Cambridge IGCSE · thinka 原创模拟试题

2024 Cambridge IGCSE Environmental Management (0680) 模拟试题及答案详解

Thinka Nov 2024 (V1) Cambridge IGCSE-Style Mock — Environmental Management (0680)

160 210 分钟2024
An original Thinka practice paper modelled on the structure and difficulty of the Nov 2024 (V1) Cambridge IGCSE Environmental Management (0680) paper. Not affiliated with or reproduced from Cambridge.

卷一 Theory

Answer all questions. Show your working and use appropriate units where necessary.
9 题目 · 81
题目 1 · Structured
9
A researcher is studying a savanna ecosystem.

(a) Describe how a researcher can use random sampling with quadrats to estimate the population of a specific wildflower species in a \(50\text{ m} \times 50\text{ m}\) area. [4]

(b) Explain why a large sample size of quadrats is better than a small sample size. [2]

(c) Suggest three human activities that could reduce biodiversity in this savanna ecosystem. [3]
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解题

(a)
1. Set up measuring tapes at right angles to mark out a coordinate grid of \(50\text{ m} \times 50\text{ m}\).
2. Use a random number generator to select coordinates to avoid bias.
3. Place the quadrat at each generated coordinate pair.
4. Count and record the number of individual wildflowers inside each quadrat.
5. Calculate the average (mean) number of wildflowers per quadrat and multiply by the total number of quadrats that would fit in the entire \(2500\text{ m}^2\) area to estimate the total population.

(b)
1. A larger sample size is more representative of the entire area, which minimizes the effect of anomalous patches or uneven distribution.
2. It increases the reliability and accuracy of the population estimate.

(c)
Any three from:
- Overgrazing by livestock, which damages vegetation.
- Land clearance for agriculture or building developments.
- Introduction of non-native invasive plant or animal species.
- Uncontrolled or frequent deliberate burning/wildfires.

评分标准

(a) [Max 4 marks]
- grid established using measuring tapes / coordinates [1]
- use of random number generator to select coordinates [1]
- placing the quadrat at the selected coordinates [1]
- counting the number of wildflowers in each quadrat [1]
- calculate mean per quadrat and scale up to the total area of \(2500\text{ m}^2\) [1]

(b) [Max 2 marks]
- more representative of the whole area / reduces effect of anomalies [1]
- increases accuracy / reliability of the estimate [1]

(c) [Max 3 marks]
- overgrazing [1]
- land clearance / habitat destruction [1]
- introduction of invasive alien species [1]
- uncontrolled burning / wildfires [1]
题目 2 · Structured
9
A student investigates the distribution of plant species from the shoreline inland across a coastal sand dune system.

(a) (i) Explain why a belt transect is more suitable than random quadrat sampling for this investigation. [2]

(ii) Describe how the student would carry out this belt transect. [4]

(b) State three abiotic factors that the student could measure along the transect that might affect plant distribution. [3]
查看答案详解

解题

(a) (i)
- A transect is used because there is an environmental gradient or a systematic change in conditions from the sea inland.
- Random sampling would not show the progressive pattern of succession or zonation of plants across the dunes.

(a) (ii)
1. Lay out a long tape measure in a straight line starting from the high-tide mark on the shoreline and extending inland.
2. Place a quadrat at regular, pre-determined intervals along the tape measure (e.g., every 5 metres).
3. Estimate the percentage cover or record the abundance of each plant species inside each quadrat.
4. Measure and record the exact distance from the shoreline for each quadrat placement.

(b)
Any three from:
- Soil salinity
- Soil pH
- Soil moisture / water content
- Wind speed
- Light intensity
- Soil or air temperature

评分标准

(a) (i) [Max 2 marks]
- used because there is an environmental gradient / systematic change in conditions [1]
- random sampling would not show the zone-by-zone pattern / change over distance [1]

(a) (ii) [Max 4 marks]
- lay out a tape measure from the shoreline inland (at right angles to the shore) [1]
- place quadrats at regular / systematic intervals along the tape [1]
- estimate percentage cover / record species presence or abundance [1]
- record the distance from the shore for each quadrat [1]

(b) [Max 3 marks]
- soil salinity [1]
- soil pH [1]
- soil moisture [1]
- wind speed [1]
- light intensity [1]
- soil/air temperature [1]
题目 3 · Structured
9
Methods of measuring animal abundance vary depending on the target species.

(a) Pitfall traps are used to sample ground-dwelling invertebrates.

(i) Suggest two design features of a pitfall trap that ensure it operates successfully. [2]

(ii) Explain why pitfall traps must be checked regularly. [2]

(b) A scientist wants to estimate the population of a woodland beetle using the mark-release-recapture method.

(i) Describe the steps involved in the mark-release-recapture method. [3]

(ii) State two assumptions made when using this method to estimate population size. [2]
查看答案详解

解题

(a) (i)
- The container must be buried so that its top rim is completely level with the soil surface.
- A raised lid or cover should be placed over the trap to shield it from rainfall and to hide it from predators.

