Chelsea Rochman, an ecologist at the University of California, Davis, has been trying to answer a dismal question: Is everything terrible, or are things just very, very bad?
Rochman is a member of the National Center for Ecological Analysis and Synthesis’s marine-debris working group, a collection of scientists who study, among other things, the growing problem of marine debris, also known as ocean trash. Plenty of studies have sounded alarm bells about the state of marine debris; in a recent paper published in the journal Ecology, Rochman and her colleagues set out to determine how many of those perceived risks are real.
Often, Rochman says, scientists will end a paper by speculating about the broader impacts of what they’ve found. For example, a study could show that certain seabirds eat plastic bags, and go on to warn that whole bird populations are at risk of dying out. ‘But the truth was that nobody had yet tested those perceived threats,’ Rochman says. ‘There wasn’t a lot of information.’
Rochman and her colleagues examined more than a hundred papers on the impacts of marine debris that were published through 2013. Within each paper, they asked what threats scientists had studied – 366 perceived threats in all – and what they’d actually found.
In 83 percent of cases, the perceived dangers of ocean trash were proven true. In the remaining cases, the working group found the studies had weaknesses in design and content which affected the validity of their conclusions – they lacked a control group, for example, or used faulty statistics.
Strikingly, Rochman says, only one well-designed study failed to find the effect it was looking for, an investigation of mussels ingesting microscopic bits. The plastic moved from the mussels’ stomachs to their bloodstreams, scientists found, and stayed there for weeks – but didn’t seem to stress out the shellfish.
While mussels may be fine eating trash, though, the analysis also gave a clearer picture of the many ways that ocean debris is bothersome.
Within the studies they looked at, most of the proven threats came from plastic debris, rather than other materials like metal or wood. Most of the dangers also involved large pieces of debris – animals getting entangled in trash, for example, or eating it and severely injuring themselves.
But a lot of ocean debris is ‘microplastic’, or pieces smaller than five millimeters. These may be ingredients used in cosmetics and toiletries, fibers shed by synthetic clothing in the wash, or eroded remnants of larger debris. Compared to the number of studies investigating large-scale debris, Rochman’s group found little research on the effects of these tiny bits. ‘There are a lot of open questions still for microplastic,’ Rochman says, though she notes that more papers on the subject have been published since 2013, the cutoff point for the group’s analysis.
There are also, she adds, a lot of open questions about the ways that ocean debris can lead to sea-creature death. Many studies have looked at how plastic affects an inpidual animal, or that animal’s tissues or cells, rather than whole populations. And in the lab, scientists often use higher concentrations of plastic than what’s really in the ocean. None of that tells us how many birds or fish or sea turtles could die from plastic pollution – or how deaths in one species could affect that animal’s predators, or the rest of the ecosystem.
‘We need to be asking more ecologically relevant questions,’ Rochman says. Usually, scientists don’t know exactly how disasters such as a tanker accidentally spilling its whole cargo of oil and polluting huge areas of the ocean will affect the environment until after they’ve happened. ‘We don’t ask the right questions early enough,’ she says. But if ecologists can understand how the slow-moving effect of ocean trash is damaging ecosystems, they might be able to prevent things from getting worse.
Asking the right questions can help policy makers, and the public, figure out where to focus their attention. The problems that look or sound most dramatic may not be the best places to start. For example, the name of the ‘Great Pacific Garbage Patch’ – a collection of marine debris in the northern Pacific Ocean – might conjure up a vast, floating trash island. In reality though, much of the debris is tiny or below the surface; a person could sail through the area without seeing any trash at all. A Dutch group called ‘The Ocean Cleanup’ is currently working on plans to put mechanical devices in the Pacific Garbage Patch and similar areas to suck up plastic. But a recent paper used simulations to show that strategically positioning the cleanup devices closer to shore would more effectively reduce pollution over the long term.
‘I think clearing up some of these misperceptions is really important,’ Rochman says. Among scientists as well as in the media, she says, ‘A lot of the images about strandings and entanglement and all of that cause the perception that plastic debris is killing everything in the ocean.’ Interrogating the existing scientific literature can help ecologists figure out which problems really need addressing, and which ones they’d be better off – like the mussels – absorbing and ignoring.
Do the following statements agree with the information given in Reading Passage 3?
