Deep-sea mining

Bacteria from the ocean floor can beat superbugs and cancer. But habitats are at risk from the hunger for marine minerals

A When Professor Mat Upton found that a microbe from a deep-sea sponge was killing pathogenic bugs in his laboratory, he realised it could be a breakthrough in the fight against antibiotic-resistant superbugs, which are responsible for thousands of deaths a year in the UK alone. Further tests confirmed that an antibiotic from the sponge bacteria, found living more than 700 metres under the sea at the Rockall trough in the north-east Atlantic, was previously unknown to science, boosting its potential as a life-saving medicine. But Upton, and other scientists who view the deep ocean and its wealth of unique and undocumented species as a prospecting ground for new medicines, fear such potential will be lost in the rush to exploit the deep sea's equally rich metal and mineral resources. B 'We're looking at the bioactive potential of marine resources, to see if there are any more medicines or drugs down there before we destroy it for ever,' says Upton, a medical microbiologist at the University of Plymouth. He is among many scientists urging a halt to deep-sea mining, asking for time to weigh up the pros and cons.'In sustainability terms, this could be a better way of exploiting the economic potential of the deep sea,' he argues. Oceanographers using remotely operated vehicles have spotted many new species. Among them have been sea cucumbers with tails allowing them to sail along the ocean floor, and a rare 'Dumbo' octopus, found 3,000 metres under the Pacific Ocean, off the coast of California. Any one of these could offer lifesaving potential. Upton estimates it could take up to a decade for a newly discovered antibiotic to become a medicine—but the race towards commercial mining in the ocean abyss has already begun. C The deep sea contains more nickel, cobalt and rare earth metals than all land reserves combined, according to the US Geological Survey. Mining corporations argue that deep-sea exploration could help diversify the supply of metals and point to the fact that demand for resources such as copper, aluminium, cobalt for electric car batteries and other metals to power technology and smartphones, is soaring. They say that deep-sea mining could yield far superior ore to land mining with little, if any, waste. Different methods of extraction exist, but most involve employing some form of converted machinery previously used in terrestrial mining to excavate materials from the sea floor, at depths of up to 6,000 metres, then drawing a seawater slurry, containing rock and other solid particles, from the sea floor to ships on the surface. The slurry is then 'de-watered' and transferred to another vessel for shipping. Extracted seawater is pumped back down and discharged close lo the sea floor. D But environmental and legal groups have urged caution, arguing there are potentially massive and unknown ramifications for the environment and for nearby communities, and that the global regulatory framework is not yet drafted. 'Despite arising in the last half century, the "new global gold rush" of deep-sea mining shares many features with past resource scrambles—including a general disregard for environmental and social impacts, and the marginalisation of indigenous peoples and their rights,' a paper, written by Julie Hunter and Julian Aguon, from Blue Ocean Law, and Pradeep Singh, from the Center for Marine Environmental Sciences, Bremen, argues. The authors say that knowledge of the deep seabed remains extremely limited. 'The surface of the Moon, Mars and even Venus have all been mapped and studied in much greater detail, leading marine scientists to commonly remark that, with respect to the deep sea,"We don't yet know what we need to know".' E Scientific research—including a recent paper in Marine Policy journal—has suggested the deep seabed, and hydrothermal vents, which are created when seawater meets volcanic magma, have crucial impacts upon biodiversity and the global climate. The mineral-rich vents and their surrounds are also home to many well-known animals including crustaceans, tubeworms, clams, slugs, anemones and fish. 'It is becoming increasingly clear that deep-sea mining poses a grave threat to these vital seabed functions,' the paper says. 'Extraction methods would produce large sediment plumes and involve the discharge of waste back into the ocean, significantly disturbing seafloor environments,' the paper continues. 'On deep sea vents, scientists are clear,' says Dr Jon Copley of the National Oceanography Centre, Southampton: 'we don't want mining on them.' F The oceans occupy around 70% of the planet and are relatively unexplored, says Mike Johnston, chief executive of Nautilus, a Canadian underwater exploration company: ‘It makes sense to explore this untapped potential in an environmentally sustainable way, instead of continually looking at the fast depleting land resources of the planet to meet society's rising needs.' Those leading the global rush to place giant mining machines thousands of metres below the sea surface say the environmental impacts will be far lower than on land, But critics say exotic and little-known ecosystems in the deep oceans could be destroyed and must be protected. 'Mining will be the greatest assault on deep-sea ecosystems ever inflicted by humans,' according to hydrothermal vent expert Verena Tunnicliffe, at the University of Victoria in Canada. She argues that active vents must be off-limits for mining to protect the new knowledge and biotechnology spin-offs they can deliver, and that strict controls must be in place elsewhere.