(a) (ii)
- To prevent the captured invertebrates from escaping the trap.
- To prevent predators (like birds or larger insects) from entering and eating the trapped organisms.
- To prevent trapped animals from dying due to starvation or drowning if rainwater accumulates.

(b) (i)
1. Capture a sample of woodland beetles, count them (\(N_1\)), and mark each with a non-toxic, durable paint or ink.
2. Release the marked beetles back into the woodland and allow them sufficient time to mix back into the wild population.
3. Capture a second sample after a set period of time, count the total number caught (\(N_2\)), and count how many of these are marked (recaptures, \(R\)). Calculate population size using: \((N_1 \times N_2) / R\).

(b) (ii)
Any two from:
- No significant births, deaths, immigration, or emigration during the study period.
- The marking method does not affect the survival of the beetles (e.g., does not make them more visible to predators).
- The marked individuals distribute themselves randomly back into the population.
- The marks do not wear off or disappear.

评分标准

(a) (i) [Max 2 marks]
- container rim level with soil surface [1]
- raised cover/lid to protect from rain / predators [1]
- drainage holes in bottom [1]

(a) (ii) [Max 2 marks]
- prevent animals escaping [1]
- prevent predators eating captured animals [1]
- prevent mortality from dehydration/starvation/drowning [1]

(b) (i) [Max 3 marks]
- capture first sample, count (\(N_1\)), and mark with non-toxic substance [1]
- release and allow time to mix [1]
- collect second sample, count total (\(N_2\)) and recaptured marked individuals (\(R\)) / use Lincoln Index formula [1]

(b) (ii) [Max 2 marks]
- no births / deaths / migration [1]
- marks do not affect survival / predation rates [1]
- marked individuals mix randomly [1]
- marks do not rub off [1]
题目 4 · Structured
9
The Earth's atmosphere is composed of distinct layers and maintains a natural balance of gases.

(a) (i) Name the layer of the atmosphere closest to the Earth's surface and describe how temperature changes with altitude in this layer. [2]

(ii) Name the layer of the atmosphere that contains the highest concentration of ozone. [1]

(b) State the role of the natural greenhouse effect in maintaining life on Earth. [2]

(c) Describe how human activities have increased the concentration of methane in the atmosphere. [4]
查看答案详解

解题

(a) (i)
- The layer closest to the surface is the troposphere.
- In this layer, temperature decreases as altitude increases.

(a) (ii)
- Stratosphere.

(b)
- The natural greenhouse effect traps infrared radiation / heat within the atmosphere.
- This keeps the Earth's average global temperature warm enough (approximately \(15\,^{\circ}\text{C}\)) to support liquid water and sustain living organisms, preventing extreme cold.

(c)
- Intensive livestock farming (specifically cattle and sheep rearing) produces massive amounts of methane through enteric fermentation (digestive processes).
- Wet rice cultivation in flooded paddy fields creates anaerobic soil conditions where methanogenic bacteria decompose organic matter and release methane.
- Organic waste decaying under anaerobic conditions in municipal landfill sites produces landfill gas (mostly methane).
- Extraction, processing, and transport of fossil fuels (such as coal mining and leaks from natural gas pipelines).

评分标准

(a) (i) [Max 2 marks]
- troposphere [1]
- temperature decreases with altitude [1]

(a) (ii) [Max 1 mark]
- stratosphere [1]

(b) [Max 2 marks]
- traps heat / infrared radiation in the atmosphere [1]
- maintains a temperature warm enough to sustain life / liquid water [1]

(c) [Max 4 marks]
- intensive livestock / cattle farming releases methane from digestive systems [1]
- flooded rice paddies create anaerobic conditions / microbial decay [1]
- decay of organic waste in landfill sites under anaerobic conditions [1]
- venting / leaks from natural gas pipelines / fossil fuel extraction [1]
题目 5 · Structured
9
Managing the harvesting of marine species is vital to prevent the collapse of fish stocks.

(a) (i) Explain how the use of sonar and modern tracking technology has contributed to overfishing. [2]

(ii) Define the term 'by-catch' and explain its negative consequences on marine ecosystems. [3]

(b) Describe three management strategies that can be used to make marine fisheries more sustainable. [4]
查看答案详解

解题

(a) (i)
- Sonar allows commercial fishing vessels to locate large shoals of fish with high precision.
- This drastically reduces searching time and increases catching efficiency, leaving very few adult fish to reproduce and rebuild populations.

(a) (ii)
- Definition: By-catch refers to non-target marine species (such as turtles, dolphins, sharks, or juvenile fish) that are caught unintentionally during commercial fishing operations.
- Consequences: It causes severe declines in vulnerable or endangered species that have slow reproductive rates.
- It also disrupts marine food webs by removing key predators or prey species from the ecosystem.

(b)
- Quotas / Catch limits: Placing strict legal limits on the total mass of each fish species that can be harvested per season.
- Net mesh regulations: Enforcing minimum mesh sizes so that juvenile fish can escape, allowing them to reach breeding age.
- Marine Protected Areas (MPAs) / No-take zones: Establishing restricted ocean zones where all fishing is banned to allow populations to regenerate.
- Closed seasons: Banning fishing during critical breeding times of the year to protect spawning adult fish.

