Mangrove Trees: Why Planting Mangroves Helps Combat Climate Change

8 Nov 2024 in Green living

Mangrove Trees: Why Planting Mangroves Helps Combat Climate Change

 

With climate change accelerating, we at Evertreen understand that environmental solutions which build resilience in ecosystems and communities are more crucial than ever. Mangrove trees have emerged as an essential tool in the fight against climate change, thanks to their unique abilities to sequester carbon, protect coastlines, and support biodiversity. Through the Tree Planting Project, we are committed to advancing mangrove restoration, making it simple for companies and individuals to contribute to mangrove planting and play an active role in addressing climate change.

The Unique Role of Mangroves in Combating Climate Change

Mangrove forests, which thrive in tropical and subtropical coastal areas, are among our most powerful allies in combating climate change. These unique ecosystems rank among the world’s most carbon-dense, capturing and storing vast amounts of carbon dioxide—an attribute that makes them a priority for global reforestation efforts and corporate planting initiatives like our Tree Planting Project. Research by the Blue Carbon Initiative shows that mangroves can store up to four times more carbon per hectare than tropical rainforests, sequestering carbon not only in their trees but deeply within their extensive root systems and soil. This extraordinary capacity to retain carbon positions mangrove planting as a crucial strategy for reducing greenhouse gases, offering a sustainable means to offset emissions and slow climate warming. 


Beyond carbon capture, mangroves offer unmatched protection to coastal regions by acting as natural barriers against erosion and extreme weather. Their dense root networks stabilize soil and absorb wave energy, which is especially valuable in areas prone to hurricanes, typhoons, and storm surges. Studies indicate that coastal regions with established mangrove forests experience up to 50% less damage from severe storms, saving billions annually in avoided property damage and reducing the risk to human life. As climate change drives the frequency and intensity of these extreme weather events, mangrove ecosystems provide an essential defense, safeguarding both communities and natural habitats.


In addition to their climate mitigation and protective benefits, mangroves support an impressive range of biodiversity, serving as nurseries for fish, crustaceans, and various marine species. This biodiversity strengthens the food chain and supports sustainable fishing industries that many local communities rely on for food security and income. The diverse benefits of mangroves underscore why we at Evertreen focus our Tree Planting Project on restoring these invaluable ecosystems. Through initiatives like ours, individuals and corporations alike can contribute directly to preserving coastlines, protecting communities, and reducing the planet’s carbon footprint—paving the way for a more resilient future.


Read also: “Planting Trees for Global Sustainability” on our blog

 

 

 

Evertreen’s Tree Planting Project and Mangrove Restoration

At Evertreen, our Tree Planting Project focuses on planting mangroves in areas most impacted by deforestation and climate vulnerability, providing a targeted approach to restoring these critical ecosystems. By advancing mangrove restoration, our initiative allows both individuals and corporations to directly support projects that drive climate action, bolster coastal resilience, and conserve biodiversity. Mangrove trees play a crucial role in sequestering carbon, protecting coastlines, and supporting marine life, making them a strategic element in the global effort to combat climate change. 

Through corporate planting partnerships, businesses can work with us at Evertreen to offset their carbon emissions and demonstrate a commitment to environmental responsibility. Participating in our mangrove restoration efforts enables companies to enhance their brand reputation, attract eco-conscious consumers, and establish a sustainable brand image that resonates with today’s environmentally aware market. Our corporate planting model allows businesses to take a visible, measurable role in conservation and address their environmental impact.

One example is Xraised, a marketing firm that collaborated with us to plant 100,000 mangrove trees along a coastline vulnerable to erosion and extreme weather. This initiative enabled Xraised to offset a significant portion of its annual carbon emissions, aligning with its sustainability goals and strengthening its image as an eco-conscious industry leader. With our advanced tracking platform, we provide real-time monitoring of planted mangroves, offering concrete evidence of the project’s environmental impact. This transparency reassures stakeholders of a company’s genuine commitment to sustainability and inspires more businesses to consider Evertreen’s Tree Planting Project as an impactful way to reduce their environmental footprint.

As more companies join us in restoring mangroves, the collective impact on carbon reduction, biodiversity, and climate resilience continues to grow, highlighting the effectiveness of corporate planting in supporting global reforestation and corporate sustainability goals.

