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光催化空氣凈化材料檢測

發(fā)布日期: 2024-06-21 17:34:53 - 更新時間:2024年06月29日 15:22

光催化空氣凈化材料檢測項目報價???解決方案???檢測周期???樣品要求?

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GB/T 23761-2020光催化材料及制品空氣凈化性能測試方法 乙醛(或甲醛)的降解

本標準規(guī)定了光催化材料及制品空氣凈化性能測試方法的原理、試劑或材料、儀器設(shè)備、樣品、試驗步驟、試驗數(shù)據(jù)處理和試驗報告。本標準適用于光催化材料及制品去除空氣中乙醛(或甲醛)性能的測試。

GB/T 23763-2009光催化抗菌材料及制品.抗菌性能的評價

本標準規(guī)定了光催化抗菌材料及制品的抗菌性能術(shù)語和定義、抗菌性能的評定、試驗方法和試驗報告。本標準適用于在光照激發(fā)下產(chǎn)生抗菌性能的光催化抗菌材料及制品,要求試驗樣品表面平整、與覆蓋膜接觸良好,其材質(zhì)可以為玻璃、陶瓷、塑料、涂層、織物等。

GB/T 29909-2013暖通空調(diào)系統(tǒng)清潔設(shè)備術(shù)語

本標準規(guī)定了暖通空調(diào)系統(tǒng)清潔設(shè)備的基礎(chǔ)術(shù)語、空氣系統(tǒng)清潔設(shè)備術(shù)語、水系統(tǒng)清潔設(shè)備術(shù)語、消毒與滅菌設(shè)備術(shù)語和相關(guān)術(shù)語。本標準適用于暖通空調(diào)系統(tǒng)清潔設(shè)備的科研、設(shè)計、生產(chǎn)、檢測、管理與維護。

GB/T 30809-2014光催化材料性能測試用紫外光光源

本標準規(guī)定了光催化材料性能測試對紫外光光源的要求。本標準適用于采用主波長為365 nm的單端、雙端或自鎮(zhèn)流的紫外光光源(不包括LED紫外光光源)。

GB/T 39716-2020光催化材料及制品空氣凈化性能測試方法 氮氧化物的去除

本標準規(guī)定了光催化材料及制品去除空氣中氮氧化物測試方法的原理、測試裝置、分析方法和試驗報告等內(nèi)容。本標準適用于光催化材料及制品去除空氣中氮氧化物性能的測試。

GB/T 42265-2022光催化材料空氣凈化性能測試方法 甲苯的去除

本文件描述了一種用于含有或表面附著光催化劑的材料的空氣凈化性能檢測方法,所涉及光催化劑通常是半導體金屬氧化物,如二氧化鈦(TiO<下標2>)或其他陶瓷材料。該測試方法將試樣置于紫外光(UV-A)照射下,持續(xù)暴露于模擬污染空氣中進行。本文件適用于不同類型和用途的板材,如薄板、木板等建筑材料。本文件也適用于結(jié)構(gòu)化的過濾材料,如蜂窩過濾板、針織布或無紡布。同時適用于復合陶瓷微晶的塑料、紙質(zhì)材料等。本文件不適用于粉狀或顆粒狀光催化材料。本試驗方法通常適用于光催化材料的空氣凈化檢測,不適用于光催化材料的其他性質(zhì)測定,如水中污染物降解、自清潔、防霧或抗菌等。本方法僅涉及甲苯的去除。

GB/T 42349-2023光催化材料抗病毒活性的測定 Q-β噬菌體試驗方法

本文件描述了含有光催化劑或表面有光催化劑或光催化材料涂膜表面的抗病毒活性的測試方法,本方法通過計數(shù)經(jīng)紫外光照之后的Q-β噬菌體的減少來確定其抗病毒活性。本文件適用于建材中使用的不同種類的半導體光催化材料,其基本形制包括片狀、塊狀或平板狀等,但不包括粉末、顆?;蚨嗫坠獯呋牧稀1疚募m用于具有抗病毒性能的光催化材料的檢測,不適用于抗細菌、抗真菌、水中污染物降解、自清潔、防霧和空氣凈化性能的檢測。本文件中的量值表達采用單位制(SI)單位。

