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文章大意:本文是一篇说明文。文章介绍了研究发现蜜蜂的传粉习性可能会影响生物多样性,因此我们在保护蜜蜂这种传粉者的同时,也应该保护其他传粉昆虫。

1 . Honeybees command a lot of attention in insect conservation circles, as they are important for pollinating our food supply. But the findings from researchers emphasize the importance of prioritizing other pollinators or insects like wild bees, moths and butterflies in conservation efforts, too.

For the study, ecologists Joshua Kohn and Dillon Travis from the University of California, painstakingly tracked the pollination of flowers from two plant species in San Diego — white sage and Phacelia distans. Often Travis sat for hours waiting for a single pollinator, honeybees or other insects, to land on a flower. Each time he put a mesh (网状的) bag on the flower to prevent any new visitor, then back to collect seeds from different visitors. Back in the greenhouse, the team grew the seeds, analyzing characteristics that reflected their quality, such as how many seeds grew and survived and how many leaves or flower seedlings (幼苗) grew from them.

They found flowers pollinated by honeybees make fewer and lower-quality seeds than flowers visited by other pollinators. The white sage and Phacelia distans plants produced roughly half the amount of seeds from flowers pollinated by honeybees compared with other pollinators. And Phacelia distans seeds from honeybee-pollinated plants grew into seedlings with fewer flowers.

The researchers also found that honeybees visited about twice as many flowers on one plant before moving to the next than the average of other pollinators, causing honeybees to transfer more pollen in flowers of the same plant, thus resulting in fewer and lower-quality and more inbred (近亲繁殖的) seeds. Other pollinators more often flew between different plants, probably transferring more diverse pollen.

Travis says, “Honeybees’ pollination habit can impact ecosystems and agriculture in the long term. One potential consequence could be that native plant populations decline as next generations become more inbred, reducing biodiversity.”

“It is time to actually shift our dependence for pollination from largely honeybees to other native species as well,” says Jaya Sravanthi Mokkapati, an entomologist at Penn State University.

1. What does paragraph 2 focus on about the research?
A.Its procedures.B.Its members.
C.Its impact.D.Its significance.
2. Why do plants pollinated by honeybees produce fewer and lower-quality seeds?
A.Honeybees cause big damage to plants’ seeds.
B.Honeybees are less selective while pollinating.
C.Honeybees’ pollination efficiency is unexpectedly low.
D.Honeybees prefer to pollinate flowers of the same plant.
3. What did Travis think of their findings?
A.Misleading.B.Worrying.C.Creative.D.Helpful.
4. What is Jaya Sravanthi Mokkapati’s point of view?
A.Native plant populations are declining at a high speed.
B.Honeybees’ pollination impacts plant seeds temporarily.
C.More attention should be paid to protecting other pollinators.
D.Honeybees’ pollination depends more on other native species.
2024-05-25更新 | 22次组卷 | 1卷引用:吉林省基础年级联考2023-2024学年高二下学期5月期中英语试题
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文章大意:这是一篇说明文,文章主要介绍了太阳能树及其好处。

2 . A solar tree is a structure like a tree that generates solar energy using photovoltaic panels (太阳能光伏板). It helps solve an urgent global challenge: Replacing greenhouse gas-emitting energy sources like oil and gas with renewable energy. But the power generation potential of solar trees is relatively limited, and their primary purpose is to raise public awareness about renewable energy by getting people to notice and interact with solar energy in new ways.

Solar trees generally have a firm metal, plastic, or stone base that extends up and out into “branches” on which solar panels are mounted. Beyond this basic structure, there is great diversity in the design of solar tree units. The solar tree’s photovoltaic “leaves” absorb sunlight, converting it into electricity that is conducted down through the trunk-like central pillar of the structure to an inside battery. Many designs feature rotating (旋转的) panels that can move throughout the day in order to obtain the greatest amount of sunlight.

Solar trees help power homes, businesses, and public services. They can create shade to help reduce the urban heat island effect and provide shelter in severe weather such as rainstorms and heatwaves, creating greater urban adapting ability in the face of climate change. They also enhance public spaces, providing charging stations, and powering streetlights.