In boxes 27-33 on you answer sheet, write
TRUE if the statement agrees with the information
FALSE if the statement contradicts the information
NOT GIVEN if there is no information on this
题目定位词:Rochman, first, marine debris
答案位置:第 2 段第 3 行
题解:题目:Rochman 及其同事是最先研究海洋垃圾问题的人。
需要注意的是,当明显的定位词失效时,比如人名 Rochman 在全文多次出现无法据此定位时,要先弄清题目的意思,然后依照文章顺序边读边判断;本题解题的关键在于明确 Rochman 和她的同事是否是最先(first)研究海洋垃圾的人;文章第 2 段提到她是美国国家生态分析与综合研究中心的一员,该组织之前有大量关于海洋垃圾的研究(Plenty of studies),而 Rochman 及其同事的研究也将围绕之前的这些研究展开,与题目中的 first 矛盾。因此答案为 FALSE。
题目定位词:most in danger, certain seabirds
答案位置:第 3 段第 2 行
题解:题目:受海洋垃圾危害最严重的是某些海鸟。
定位词 certain seabirds 在第 3 段第 2 行原词重现,但文中并未提及它们是否是 most in danger。 因此答案为 NOT GIVEN。
题目定位词:have already proved, populations of some birds, will soon become extinct
答案位置:第 3 段第 3—4 行
题解:题目:Rochman 审视的研究中已经证实某些鸟类会很快灭绝。
本题依然跟 birds 相关,继上一题往后读,第 3 行出现了 bird populations,对应题目中的 populations of some birds,这句话是说“一项研究表明某种海鸟会食用塑料袋,然后这项研究随之就会警告说整个鸟类都有灭绝的风险”,其中 at risk of dying out 对应题目中的 will soon become extinct,紧接着 But 引导转折,指出这一说法并未得到证实,其中 nobody had yet tested 与题目中的 have already proved 矛盾。
因此答案为 FALSE。
题目定位词:papers, different kinds of danger, ocean trash
答案位置:第 4 段
题解:题目:Rochman 分析了关于海洋垃圾不同种类危害的论文。
通过 papers 定位到第 4 段第 1 行,题目中的 ocean trash 在文中被替换为 marine debris,即 Rochman 及其同事审阅了一百多篇 2013 年发表的有关海洋垃圾影响的论文,随后提到他们会考察共 366 种感知威胁及研究结论,其中 366 perceived threats 对应题目中的 different kinds of danger。因此答案为 TRUE。
题目定位词:Most, badly designed
答案位置:第 5 段
题解:题目:Rochman 和同事分析的大部分研究都设计得有缺陷。
题目中的 Most 着重考查比例,而比例经常会用百分比等数字进行替换;第 5 段的开头提到了“在 83% 的案例中,海洋垃圾的感知威胁证明是确实存在的。余下的研究案例在设计和内容方面都有缺陷……”,其中 had weaknesses in design and content 对应题目中的 badly designed,但这是余下的研究案例,也就是 17% 的案例存在缺陷,与题目中的 Most 矛盾。因此答案为 FALSE。
题目定位词:One study, was expecting to find, mussels, harmed by eating plastic
答案位置:第 6 段
题解:题目:Rochman 审阅的某项研究预期发现吃塑料垃圾对蚌有害。
通过 mussels 定位到第 6 段第 2 行,这句是说“只有一项设计良好的研究未能发现预期的影响(failed to find the effect it was looking for),该项调查是关于蚌摄入微小的塑料颗粒”,其中 ingesting microscopic plastic pits 替换了题目中的 eating plastic,紧接着进行了细致说明——塑料在蚌的血液中存在了数周但未造成任何困扰。这说明研究的预期就是试图发现吃塑料会对蚌产生影响,与题目描述完全相符。此答案为 TRUE。
题目定位词:mussels, plastic, in preference to, natural diet
答案位置:第 6 、 7 、 13 段
题解:题目:比起它们的天然食物,有些蚌更喜欢吃塑料。
本题涉及对象的比较,比较对象为蚌的天然食物和塑料;通过 mussels 和 plastic 定位到第 6 段,但该段未出现 natural diet 和比较关系;剩下只有第 7 段和第 13 段有 mussels 这个词,但均未提及 natural diet。因此答案为 NOT GIVEN。