ISO 17168-1-2018精細陶瓷.室內(nèi)光照環(huán)境下半導體光催化材料空氣凈化性能的試驗方法. 第1部分: 一氧化氮去除

This document specifies a test method for the determination of the air purification performance, with regards to removal of nitric oxide, of materials that contain a photocatalyst or have photocatalytic films on the surface, usually made from semiconducting metal oxides such as titanium dioxide or other ceramic materials, by continuous exposure of a test piece to the model air pollutant under illumination from indoor light. This document is intended for use with different kinds of materials, such as construction materials in flat sheet, board or plate shape, which are the basic forms of materials for various applications. This document also applies to materials in honeycomb form and to plastic or paper materials containing ceramic microcrystals and composites. This document does not apply to certain test pieces that contain a large amount of adsorbent, due to unattained adsorption equilibrium. This document does not apply to powder or granular photocatalytic materials. This test method

ISO 17168-2-2018精細陶瓷.室內(nèi)光照環(huán)境下半導體光催化材料空氣凈化性能的試驗方法. 第2部分: 乙醛去除

This document specifies a test method for the determination of the air-purification performance, with regards to removal of acetaldehyde, of materials that contain a photocatalyst or have photocatalytic films on the surface, usually made from semiconducting metal oxides such as titanium dioxide or other ceramic materials, by continuous exposure of a test piece to the model air pollutant under illumination from indoor light. This document is intended for use with different kinds of materials, such as construction materials in flat sheet, board or plate shape, which are the basic forms of materials for various applications. This document also applies to materials in honeycomb form, and to plastic or paper materials containing ceramic microcrystals and composites. This document does not apply to powder or granular photocatalytic materials. This test method is usually applicable to photocatalytic materials produced for air purification. This method is not suitable for the determination of

ISO 17168-3-2018精細陶瓷. 室內(nèi)光照環(huán)境下半導體光催化材料空氣凈化性能的試驗方法. 第3部分: 甲苯去除

This document specifies a test method for the determination of the air-purification performance, with regards to the removal of toluene, of materials that contain a photocatalyst or have photocatalytic films on the surface, usually made from semiconducting metal oxides such as titanium dioxide or other ceramic materials, by continuous exposure of a test piece to the model air pollutant under illumination from indoor light. This document is intended for use with different kinds of materials, such as construction materials in flat sheet, board or plate shape, which are the basic forms of materials for various applications. This document also applies to materials in honeycomb form, and to plastic or paper materials containing ceramic microcrystals and composites. This document does not apply to powder or granular photocatalytic materials. This test method is usually applicable to photocatalytic materials produced for air purification. This method is not suitable for the determination of o

ISO 17168-4-2018精細陶瓷. 室內(nèi)光照環(huán)境下半導體光催化材料空氣凈化性能的試驗方法. 第4部分: 甲醛去除

This document specifies a test method for the determination of the air-purification performance, with regards to the removal of formaldehyde, of materials that contain a photocatalyst or have photocatalytic films on the surface, usually made from semiconducting metal oxides such as titanium dioxide or other ceramic materials, by continuous exposure of a test piece to the model air pollutant under illumination from indoor light. This document is intended for use with different kinds of materials, such as construction materials in flat sheet, board or plate shape, which are the basic forms of materials for various applications. This document also applies to materials in honeycomb form, and to plastic or paper materials containing ceramic microcrystals and composites. This document does not apply to powder or granular photocatalytic materials. This test method is usually applicable to photocatalytic materials produced for air purification. This method is not suitable for the determination

ISO 17168-5-2018精細陶瓷(高級陶瓷、高級工業(yè)陶瓷). 在室內(nèi)照明環(huán)境下半導體光催化材料空氣凈化性能的試驗方法. 第5部分: 去除甲硫醇

This document specifies a test method for the determination of the air-purification performance, with regards to removal of methyl mercaptan, of materials that contain a photocatalyst or have photocatalytic films on the surface, usually made from semiconducting metal oxides such as titanium dioxide or other ceramic materials, by continuous exposure of a test piece to the model air pollutant under illumination with indoor light. This document is intended for use with different kinds of materials, such as construction materials in flat sheet, board or plate shape, which are the basic forms of materials for various applications. This document also applies to materials in honeycomb form, and to plastic or paper materials containing ceramic microcrystals and composites. This document does not apply to powder or granular photocatalytic materials. This test method is usually applicable to photocatalytic materials produced for air purification. This method is not suitable for the determination

