Citation: | LI Wei, ZHANG Ji, ZHU Xinyu, PAN Wenhao, ZHU Lei. PREPARATION OF EGG SHELL BIOCHAR AND ITS ADSORPTION PERFORMANCE FOR Cu(Ⅱ) AND ANILINE[J]. ENVIRONMENTAL ENGINEERING , 2023, 41(5): 98-106,201. doi: 10.13205/j.hjgc.202305014 |
[1] |
何海霞. 印染废水处理技术研究进展[J].中小企业管理与科技,2021(2):184-185.
|
[2] |
王燕燕. 印染废水中重金属来源及清洁生产方式探讨[J].资源节约与环保,2019(8):88-89.
|
[3] |
吴勇民,陈新才,楼洪海,等. 印染废水中苯胺类化合物处理的研究进展[J].印染,2014(2):51-54.
|
[4] |
H.Ф.依兹麦罗夫.环境中常见污染物第三辑[M].北京:中国环境科学出版社,1989:10-15.
|
[5] |
孙蓉. 印染废水处理技术综述[J]. 绿色环保建材,2016(2):145-146.
|
[6] |
马玉萍.印染废水深度处理工艺现状及发展方向[J]. 工业用水与废水,2013,44(4):1-5.
|
[7] |
高程,黄涛,彭道平. 吸附法处理印染废水的研究进展[J].能源环境保护,2014,28(1):30-34.
|
[8] |
曾国驱,任随周,许玫英,等. ABR结合SBR法处理印染废水的研究[J]. 2005,32(6):68-73.
|
[9] |
马江权,郭楠,徐守勇.微滤/纳滤联用技术深度处理印染废水[J].水处理技术,2010,36(9):65-68.
|
[10] |
陈晓燕,何秉宇,张雯. 印染废水处理研究进展[J].纺织导报,2018(3):60-62.
|
[11] |
马玉萍. 印染废水深度处理工艺现状及发展方向[J].工业用水与废水,2013,44(4):1-5.
|
[12] |
WANG Z H,GUO H,SHEN F,et al.Biochar produced from oak sawdust by lanthanum (la)-involved pyrolysis for adsorption of ammonium (NH4+),nitrate (NO3-),and (PO43-)[J].Chemosphere,2015,119: 646-653.
|
[13] |
张鹏会,李艳春,胡浩斌,等. 银杏叶生物炭对不同染料的吸附作用[J]. 化工新型材料,2020,48(9):212-217.
|
[14] |
薛姗. 厨余垃圾生物炭的制备及其吸附水中氨氮的研究[J].供水技术,2022,16(2):8-11.
|
[15] |
赵涛,余伟达,丘锦荣,等. 玉米秸秆生物炭对水中磺胺类抗生素的吸附性能[J]. 福建农业学报,2021,36(9):1100-1109.
|
[16] |
韩玉,汪兰,孙智达,等. 蛋壳及蛋壳膜吸附性质的研究进展[J]. 食品工业科技,2012,33(13):388-391.
|
[17] |
赵越,赵保卫,刘辉,等. 热解温度对生物炭理化性质和吸湿性的影响[J]. 环境化学,2020,39(7):2006-2012.
|
[18] |
鲁俊文,王维,张爱清,等. 纳米氧化镁的吸附及分解性能研究进展[J]. 硅酸盐通报,2011,35(5):1094-1098.
|
[19] |
孙建财,周丹丹,王薇,等. 生物炭改性及其对污染物吸附与降解行为的研究进展[J].环境化学,2021,40(5):1503-1513.
|
[20] |
FANG G D,LIU C,GAO J,et al. Manipulation of persistent free radicals in biochar to activate persulfate for contaminant degradation[J]. Environmental Science & Technology, 2015, 49(9): 5645-5653.
|
[21] |
莫贞林,曾鸿鹄,林华,等. 高锰酸钾改性桉木生物炭对Pb(Ⅱ)的吸附特性[J]. 环境科学,2021,42(11):5440-5449.
|
[22] |
王旭峰,郑立安,刘毛,等. 改性玉米芯生物炭对废水中铜和氨氮的吸附[J]. 工业水处理,2017,37(1):37-41.
|
[23] |
商中省,涂佳勇,蔡毅猛,等. 高锰酸钾改性核桃壳基生物炭对水溶液中Cu2+的吸附性能[J]. 天津科技大学学报,2020,35(5):25-31
,65.
|
[24] |
李仕友,胡忠清,廖建彪,等. 高锰酸钾改性生物炭对U(Ⅵ)的吸附特性[J]. 安全与环境学报,2018,18(2):671-677.
|
[25] |
PANAGIOTOU E, KAFA N, KOUTSOKERAS L, et al. Turning calcined waste egg shells and wastewater to Brushite: phosphorus adsorption from aqua media and anaerobic sludge leach water[J]. Journal of Cleaner Production, 2018, 178:419-428.
