生物群落在爆炸冲击作用后,微生物群落门水平多样性显著提升,属水平结构复杂化。研究揭示了水下爆炸冲击波对日本刺星珊瑚宿主-虫黄藻光合-微生物群落逐级损伤演化路径,为海洋工程爆破施工中对珊瑚生态系统的保护提供了科学依据。

    Abstract:

    Underwater blasting serves an indispensable construction technique for marine resource prospecting and ocean engineering construction. Nevertheless, the generated blast shock waves inflict varying degrees of damage on nearby reef-building corals and undermine the stability of coral reef ecosystems. Taking Cyphastrea japonica (Japanese cyphastrea) symbionts as the research object, this study reveals the physiological damage effects induced by underwater blast shock waves from three dimensions: coral host, symbiotic zooxanthellae and epibiotic microbial communities. The experimental results demonstrate that the critical shock wave resistance threshold of Cyphastrea japonica is 6.74 MPa. The total protein content of corals declines progressively with the increase of shock wave intensity, with a maximum reduction rate of 59.6%. When exposed to a blast shock wave of 11.01 MPa, the zooxanthellae density dropped by 87% and the photosynthetic capacity decreased by 49%, accompanied by obvious coral bleaching symptoms. Blast shock waves markedly suppressed the activities of superoxide dismutase (SOD) and catalase (CAT), which meant the coral antioxidant defense system was impaired. After shock wave exposure, the epibiotic microbial communities presented significantly elevated diversity at the phylum taxonomic level and more complex community composition at the genus level. This work elucidates the stepwise damage evolution pathway of coral host–zooxanthellae photosynthetic system–microbial communities caused by underwater blast shock waves, and provides a scientific theoretical basis for coral reef ecological protection during ocean blasting engineering.

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陶臣,王欣,林明晴,等.水下爆炸冲击波对日本刺星珊瑚生理损伤效应研究[J].含能材料, 2026, 34(7):851-858. DOI:10.11943/CJEM2026125.
TAO Chen, WANG Xin, LIN Mingqing, et al. Study on the Physiological Damage Effects of Cyphastrea Japonica Induced by Underwater Explosion Shock Waves[J]. Chinese Journal of Energetic Materials, 2026, 34(7):851-858. DOI:10.11943/CJEM2026125.

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  • 收稿日期: 2026-05-28
  • 最后修改日期: 2026-06-30
  • 录用日期: 2026-06-22
  • 在线发布日期: 2026-06-29
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