SASB
SASB disclosure topics
| Topic | Code | Accounting metric | Unit | 2022 Answer | 2023 Answer | 2024 Answer | 2025 Answer | Category |
| Greenhouse Gas Emissions | RR-PP-110a.1 RT-CP-110a.1 | Gross global Scope 1 emissions | ton CO2 eq | 7,045,350 More information: Climate Change and Energy Use |
7,213,976 More information: Climate Change and Energy Use |
7,974,996.88 More information: Climate Change and Energy Use |
9,719,933.99 More information: Climate Change and Energy Use |
Quantitative |
| Greenhouse Gas Emissions | RR-PP-110a.2 RT-CP-110a.2 | Discussion of the long- and short-term strategy or plan for managing scope 1 emissions, emission reduction targets, and an analysis of performance with respect to those targets | n/a | The 1.4% reduction in scope 1 emissions was mainly due to the reduction in fuel oil consumption in the lime kilns at the Puma and Correia Pinto units. This result is mainly due to the start-up of the Puma II Project's biomass gasification plant and the use of bio-oil in the lime kilns at Correia Pinto. More information: Climate Change and Energy Use - Topic Management: Climate and Energy |
The 6.9% reduction in scope 1 emissions was mainly due to the reduction in fuel oil consumption at the pulp and paper units, due to the full operation of the biomass gasification plant at the Puma unit, and the reduction in natural gas consumption at the recycled products units. In addition, in 2023, tests began for the use of bio-oil in the lime kilns at the Monte Alegre unit. Over the year, 3 tests were carried out on an industrial scale, achieving 100% substitution of the use of fuel oil during the operation of the equipment. More information: Climate Change and Energy Use - Topic Management: Climate and Energy |
In 2024, there were no significant changes to its production process, and it reported a 3% increase in its Scope 1 emissions. More information: Climate Change and Energy Use - Topic Management: Climate and Energy |
In 2025, Scope 1 emissions remained broadly stable. The year was marked by the stabilization of operations following the Company's expansion cycle, with no significant new capital investments, resulting in energy consumption levels comparable to those of previous years. More information: Climate Change and Energy Use - Topic Management: Climate and Energy |
Discussion and analysis |
| Air Quality | RR-PP-120a.1 RT-CP-120a.1 | Atmospheric emissions of the following pollutants: (1) NOx (except N2O), (2) SO2, (3) Volatile Organic Compounds (VOCs), (4) Particulate Matter (PM) and (5) Hazardous Air Pollutants (HAPs) | tons of CO2eq | (1) NOx: 0,786 More information: Climate Change and Energy Use - Air Quality |
(1) NOx: 0,825 More information: Climate Change and Energy Use - Air Quality |
(1) NOx: 0,791 More information: Climate Change and Energy Use - Air Quality |
(1) NOx: 0,888 More information: Climate Change and Energy Use - Air Quality |
Quantitative |
| Energy Management | RR-PP-130a.1 RT-CP-130a.1 | (1) Total energy consumed, (2) percentage grid electricity, (3) percentage from biomass, (4) percentage from other renewable energy | GJ / % | More information: Climate Change and Energy Use - Energy figures and rates |
More information: Climate Change and Energy Use - Energy figures and rates |
More information: Climate Change and Energy Use - Energy figures and rates |
More information: Climate Change and Energy Use - Energy figures and rates |
Quantitative |
| Water Management | RR-PP-140a.1 RT-CP-140a.1 | (1) Total water withdrawn, (2) Total water consumed, percentage of each in regions with high or extremely high reference water stress | m³ / % | (1): 122,279,561.18 (2): 103,151,440.75 More information: Water Use - Water Performance |
(1): 119,368,476.81 (2): 103,510,424.40 More information: Water Use - Water Performance |
(1): 124.717.734,26 More information: Water Use - Water Performance |
(1) 120.183.223,29 More information: Water Use - Water Performance |
Quantitative |
| Water Management | RR-PP-140a.2 RT-CP-140a.2 | Description of water management risks and discussion of strategies and practices to mitigate such risks | n/a | Since 2018, Klabin has evaluated all its units located in water stress areas using the WRI Aqueduct tool. To be considered exposed to water stress, facilities need to be classified on the baseline criterion of greater than 20% water stress, for both the current and future scenarios (2030 and 2040). In 2021, after acquiring five new units, Klabin now has 7 out of 23 units located in water stress areas, according to the WRI Aqueduct tool. To control and monitor the risks related to these units, Klabin prepared a report to monitor the flow of rivers and the volume of rain in the regions where the factories are located, to anticipate possible water shortages as well as seek alternatives. This report is monitored by the Water Management Working Group, which, in addition to supporting the strategic management of this resource, contributes to the definition of necessary actions to avoid impacts in these regions. In 2022, the improvement in water management, resulting from the actions carried out, resulted in a 19% reduction in water consumption (water withdrawn - water discarded) at the units located in areas of water stress. More information: Water Use - Water Use Management |