Questions 14-17

Reading Passage 2 has six paragraphs, A-F .

Which paragraph contains the following information?

Write the correct letter, A-F , in boxes 14-17 on your answer sheet.

A. Paragraph A
B. Paragraph B
C. Paragraph C
D. Paragraph D
E. Paragraph E
F. Paragraph F
reference to the rapidly increasing need for one raw material in the transport industry
14
a rough estimate of the area of the Earth covered by the oceans
15
how a particular underwater habitat, where minerals and organisms co-exist, is formed
16
reference to the fact that the countries of the world have yet to agree on rules for the exploration of the seabed
17
Questions 18-23

Look at the following statements (Questions 18-23) and the list of people below.

Match each statement with the correct person or people, A-E .

Write the correct letter, A- E , in boxes 18-23 on your answer sheet.

NB You may use any letter more than once.

A. Professor Mat Upton
B. Julie Hunter, Julian Aguon and Pradeep Singh
C. Dr Jon Copley
D. Mike Johnston
E. Verena Tunnicliffe
18. A move away from the exploration of heavily mined reserves on land is a good idea.
18
19. The negative effects of undersea exploration on local areas and their inhabitants are being ignored.
19
20. There are more worthwhile things to extract from the sea than minerals.
20
21. No other form of human exploration will have such a destructive impact on marine life as deep-sea mining.
21
22. More is known about outer space than about what lies beneath the oceans.
22
23. There is one marine life habitat where experts agree mining should not take place.
23
Questions 24-26

Complete the summary below.

Choose ONE WORD ONLY from the passage for each answer.

Write your answers in boxes 24- 26 on your answer sheet.

我的答案
14.
未作答
15.
未作答
16.
未作答
17.
未作答
正确答案
14.
C
15.
F
16.
E
17.
D
题目解析

题目:提到运输业对一种原材料的需求迅速增加


分析:

1. 关键信息定位:

- 题干"运输业"对应"electric car batteries"(电动汽车电池)

- "原材料"对应"cobalt"(钴)

- "需求增加"对应"demand...is soaring"(需求激增)


2. 段落特征:

- C段明确讨论金属供应多样化

- 以钴为例说明新能源需求


3. 逻辑验证:

- 电动汽车属于运输业

- 钴是电池生产的关键原材料

- "soaring"准确对应"rapidly increasing"


4. 排除干扰:

- 其他段落未涉及特定金属需求

- 确保产业-材料的对应关系


答案:C


(解析要点:通过新能源产业链分析,强调特定金属的市场需求变化)

题目:对地球上海洋覆盖面积的粗略估计


分析:

1. 数据定位:

- 题干"海洋覆盖面积"对应"oceans occupy...the planet"

- "粗略估计"对应"around 70%"


2. 段落特征:

- F段提供具体比例数据

- 使用概数表述(around)


3. 科学表述验证:

- 符合地理学常识

- 与"rough estimate"要求一致


4. 排除干扰:

- 其他段落未涉及全球海洋比例

- 确保数据来源权威性(鹦鹉螺公司CEO)


答案:F


(解析要点:通过科学数据表述分析,强调概数表述与粗略估计的对应关系)

题目:某个有着矿物和生物共存的水下栖息地是如何形成的


分析:

1. 现象定位:

- 题干"水下栖息地"对应"海底热液喷口"

- "形成过程"对应"are created"机制描述


2. 共存特征验证:

- 矿物方面:"mineral-rich"(富含矿物质)

- 生物方面:"home to..."(生物栖息地)


3. 段落匹配:

- E段完整包含:

 a) 形成机制(海水-岩浆作用)

 b) 矿物-生物共存特征


4. 排除干扰:

- 其他段落未系统描述形成机制

- 确保生态系统的完整性


答案:E


(解析要点:通过地质-生态系统综合分析,强调形成机制与生态特征的统一性)

题目:提及世界各国尚未就海底勘探规则达成一致的事实


分析:

1. 争议焦点定位:

- 题干"海底勘探"对应前文"deep-sea exploration"(C段)

- "规则"对应"regulatory framework"(监管框架)


2. 国际现状描述:

- "global"对应"世界各国"

- "not yet drafted"(尚未制定)对应"尚未达成一致"


3. 段落关联:

- D段承接C段勘探行为

- 明确提及监管缺失现状


4. 排除干扰:

- 其他段落未讨论国际协商

- 确保议题延续性


答案:D


(解析要点:通过政策制定阶段分析,强调国际协商现状与勘探发展的不同步性)

正确
错误
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18
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