DIN CEN/TS 16817-1 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring - Part 1: Technical pollen sampling using pollen mass filter (PMF) and Sigma-2-sampler
Данный раздел/документ содержится в продуктах:
- Техэксперт: Машиностроительный комплекс
- Картотека зарубежных и международных стандартов
- DIN CEN/TR 16596 Electric-electronic interface between chassis-cab and bodywork of refuse collection vehicles (RCVs)
- DIN EN 1501-1 Corrosion Preventive, Aircraft Engine
- DIN CEN/TS 16817-2 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring - Part 2: Biological pollen sampling using bee colonies
- CEN CEN/TS 16817-1 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 1: Technical pollen sampling using pollen mass filter (PMF) and Sigma-2-sampler
- CEN CEN/TS 16817-2 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 2: Biological pollen sampling using bee colonies
- CEN CEN/TS 16817-1 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 1: Technical pollen sampling using pollen mass filter (PMF) and Sigma-2-sampler
- DIN CEN/TS 16817-2 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring - Part 2: Biological pollen sampling using bee colonies
- DIN EN 1501-1 Corrosion Preventive, Aircraft Engine
- 35
- DIN CEN/TR 16596 Electric-electronic interface between chassis-cab and bodywork of refuse collection vehicles (RCVs)
- DIN EN 1501-1 Corrosion Preventive, Aircraft Engine
- DIN CEN/TS 16817-2 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring - Part 2: Biological pollen sampling using bee colonies
- CEN CEN/TS 16817-1 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 1: Technical pollen sampling using pollen mass filter (PMF) and Sigma-2-sampler
- CEN CEN/TS 16817-2 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 2: Biological pollen sampling using bee colonies
- CEN CEN/TS 16817-1 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 1: Technical pollen sampling using pollen mass filter (PMF) and Sigma-2-sampler
- DIN CEN/TS 16817-2 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring - Part 2: Biological pollen sampling using bee colonies
- DIN EN 1501-1 Corrosion Preventive, Aircraft Engine
- 35.240
- DIN CEN/TR 16596 Electric-electronic interface between chassis-cab and bodywork of refuse collection vehicles (RCVs)
- DIN EN 1501-1 Corrosion Preventive, Aircraft Engine
- DIN CEN/TS 16817-2 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring - Part 2: Biological pollen sampling using bee colonies
- CEN CEN/TS 16817-1 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 1: Technical pollen sampling using pollen mass filter (PMF) and Sigma-2-sampler
- CEN CEN/TS 16817-2 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 2: Biological pollen sampling using bee colonies
- CEN CEN/TS 16817-1 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 1: Technical pollen sampling using pollen mass filter (PMF) and Sigma-2-sampler
- DIN CEN/TS 16817-2 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring - Part 2: Biological pollen sampling using bee colonies
- DIN EN 1501-1 Corrosion Preventive, Aircraft Engine
- 35.240.60
- DIN CEN/TR 16596 Electric-electronic interface between chassis-cab and bodywork of refuse collection vehicles (RCVs)
- DIN EN 1501-1 Corrosion Preventive, Aircraft Engine
- DIN CEN/TS 16817-2 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring - Part 2: Biological pollen sampling using bee colonies
- CEN CEN/TS 16817-1 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 1: Technical pollen sampling using pollen mass filter (PMF) and Sigma-2-sampler
- CEN CEN/TS 16817-2 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 2: Biological pollen sampling using bee colonies
- CEN CEN/TS 16817-1 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 1: Technical pollen sampling using pollen mass filter (PMF) and Sigma-2-sampler
- DIN CEN/TS 16817-2 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring - Part 2: Biological pollen sampling using bee colonies
- DIN EN 1501-1 Corrosion Preventive, Aircraft Engine
- DIN CEN/TR 16596 Electric-electronic interface between chassis-cab and bodywork of refuse collection vehicles (RCVs)
- DIN CEN/TR 16596 Electric-electronic interface between chassis-cab and bodywork of refuse collection vehicles (RCVs)
- DIN CEN/TR 16596 Electric-electronic interface between chassis-cab and bodywork of refuse collection vehicles (RCVs)
- 43
- DIN CEN/TR 16596 Electric-electronic interface between chassis-cab and bodywork of refuse collection vehicles (RCVs)
- DIN EN 1501-1 Corrosion Preventive, Aircraft Engine