Since 2018, Klabin has been evaluating all its units located in water-stressed areas using the WRI Aqueduct tool. To be considered exposed to water stress, facilities need to be classified under the baseline criterion of water stress exceeding 20%, for both the current and future scenarios (2030 and 2040). More information: Water Use - Water Use Management |
Since 2018, Klabin has assessed all of its facilities located in water-stressed areas using the WRI Aqueduct tool. To be considered exposed to water stress, a facility must be classified as having a baseline water stress level above 20% under both current and future scenarios (2030 and 2040). More information: Water Use - Water Use Management |
Since 2018, Klabin has assessed all of its industrial operations located in water-stressed areas using the WRI Aqueduct tool, an internationally recognized benchmark for assessing water availability risks. An operation is considered exposed to water stress when its baseline water stress rating exceeds 20%, based on the ratio of water withdrawals to available water resources in the region, under both current conditions and future scenarios for 2030 and 2040. More information: Water Use - Water Use Management |
Discussion and analysis |
| Water Management | RT-CP-140a.3 | Number of non-compliance incidents associated with water quality permits, standards and regulations | Number | Zero More information: Water Use - Water Quality |
Zero More information: Water Use - Water Quality |
Zero More information: Water Use - Water Quality |
Zero More information: Water Use - Water Quality |
Quantitative |
| Waste Management | RT-CP-150a.1 | Amount of hazardous waste generated, percentage recycled | Metric tons (t), Percentage (%) | 1,177.30 tons of hazardous waste generated in 2022. 98.47% of the waste generated in 2022 is in the reused, recyclable, or reused category (2,890,823.78 tons). More information: Resource Use and Circularity - Waste Generated |
1,491.39 tons of hazardous waste generated in 2023. 99.35% of the waste generated in 2023 is in the reused, recyclable, or reused category (2,760,813.70 tons). More information: Resource Use and Circularity - Waste Generated |
4,254.80 tons of hazardous waste generated in 2024. 99.35% of the waste generated in 2024 is in the reused, recyclable, or reused category (2,949,220.01 tons). More information: Resource Use and Circularity - Waste Generated |
1,311.31 tons of hazardous waste generated in 2025. 99.44% of the waste generated in 2025 is in the reused, recycled, or reused category (3,115,525.34 tons). More information: Resource Use and Circularity - Waste Generated |
Quantitative |
| Ecosystem Services & Impacts | RR-FM-160a.1 | Forest area certified by independent forest management standard, Certified percentage for each standard | Acres (ac), Percentage (%) | *Percentage of FSC® certified wood purchased from third parties: 31% Percentage of FSC® controlled wood purchased from third parties: 18% Percentage of own FSC® certified wood: 51% Total: 100% More information: Forest Certification |
*Percentage of FSC® certified wood purchased from third parties: 36% Percentage of FSC® controlled wood purchased from third parties: 16% Percentage of own FSC® certified wood: 48% Total: 100% More information: Forest Certification |
*Percentage of FSC® certified wood purchased from third parties: 22% Percentage of FSC® controlled wood purchased from third parties: 14% Percentage of own FSC® certified wood: 64% Total: 100% More information: Forest Certification |
*Percentage of FSC® certified wood purchased from third parties: 11% Percentage of FSC® controlled wood purchased from third parties: 12% Percentage of own FSC® certified wood: 77% Total: 100% More information: Forest Certification |
Quantitative |
| Ecosystem Services & Impacts | RR-FM-160a.2 | Forest area with protected conservation status | Acres (ac) | 304 thousand More information: Ecosystems and Biodiversity - Environmental protection areas and high biodiversity value areas |
315 thousand More information: Ecosystems and Biodiversity - Environmental protection areas and high biodiversity value areas |
