ISO 14605 Fine ceramics (advanced ceramics, advanced technical ceramics) - Light source for testing semiconducting photocatalytic materials used under indoor lighting environment - First Edition
Данный раздел/документ содержится в продуктах:
- Техэксперт: Машиностроительный комплекс
- Картотека зарубежных и международных стандартов
- JSA JIS A 1904 Determination of the emission of semi volatile organic compounds by building products - Micro chamber method
- JSA JIS A 1901 Determination of the emission of volatile organic compounds and aldehydes by building products - Small chamber method
- JSA JIS A 1905-2 Performance test of sorptive building materials of reducing indoor air pollution with small chamber - Part 2: Measurement of capability for suppressing formaldehyde emission
- JSA JIS A 1905-1 Performance test of sorptive building materials of reducing indoor air pollution with small chamber- Part 1: Measurement of adsorption flux with supplying constant concentration of formaldehyde
- JSA JIS A 1905-2 Performance test of sorptive building materials of reducing indoor air pollution with small chamber - Part 2: Measurement of capability for suppressing formaldehyde emission
- JSA JIS A 1901 Determination of the emission of volatile organic compounds and aldehydes by building products - Small chamber method
- 13
- JSA JIS A 1904 Determination of the emission of semi volatile organic compounds by building products - Micro chamber method
- JSA JIS A 1901 Determination of the emission of volatile organic compounds and aldehydes by building products - Small chamber method
- JSA JIS A 1905-2 Performance test of sorptive building materials of reducing indoor air pollution with small chamber - Part 2: Measurement of capability for suppressing formaldehyde emission
- JSA JIS A 1905-1 Performance test of sorptive building materials of reducing indoor air pollution with small chamber- Part 1: Measurement of adsorption flux with supplying constant concentration of formaldehyde
- JSA JIS A 1905-2 Performance test of sorptive building materials of reducing indoor air pollution with small chamber - Part 2: Measurement of capability for suppressing formaldehyde emission
- JSA JIS A 1901 Determination of the emission of volatile organic compounds and aldehydes by building products - Small chamber method
- 13.040
- JSA JIS A 1904 Determination of the emission of semi volatile organic compounds by building products - Micro chamber method
- JSA JIS A 1901 Determination of the emission of volatile organic compounds and aldehydes by building products - Small chamber method
- JSA JIS A 1905-2 Performance test of sorptive building materials of reducing indoor air pollution with small chamber - Part 2: Measurement of capability for suppressing formaldehyde emission
- JSA JIS A 1905-1 Performance test of sorptive building materials of reducing indoor air pollution with small chamber- Part 1: Measurement of adsorption flux with supplying constant concentration of formaldehyde
- JSA JIS A 1905-2 Performance test of sorptive building materials of reducing indoor air pollution with small chamber - Part 2: Measurement of capability for suppressing formaldehyde emission
- JSA JIS A 1901 Determination of the emission of volatile organic compounds and aldehydes by building products - Small chamber method
- 13.040.20
- JSA JIS A 1904 Determination of the emission of semi volatile organic compounds by building products - Micro chamber method
- JSA JIS A 1901 Determination of the emission of volatile organic compounds and aldehydes by building products - Small chamber method
- JSA JIS A 1905-2 Performance test of sorptive building materials of reducing indoor air pollution with small chamber - Part 2: Measurement of capability for suppressing formaldehyde emission
- JSA JIS A 1905-1 Performance test of sorptive building materials of reducing indoor air pollution with small chamber- Part 1: Measurement of adsorption flux with supplying constant concentration of formaldehyde
- JSA JIS A 1905-2 Performance test of sorptive building materials of reducing indoor air pollution with small chamber - Part 2: Measurement of capability for suppressing formaldehyde emission
- JSA JIS A 1901 Determination of the emission of volatile organic compounds and aldehydes by building products - Small chamber method
- JSA JIS A 1904 Determination of the emission of semi volatile organic compounds by building products - Micro chamber method