评分标准

(a) (i) [Max 2 marks]
- precise location of fish shoals / schools [1]
- decreases search time / increases catching efficiency (leaving fewer fish to reproduce) [1]

(a) (ii) [Max 3 marks]
- definition: non-target species caught unintentionally [1]
- leads to decline of endangered/vulnerable species (e.g. turtles, dolphins) [1]
- disrupts food webs / trophic balance [1]

(b) [Max 4 marks]
- quotas/catch limits restrict the total tonnage harvested [1]
- minimum net mesh sizes allow juvenile fish to escape [1]
- marine reserves / no-take zones protect habitats and allow populations to recover [1]
- closed seasons during spawning periods [1]
- pole-and-line fishing limits by-catch [1]
题目 6 · Structured
9
Acid rain is a significant environmental problem caused by industrial air pollution.

(a) (i) Identify the two main gases that react in the atmosphere to form acid rain. [2]

(ii) Describe two negative impacts of acid rain on terrestrial ecosystems. [2]

(b) Flue-gas desulfurisation (FGD) is one method used to reduce emissions of acidic gases from coal-fired power stations.

(i) Explain how wet flue-gas desulfurisation reduces sulfur dioxide emissions. [3]

(ii) State one other strategy, besides flue-gas desulfurisation, that can be used to reduce the occurrence of acid rain. [2]
查看答案详解

解题

(a) (i)
- Sulfur dioxide (\(\text{SO}_2\))
- Nitrogen oxides (\(\text{NO}_x\))

(a) (ii)
- Acid rain leaches essential mineral nutrients (like calcium and magnesium) from the soil, depriving plants of what they need to grow.
- It mobilizes toxic aluminium ions in the soil, which damages plant roots and restricts water absorption.
- It damages leaves directly, destroying the waxy cuticle and reducing a plant's ability to photosynthesise.

(b) (i)
- Exhaust gases containing sulfur dioxide are directed through a scrubber unit.
- An alkaline slurry containing crushed limestone (calcium carbonate) or lime (calcium oxide) is sprayed into the gas stream.
- The acidic sulfur dioxide reacts chemically with the calcium compounds to form calcium sulfite/sulfate (gypsum), which is collected as a solid residue, cleaning the gas.

(b) (ii)
- Switching from coal to low-sulfur coal or alternative energy sources (like solar, wind, or natural gas).
- Installing catalytic converters in road vehicles to reduce nitrogen oxide emissions.
- Implementing energy conservation measures to reduce the overall demand for electricity generated by burning coal.

评分标准

(a) (i) [Max 2 marks]
- sulfur dioxide [1]
- nitrogen oxides [1]

(a) (ii) [Max 2 marks]
- leaches nutrients (calcium/magnesium) from soil [1]
- releases toxic aluminium ions that damage roots [1]
- damages leaf cuticles / reduces photosynthesis [1]

(b) (i) [Max 3 marks]
- waste gases passed through a scrubber [1]
- limestone/lime slurry sprayed into the gases [1]
- sulfur dioxide reacts with calcium compounds to form gypsum / solid waste [1]

(b) (ii) [Max 2 marks]
- use low-sulfur coal [1]
- transition to renewable energy sources (wind/solar) [1]
- catalytic converters on vehicles to reduce \(\text{NO}_x\) [1]
题目 7 · Structured
9
Coral reefs are highly productive ecosystems that are currently under severe threat.

(a) (i) Describe how ocean warming leads to coral bleaching. [2]

(ii) Explain how agricultural run-off can damage nearby coral reefs. [3]

(b) Explain how the creation of Marine Protected Areas (MPAs) can help conserve coral reefs. [4]
查看答案详解

解题

(a) (i)
- High sea temperatures stress the coral polyps.
- This stress causes the corals to expel the microscopic, symbiotic algae (zooxanthellae) living in their tissues, which deprives them of food and turns them white.

(a) (ii)
- Fertilizers containing high amounts of nitrates and phosphates wash into the sea.
- This nutrient enrichment triggers rapid algal blooms over the reef.
- The dense algae layer blocks out sunlight and smothers corals, preventing photosynthesis and killing the reef.
- Suspended sediment in agricultural run-off can also physically settle on and block light from the corals.

(b)
- MPAs restrict or ban destructive fishing practices (like dynamite fishing or bottom trawling) that physically smash reefs.
- They regulate tourism, reducing physical damage from boat anchors and recreational divers.
- They allow herbivorous fish populations (which graze on algae) to recover, maintaining the natural ecological balance on the reef.
- They provide a safe breeding ground, helping coral larvae disperse and colonize neighboring degraded areas.