|
[26] |
LIU X N, SHEN F, QI X H. Adsorption recovery of phosphate from aqueous solution by CaO-biochar composites prepared from eggshell and rice straw[J]. The Science of the Total Environment, 2019, 666:694-702.
|
[27] |
李浩瑞,吴丽萍,文科军,等. 高锰酸钾改性蛋壳对水中磷的吸附特性研究[J]. 天津城建大学学报,2020,26(3):208-212.
|
[28] |
韩鲁佳,李彦霏,刘贤,等.生物炭吸附水体中重金属机理与工艺研究进展[J]. 农业机械学报,2017,48(11):1-11.
|
[29] |
蒋子旸,徐敏,伍钧. 高铁酸钾/高锰酸钾改性生物炭对Cd2+的吸附研究[J]. 农业环境科学学报,2021,40(4): 876-883.
|
[30] |
SHEN F, QIU M O, HUA Y, et al. Dual-functional templated methodology for the synthesis of hierarchical porous carbon for supercapacitor[J]. Chemistry Select, 2018, 3(2):586-591.
|
[31] |
胡学玉,陈窈君,张沙沙,等. 磁性玉米秸秆生物炭对水体中Cd2+的去除作用及回收利用[J]. 农业工程学报,2018,34(19):208-218.
|
[32] |
KIM D, HWANG S J, KIM Y,et al. Removal of heavy metals from water using chicken egg shell powder as a bio-adsorbent[J]. Bulletin of the Korean Chemical Society, 2019,40:1156-1161.
|
[33] |
YIN H B, KONG M. Simultaneous removal of ammonium and phosphate from eutrophic waters using natural calcium-rich attapulgite-based versatile adsorbent[J]. Desalination, 2014, 351:128-137.
|
[34] |
SHAN R R, YAN L G, YANG K, et al. Magnetic Fe3O4/MgAl-LDH composite foreffectiveremoval of three red dyes from aqueous solution[J]. Chemical EngineeringJournal, 2014, 252:38-46.
|
[35] |
YANG K, JIANG Y, YANG J J, et al. Correlations and adsorption mechanisms of aromatic compounds on biochars produced from various biomass at 700℃[J]. Environmental Pollution, 2018,233:64-70.
|
[36] |
方俊华,张啸,荆慧娟. 磁化改性污泥基生物炭对水中磷的吸附[J]. 水处理技术,2021,47(12):37-41.
|
[37] |
LIANG S,SHI S Q,ZHANG H H,et al. One-pot solvothermal synthesis of magnetic biochar from waste biomass:Formation mechanism and efficient adsorption of Cr(Ⅵ) in an aqueous solution[J]. Sci. TotalEnviron.,2019,695:133886.
|
[38] |
仇银燕,张平,李科林,等. 玉米秸秆生物炭对苯胺的吸附[J]. 化工环保,2015.35(1):6-9.
|
[39] |
宋泽峰,石晓倩,刘卓,等. 芦苇生物炭的制备、表征及其吸附铜离子与双酚A的性能[J]. 环境化学,2020,39(8):2196-2205.
|
[40] |
庞克静,孟庆杰,宫磊,等. 核桃壳生物炭的制备及其对苯胺的吸附研究[J]. 山东化工,2021,50(22):54-56.
|
[41] |
刘立. 生物炭基吸附剂的制备及其对Pb2+和Cu2+的吸附性能研究[D]. 广州:广州大学,2019.
|
[42] |
SUN C,CHEN T,HUANG Q X,et al.Enhanced adsorption for Pb(Ⅱ) and Cd(Ⅱ) of magnetic rice husk biochar by KMnO4 modification[J].Environmental Science and Pollution Research,2019,26(9): 8902-8913.
|
[43] |
KADIRVELU K, THAMARAISELVI K, NAMASIVAYAM C, et al. Removal of heavymetalsfrom industrial wastewaters by adsorption onto activated carbon prepared from anagricultural solid waste[J]. Bioresource Technology,2001,76(1):63-65.
|
[44] |
王传岭,于敏,周子媚. 柚子皮生物炭对铜离子的吸附[J]. 山东化工,2020,49(19):16-18.
|
[45] |
程水清. 玉米秸秆生物炭处理含铜废水效果研究[J]. 安徽农学通报,2017,23(17):78-81.
|
[46] |
康宁. 磁性生物炭对Cr(Ⅵ)的吸附性能研究[D]. 武汉:武汉科技大学,2020.
|
[47] |
周艳,边清泉,罗娅君,等. 改性碱木质素对苯胺的吸附研究[J]. 安徽农科学,2011, 39(25): 15554-15566.
|