The Many Benefits of Mangrove Planting

Carbon Sequestration

Mangroves rank among the most effective natural systems for carbon storage, with an ability to absorb up to 10 times more carbon dioxide than terrestrial forests. This remarkable capacity positions mangroves as essential in corporate planting initiatives for companies committed to achieving net-zero emissions. Through Evertreen’s mangrove planting program, businesses can make a measurable impact on their carbon footprint, showcasing accountability and leadership in environmental responsibility. 

Do you want to know more about carbon neutrality? Read “Achieving Net Zero with SDGs and Carbon Offset Standards” on our blog

 

Ecosystem Support and Biodiversity

Mangrove forests are vital habitats for a wide range of marine and terrestrial species, fostering an environment that supports both biodiversity and human livelihoods. According to the World Wildlife Fund (WWF), mangroves serve as crucial nurseries for fish, crabs, and shrimp, directly benefiting coastal economies and ensuring food security for millions of people. Through Evertreen’s mangrove restoration efforts, we help preserve these invaluable ecosystems, strengthen marine and coastal biodiversity, support local fisheries, and enhance community resilience.

Coastal Protection


Mangroves act as natural barriers against coastal erosion, protecting shorelines by absorbing wave energy and reducing the impact of severe storms. According to The Nature Conservancy, mangrove ecosystems help save coastal communities up to $65 billion annually by lowering storm-related property damage. With rising sea levels and more frequent extreme weather events, Evertreen’s mangrove planting projects are crucial investments in protecting vulnerable coastlines, minimizing damage, and saving lives.

Economic Value


Mangrove planting drives economic growth by creating employment opportunities in restoration and sustainable land management. Through Evertreen’s project, local communities are directly involved in restoration efforts, resulting in long-term benefits for both the environment and the economy. This approach not only generates jobs but also promotes environmental stewardship, encouraging sustainable practices that ensure the health and resilience of restored mangrove ecosystems for generations to come.

Do you want to know more about Evertreen?: Take a look at all our reforestation projects


Join Evertreen’s Mangrove Planting Initiative


Mangrove trees offer a powerful solution to some of the world’s most pressing environmental challenges. By partnering with Evertreen’s Tree Planting Project to plant mangroves, both individuals and corporations can take a meaningful step in the fight against climate change. Whether you're a business looking to enhance your corporate social responsibility efforts or an individual committed to environmental stewardship, we at Evertreen make it easy to get involved and make a lasting impact.

Feeling inspired by the transformative power of trees? Join Evertreen in planting trees today!

 

 