- JSA JIS A 1904 Determination of the emission of semi volatile organic compounds by building products - Micro chamber method
- JSA JIS A 1904 Determination of the emission of semi volatile organic compounds by building products - Micro chamber method
- 71
- JSA JIS A 1904 Determination of the emission of semi volatile organic compounds by building products - Micro chamber method
- JSA JIS A 1901 Determination of the emission of volatile organic compounds and aldehydes by building products - Small chamber method
- JSA JIS A 1905-2 Performance test of sorptive building materials of reducing indoor air pollution with small chamber - Part 2: Measurement of capability for suppressing formaldehyde emission
- JSA JIS A 1905-1 Performance test of sorptive building materials of reducing indoor air pollution with small chamber- Part 1: Measurement of adsorption flux with supplying constant concentration of formaldehyde
- JSA JIS A 1905-2 Performance test of sorptive building materials of reducing indoor air pollution with small chamber - Part 2: Measurement of capability for suppressing formaldehyde emission
- JSA JIS A 1901 Determination of the emission of volatile organic compounds and aldehydes by building products - Small chamber method
- JSA JIS A 1904 Determination of the emission of semi volatile organic compounds by building products - Micro chamber method
- JSA JIS A 1901 Determination of the emission of volatile organic compounds and aldehydes by building products - Small chamber method
- JSA JIS A 1905-2 Performance test of sorptive building materials of reducing indoor air pollution with small chamber - Part 2: Measurement of capability for suppressing formaldehyde emission
- JSA JIS A 1905-1 Performance test of sorptive building materials of reducing indoor air pollution with small chamber- Part 1: Measurement of adsorption flux with supplying constant concentration of formaldehyde
- JSA JIS A 1905-2 Performance test of sorptive building materials of reducing indoor air pollution with small chamber - Part 2: Measurement of capability for suppressing formaldehyde emission
- JSA JIS A 1905-2 Performance test of sorptive building materials of reducing indoor air pollution with small chamber - Part 2: Measurement of capability for suppressing formaldehyde emission
- JSA JIS A 1905-1 Performance test of sorptive building materials of reducing indoor air pollution with small chamber- Part 1: Measurement of adsorption flux with supplying constant concentration of formaldehyde
- JSA JIS A 1905-1 Performance test of sorptive building materials of reducing indoor air pollution with small chamber- Part 1: Measurement of adsorption flux with supplying constant concentration of formaldehyde
- ISO 6353-3 Reagents for Chemical Analysis - Part 3: Specifications - Second Series First Edition
- ISO 18560-1 Fine ceramics (advanced ceramics, advanced technical ceramics) - Test method for air-purification performance of semiconducting photocatalytic materials by test chamber method under indoor lighting environment - Part 1: Removal of formaldehyde - First Edition
- JSA JIS A 1904 Determination of the emission of semi volatile organic compounds by building products - Micro chamber method
- Картотека зарубежных и международных стандартов
International Organization for Standardization
Fine ceramics (advanced ceramics, advanced technical ceramics) - Light source for testing semiconducting photocatalytic materials used under indoor lighting environment - First Edition
N 14605
Annotation
This International Standard specifies the light source and radiometer used in the performance evaluation of semiconducting photocatalytic materials used under an indoor lighting environment in a laboratory. A light source of an indoor lighting environment does not include the sunlight passing through the window glass.
Автоматический перевод:
Тонкая керамика (передовая керамика, передовая техническая керамика) - Источник света для тестирования полупроводниковых фотокаталитических материалов, используемых под внутренней окружающей средой освещения - Первый Выпуск
Этот Международный стандарт определяет источник света и радиометр, используемый в оценке результатов деятельности полупроводниковых фотокаталитических материалов, используемых под внутренней окружающей средой освещения в лаборатории. Источник света внутренней окружающей среды освещения не включает солнечный свет, проходящий через оконное стекло.



