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基本説明
New in paperback. Hardcover was published in 2009. In Seasick, veteran science journalist dives beneath the surface of the world's oceans to give readers a sense of how this watery realm can be managed and preserved, and with it life on earth. "The energetic author rides catamarans and snorkels around the world to explain the threats to corals and turtles, and why we all rely on plankton. She journeys to the Gulf of Mexico to see a thing called 'the blob' ( a big body of low-oxygen water or 'dead zone' ), stops off in China and Zanzibar, and even ends up climbing tne Pyrenees. The resounding lesson, by the end, is that man has unwittingly become part of the marine habitat, and our behaviour has to change." - Guardian.
Full Description
We have long lorded over the ocean. But only recently have we become aware of the myriad life-forms beneath its waves. We now know that this delicate ecosystem is our life-support system - that it regulates Earth's temperatures and climate and makes up 99 percent of the living space on the planet. So when we change the chemistry of the whole ocean system, as we are now, life as we know it is threatened. In "Seasick", veteran science journalist Alanna Mitchell dives beneath the surface of the world's oceans to give readers a sense of how this watery realm can be managed and preserved, and with it life on Earth. Each chapter features a different group of researchers who introduce readers to the importance of ocean currents, the building of coral structures, or the effects of acidification. With Mitchell at the helm, readers submerge 3,000 feet to gather sea sponges that may contribute to cancer care, see firsthand the lava lamp - like dead zone covering 17,000 square kilometers in the Gulf of Mexico, and witness the simultaneous spawning of corals under a full moon in Panama.
The first book to look at the environmental crisis through the lens of the global ocean, "Seasick" takes the reader on an emotional journey through a hidden realm of the planet and urges conservation and reverence for the fount from which all life on Earth sprang.