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7 Oct 2026

Business Carbon Footprint: The Data You Need by Scope

A business carbon footprint is the total greenhouse gas emissions caused by a company's activities, grouped into Scope 1, 2 and 3. To calculate it you need activity data for each scope (fuel, electricity, purchases, travel, freight and waste), a matching emission factor for each item, and a clear record of the gaps you estimated. This article is a data checklist, not a calculation walkthrough. For the full method, from setting boundaries to reporting, see our step-by-step guide to calculating your business carbon footprint. Here we focus on the part that usually takes longest: finding the numbers. What data do you need for a business carbon footprint? Every line in a footprint follows one formula: activity data × emission factor = emissions. Activity data is a measured quantity, such as kilowatt-hours of electricity, litres of diesel or kilometres flown. An emission factor converts it into carbon dioxide equivalent (CO2e), a unit that expresses all greenhouse gases in terms of the warming effect of CO2. Public factor sets such as the UK Government's greenhouse gas conversion factors and the US EPA's Emission Factors Hub are widely used; note which edition you applied. The GHG Protocol Corporate Standard defines the three scopes. Scope 1 is direct emissions from sources you own or control. Scope 2 is purchased electricity, heat, steam and cooling. Scope 3 is all other indirect emissions in your value chain, upstream and downstream. Before collecting anything, set your organisational boundary (many smaller companies use operational control, covering the sites and vehicles they run) and a reporting year, ideally your financial year. Scope 1 and Scope 2: the data checklist This data usually sits with finance, facilities and fleet teams. Collect it by site and by month, so missing periods stand out. Gas and heating fuels (Scope 1): supplier invoices or meter readings. Replace estimated readings with actual ones. Company vehicles (Scope 1): fuel-card reports in litres; mileage logs with vehicle type as a fallback. Electricity for charging company cars at your sites goes in Scope 2. Refrigerants (Scope 1): kilograms topped up in air conditioning, heat pumps and cold stores, from service engineers' records. Small leaks matter because some refrigerants have a very high warming effect. Generators and process emissions (Scope 1): fuel purchase records and any process that releases gases directly. Electricity, heat, steam and cooling (Scope 2): kWh per meter from bills or your supplier's portal, for every site. The GHG Protocol's Scope 2 Guidance asks for electricity to be reported two ways. The location-based method uses the average factor of the local grid. The market-based method reflects your contracts, so you also need your supplier's fuel-mix disclosure and any certificates you hold, such as renewable energy certificates (RECs) in the US or Guarantees of Origin in Europe. These are energy certificates, not carbon offsets. Where does Scope 3 data come from? The GHG Protocol splits Scope 3 into 15 categories, and few businesses need all of them. For many companies, particularly those that buy in most of what they sell, Scope 3 is the largest part of the footprint, so screen every category before choosing which to measure in detail. Typical sources: Purchased goods, services and capital goods: the accounts payable ledger grouped by spend category, or quantities from purchase orders. Fuel- and energy-related activities: derived from your Scope 1 and 2 data (fuel extraction, grid losses). Transport and distribution: carrier reports or freight invoices with weight, distance and mode. Waste: contractor reports in tonnes, split by treatment. Business travel: travel agency reports with routes and cabin class, mileage claims and hotel nights. Commuting and home working: a short staff survey on distance, mode and office days. Use and end of life of sold