373 thousand More information: Ecosystems and Biodiversity - Environmental protection areas and high biodiversity value areas |
373 thousand More information: Ecosystems and Biodiversity - Environmental protection areas and high biodiversity value areas |
Quantitative |
| Ecosystem Services & Impacts | RR-FM-160a.3 | Forest area in endangered species habitat | Acres (ac) | Quantitative | ||||
| Ecosystem Services & Impacts | RR-FM-160a.4 | Description of the approach to optimize ecosystem service opportunities provided by forest areas | n/a | Ecosystem and Biodiversity - Ecosystem services provided by forests |
Ecosystem and Biodiversity - Ecosystem services provided by forests |
Ecosystem and Biodiversity - Ecosystem services provided by forests |
Ecosystem and Biodiversity - Ecosystem services provided by forests |
Discussion and analysis |
| Rights of Indigenous Peoples | RR-FM-210a.1 | Forest area on indigenous lands | Acres (ac) | Zero More information: Materiality - Human Rights |
Zero More information: Materiality - Human Rights |
Zero More information: Materiality - Human Rights |
Zero More information: Materiality - Human Rights |
Quantitative |
| Rights of Indigenous Peoples | RR-FM-210a.2 | Description of engagement processes and due diligence practices with respect to human rights, indigenous rights, and the local community | n/a | Klabin maps all the traditional communities in its areas of influence, such as quilombolas, faxinalenses (communities that inhabit small areas and live off their relationship with the forest), and Indigenous groups. In its relationship with these communities, the company follows Brazilian legislation and the recommendations of ILO 169, a resolution of the International Labor Organization for Indigenous and Tribal Peoples, guaranteeing their right to prior, free, and informed consent (CLPI). In 2021 and 2022, there were no cases of violation of the rights of indigenous peoples and traditional communities. More information: Materiality - Human Rights |
Klabin maps all the traditional communities in its areas of influence, such as quilombolas, faxinalenses (communities that inhabit small areas and live off their relationship with the forest) and Indigenous groups. In its relationship with these communities, the company follows Brazilian legislation and the recommendations of ILO 169, a resolution of the International Labor Organization for Indigenous and Tribal Peoples, guaranteeing their right to prior, free, and informed consent (CLPI). In 2023, there were no cases of violation of the rights of indigenous peoples and traditional communities. More information: Materiality - Human Rights |
Klabin maps all the traditional communities in its areas of influence, such as quilombolas, faxinalenses (communities that inhabit small areas and live off their relationship with the forest) and Indigenous groups. In its relationship with these communities, the company follows Brazilian legislation and the recommendations of ILO 169, a resolution of the International Labor Organization for Indigenous and Tribal Peoples, guaranteeing their right to prior, free, and informed consent (CLPI). In 2024, there were no cases of violation of the rights of indigenous peoples and traditional communities. More information: Materiality - Human Rights |
Klabin maps all the traditional communities in its areas of influence, such as quilombolas, faxinalenses (communities that inhabit small areas and live off their relationship with the forest) and Indigenous groups. In its relationship with these communities, the company follows Brazilian legislation and the recommendations of ILO 169, a resolution of the International Labor Organization for Indigenous and Tribal Peoples, guaranteeing their right to prior, free, and informed consent (CLPI). In 2025, there were no cases of violation of the rights of indigenous peoples and traditional communities. More information: Materiality - Human Rights |
Discussion and analysis |
| Product Safety | RT-CP-250a.1 | Number of recalls issued, total units recovered | Number | Zero More information: Resource Use and Circularity - Raw Materials and Sources |
Zero More information: Resource and Circularity - Raw Materials and Sources |
Zero More information: Resource and Circularity - Raw Materials and Sources |
Zero More information: Resource and Circularity - Raw Materials and Sources |
Quantitative |
| Product Safety | RT-CP-250a.2 | Process discussion to identify and manage emerging materials and chemicals of interest | n/a | Resource Use and Circularity - Product life cycle and Recovery |
Resource Use and Circularity - Product life cycle and Recovery |
Resource Use and Circularity - Product life cycle and Recovery |
Resource Use and Circularity - Product life cycle and Recovery |