评分标准

(a) (i) [Max 2 marks]
- increased ocean temperatures cause stress to coral polyps [1]
- corals expel symbiotic algae (zooxanthellae), turning white / losing food source [1]

(a) (ii) [Max 3 marks]
- run-off contains nitrates/phosphates from fertilizers [1]
- causes algal blooms / rapid growth of algae [1]
- algae smother corals / block sunlight [1]
- sediment blocks light / smothers polyps [1]

(b) [Max 4 marks]
- bans/limits destructive fishing methods [1]
- regulates anchoring / tourism to prevent physical damage [1]
- protects herbivorous fish that control algae growth [1]
- creates a secure habitat for breeding and larval spillover [1]
题目 8 · Structured
9
Managing forest resources sustainably is essential to mitigate biodiversity loss and soil erosion.

(a) (i) Distinguish between selective logging and clear-cutting as methods of harvesting timber. [2]

(ii) Explain why selective logging is considered more sustainable than clear-cutting. [3]

(b) Agroforestry is a land management system where trees are grown alongside crops or livestock.

Describe how agroforestry benefits both agricultural productivity and biodiversity conservation. [4]
查看答案详解

解题

(a) (i)
- Selective logging involves cutting down only specific, mature trees of high value, leaving the rest of the forest stand intact.
- Clear-cutting involves the complete removal of all trees in a given area at the same time.

(a) (ii)
- Selective logging preserves the forest canopy, which protects soil from being eroded by wind and heavy rain.
- It maintains the complex structural habitats, preserving forest biodiversity.
- It leaves parent trees in place, allowing natural regeneration of the forest over time.

(b)
- Tree roots bind the soil, preventing wind and water erosion of fertile topsoil, which sustains crop yields.
- Decomposing leaf litter from the trees adds organic matter and nutrients back into the soil, reducing the need for chemical fertilizers.
- Tree canopies act as windbreaks and provide partial shade, reducing soil moisture evaporation.
- The trees offer habitats, nesting sites, and food sources for wildlife, including birds, beneficial insects, and pollinators, which increases biodiversity.

评分标准

(a) (i) [Max 2 marks]
- selective logging cuts only specific, mature trees [1]
- clear-cutting removes all trees in an area [1]

(a) (ii) [Max 3 marks]
- maintains forest canopy / prevents soil erosion [1]
- preserves habitats and wildlife niches [1]
- allows natural seed dispersal / regeneration [1]
- reduces carbon release [1]

(b) [Max 4 marks]
- roots bind soil / reduce erosion to preserve fertile topsoil [1]
- leaf litter decomposes to return nutrients to soil [1]
- trees act as windbreaks / reduce soil moisture loss [1]
- provides habitat/food for pollinators and wild species [1]
- structural diversity increases overall biodiversity [1]
题目 9 · Structured
9
The table shows the Total Allowable Catch (TAC) and the actual catch of cod, in thousands of tonnes, in a northern marine fishery between 2018 and 2022.

| Year | Total Allowable Catch (TAC) / thousand tonnes | Actual Catch / thousand tonnes |
|---|---|---|
| 2018 | 120 | 118 |
| 2019 | 110 | 115 |
| 2020 | 95 | 98 |
| 2021 | 80 | 81 |
| 2022 | 80 | 76 |

(a) Describe the trends in the Total Allowable Catch (TAC) and the actual catch from 2018 to 2022. [3]

(b) (i) Calculate the percentage decrease in the Total Allowable Catch (TAC) from 2018 to 2022. Show your working. [2]

(ii) State the year in which the actual catch exceeded the TAC by the greatest amount, and calculate this excess. [2]

(c) Explain how the use of a minimum net mesh size supports the sustainable management of marine fisheries. [2]
查看答案详解

解题

(a)
- Both the TAC and actual catch showed an overall downward trend from 2018 to 2022.
- TAC decreased steadily from 120 thousand tonnes in 2018 to 80 thousand tonnes in 2021, staying constant into 2022.
- Actual catch exceeded the TAC in three of the five years (2019, 2020, 2021) but was below the TAC in 2018 and 2022.

(b) (i)
- Change in TAC = \(120 - 80 = 40\) thousand tonnes.
- Percentage decrease = \(\frac{40}{120} \times 100 = 33.33\%\).
- Answer: 33.3% (or 33%).

(b) (ii)
- In 2019, actual catch (115) exceeded TAC (110) by 5 thousand tonnes.
- In 2020, it exceeded by 3 thousand tonnes.
- In 2021, it exceeded by 1 thousand tonnes.
- Greates excess year: 2019.
- Excess amount: 5 thousand tonnes (or 5000 tonnes).

(c)
- A minimum mesh size ensures that the holes in the fishing nets are large enough for young/juvenile fish to escape.
- This allows them to grow, reach reproductive age, and spawn to maintain the population size of the fishery.