products: sales volumes plus product energy use and materials. First footprints usually mix three methods. Spend-based multiplies money spent by an environmentally extended input-output (EEIO) factor, an average emission intensity per unit of spend in a sector. Activity-based uses physical quantities such as tonnes or kilometres. Supplier-specific uses your suppliers' own emissions data and is the most precise when that data is sound. Data checklist by scope: sources and common gaps Data itemScopeWhere to find itCommon gap Gas and heating fuel1Supplier invoices, meter readingsEstimated reads, missing months Fleet fuel1Fuel cards, mileage logsLeased or hired vehicles left out Refrigerants1Maintenance recordsTop-ups not logged in kilograms Electricity2Bills, supplier portal, smart metersShared buildings where the landlord pays Purchased goods3Accounts payable ledgerSpend not mapped to categories Freight3Carrier reports, freight invoicesNo weight or distance recorded Business travel3Travel agency reports, expensesPrivate cars used for work left out Waste3Waste contractor reportsBin counts instead of tonnes Commuting3Staff surveyLow response rate How do you fill common data gaps? No first footprint has complete data. Fill gaps consistently and document them, so next year's figure is comparable. Missing months: extrapolate from the months you have, allowing for seasonal heating or cooling, and flag the figure as estimated. Shared offices: ask the landlord for building energy use and allocate your share by floor area or headcount. No supplier data: start spend-based, then replace the largest categories with activity or supplier data. Double counting: each cost belongs in one place; company-car fuel is Scope 1, not purchased goods. Changing factors: factor sets are updated regularly, so record the edition used. Keep a data log with the source, owner, date, unit and factor for each line, so the footprint can be audited and improved. Your first well-measured year becomes the base year for reduction targets; if you set one, the Science Based Targets initiative (SBTi) validates targets against its criteria but does not certify companies or footprints. Frequently asked questions What is the difference between Scope 1, 2 and 3 emissions? Scope 1 is direct emissions from sources you own or control, such as boilers and company vehicles. Scope 2 is indirect emissions from the electricity, heat, steam and cooling you buy. Scope 3 is every other indirect emission in your value chain, from purchased goods to the use of products you sell. Can I use spend data instead of activity data? Yes, especially for Scope 3 in a first footprint. Spend-based factors are sector averages, so they cannot reflect a lower-carbon supplier. Use them to find your largest categories, then move those to activity or supplier data over time. How accurate does a first business carbon footprint need to be? Accurate enough to show where your largest emissions are, and repeatable. Estimates are acceptable if documented and flagged. Accuracy should improve each year as metered or supplier data replaces estimates. Is reporting Scope 3 emissions mandatory? It depends on where you operate and your size. In the EU, mandatory CSRD reporting now applies to companies above both EUR 450 million turnover and 1,000 employees (Directive (EU) 2026/470), with simplified reporting standards (ESRS) from financial year 2027. Smaller firms are outside that scope, but larger customers often ask suppliers for emissions data for their own Scope 3 reporting. Does tree planting or buying carbon credits lower my reported footprint? No. Tree planting is a nature-based climate contribution with a modelled CO2 estimate, not an offset, and it does not reduce Scope 1, 2 or 3 figures. Certified carbon credits retired on public registries are a separate instrument; under the GHG Protocol they are reported separately, not deducted from any scope. For a rough first estimate before collecting detailed data, try Evertreen's CO2 calculator.