Discussion and analysis |
| Product Lifecycle Management | RT-CP-410a.1 | Percentage of raw materials from: (1) recycled content, (2) renewable resources and (3) renewable and recycled content | (%) by weight | Percentage of raw materials from: (1) recycled content: 12% (2) renewable resources: 98% (3) renewable and recycled content: 98% More information: Resource Use and Circularity - Raw Materials and Sources |
Percentage of raw materials from: (1) recycled content: 6% (2) renewable resources: 98% (3) renewable and recycled content: 98% More information: Resource Use and Circularity - Raw Materials and Sources |
Percentage of raw materials from: (1) recycled content: 5% (2) renewable resources: 98% (3) renewable and recycled content: 98% More information: Resource Use and Circularity - Raw Materials and Sources |
Percentage of raw materials from: (1) recycled content: 5% (2) renewable resources: 98% (3) renewable and recycled content: 98% More information: Resource Use and Circularity - Raw Materials and Sources |
Quantitative |
| Product Lifecycle Management | RT-CP-410a.2 | Revenue from reusable, recyclable and/or compostable products | Reporting currency | R$ 20,033,000,000.00 More information: Resource Use and Circularity - Raw Materials and Sources |
R$ 18,024,000,000.00 More information: Resource Use and Circularity - Raw Materials and Sources |
R$19,645,264.00 More information: Resource Use and Circularity - Raw Materials and Sources |
R$20,697,507.00 More information: Resource Use and Circularity - Raw Materials and Sources |
Quantitative |
| Product Lifecycle Management | RT-CP-410a.3 | Discussion of strategies to reduce the environmental impact of packaging throughout its lifecycle | n/a | Reducing the environmental impact of packaging throughout its lifecycle In addition to new investments in reducing emissions, a more renewable energy matrix, as observed in 2022, reflects in a smaller amount of CO2eq emitted per ton of product, which in 2022 was 148 kg of CO2eq, resulting in an accumulated reduction of 68% since initial measurement, reported in 2004. As manufacturers of renewable-based products, Klabin advocates replacing fossil-based packaging with biodegradable alternatives, based on wood cellulose fibers. Its products are developed in a customized way to the needs of customers, with high technology and complexity from the combination of virgin and recycled fibers, promoting the rational and maximized use of natural resources. The adoption of renewable, recyclable and biodegradable materials offers consumers the best and most sustainable options for lower-impact consumption. Klabin's bioproducts are key elements for the development of a low-carbon circular economy, in which society's constantly changing demands are met in line with planetary challenges and limits. More information: Resource Use and Circularity - Product Life Cycle and Recovery |
Reducing the environmental impact of packaging throughout its lifecycle In addition to new investments in reducing emissions, a more renewable energy matrix, as observed in 2023, reflects in a smaller amount of CO2eq emitted per ton of product, which in 2023 was 140 kg of CO2eq, resulting in an accumulated reduction of 70% since initial measurement, reported in 2004. As manufacturers of renewable-based products, Klabin advocates replacing fossil-based packaging with biodegradable alternatives, based on wood cellulose fibers. Its products are developed in a customized way to the needs of customers, with high technology and complexity from the combination of virgin and recycled fibers, promoting the rational and maximized use of natural resources. The adoption of renewable, recyclable and biodegradable materials offers consumers the best and most sustainable options for lower-impact consumption. Klabin's bioproducts are key elements for the development of a low-carbon circular economy, in which society's constantly changing demands are met in line with planetary challenges and limits. More information: Resource Use and Circularity - Product Life Cycle and Recovery |
Reducing the environmental impact of packaging throughout its lifecycle As manufacturers of renewable-based products, Klabin strives to develop and offer packaging solutions made from renewable sources that are also recyclable. Its products are customized to meet customers’ specific needs and are developed using advanced technology and complex solutions based on the combination of virgin and recycled fibers, promoting the efficient and maximized use of natural resources. More information: Resource Use and Circularity - Product Life Cycle and Recovery |