In comparison to other kinds of ground-mounted solar panel devices, solar trees don’t require much land. They make solar energy generation possible in areas with little land that can’t support vast solar arrays, as well as places that lack sufficient rooftop space for panels. However, solar panels are much cheaper than solar trees at present and have far greater energy generation capacity. Therefore, present solar tree designs often serve as a extra source rather than as a primary energy source.

At present, solar trees aren’t designed as large-scale solar projects, which limits their ability to contribute to the low-carbon energy transition. Still, their varied designs are appealing. This makes solar trees effective at displaying and thereby educating people about solar energy, and promoting a business or organization’s commitment to renewable energy.

1. What is the main purpose of building solar trees?
A.To beautify the urban environment.B.To draw public attention to solar energy.
C.To replace non-renewable energy resources.D.To provide charging services in emergencies.
2. What do we know about a solar tree?
A.It stores energy in its own battery.
B.It can adjust its height automatically.
C.It is made of environmentally friendly materials.
D.It transforms sunlight into electricity by its metal base.
3. What does the third paragraph mainly talk about?
A.The design features of solar trees.B.The ways of saving energy in cities.
C.The benefits of solar trees to humans.D.The difficulties of promoting solar trees.
4. What is the advantage of solar trees over other ground-mounted solar panel devices?
A.They occupy much less land.B.They are cheaper to manufacture.
C.They are more effective in generating energy.D.They can work in various weather conditions.
阅读理解-阅读单选(约360词) | 适中(0.65) |
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文章大意:本文是一篇说明文。文章介绍了一项研究指出,美国伊利诺伊州的漂浮花园不但起到了美观的作用,而且能够有效改善水质。

3 . Now, a study proves that gardens are more than just a pretty place. The study, by researchers at Illinois State University, demonstrates that such constructed gardens can have a measurable and positive impact on water quality.

Floating gardens are essentially platforms built and wrapped in coconut husks (椰子壳), and filled in with native plantings. As plants grow, they extend their roots into the water. On the North Branch of the Chicago River, non-profit Urban Rivers and its partners are developing a mile-long floating eco-park called the Wild Mile. The re-development of this former industrial canal is Urban Rivers’ important project. As part of the park, floating gardens, attached to shore, are being fixed.

The primary aim of the floating gardens is beautification. But the Illinois State team, from the University’s Department of Geology, Geography, and the Environment, saw an ideal setup for a controlled experiment. “We joined it because it’s the perfect opportunity to see if there’s an influence on water quality,” explains lead author Abigail Heath.

The study is novel: previous studies have explored floating gardens’ influence on water quality over time, primarily in wastewater treatment ponds, but not over space, in moving water. The project also matches well with Urban Rivers’ broader goals. “The city is interested in bettering water quality,” says Phil Nicodemus, Urban Rivers’ Director of Research. “Happily, Illinois State took part in it later.”

Could this small human-made park improve water quality? An average of data collected over the course of the study shows middle but definitive improvement. For example, nitrogen (氮) dropped from 4.69 milligrams per liter in surface water to 4.43 milligrams per liter, a drop of about 1 percent.

“Despite how small this garden was, there was measurable improvement in water quality from upstream to downstream,” notes Heath. She and her colleagues see this as a model for how large floating gardens should be to help improve water in similar settings. “Even this tiny garden makes a difference,” she says.

1. What can be inferred from the second paragraph?
A.The floating gardens are environmentally friendly.
B.The floating gardens are fixed everywhere in the eco-park.
C.The floating gardens can help fix the former parks.
D.The Urban Rivers were once industrial canals.
2. What is the main reason to build the floating gardens?
A.To reduce waste water.B.To attract more visitors to the park.
C.To make the surroundings brilliant.D.To help researchers do the experiment.
3. What does the underlined word “it” refer to in Paragraph 4?
A.The floating garden.B.The project.
C.The treatment of ponds.D.The quality of water.
4. Which of the following could be the best title for the text?
A.Floating Gardens: More than Pretty
B.The Best Way to Better Water Quality
C.A Practical Method of Improving Parks
D.Floating Gardens Beautify the City
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