生物污泥陶粒加气混凝土砌块生命周期CO2排放量解析

来源 :新型建筑材料 | 被引量 : 0次 | 上传用户:vvf022
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
提出了生物污泥陶粒加气混凝土砌块生命周期CO_2排放量计算模型与公式,计算了烧结淤泥页岩陶粒生产阶段CO_2排放因子和陶粒加气混凝土生命周期CO_2排放量,为反映生物污泥陶粒加气混凝土砌块的CO_2排放水平,将计算结果同粉煤灰加气混凝土砌块、烧结普通砖和烧结空心砖碳排放进行了比较,数据表明,A3.5、B06和A5.0、B07级生物污泥陶粒加气混凝土砌块生命周期CO_2排放量分别为449.15和437.90 kg CO_2/m~3,A5.0、B07级外墙砌块碳排放量较粉煤灰加气混凝土砌块和烧结空心砖分别升高了45%和36%,而与烧结普通砖相比则减少了10%。生物污泥陶粒加气混凝土砌块碳排放量远高于粉煤灰加气混凝土砌块和烧结空心砖是由于大量使用了陶粒这一高碳排放原料,因此,若想降低其碳排放,可从降低陶粒生产碳排放入手。 The calculation model and formula of life cycle CO 2 emission of bio-sludge ceramsite aerated concrete block are put forward. CO 2 emission factor and life cycle CO 2 emission of ceramsite aerated concrete in sintering silt shale production stage are calculated. The CO 2 emission levels of sludge ceramsite aerated concrete block are compared with those of fly ash aerated concrete block, sintered common brick and sintered hollow brick. The data show that A3.5, B06 and A5. 0, CO 2 emissions of B07 biological sludge ceramsite aerated concrete blocks are 449.15 and 437.90 kg CO 2 / m ~ 3, respectively. The carbon emission of external wall blocks of buildings A5.0 and B07 is higher than that of fly ash aeration Concrete blocks and sintered hollow bricks were increased by 45% and 36%, respectively, compared with ordinary brick sintered reduced by 10%. Bio-sludge ceramsite aerated concrete block carbon emissions much higher than fly ash aerated concrete blocks and sintered hollow brick is due to the large use of ceramsite, a high-carbon raw materials, so if you want to reduce its carbon emissions, Starting from reducing the production of carbon emissions of ceramsite.
其他文献
跆拳道的技术应起源于中国,后来发展于韩国,经过不断的学习与改进最终成为韩国的的特有文化。跆拳道和中国武术的竞赛方式差不多,都是对技术有着严格的要求。同时也对运动员
相变材料在发生相变时具有吸收或释放热量的性质,将其用于建筑围护结构中可以实现节能、保温、隔热的效果。将含有相变材料的石膏板与新型通风节能墙板复合,通过CFD模拟的方
为探索含铬电镀污泥处置和利用的新技术,以粉煤灰基地质聚合物对含铬电镀污泥进行固化,研究了液固比、水玻璃模数、水玻璃用量、污泥添加量和养护时间对固化体的强度和六价铬浸