Reducing the environmental impact of packaging throughout its lifecycle As manufacturers of renewable-based products, Klabin strives to develop and offer packaging solutions made from renewable sources that are also recyclable. Its products are customized to meet customers’ specific needs and are developed using advanced technology and complex solutions based on the combination of virgin and recycled fibers, promoting the efficient and maximized use of natural resources. More information: Resource Use and Circularity - Product Life Cycle and Recovery |
Discussion and analysis |
| Supply Chain Management | RR-PP-430a.1 | Percentage of wood fiber meeting other fiber supply standards and percentage for each standard | % by weight | Quantitative | ||||
| Supply Chain Management | RR-PP-430a.1 RT-CP-430a.1 | Percentage of wood-based raw materials certified to a responsible purchasing standard | % by weight | 63% More information: Forest Certification |
83% More information: Forest Certification |
73% More information: Forest Certification |
46% More information: Forest Certification |
Quantitative |
| Supply Chain Management | RR-PP-430a.1 RT-CP-430a.1 | Percentage of wood fiber-based materials without third-party certification by supply standard | % by weight | FSC® Controlled Wood:18% SFI Fiber Sourcing Standard:- SFI PEFC Controlled Sources:41% More information: Forest Certification |
FSC® Controlled Wood:16% SFI Fiber Sourcing Standard:- SFI PEFC Controlled Sources:41% More information: Forest Certification |
FSC® Controlled Wood:14% SFI Fiber Sourcing Standard:- SFI PEFC Controlled Sources: - More information: Forest Certification |
FSC® Controlled Wood:12% SFI Fiber Sourcing Standard:- SFI PEFC Controlled Sources: - More information: Forest Certification |
Quantitative |
| Supply Chain Management | RR-PP-430a.1 RT-CP-430a.1 | Percentage of raw materials from certified suppliers | % by weight | ATFS Certification: Not Applicable FSC Forest Management and Chain of Custody Certifications: 63% PEFC Chain of Custody Certifications: Not Applicable PEFC-endorsed forest certification systems: Not Applicable SFI Forest Management and Chain of Custody Certifications: Not Applicable Total: 63% More information: Forest Certification |
ATFS Certification: Not Applicable FSC Forest Management and Chain of Custody Certifications:70% PEFC Chain of Custody Certifications: Not Applicable PEFC-endorsed forest certification systems: Not Applicable SFI Forest Management and Chain of Custody Certifications: Not Applicable Total: 70% More information: Forest Certification |
ATFS Certification: Not Applicable FSC Forest Management and Chain of Custody Certifications:73% PEFC Chain of Custody Certifications: Not Applicable PEFC-endorsed forest certification systems: 27% SFI Forest Management and Chain of Custody Certifications: Not Applicable Total: 100% More information: Forest Certification |
ATFS Certification: Not Applicable FSC Forest Management and Chain of Custody Certifications: 46% PEFC Chain of Custody Certifications: Not Applicable PEFC-endorsed forest certification systems: Not Applicable SFI Forest Management and Chain of Custody Certifications: Not Applicable Total: 46% More information: Forest Certification |
Quantitative |
| Supply Chain Management | RR-PP-430a.2 | Number of recycled and recovered fibers purchased | Metric tons (t) | 423,527.51 tons; 12% of total wood fiber weight More information: Resource Use and Circularity - Raw Materials and Sources |
211,239.35 tons; 6% of total wood fiber weight More information: Resource Use and Circularity - Raw Materials and Sources |
205,462.05 tons; 4.82% of total wood fiber weight More information: Resource Use and Circularity - Raw Materials and Sources |
222,143.40 tons; 5.32% of total wood fiber weight More information: Resource Use and Circularity - Raw Materials and Sources |
Quantitative |
| Supply Chain Management | RT-CP-430a.1 | Total wood fiber acquired, percentage from certified sources | Metric tons (t) and (%) | Quantitative | ||||
| Supply Chain Management | RT-CP-430a.2 | Total aluminum purchased, percentage from certified sources | metric tons (t) and % | Klabin does not buy aluminum for its processes. |
Klabin does not buy aluminum for its processes. |
Klabin does not buy aluminum for its processes. |
Klabin does not buy aluminum for its processes. |
Quantitative |
| Climate Change Adaptation | RR-FM-450a.1 | Description of the strategy to manage opportunities and risks for forest management and timber production introduced by climate change | n/a | Climate change and Energy Use - Topic management: Climate and Energy |
Climate change and Energy Use - Topic management: Climate and Energy |
Climate change and Energy Use - Topic management: Climate and Energy |
Climate change and Energy Use - Topic management: Climate and Energy |
Discussion and analysis |