Page 328 - 《环境工程技术学报》2023年第1期
P. 328
· 324 · 环境工程技术学报 第 13 卷
Applied Sciences,2019,1(9):1-8. Environment,2020,20(1):271-276.
[30] 刁韩杰, 张进, 王敏艳, 等.高温热解对污泥炭特性及其重金属 [41] STYLIANOU M A, KOLLIA D, HARALAMBOUS K J, et al.
形态变化的影响[J]. 环境工程,2019,37(3):29-34. Effect of acid treatment on the removal of heavy metals from
DIAO H J, ZHANG J, WANG M Y, et al. Effect of high sewage sludge[J]. Desalination,2007,215(1/2/3):73-81.
temperature pyrolysis of sewage sludge on characteristics of [42] 寇莹莹, 赵倩, 王雪娆, 等.谷氨酸与柠檬酸复合去除污泥中重
residual biochar and speciation changes of heavy metals[J]. 金属及处理后污泥农用可行性分析[J]. 环境工程,2019,
Environmental Engineering,2019,37(3):29-34. 37(10):185-189,43.
[31] ZHAO J Q, QIU C S, FAN X D, et al. Chemical speciation and KOU Y Y, ZHAO Q, WANG X R, et al. Removal of heavy
risk assessment of heavy metals in biochars derived from sewage metals from sludge by glutamic acid and citric acid and its
sludge and anaerobically digested sludge[J]. Water Science and agricultural utilization feasibility[J]. Environmental Engineering,
Technology,2021,84(5):1079-1089. 2019,37(10):185-189,43.
[32] 关若楠, 时亚飞, 梁莎, 等.复合调理脱水污泥热解残渣中重金 [43] ZHANG J, TIAN Y, ZHANG J, et al. Distribution and risk
属形态分布[J]. 环境科学与技术,2017,40(3):74-78.
assessment of heavy metals in sewage sludge after ozonation[J].
GUAN R N, SHI Y F, LIANG S, et al. Speciation distribution of Environmental Science and Pollution Research,2017 ,24 (6 ) :
heavy metals in pyrolysis residue of dewatered sewage sludge 5118-5125.
after conditioned with the composite conditioners[J]. [44] QIU C S, BI Y, ZHENG J X, et al. Effect of ozonation treatment
Environmental Science & Technology,2017,40(3):74-78.
on the chemical speciation distributions of heavy metals in
[33] 于晓庆, 董滨, 何群彪, 等.污水污泥和消化污泥热解过程中重
sewage sludge and subsequent bioleaching process[J].
金属迁移转化行为对比分析[J]. 净水技术,2017,36(12):27-
Environmental Science and Pollution Research,2020 ,27 (16 ) :
32.
19946-19954.
YU X Q, DONG B, HE Q B, et al. Comparative analysis of
[45] 郑金鑫, 邱春生, 王晨晨, 等.Fenton处理对污泥脱水性、重金属
heavy metals migration and transformation between sewage
形态及生物淋滤效率影响[J]. 化工进展,2020,39(2):805-
sludge and digested sludge during pyrolysis process[J]. Water
811.
Purification Technology,2017,36(12):27-32.
ZHENG J X, QIU C S, WANG C C, et al. Effects of Fenton
[34] LIU X X, WANG Y W, GUI C M, et al. Chemical forms and risk
treatment on sewage sludge dewaterability, heavy metal
assessment of heavy metals in sludge-biochar produced by
speciation and leaching efficiency[J]. Chemical Industry and
microwave-induced low temperature pyrolysis[J]. RSC
Engineering Progress,2020,39(2):805-811.
Advances,2016,6(104):101960-101967.
[46] 于贺, 邱春生, 王晨晨, 等.Fenton预处理对城市污泥重金属形
[35] JIN J W, LI Y N, ZHANG J Y, et al. Influence of pyrolysis
态及生物淋滤溶出影响[J]. 环境工程学报,2019,13(3):725-
temperature on properties and environmental safety of heavy
731.
metals in biochars derived from municipal sewage sludge[J].
YU H, QIU C S, WANG C C, et al. Influence of Fenton
Journal of Hazardous Materials,2016,320:417-426.
pretreatment on heavy metal speciation and bioleaching
[36] LU T, YUAN H R, WANG Y Z, et al. Characteristic of heavy
efficiency in municipal sludge[J]. Chinese Journal of
metals in biochar derived from sewage sludge[J]. Journal of
Environmental Engineering,2019,13(3):725-731.
Material Cycles and Waste Management,2016,18(4):725-733.
[47] QIU C S, XIE S Y, LIU N N, et al. Removal behavior and
[37] 许思涵, 王敏艳, 张进, 等.反应时间对污泥水热炭特性及重金
chemical speciation distributions of heavy metals in sewage
属生态风险的影响[J]. 环境污染与防治,2021,43(3):283-
sludge during bioleaching and combined bioleaching/Fenton-like
288.
processes[J]. Scientific Reports,2021,11:14879.
XU S H, WANG M Y, ZHANG J, et al. Effect of reaction time
[48] 徐大勇, 操沛沛, 程维明, 等.Fenton氧化联合人工湿地处理污
on the characteristics of sludge hydrothermal biochar and the
泥中的重金属[J]. 环境工程学报,2018,12(1):235-241.
ecological risk of heavy metals[J]. Environmental Pollution &
XU D Y, CAO P P, CHENG W M, et al. Fenton oxidation
Control,2021,43(3):283-288.
[38] 李彦铭, 许思涵, 王敏艳, 等.竹屑对污泥水热处理衍生生物炭 combined with constructed wetland for heavy metals treatment of
特性及重金属行为的影响[J]. 环境污染与防治,2021,43(5): sludge[J]. Chinese Journal of Environmental Engineering,2018,
579-585. 12(1):235-241.
[49] 王冬. 电化学氧化破解污泥研究[D]. 沈阳: 沈阳建筑大学,
LI Y M, XU S H, WANG M Y, et al. Effect of bamboo sawdust
addition in hydrothermal treatment of sewage sludge on the 2015.
[50] 顾祝禹, 艾克拜尔·伊拉洪, 吐尔逊·吐尔洪.电化学方法去除污
biochar characteristics and heavy metal behaviors of the derived
biochar[J]. Environmental Pollution & Control,2021 ,43 (5 ) : 泥中重金属的研究[J]. 环境科学学报,2014,34(10):2547-
579-585. 2551.
[39] DU F Z, FREGUIA S, YUAN Z G, et al. Enhancing toxic metal GU Z Y, YILAHONG A, TUERHONG T. Removal of heavy
removal from acidified sludge with nitrite addition[J]. metals in sludge by electrochemical treatment[J]. Acta Scientiae
Environmental Science & Technology,2015,49(10):6257-6263. Circumstantiae,2014,34(10):2547-2551.
[40] 李印霞, 刘碧波, 曹志林, 等.酸去除剩余活性污泥重金属效果 [51] 孙寿联, 李建丰.电化学处理对污泥重金属的影响研究[J]. 辽
及农用安全性[J]. 安全与环境学报,2020,20(1):271-276. 宁化工,2016,45(5):571-572.
LI Y X, LIU B B, CAO Z L, et al. Approach to the heavy metal SUN S L, LI J F. Study on electrochemical treatment of heavy
contaminants removal from the residual activated sludge by acid metal sludge[J]. Liaoning Chemical Industry,2016,45(5):571-
and its agricultural application safety[J]. Journal of Safety and 572. ⊗