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30 Sep 2026

Reforestation in ESG Reporting: How to Report It Honestly

Reforestation in ESG reporting belongs in the contribution, biodiversity and community sections, not in the emissions inventory. Report the trees funded, the projects and partners, a modelled lifetime CO2 estimate clearly labelled as an estimate and the local working hours, and keep all of it separate from Scope 1, 2 and 3 totals and from any carbon credits. Many companies fund tree planting and then struggle to describe it in a sustainability report. This guide covers where reforestation fits, what to disclose and how to word it so that every statement can be checked. Where does reforestation belong in an ESG report? ESG stands for environmental, social and governance. Reforestation touches the first two: restored land and habitat on the environmental side, paid local work and community involvement on the social side. It does not belong in the greenhouse gas (GHG) inventory, which records the company's own emissions in three scopes: Scope 1 (direct emissions), Scope 2 (purchased energy) and Scope 3 (the rest of the value chain). The GHG Protocol Corporate Standard sets out how companies account for those emissions. Funding trees elsewhere does not change them, so the inventory figures stay the same with or without a planting project. The honest place for tree planting is a separate section, often called "climate contributions", "nature and biodiversity" or "community investment". The Science Based Targets initiative, which validates corporate targets, treats this kind of action as beyond value chain mitigation: welcome, but in addition to cutting emissions, not instead of it. What should a company disclose about the trees it funds? For each project, record: Trees funded and planting status. State how many trees were funded in the year and how many have been planted so far. Planting follows the local season, so trees funded late in the year may be planted in the next reporting period. Project, country and partner. Name the project and the local partner that does the planting, for example a mangrove project in Kenya or a highland forest project in Madagascar. Modelled CO2 estimate. Give the CO2 the trees are estimated to absorb over their lifetime, with the method and time frame, and label it as a modelled estimate, not measured removals. Community outcomes. Report estimated working hours or other social indicators supplied by the project, and say that they are estimates. Biodiversity context. Note the ecosystem being restored, such as mangroves, tropical forest or savannah, and any habitat protection linked to the project. Evidence. Keep certificates, photos and project updates on file. Sponsors follow their trees online through the project location, photos and updates. Evertreen labels its own figures the same way: more than 3,680,000 trees funded through Evertreen, tree planting funded in 29 countries, more than 2.9 million tonnes of CO2 estimated over the lifetime of those trees, and more than 460,000 working hours for local communities (estimated). Project details are on Evertreen's transparency page. How do tree planting, carbon credits and energy certificates differ in a report? Tree planting is often listed next to other climate actions, but each has a different purpose and place in the report. Mixing them up is a common source of misleading claims. ActivityWhat it isWhere it goes in the reportWhat you can state Funded tree plantingTrees funded by the company, planted by local partners, with a modelled lifetime CO2 estimateContribution, biodiversity and community sections, outside the GHG inventoryTrees funded and planted, projects, estimated CO2, estimated working hours Certified carbon creditsUnits from third-party projects certified under standards such as Verra or Gold Standard, retired on public registriesA separate disclosure next to the inventory, not deducted from Scope 1, 2 or 3Credits retired, project, standard, vintage, registry record RECs and Guarantees of OriginEnergy certificates for electricity: RECs in the United States, Guarantees of Origin in EuropeElectricity and Scope 2 disclosures, under the market-based methodElectricity covered and certificates cancelled; not a carbon offset Certified carbon credits are a distinct product, issued under standards such as Verra, Gold Standard, American Carbon Registry or Plan Vivo. Under the GHG Protocol they are reported separately and are not deducted from Scope 1, 2 or 3. If your company also retires credits, for example through Evertreen's verified carbon credits, give them their own section with registry details. Funded tree planting is not a credit and should never be described in credit language. How to word reforestation claims honestly Most problems come from wording rather than from the projects. A simple test: could a reader check each sentence against your records? Say "funded" until trees are in the ground. For example: "In [year] we funded [number] trees through Evertreen, planted with local partners in [country] as the planting season allows." Attach "estimated" to every CO2 figure. For example: "These trees have a modelled lifetime CO2 estimate of [number] tonnes. This is not a carbon credit and is not deducted from our reported emissions." Keep time frames visible. Young trees take years to grow, so do not present a lifetime estimate as something achieved in the reporting year. Do not net anything. Avoid phrasing that suggests the trees cancel or compensate for the emissions in your inventory. Describe your role accurately. The trees were funded by the company and planted by a local partner; they are not company assets. Linking reforestation to CSRD, GRI and the SDGs Reporting frameworks have no dedicated line for tree planting. Under the EU Corporate Sustainability Reporting Directive (CSRD), mandatory reporting now applies to companies above both EUR 450 million turnover and 1,000 employees, following Directive (EU) 2026/470, and the simplified European Sustainability Reporting Standards apply from financial year 2027 (optional for 2026). A funded planting programme usually sits outside the company's own value chain, so it is presented as voluntary information beside the climate and biodiversity disclosures, not inside their metrics. GRI reporters can include the funding as a community investment. For the UN Sustainable Development Goals, tree planting with paid local work relates most directly to SDG 13 (climate action), SDG 15 (life on land) and SDG 8 (decent work). Frequently asked questions Can tree planting reduce a company's Scope 1, 2 or 3 emissions? No. Scope 1, 2 and 3 figures describe the emissions a company and its value chain produce, and funding trees elsewhere does not change them. Tree planting is reported as a separate contribution with a modelled CO2 estimate. Is funding reforestation the same as buying carbon credits? No. Certified carbon credits are issued under standards such as Verra or Gold Standard and retired on public registries, while funded tree planting carries a modelled CO2 estimate and no credit. The two belong in separate parts of a report. Why are trees reported as funded rather than planted? Planting follows the local season, typically one to six months after funding, so trees funded near the end of a reporting year may not yet be in the ground. Reporting them as funded, and updating the planted figure later, keeps the statement accurate. Does reforestation count towards the social part of ESG? It can, when projects create paid local work or involve communities in caring for the land. Report the indicator used, such as estimated working hours, and say whether each figure is measured or estimated. What evidence should a company keep for assurance of its tree planting? Keep the certificates, project names and locations, project updates and photos, and the method behind any CO2 estimate. Companies in custom partnerships can also request the coordinates of their planting sites. To see how CO2 figures for funded trees are modelled, read how Evertreen estimates tree CO2.

