Research Status of Deep-Sea Polymetallic Nodule Collection Technology

被引:0
|
作者
Liu, Boying [1 ]
Wang, Xiaoxiang [1 ]
Zhang, Xiuzhan [1 ,2 ]
Liu, Jiancheng [2 ]
Rong, Liangwan [3 ]
Ma, Yong [1 ,4 ]
机构
[1] Sun Yat Sen Univ, Sch Ocean Engn & Technol, Zhuhai 519082, Peoples R China
[2] China Merchants Marine & Offshore Res Inst Co Ltd, Shenzhen 518067, Peoples R China
[3] South China Univ Technol, Sch Civil Engn & Transportat, Guangzhou 510640, Peoples R China
[4] Southern Marine Sci & Engn Guangdong Lab, Zhuhai 519080, Peoples R China
关键词
polymetallic nodules; deep-sea mining; hydraulic collection technology; pick-up device structure optimization; pick-up efficiency; DESIGN OPTIMIZATION; MANGANESE; PACIFIC; AREA;
D O I
10.3390/jmse12050744
中图分类号
U6 [水路运输]; P75 [海洋工程];
学科分类号
0814 ; 081505 ; 0824 ; 082401 ;
摘要
The bottom of the ocean is rich in mineral resources, and deep-sea mining has been a research hotspot in recent years. As a key part of deep-sea mining operation, polymetallic nodule collection technology has been researched in many countries around the world. The distribution of deep-sea polymetallic nodule mining areas and the characteristics of nodules are summarized, which provides a reference for the study of collection technology and the optimization of pick-up device structure. In order to further establish a deep-sea mining collection technology system, the current development status of polymetallic nodule mechanical, mechanical-hydraulic composite and hydraulic collection technologies are summarized, and the analysis shows that hydraulic collection technology has a more promising commercialization prospect. For the hydraulic collection technology, the research progress of suck-up-based collection technology, Coand & abreve;-effect-based collection technology, double-row hydraulic collection sluicing technology and other collection technologies are summarized from three aspects: collecting principle, device structure parameter optimization, and sea trial situation, and the key technical problems of hydraulic ore collection are put forward. Through the comparative analysis of the pick-up efficiency, energy consumption, environmental disturbance and other performances of different devices, it is found that the Coand & abreve;-effect-based hydraulic collection technology has better comprehensive performance. A structural design evaluation indicator for the collection head of hydraulic collection technology is proposed, and the prospect of further research on hydraulic collection technology is put forward.
引用
收藏
页数:24
相关论文
共 50 条
  • [21] Toward a reliable assessment of potential ecological impacts of deep-sea polymetallic nodule mining on abyssal infauna
    Lins, Lidia
    Zeppilli, Daniela
    Menot, Lenaick
    Michel, Loic N.
    Bonifacio, Paulo
    Brandt, Miriam
    Pape, Ellen
    Rossel, Sven
    Uhlenkott, Katja
    Macheriotou, Lara
    Bezerra, Tania Nara
    Sanchez, Nuria
    Alfaro-Lucas, Joan M.
    Martinez Arbizu, Pedro
    Kaiser, Stefanie
    Murakami, Chisato
    Vanreusel, Ann
    [J]. LIMNOLOGY AND OCEANOGRAPHY-METHODS, 2021, 19 (09): : 626 - 650
  • [22] Deep-sea Kinorhyncha diversity of the polymetallic nodule fields at the Clarion-Clipperton Fracture Zone (CCZ)
    Sanchez, Nuria
    Pardos, Fernando
    Arbizu, Pedro Martinez
    [J]. ZOOLOGISCHER ANZEIGER, 2019, 282 : 88 - 105
  • [23] Microbacterium profundi sp nov., isolated from deep-sea sediment of polymetallic nodule environments
    Wu, Yue-Hong
    Wu, Min
    Wang, Chun-Sheng
    Wang, Xiao-Gu
    Yang, Jun-Yi
    Oren, Aharon
    Xu, Xue-Wei
    [J]. INTERNATIONAL JOURNAL OF SYSTEMATIC AND EVOLUTIONARY MICROBIOLOGY, 2008, 58 : 2930 - 2934
  • [24] Mineralogy and crystal chemistry of Mn, Fe, Co, Ni, and Cu in a deep-sea Pacific polymetallic nodule
    Manceau, Alain
    Lanson, Martine
    Takahashi, Yoshio
    [J]. AMERICAN MINERALOGIST, 2014, 99 (10) : 2068 - 2083
  • [25] Deep-sea technology
    Crook J.
    [J]. Engineering and Technology, 2010, 5 (01): : 36 - 39
  • [26] Ethical opportunities in deep-sea collection of polymetallic nodules from the Clarion-Clipperton Zone
    Katona, Steven
    Paulikas, Daina
    Stone, Gregory S.
    [J]. INTEGRATED ENVIRONMENTAL ASSESSMENT AND MANAGEMENT, 2022, 18 (03) : 634 - 654
  • [27] Telepresence Technology Increases Accessibility of Deep-Sea Research
    Clarke, Jameson
    [J]. SEA TECHNOLOGY, 2012, 53 (10) : 81 - 81
  • [28] DEEP-SEA RESEARCH
    TAIT, JB
    [J]. NATURE, 1954, 173 (4403) : 527 - 528
  • [29] Deep-sea nematode assemblages from a commercially important polymetallic nodule area in the Central Indian Ocean Basin
    Singh, Ravail
    Miljutin, Dmitry M.
    Miljutina, Maria A.
    Arbizu, Pedro Martinez
    Ingole, Baban S.
    [J]. MARINE BIOLOGY RESEARCH, 2014, 10 (09) : 906 - 916
  • [30] Energy loss of deep-sea mining pump for polymetallic nodule particles transport based on entropy production method
    Xie, Baoqi
    Cheng, Yangrui
    Tang, Peng
    Wang, Teng
    Ma, Wenbo
    [J]. POWDER TECHNOLOGY, 2024, 445