评分标准

(a) Max 3 marks:
- Both TAC and actual catch decreased overall [1]
- TAC fell from 120 to 80 thousand tonnes / leveled off at 80 thousand tonnes [1]
- Mention of actual catch exceeding TAC in 2019, 2020, or 2021 / actual catch falling below TAC in 2018 or 2022 [1]
- Comparative data quote with years [1]

(b) (i) Max 2 marks:
- Correct working shown: \(\frac{120 - 80}{120} \times 100\) [1]
- Correct calculation: 33.3% / 33.33% / 33% [1]

(b) (ii) Max 2 marks:
- Identifies 2019 [1]
- Calculates excess of 5 thousand tonnes / 5000 tonnes [1]

(c) Max 2 marks:
- Allows young / small / juvenile fish to escape / pass through [1]
- Gives them a chance to mature / reproduce / maintain breeding stock [1]

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卷二 Management in Context

Answer all questions. Calculations and graphical representations are required.
5 题目 · 80
题目 1 · Structured
16
A conservation group monitors the biodiversity of ground-dwelling insects in two agricultural plots:
- Plot A: Traditional monoculture maize
- Plot B: Maize intercropped with beans and squash, practicing organic farming

They used pitfall traps to collect specimens over a 5-day period.

(a) (i) State the purpose of using a pitfall trap and describe how to set one up to ensure a representative sample of ground-dwelling insects.
(ii) Identify one biotic factor and one abiotic factor that could affect the number of insects caught in the traps.

(b) The table shows the results of the insect survey:
| Insect Group | Plot A (monoculture) count | Plot B (intercropped) count |
|---|---|---|
| Beetles | 80 | 25 |
| Ants | 5 | 22 |
| Spiders | 3 | 20 |
| Ground Bugs | 2 | 18 |
| Centipedes | 0 | 15 |
| **Total** | **90** | **100** |

(i) Calculate the percentage of the total catch in Plot A represented by Beetles. Show your working.
(ii) Compare the species richness and species evenness of the two plots using the data from the table.

(c) Explain how intercropping and organic farming practices can lead to higher biodiversity in agricultural landscapes compared to monoculture.

(d) Suggest two reasons why maintaining high insect biodiversity is beneficial to agricultural crop yields.
查看答案详解

解题

(a) (i) Purpose: To collect ground-dwelling insects / active invertebrates. Setup: Dig a small hole in the ground and place a cup/container inside so the rim is level with the soil surface. Cover with a raised lid/slate to protect against rain/predators. Place multiple traps across a grid pattern (random or systematic) to ensure a representative sample.
(a) (ii) Biotic: Presence of predators near the trap, density of vegetation surrounding the trap. Abiotic: Temperature, rainfall/humidity, soil moisture.

(b) (i) \(\frac{80}{90} \times 100 = 88.88...\%\) which rounds to \(88.9\%\) (or \(89\%\)).
(b) (ii) Richness: Plot B has a higher species richness (5 species present) compared to Plot A (4 species present). Evenness: Plot B has a much higher species evenness (the counts are relatively equal, ranging from 15 to 25) compared to Plot A, which is heavily dominated by one species (Beetles, 80 out of 90).

(c) Intercropping creates multiple canopy layers and varied food sources/microhabitats, supporting different species. Organic farming avoids synthetic pesticides and herbicides, reducing non-target mortality of insects and weeds, allowing food webs to remain intact.

(d) 1. Provides natural predators (like spiders/beetles) to control agricultural pests, reducing crop damage.
2. Ensures a stable population of pollinators, improving fertilization and yield of crops.

评分标准

(a)(i) Max [3 marks]:
- 1 mark for stating the purpose is to capture active ground-dwelling invertebrates.
- 1 mark for describing the trap insertion (rim level with soil surface).
- 1 mark for describing representative sampling (e.g., using a grid, replication, random placement).

(a)(ii) [2 marks]:
- 1 mark for a valid biotic factor (e.g., predation, food availability).
- 1 mark for a valid abiotic factor (e.g., temperature, rainfall).

(b)(i) [2 marks]:
- 1 mark for correct working: \(\frac{80}{90} \times 100\).
- 1 mark for correct answer: \(88.9\%\) (accept \(88.89\%\) or \(89\%\)).

(b)(ii) Max [3 marks]:
- 1 mark for stating Plot B has higher richness (5 vs 4).
- 1 mark for stating Plot B has higher evenness.
- 1 mark for supporting data citation (e.g., Plot A is dominated by beetles at 80/90, whereas Plot B's lowest count is 15).

(c) Max [4 marks]:
- 1 mark for intercropping providing diverse niches/shelter.
- 1 mark for organic farming avoiding chemical pesticides.
- 1 mark for organic farming preserving soil organic matter and food webs.
- 1 mark for intercropping creating complex food chains.

(d) [2 marks]:
- 1 mark for pollination services.
- 1 mark for biological pest control (predation of pests).
题目 2 · Structured
16
The Bale Mountain Vervet (*Chlorocebus djamdjamensis*) is an endangered primate endemic to the bamboo forests of Ethiopia. A research study tracked the total bamboo forest cover and the number of vervet groups in a montane region over a 15-year period.

(a) The table shows the results:
| Year | Bamboo Forest Cover / hectares | Number of Vervet Groups |
|---|---|---|
| 2005 | 1200 | 45 |
| 2010 | 950 | 38 |
| 2015 | 700 | 24 |
| 2020 | 520 | 15 |

(i) Calculate the percentage decrease in bamboo forest cover between 2005 and 2020. Show your working.
(ii) Describe the relationship between forest cover and the number of vervet groups shown by the data.