ISO 22197-1-2016精細陶瓷(高級陶瓷, 高級工業(yè)陶瓷). 半導體光催化材料空氣凈化性能試驗方法. 第1部分: 一氧化氮凈化

This document specifies a test method for the determination of the air-purification performance of materials that contain a photocatalyst or have photocatalytic films on the surface, usually made from semiconducting metal oxides, such as titanium dioxide or other ceramic materials, by continuous exposure of a test piece to the model air pollutant under illumination with ultraviolet light. This document is intended for use with different kinds of materials, such as construction materials in flat sheet, board or plate shape, that are the basic forms of materials for various applications. This document also applies to materials in honeycomb-form and to plastic or paper materials if they contain ceramic microcrystals and composites. This document does not apply to powder or granular photocatalytic materials. This test method is usually applicable to photocatalytic materials produced for air purification. This method is not suitable for the determination of other performance attributes of p

ISO 22197-2-2019精細陶瓷(高級陶瓷,高級工業(yè)陶瓷). 半導體光催化材料空氣凈化性能的試驗方法. 第2部分: 乙醛的清除

This document specifies a test method for the determination of the air-purification performance of materials that contain a photocatalyst or have photocatalytic films, usually made from semiconducting metal oxides, such as titanium dioxide or other ceramic materials, by continuous exposure of a test piece to the model air pollutant under irradiation with ultraviolet light (UV-A). This document is intended for use with different kinds of materials, such as construction materials in flat sheet, board or plate shape, that are the basic forms of materials for various applications. This document also applies to structured filter materials including honeycomb-form, woven and nonwoven fabrics, and to plastic or paper materials if they contain ceramic microcrystals and composites. This document does not apply to powder or granular photocatalytic materials. This test method is usually applicable to photocatalytic materials produced for air purification. This method is not suitable for the deter

ISO 22197-3-2019精細陶瓷(高級陶瓷,高級工業(yè)陶瓷). 半導體光催化材料空氣凈化性能的試驗方法. 第3部分: 甲苯的清除

This document specifies a test method for the determination of the air-purification performance of materials that contain a photocatalyst or have photocatalytic films on the surface, usually made from semiconducting metal oxides, such as titanium dioxide or other ceramic materials, by continuous exposure of a test piece to the model air pollutant under irradiation with ultraviolet light (UV-A). This document is intended for use with different kinds of materials, such as construction materials in flat sheet, board or plate shape, that are the basic forms of materials for various applications. This document also applies to structured filter materials including honeycomb-form, woven and nonwoven fabrics, and to plastic or paper materials if they contain ceramic microcrystals and composites. This document does not apply to powder or granular photocatalytic materials. This test method is usually applicable to photocatalytic materials produced for air purification. This method is not suitabl

ISO 22197-4-2021精細陶瓷(高級陶瓷、高級工藝陶瓷). 半導體光催化材料空氣凈化性能的試驗方法. 第5部分: 甲醛的清除

This document specifies a test method for the determination of the air-purification performance of materials that contain a photocatalyst or have photocatalytic films on the surface, usually made from semiconducting metal oxides, such as titanium dioxide or other ceramic materials, by continuous exposure of a test piece to the model air pollutant under irradiation with long-wave ultraviolet (UV) light. This document is intended for use with different kinds of materials, such as construction materials in flat sheet, board or plate shape, that are the basic forms of materials for various applications. This document also applies to structured filter materials including honeycomb-form, woven and non-woven fabrics, and to plastic or paper materials if they contain ceramic microcrystals and composites. This document does not apply to powder or granular photocatalytic materials. This test method is usually applicable to photocatalytic materials produced for air purification. This method is no

ISO 22197-5-2021精細陶瓷(高級陶瓷、高級工藝陶瓷). 半導體光催化材料空氣凈化性能的試驗方法. 第5部分: 甲硫醇的清除

This document specifies a test method for the determination of the air-purification performance of materials that contain a photocatalyst or have photocatalytic films on the surface, usually made from semiconducting metal oxides, such as titanium dioxide or other ceramic materials, by continuous exposure of a test piece to the model air pollutant under irradiation with long-wave ultraviolet (UV) light. This document is intended for use with different kinds of materials, such as construction materials in flat sheet, board or plate shape, that are the basic forms of materials for various applications. This document also applies to structured filter materials including honeycomb-form, woven and non-woven fabrics, and to plastic or paper materials if they contain ceramic microcrystals and composites. This document does not apply to powder or granular photocatalytic materials. This test method is usually applicable to photocatalytic materials produced for air purification. This method is no

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