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作 者:李景伟 高雪智 韩泽冉 赵锦 李文艳[3] 王世永 赵莹 程桂石 郑宗明[1] 胡笑颖[1] 董长青[1] 王孝强[1]
机构地区:[1]华北电力大学,可再生能源学院,生物质发电成套设备国家工程实验室,北京 [2]国网节能服务有限公司,北京 [3]华北电力大学,能源动力与机械工程学院,北京
出 处:《可持续能源》2019年第1期1-7,共7页Sustainable Energy
基 金:国家自然科学基金(51306054);国家电网公司科技项目(GNKJ201701,SGJN0000ASJS1700136);北京自然科学基金(3144036);中央高校基本科研业务费专项资金(2018MS038,2016MS54,2018ZD08);华北电力大学“双一流”建设项目(XM1805503)。
摘 要:生物质发电产业已得到迅速发展,是消纳秸秆最大的行业,推动了秸秆露天禁烧及大气污染控制工作,目前迫切需要研发秸秆灰渣的高值化技术。秸秆灰渣经水浸提取钾素、酸浸提取磷素之后,大部分未燃尽炭也会随钾磷去除,剩余的成分主要是二氧化硅及硅酸盐,二氧化硅含量一般在50%以上。本文以氢氧化钠为提取剂提取秸秆灰渣中的SiO2,对比了焙烧法、水热法、常压液相法,初步获得秸秆电厂灰渣制备Na2SiO3溶液的工艺参数,灰渣原料中的SiO2溶出率达到74%。制备的Na2SiO3溶液可继续用于硅气凝胶、硅溶胶等硅基材料的生产,本文具有重要意义。The industry of biomass power generation has been developed rapidly, contributes a lot to agro-residue treatment, and promotes the works of burning-forbidding in open air and air pollution control. Currently, high-value reutilization of the ash of power plant firing agro-residue is needed urgently. After potassium extraction by water leaching and phosphorus extraction by acid leaching, most of unburnt carbon can also be removed;the ash would be mainly composed of SiO2 and silicate, and can be reused to produce Na2SiO3 through the reaction with NaOH. This study compared the processes of calcination, hydrotherm and atmospheric liquid, and established the optimal process of Na2SiO3 production from the ash. The dissolution rate (DR) of SiO2 in the ash could reached at 74%, and the attained Na2SiO3 solution can be used further to produce silica-based materials such as silica aerogel, silica sol, and etc. This study is helpful for the biomass power industry.
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