(b) Explain how habitat fragmentation caused by forest clearance can threaten the long-term survival of the Bale Mountain Vervet population.

(c) State three human activities that lead to the deforestation of bamboo forests in montane regions.

(d) Discuss how the establishment of wildlife corridors and local community education programs can help conserve endangered forest species.
查看答案详解

解题

(a) (i) Decrease in cover = \(1200 - 520 = 680\) hectares.
Percentage decrease = \(\frac{680}{1200} \times 100 = 56.66...\%\) which rounds to \(56.7\%\).
(a) (ii) There is a positive correlation between forest cover and the number of groups. As the bamboo forest cover decreases from 1200 to 520 hectares, the number of vervet groups steadily decreases from 45 to 15.

(b) Habitat fragmentation splits larger populations into smaller, isolated groups. This restricts movement, making it difficult for individuals to find mates, leading to inbreeding depression and loss of genetic diversity. Smaller patches also increase the 'edge effect', exposing them to predators and human encroachment, and make them more vulnerable to localized natural disasters.

(c) 1. Agricultural expansion / clearing land for crops.
2. Logging for timber, fuelwood, or bamboo harvesting for construction.
3. Infrastructure development, such as roads and settlements.

(d) Wildlife corridors connect isolated forest fragments, allowing gene flow, reducing inbreeding, and helping animals migrate to find food. Community education programs raise awareness about the ecological value of biodiversity, helping to reduce illegal poaching, encourage sustainable bamboo harvesting, and foster community-led forest protection initiatives.

评分标准

(a)(i) [2 marks]:
- 1 mark for correct working: \(\frac{1200 - 520}{1200} \times 100\) or \(\frac{680}{1200} \times 100\).
- 1 mark for correct calculation: \(56.7\%\) (accept \(56.67\%\) or \(57\%\)).

(a)(ii) [2 marks]:
- 1 mark for identifying positive relationship / direct correlation.
- 1 mark for quoting data from both variables to illustrate (e.g., when forest cover drops to 520, groups fall to 15).

(b) Max [4 marks]:
- 1 mark for isolation of breeding populations / inbreeding.
- 1 mark for restriction of movement to find food / resource scarcity.
- 1 mark for increased susceptibility to diseases / environmental changes.
- 1 mark for increased edge effects / vulnerability to hunting or predators.

(c) [3 marks]:
- 1 mark for agricultural land clearance.
- 1 mark for extraction of bamboo for building materials / fuelwood.
- 1 mark for road building / urbanization.

(d) Max [5 marks]:
- Corridors (Max 3): 1 mark for linking patches, 1 mark for facilitating gene flow / genetic variation, 1 mark for migration routes.
- Education (Max 2): 1 mark for reducing conflict/poaching, 1 mark for encouraging sustainable alternative livelihoods / community policing.
题目 3 · Structured
16
Scientists monitor the atmospheric concentration of carbon dioxide (\(CO_2\)) at a high-altitude observatory. The table shows the average annual concentration of \(CO_2\) in parts per million (ppm) and the average global temperature anomaly (relative to the 20th-century average) from 1980 to 2020.

| Year | Average Atmospheric \(CO_2\) / ppm | Temperature Anomaly / \(^\circ\text{C}\) |
|---|---|---|
| 1980 | 338.8 | +0.26 |
| 1990 | 354.4 | +0.45 |
| 2000 | 369.6 | +0.40 |
| 2010 | 389.9 | +0.72 |
| 2020 | 414.2 | +1.02 |

(a) (i) Calculate the increase in atmospheric \(CO_2\) concentration between 1980 and 2020. Show your working.
(ii) State the overall trend in both \(CO_2\) concentration and global temperature anomaly over the 40-year period.

(b) Explain the mechanism of the enhanced greenhouse effect. Use the terms *shortwave radiation* and *longwave radiation* in your answer.

(c) Name two major greenhouse gases other than carbon dioxide, and state one anthropogenic (human-induced) source for each.

(d) State how reforestation acts as a carbon sink and describe one other geoengineering strategy designed to reduce atmospheric greenhouse gas concentrations.
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解题

(a) (i) Increase = \(414.2 - 338.8 = 75.4\) ppm.
(a) (ii) Both average atmospheric \(CO_2\) concentration and global temperature anomaly show an overall upward/increasing trend over the 40-year period.

(b) Incoming solar radiation reaches the Earth's atmosphere mainly as shortwave radiation (light). The Earth's surface absorbs this energy and re-emits it as longwave radiation (infrared/heat). Greenhouse gases in the atmosphere absorb this outgoing longwave radiation and re-radiate it in all directions, including back to the Earth's surface, trapping heat and increasing temperatures.

(c) Gas 1: Methane (\(CH_4\)). Source: Rice cultivation, livestock farming (enteric fermentation), or landfill decay.
Gas 2: Nitrous oxide (\(N_2O\)). Source: Agricultural soil management (use of synthetic nitrogen fertilizers), or industrial processes.

