Zhou Jianbin, Wang Liangcai, Zhang Pengyuan, Chen Yu, Zhang Lijun, Ma Huanhuan, Zhang Yimeng, Chen Dengyu
College of Materials Science and Engineering, Nanjing Forestry University, 210037 Nanjing, China.
Chengde Huajing Activated Carbon Co., Ltd., 067500 Chengde, China.
ACS Omega. 2020 Oct 1;5(40):26110-26115. doi: 10.1021/acsomega.0c03687. eCollection 2020 Oct 13.
Biomass is a renewable and clean energy. Moreover, clean heating plays a vital role in solving issues related to the heating source structures in northern China. This paper reports on our novel technology: a system of biomass (mainly fruitwood waste, referred to in short as FWW) gasification for simultaneous clean heating and fruitwood activated carbon (FAC) production. In particular, we will discuss the features of our gasification system and product characteristics, as well as energy efficiency, environmental benefits, and economic benefits. The results showed that the energy conversion from FWW gasification was as follows: 48.10% hot gas, 49.08% fruitwood gasified carbon (FGC), and 2.82% energy loss. The NO emissions of this system were about 126 mg/Nm. The iodine adsorption values of the derived FGC and FAC were about 550 and 1000 mg/g, respectively. The system of gasification consumed 36 t of FWW per day, obtained 10 t of FGC, and produced 5 t of FAC. The emissions of CO were neutral during the operation, and the clean heating area was 4100 m/d in Chengde, Hebei, China, with the payback period under one heating season. These results show that the system is practical, economical, energy-saving, and environmentally friendly.
生物质是一种可再生的清洁能源。此外,清洁供暖对于解决中国北方供暖源结构相关问题起着至关重要的作用。本文报道了我们的新技术:一种用于同时进行清洁供暖和生产果木活性炭(FAC)的生物质(主要是果木废料,简称为FWW)气化系统。具体而言,我们将讨论气化系统的特点、产品特性以及能源效率、环境效益和经济效益。结果表明,FWW气化的能量转化情况如下:热气体占48.10%,果木气化碳(FGC)占49.08%,能量损失占2.82%。该系统的NO排放约为126 mg/Nm。所得FGC和FAC的碘吸附值分别约为550和1000 mg/g。气化系统每天消耗36吨FWW,获得10吨FGC,并生产5吨FAC。运行期间CO排放呈中性,在中国河北承德的清洁供暖面积为4100平方米/天,投资回收期在一个供暖季以内。这些结果表明该系统实用、经济、节能且环保。