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23 Sep 2026

Corpse Flower: One of the Weirdest Rainforest Plants

The corpse flower is the common name of Amorphophallus titanum, or titan arum, a giant plant that grows wild only in the rainforests of Sumatra, Indonesia. Its flowering structure can stand around 3 metres tall, opens for roughly a day or two after years of growth, and smells of rotting meat to attract carrion insects. Few plants draw queues at botanic gardens the way this one does. It is huge, unpredictable and briefly foul-smelling, and each of those traits has a purpose. This guide explains how it works, why it blooms so rarely, how it differs from Rafflesia, and why its future depends on the Sumatran forest. What is the corpse flower? Amorphophallus titanum belongs to the arum family (Araceae). It was brought to scientific attention by the Italian botanist Odoardo Beccari after he encountered it in western Sumatra in 1878, and you can check its accepted name and native range on Kew's Plants of the World Online. In Indonesia it is known as bunga bangkai, which translates as "corpse flower". What looks like one enormous flower is in fact an inflorescence: a cluster of many small flowers on a single structure. It has two main parts: The spadix, the tall, pale central column that rises out of the middle. The spathe, a frilled sheath wrapped around the base of the spadix, green on the outside and a deep maroon on the inside when open. The real flowers are tiny and hidden inside the spathe, in rings around the base of the spadix: female flowers below, male flowers above. Because these flowers sit on one unbranched stalk, the titan arum has the largest unbranched inflorescence of any known plant. (The talipot palm produces a larger flowering structure, but it is branched.) Why does the corpse flower smell like rotting meat? The smell is a pollination strategy. A plant that flowers rarely and briefly in dense rainforest needs to be found quickly, so the corpse flower mimics a dead animal, attracting carrion beetles and flesh flies that normally seek out carcasses to feed or lay eggs on. The scent includes sulphur-containing compounds such as dimethyl trisulfide, which is also given off by decaying flesh. Three other features strengthen the illusion: Heat. The spadix warms up during the bloom, to roughly human body temperature, which helps the smell rise and spread through the forest. Colour. The maroon inner face of the spathe resembles raw meat. Timing. The spathe usually opens in the late afternoon or evening, and the smell is typically strongest during the first night, when many carrion insects are active. Insects that crawl down into the spathe reach the female flowers first. These are receptive before the male flowers on the same plant release pollen, usually about a day later. This makes self-pollination unlikely, so the plant depends on insects bringing pollen from another titan arum blooming at about the same time, a real constraint in the wild. If pollination succeeds, the base of the spadix develops into a cluster of red-orange fruits, which birds, including hornbills, are thought to eat and disperse. How often does the corpse flower bloom? Rarely, and never on a fixed timetable. The plant grows from a corm, an underground storage organ that can become very large; corms of more than 100 kilograms have been recorded in cultivation. The corm alternates between three phases: Leaf phase: a single umbrella-like leaf, several metres tall, feeds the corm for a year or more, then dies back. Dormancy: the corm rests for a few months. Flowering phase: only when the corm has stored enough energy does it send up an inflorescence instead of a leaf. A plant grown from seed often takes seven to ten years to flower for the first time, and after that there are usually several years between blooms. The bloom itself is short: the spathe stays fully open for about 24 to 48 hours before it closes and collapses. The first recorded flowering in cultivation was at the Royal Botanic Gardens, Kew, in 1889, and blooms still make the news because gardens can only predict them a few days ahead. Titan arum vs Rafflesia: which is the real corpse flower? Both. "Corpse flower" is used for two unrelated Southeast Asian plants that both smell of decay and are both called bunga bangkai in Indonesia. The titan arum has the largest unbranched inflorescence; Rafflesia arnoldii has the largest single flower. FeatureTitan arum (Amorphophallus titanum)Rafflesia (Rafflesia arnoldii) What the "flower" isAn inflorescence of many tiny flowersA single flower SizeCan reach around 3 metres tallAround 1 metre across How it livesIndependent plant with a corm and a giant leafParasite inside Tetrastigma vines; no leaves, stems or roots of its own Where it grows wildSumatra onlySumatra and Borneo Bloom lengthAbout 1 to 2 days at its peakAbout a week PollinatorsCarrion beetles and flesh fliesCarrion flies Can it be cultivated?Yes, in many botanic gardensVery difficult; rarely grown outside its habitat Both join a long list of odd rainforest plants, like the stilt-rooted palm in our article on the walking palm. Is the corpse flower endangered? Yes. The titan arum is listed as Endangered on the IUCN Red List of Threatened Species. Its wild range is limited to Sumatra, where the main pressure is the loss and fragmentation of its forest habitat, including clearance for agriculture and plantations. A small, scattered wild population also makes cross-pollination harder. Botanic gardens help by sharing pollen and seed between institutions. Many cultivated plants are thought to descend from a limited number of wild-collected individuals, so coordinated pollination is used to keep the cultivated population genetically diverse. These ex situ (off-site) collections are a backstop, not a replacement for intact forest where the plant, its pollinators and its seed dispersers live together. It is worth being precise about where Evertreen fits. Through Evertreen, people and companies fund trees that local partners and farmers plant in named projects, including rainforest reforestation in Honduras and Brazil, and tree planting in Madagascar with the partner Tsiryparma, which also guards 8,021 hectares of eastern highland forest at Vohidahy. Planting follows the local season, so trees go into the ground in the months after funding, not instantly. Separately, Evertreen acts as an intermediary for certified carbon credits from third-party projects under standards such as Verra, Gold Standard, American Carbon Registry and Plan Vivo, retired on public registries; Evertreen does not own or operate those projects, and this is a different product from tree planting. Frequently asked questions How big is the corpse flower? A mature titan arum's inflorescence can stand around 3 metres tall, and some cultivated specimens have exceeded that. The underground corm that powers it can weigh more than 100 kilograms. Is the corpse flower the largest flower in the world? It depends on the definition. The titan arum has the largest unbranched inflorescence, a cluster of many small flowers. The largest single flower belongs to Rafflesia arnoldii, at around 1 metre across. Is the corpse flower carnivorous? No. It does not trap or digest insects. The beetles and flies it attracts are pollinators: they pick up pollen and, ideally, carry it to another blooming plant. Where can you see a corpse flower bloom? Many botanic gardens in Europe, North America and Asia grow titan arums. Because a bloom lasts only a day or two, gardens usually announce it a few days ahead online, and some stream it live. To learn how rainforest reforestation is funded with local partners, explore Evertreen's forest restoration projects.

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