(d) Reforestation acts as a carbon sink because growing trees absorb carbon dioxide from the atmosphere during photosynthesis and store it as biomass (organic carbon). Another geoengineering strategy is Carbon Capture and Storage (CCS), which captures carbon dioxide emissions directly from industrial sources like power stations, compresses it, and injects it deep underground into geological formations for permanent storage.

评分标准

(a)(i) [2 marks]:
- 1 mark for correct subtraction: \(414.2 - 338.8\).
- 1 mark for correct value: \(75.4\) ppm.

(a)(ii) [2 marks]:
- 1 mark for identifying that both increase overall.
- 1 mark for noting any detail (e.g., temperature fluctuates slightly in 2000 but the long-term trend is upward).

(b) Max [4 marks]:
- 1 mark for shortwave radiation from the sun passing through the atmosphere.
- 1 mark for the Earth absorbing shortwave and re-emitting energy as longwave radiation.
- 1 mark for greenhouse gases absorbing outgoing longwave radiation.
- 1 mark for re-emitting heat back to Earth, raising global temperatures.

(c) [4 marks]:
- 1 mark for each greenhouse gas (accept Methane, Nitrous oxide, CFCs, Water vapor) [Max 2].
- 1 mark for a corresponding correct anthropogenic source for each gas [Max 2].

(d) Max [4 marks]:
- 1 mark for stating that trees absorb \(CO_2\) during photosynthesis.
- 1 mark for stating that carbon is locked in tree biomass/wood.
- 1 mark for identifying another strategy (e.g., Carbon Capture and Storage (CCS), ocean fertilization, or biochar).
- 1 mark for explaining how that chosen strategy works.
题目 4 · Structured
16
The North Sea cod fishery has experienced severe overexploitation. Governments use several management strategies to restore fish stocks. The table below shows the estimated breeding stock biomass (in thousands of tonnes) and the total allowable catch (TAC, in thousands of tonnes) for five selected years.

| Year | Breeding Stock Biomass / thousand tonnes | Total Allowable Catch (TAC) / thousand tonnes |
|---|---|---|
| Year 1 | 180 | 90 |
| Year 3 | 110 | 55 |
| Year 5 | 60 | 25 |
| Year 7 | 45 | 15 |
| Year 9 | 75 | 30 |

(a) (i) Calculate the percentage change in breeding stock biomass between Year 1 and Year 7. Show your working.
(ii) Suggest why the TAC was significantly reduced by Year 7.

(b) Explain the concept of 'maximum sustainable yield' (MSY) and why harvesting above this level leads to fishery collapse.

(c) Describe how the following three management strategies can reduce the impact of overfishing:
- 1. Mesh size regulations
- 2. No-take marine reserves
- 3. Fishing quotas

(d) Suggest two difficulties that conservation authorities face when enforcing fishing quotas.
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解题

(a) (i) Decrease in biomass = \(180 - 45 = 135\) thousand tonnes.
Percentage decrease = \(\frac{135}{180} \times 100 = 75\%\).
(a) (ii) The TAC was reduced because the breeding stock biomass had declined dramatically (from 180 to 45 thousand tonnes). This reduction was necessary to prevent complete collapse of the fishery and allow the remaining population to reproduce.

(b) Maximum Sustainable Yield (MSY) is the maximum level at which a natural resource can be routinely harvested without long-term depletion. Harvesting above MSY removes individuals faster than the population can reproduce, depleting the breeding stock and leading to rapid population decline and eventual fishery collapse.

(c) 1. Mesh size regulations: Setting a minimum net mesh size allows smaller, juvenile fish to escape, ensuring they reach reproductive age and can spawn before being harvested.
2. No-take marine reserves: Designated areas where all fishing is banned protect critical habitats, spawning grounds, and nurseries, allowing fish populations to recover and eventually spill over into surrounding fishable waters.
3. Fishing quotas: Limiting the total mass of fish that can be landed by each vessel or country prevents unlimited harvesting and maintains the extraction rate at or below sustainable levels (MSY).

(d) 1. Monitoring large areas of open ocean is logistically difficult and expensive.
2. Illegal, unreported, and unregulated (IUU) fishing practices / bypass of quotas by discarding dead non-target fish (bycatch) at sea.

评分标准

(a)(i) [2 marks]:
- 1 mark for correct working: \(\frac{180 - 45}{180} \times 100\) or \(\frac{135}{180} \times 100\).
- 1 mark for correct calculation: \(75\%\) (must state decrease or use minus sign, or write percentage change is \(-75\%\)).

(a)(ii) [2 marks]:
- 1 mark for recognizing the rapid decline in breeding stock biomass.
- 1 mark for explaining that a lower TAC allows the population to recover / prevents overfishing.

(b) Max [4 marks]:
- 1 mark for definition: MSY is the largest catch that can be taken over an indefinite period.
- 1 mark for linking MSY to recruitment / birth rates balancing mortality rates.
- 1 mark for explaining that harvesting above MSY depletes the breeding population.
- 1 mark for stating that recruitment falls, leading to stock collapse.

