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Collaborative project: Moving Checkpots - Optimising plant protection for ornamental plant production - subproject B (Project)

The research and development project will develop a monitoring and data management system that will enable the recording and evaluation of pests and their antagonists. It will additionally identify suboptimal climatic conditions in pot or container cultures of ornamental plant cultivation in greenhouses or open-air sites. Data acquisition will be carried out by mobile monitoring swarms that...


Funding period: 2021 - 2025

Relevancy: 100%

Collaborative project: Moving Checkpots - Optimising plant protection for ornamental plant production - subproject C (Project)

The research and development project will develop a monitoring and data management system that will enable the recording and evaluation of pests and their antagonists. It will additionally identify suboptimal climatic conditions in pot or container cultures of ornamental plant cultivation in greenhouses or open-air sites. Data acquisition will be carried out by mobile monitoring swarms that...


Funding period: 2021 - 2025

Relevancy: 100%

Collaborative project: Moving Checkpots - Optimising plant protection for ornamental plant production - subproject D (Project)

The research and development project will develop a monitoring and data management system that will enable the recording and evaluation of pests and their antagonists. It will additionally identify suboptimal climatic conditions in pot or container cultures of ornamental plant cultivation in greenhouses or open-air sites. Data acquisition will be carried out by mobile monitoring swarms that...


Funding period: 2021 - 2025

Relevancy: 100%

Collaborative project: Moving Checkpots - Optimising plant protection for ornamental plant production - subproject F (Project)

The research and development project will develop a monitoring and data management system that will enable the recording and evaluation of pests and their antagonists. It will additionally identify suboptimal climatic conditions in pot or container cultures of ornamental plant cultivation in greenhouses or open-air sites. Data acquisition will be carried out by mobile monitoring swarms that...


Funding period: 2021 - 2025

Relevancy: 100%

Collaborative project: Moving Checkpots - Optimising plant protection for ornamental plant production - subproject G (Project)

The research and development project will develop a monitoring and data management system that will enable the recording and evaluation of pests and their antagonists. It will additionally identify suboptimal climatic conditions in pot or container cultures of ornamental plant cultivation in greenhouses or open-air sites. Data acquisition will be carried out by mobile monitoring swarms that...


Funding period: 2021 - 2025

Relevancy: 100%

Collaborative project: Microbial biomineralization for effective and environmentally friendly weed control in horticulture - subproject A (Project)

The joint project of the partners Bind-X GmbH and W. Neudorff GmbH KG aims at researching, establishing and validating biomineralization as an effective, non-chemical and approval-free herbicide alternative for horticulture. Biomineralization (commonly called " biocementation") is a natural biogeochemical process of substrate consolidation based on bacterial deposition of the mineral calcite (or...


Funding period: 2021 - 2024

Relevancy: 100%

Collaborative project: Microbial biomineralization for effective and environmentally friendly weed control in horticulture - subproject B (Project)

The joint project of the partners Bind-X GmbH and W. Neudorff GmbH KG aims at researching, establishing and validating biomineralization as an effective, non-chemical and approval-free herbicide alternative for horticulture. Biomineralization (commonly called " biocementation") is a natural biogeochemical process of substrate consolidation based on bacterial deposition of the mineral calcite (or...


Funding period: 2021 - 2024

Relevancy: 100%

Collaborative project: Utilization of innovative fungal root endophytes in seed treatments to strengthen vegetable crops with the aim to increase plant tolerance against biotic and abiotic stress - subproject A (Project)

Abiotic and biotic stress factors represent current and future challenges for a high-quality vegetable production. Due to expiring approvals and complete bans of plant protection products and pesticides their selection decreases and pathogen resistances to those few available products are increasing at an alarming rate. In terms of sustainable crop protection, plants need to be strengthened by...


Funding period: 2021 - 2024

Relevancy: 100%

Collaborative project: Utilization of innovative fungal root endophytes in seed treatments to strengthen vegetable crops with the aim to increase plant tolerance against biotic and abiotic stress - subproject B (Project)

Abiotic and biotic stress factors represent current and future challenges for a high-quality vegetable production. Due to expiring approvals and complete bans of plant protection products and pesticides their selection decreases and pathogen resistances to those few available products are increasing at an alarming rate. In terms of sustainable crop protection, plants need to be strengthened by...


Funding period: 2021 - 2024

Relevancy: 100%

Collaborative project: Utilization of innovative fungal root endophytes in seed treatments to strengthen vegetable crops with the aim to increase plant tolerance against biotic and abiotic stress - subproject C (Project)

Abiotic and biotic stress factors represent current and future challenges for a high-quality vegetable production. Due to expiring approvals and complete bans of plant protection products and pesticides their selection decreases and pathogen resistances to those few available products are increasing at an alarming rate. In terms of sustainable crop protection, plants need to be strengthened by...


Funding period: 2021 - 2024