- DIN CEN/TS 16817-2 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring - Part 2: Biological pollen sampling using bee colonies
- CEN CEN/TS 16817-1 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 1: Technical pollen sampling using pollen mass filter (PMF) and Sigma-2-sampler
- CEN CEN/TS 16817-2 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 2: Biological pollen sampling using bee colonies
- CEN CEN/TS 16817-1 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 1: Technical pollen sampling using pollen mass filter (PMF) and Sigma-2-sampler
- DIN CEN/TS 16817-2 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring - Part 2: Biological pollen sampling using bee colonies
- DIN EN 1501-1 Corrosion Preventive, Aircraft Engine
- DIN CEN/TR 16596 Electric-electronic interface between chassis-cab and bodywork of refuse collection vehicles (RCVs)
- DIN EN 1501-1 Corrosion Preventive, Aircraft Engine
- DIN CEN/TS 16817-2 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring - Part 2: Biological pollen sampling using bee colonies
- CEN CEN/TS 16817-1 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 1: Technical pollen sampling using pollen mass filter (PMF) and Sigma-2-sampler
- CEN CEN/TS 16817-2 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 2: Biological pollen sampling using bee colonies
- CEN CEN/TS 16817-1 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 1: Technical pollen sampling using pollen mass filter (PMF) and Sigma-2-sampler
- DIN CEN/TS 16817-2 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring - Part 2: Biological pollen sampling using bee colonies
- DIN CEN/TS 16817-2 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring - Part 2: Biological pollen sampling using bee colonies
- CEN CEN/TS 16817-1 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 1: Technical pollen sampling using pollen mass filter (PMF) and Sigma-2-sampler
- CEN CEN/TS 16817-2 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 2: Biological pollen sampling using bee colonies
- CEN CEN/TS 16817-1 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 1: Technical pollen sampling using pollen mass filter (PMF) and Sigma-2-sampler
- CEN CEN/TS 16817-1 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 1: Technical pollen sampling using pollen mass filter (PMF) and Sigma-2-sampler
- CEN CEN/TS 16817-2 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 2: Biological pollen sampling using bee colonies
- CEN CEN/TS 16817-2 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 2: Biological pollen sampling using bee colonies
- DIN CEN/TS 16817-1 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring - Part 1: Technical pollen sampling using pollen mass filter (PMF) and Sigma-2-sampler
- DIN CEN/TS 16868 Ambient air - Sampling and analysis of airborne pollen grains and fungal spores for allergy networks - Volumetric Hirst method
- DIN CEN/TR 16596 Electric-electronic interface between chassis-cab and bodywork of refuse collection vehicles (RCVs)
- Картотека зарубежных и международных стандартов
Deutsches Institut fur Normung e. V.
Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring - Part 1: Technical pollen sampling using pollen mass filter (PMF) and Sigma-2-sampler
N CEN/TS 16817-1
Автоматический перевод:
Окружающий воздух - Контроль результатов генетически модифицированных организмов (GMO) - контроль Пыльцы - Часть 1: Техническая выборка пыльцы с помощью фильтра массы пыльцы (PMF) и Sigma-2-sampler
Данная Техническая спецификация описывает процесс для применения пассивных собирателей Sigma-2 и PMF к коллекции воздушной принесенной пыльцы. Оба собирателя выложены на коллекцию грубой частицы аэрозоля. Собранные пробы используются для анализа записи пыльцы относительно вида пыльцы, массы пыльцы и записи трансгенной пыльцы. Sigma 2 собирателей служит при этом стандартизованных Probenahme для непосредственного микроскопического пыльцевого анализа и количественного определения на месте имеющейся в воздухе записи пыльцы. Достаточные массы пыльцы могут получаться PMF для дополнительных молекулярно-биологических диагностик к доказательству GVO.
Существенным основам для проведения мониторинга GVO способствуют в директиве Союз немецких инженеров в 4330 лист 1 [4], базируя на интегрированной оценке временных и пространственных вариаций GVOAnbaus (источники GVO), экологической экспозиции, а также биологическим / экологическим действиям. В идеальном случае коллекция пыльцы с техническими собирателями должна была производиться для мониторинга GVO в комбинации с биологической коллекцией пыльцы пчелами (CEN/TS 16817-2).



