[1] ZHANG Z M. Treatment of excess sludge containing heavy metal by chemical ways[J]. Applied Mechanics and Materials, 2012, 178/179/180/181: 507-511. [2] 庄 僖,许榕发,罗伟铿,等.市政污泥与生活垃圾掺烧的重金属排放特征与风险[J].生态环境学报,2020,29(1):199-206. ZHUANG X, XU R F, LUO W K, et al. Heavy metal emission characteristics and risks in the co-combustion of sludge sewage and municipal solid waste[J]. Ecology and Environmental Sciences, 2020, 29(1): 199-206 (in Chinese). [3] 刘亚珍,武荣芳,赵梦梦,等.温度对污泥焚烧灰中重金属迁移行为与浸出特性的影响[J].河南大学学报(自然科学版),2018,48(3):342-347. LIU Y Z, WU R F, ZHAO M M, et al. The effect of temperature on the migration and the leaching behaviors of heavy metals in incineration ash of sewage sludge[J]. Journal of Henan University (Natural Science), 2018, 48(3): 342-347 (in Chinese). [4] 刘敬勇,黄李茂,宁寻安,等.城市干污泥与水葫芦的混燃特性分析[J].环境科学学报,2016,36(8):2955-2967. LIU J Y, HUANG L M, NING X A, et al. Analysis of co-combustion characteristics of sewage sludge and water hyacinth[J]. Acta Scientiae Circumstantiae, 2016, 36(8): 2955-2967 (in Chinese). [5] 巴 黎,刘志英,徐学骁.电镀污泥基胶凝材料的制备及性质分析[J].环境污染与防治,2017,39(7):780-783. BA L, LIU Z Y, XU X X. Preparation and property analysis of electroplating sludge-based complex binder[J]. Environmental Pollution & Control, 2017, 39(7): 780-783 (in Chinese). [6] SEPHTON M G, WEBB J A, MCKNIGHT S. Applications of Portland cement blended with fly ash and acid mine drainage treatment sludge to control acid mine drainage generation from waste rocks[J]. Applied Geochemistry, 2019, 103: 1-14. [7] 季文佳,黄启飞,王 琪,等.电镀污泥资源化与处置方法的研究[J].电镀与环保,2010,30(1):42-45. JI W J, HUANG Q F, WANG Q, et al. A study of methods for resourcization and disposal of electroplating sludge[J]. Electroplating & Pollution Control, 2010, 30(1): 42-45 (in Chinese). [8] KAPPEL A, VIADER R P, KOWALSKI K P, et al. Utilisation of electrodialytically treated sewage sludge ash in mortar[J]. Waste and Biomass Valorization, 2018, 9(12): 2503-2515. [9] ZHANG Y, SHI P X, CHEN L J, et al. Utilization of electroplating sludge as subgrade backfill materials: mechanical and environmental risk evaluation[J]. Advances in Civil Engineering, 2018, 2018: 1-9. [10] XIE J H, LIU J F, LIU F, et al. Investigation of a new lightweight green concrete containing sludge ceramsite and recycled fine aggregates[J]. Journal of Cleaner Production, 2019, 235: 1240-1254. [11] 张腾飞,荣 辉,刘志华,等.900密度等级渣土陶粒的制备及性能研究[J].新型建筑材料,2017,44(1):109-113. ZHANG T F, RONG H, LIU Z H, et al. Research on preparation and properties of muck ceramsite for 900 density level[J]. New Building Materials, 2017, 44(1): 109-113 (in Chinese). [12] 王丹丹,李 娜,彭瑜洲,等.裹壳工艺对疏浚底泥免烧骨料性能的影响研究[J].硅酸盐通报,2018,37(5):1543-1549+1555. WANG D D, LI N, PENG Y Z, et al. Influence of rolling process on characteristics of non-sintered aggregate for dredged sediment[J]. Bulletin of the Chinese Ceramic Society, 2018, 37(5): 1543-1549+1555 (in Chinese). [13] ERDOGMUS E, HARJA M, GENCEL O, et al. New construction materials synthesized from water treatment sludge and fired clay brick wastes[J]. Journal of Building Engineering, 2021, 42: 102471. [14] DOS REIS G S, CAZACLIU B G, COTHENET A, et al. Fabrication, microstructure, and properties of fired clay bricks using construction and demolition waste sludge as the main additive[J]. Journal of Cleaner Production, 2020, 258: 120733. [15] HOMAN J. Preparation of bricks using construction and demolition waste and sludge[D]. Rourkela: National Institute of Technology, 2015. [16] 孙国文,汤青青,张丽娟,等.大掺量粉煤灰早期活性激发及其作用机理[J].哈尔滨工程大学学报,2019,40(3):540-547. SUN G W, TANG Q Q, ZHANG L J, et al. Early activation effect and mechanism of high-volume fly ash[J]. Journal of Harbin Engineering University, 2019, 40(3): 540-547 (in Chinese). |