(c) [6 marks]:
- 2 marks for Mesh size: 1 mark for letting juveniles escape, 1 mark for allowing them to reproduce at least once.
- 2 marks for No-take zones: 1 mark for protecting breeding grounds/habitats, 1 mark for the 'spillover effect' enhancing surrounding fisheries.
- 2 marks for Quotas: 1 mark for capping total catch, 1 mark for keeping catches within safe biological limits.

(d) [2 marks]:
- 1 mark for difficulties in patrolling vast ocean zones / high costs.
- 1 mark for issues with bycatch, discarding, or misreporting of landings.
题目 5 · Structured
16
Photochemical smog is a major environmental and public health concern in large urban basins, especially during warm, sunny summer months.

(a) (i) State the two primary pollutants required for the formation of photochemical smog, and identify their main source.
(ii) Explain the role of sunlight and temperature inversions in the formation and accumulation of photochemical smog.

(b) Describe three negative impacts of photochemical smog on human health and agricultural crops.

(c) The table below shows the average concentration of nitrogen dioxide (\(NO_2\)) in parts per billion (ppb) measured at three city-centre monitoring stations before and after the implementation of a public transport electrification scheme.

| Monitoring Station | \(NO_2\) Before Scheme / ppb | \(NO_2\) After Scheme / ppb |
|---|---|---|
| Station 1 | 48 | 32 |
| Station 2 | 56 | 35 |
| Station 3 | 62 | 41 |

(i) Calculate the mean concentration of \(NO_2\) across the three stations *before* the electrification scheme was implemented. Show your working.
(ii) Calculate the percentage decrease in the mean \(NO_2\) concentration after the scheme was introduced. Show your working and round your answer to the nearest whole number.

(d) Explain how catalytic converters in vehicles help reduce the release of primary pollutants that contribute to photochemical smog.
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解题

(a) (i) Primary pollutants: Nitrogen oxides (\(NO_x\)) and Volatile Organic Compounds (VOCs). Main source: Combustion of fossil fuels in motor vehicles / industrial emissions.
(a) (ii) Sunlight: Photochemical smog is formed through chemical reactions triggered by solar UV radiation (photochemical reactions) acting on \(NO_x\) and VOCs. Temperature inversion: A layer of warm air traps cooler air below it near the ground, preventing the upward dispersion of pollutants, leading to the accumulation of high concentrations of smog in urban basins.

(b) 1. Irritates eyes, nose, and throat in humans.
2. Exacerbates respiratory diseases such as asthma and bronchitis.
3. Damages plant leaves / enters stomata, reducing photosynthesis and crop yields.

(c) (i) Mean Before = \(\frac{48 + 56 + 62}{3} = \frac{166}{3} = 55.33...\) ppb (or \(55.3\) ppb).
(c) (ii) Mean After = \(\frac{32 + 35 + 41}{3} = \frac{108}{3} = 36.0\) ppb.
Decrease = \(55.33 - 36.0 = 19.33\) ppb.
Percentage decrease = \(\frac{19.33}{55.33} \times 100 = 34.94...\%\) which rounds to \(35\%\).

(d) Catalytic converters contain precious metal catalysts that facilitate chemical reactions to convert harmful gases. They reduce nitrogen oxides (\(NO_x\)) back into harmless nitrogen gas (\(N_2\)), and oxidize unburnt hydrocarbons (VOCs) and carbon monoxide (\(CO\)) into carbon dioxide (\(CO_2\)) and water vapour (\(H_2O\)), thus reducing primary smog precursors.

评分标准

(a)(i) [3 marks]:
- 1 mark for Nitrogen oxides (\(NO_x\)).
- 1 mark for Volatile Organic Compounds (VOCs).
- 1 mark for identifying vehicle exhausts / fossil fuel combustion as the main source.

(a)(ii) Max [4 marks]:
- 1 mark for stating UV light initiates/drives the chemical reaction between precursors.
- 1 mark for defining temperature inversion (warm air layer aloft trapping cold air beneath).
- 1 mark for explaining that warm air is less dense and stops vertical air mixing.
- 1 mark for stating that pollutants are trapped close to ground level, leading to high concentration build-up.

(b) [3 marks]:
- 1 mark for human health respiratory effect (e.g., asthma, chest pain, coughing).
- 1 mark for eye/sensory irritation.
- 1 mark for agricultural impact (reduced photosynthesis, damage to leaf tissue/necrosis, lower yields).

(c)(i) [2 marks]:
- 1 mark for correct working: \(\frac{48 + 56 + 62}{3}\).
- 1 mark for correct answer: \(55.3\) ppb (accept \(55.33\) or \(55\)).

(c)(ii) [2 marks]:
- 1 mark for calculating the new mean (\(36.0\) ppb) and showing the difference relative to the original mean: \(\frac{55.33 - 36.0}{55.33} \times 100\).
- 1 mark for correct calculation rounded to nearest whole number: \(35\%\).

(d) [2 marks]:
- 1 mark for stating that catalytic converters convert nitrogen oxides (\(NO_x\)) to nitrogen (\(N_2\)).
- 1 mark for stating that they convert unburnt hydrocarbons/VOCs/CO to water and carbon dioxide.

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