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第 9 期                      宋冰洁,等:  磁性载镧鸡蛋壳对水中磷酸盐的吸附性能                                   ·1925·


                 phosphate removal from wastewater by magnetically recoverable   34(3): 501-524.
                 La(OH) 3/Fe 3O 4 nanocomposites[J]. Water Research, 2017, 126: 179-188.   [32]  HE  Y H, LIN H, DONG  Y B,  et al. Preferable adsorption of
            [24]  Standardization Administration of the People's Republic of China.   phosphateusing lanthanum-incorporated porous zeolite: Characteristics
                 Water quality—Determination of total phosphorus—Ammonium   andmechanism[J]. Applied Surface Science, 2017, 426: 995-1004.
                 molybdate spectrophotometric method: GB/T11893 — 1989[S].   [33]  HAGHSERESHT  F,  WANG S, DO D D. A novel lanthanum-
                 Beijing: China Standards Press (中国标准出版社), 1989:1-8.   modifiedbentonite, phoslock, for phosphate removal from wastewaters[J].
            [25]  ZHANG T (张婷). Study on the characteristic of chicken eggshells   Applied Clay Science, 2009, 46(4): 369-375.
                 for removing heavy metals in acid wastewater[D]. Guangzhou: South   [34]  SHI W M (石稳民), FU Y W (付有为), XU Z (许智),  et al.
                 China University of Technology (华南理工大学), 2017.    Treatment of wastewater containing low concentration of phosphate by
            [26]  YU Z  B (余宗宝), WU X  L (吴雪莲),  REN L H  (任丽宏),  et al.   lanthanum  doped porousceramics[J]. Environmental Science  &
                 Infrared spectroscopic study of Fe 3O 4 nanoparticles coated by oleic   Technology (环境科学与技术), 2018, 41(11): 110-114.
                 acid[J]. Ordnance Material Science and Engineering (兵器材料科学  [35]  TIAN S, JIANG P, NING P, et al. Enhanced adsorption removal of
                 与工程), 2008, 38(5): 73-75.                         phosphate  from water  by mixed lanthanum/aluminum  pillared
            [27]  SARKER  A R . Synthesis  of high  quality LaCoO 3 crystals using   montmorillonite[J]. Chemical Engineering Journal, 2009, 151(1/2/3):
                 water based sol-gel  method[J].International Journal of Materials   141-148.
                 Science and Applications, 2015, 4(3): 159-163.   [36]  LIU J Y, WAN L H, ZHANG L, et al. Effect of pH, ionic strength,
            [28]  RASHIDI NODEH H, SERESHTI H, ZAMIRI AFSHARIAN E, et   and temperature on the phosphate adsorption onto lanthanum-doped
                 al. Enhanced removal of  phosphate and nitrate ions  from  aqueous   activated carbon fiber[J]. Journal of Colloid & Interface Science,
                 media using  nanosized lanthanum hydrous doped on magnetic   2011, 364(2): 490-496.
                 graphene nanocomposite[J]. Journal of Environmental Management,   [37]  ZHANG L,  ZHOU Q,  LIU J,  et al.  Phosphate adsorption on
                 2017, 197: 265-274.                               lanthanum hydroxide-doped activated carbon fiber[J]. Chemical
            [29]  WANG M J (王明举). Study on the adsorption behavior of lanthanum   Engineering Journal, 2012, 185/186: 160-167.
                 modified Fe 3O 4 on pollutants in water[D]. Zhengzhou: North China   [38]  LI H, RU J Y, YIN W, et al. Removal of phosphate from polluted
                 University of Water Resources and Electric Power (华北水利水电大  water by lanthanum doped vesuvianite[J]. Journal of Hazardous
                 学), 2018.                                         Materials, 2009, 168(1): 326-330.
            [30]  YUAN D H (袁东海), JING L J (景丽洁), GAO S X (高士祥), et al.   [39]  ZHOU A J, ZHU C, CHEN W W, et al. Phosphorus recovery from
                 Analysis on the removal efficiency of phosphorus in some substrates   water bylanthanum hydroxide embedded interpenetrating network
                 used in constructed wetland systems[J].Environmental Science (环境  poly (vinylalcohol)/sodium alginate hydrogel beads[J]. Colloids and
                 科学), 2005, 26(1): 51-55.                          Surfaces A: Physicochemical and Engineering Aspects, 2018, 554:
            [31]  AKSU Z, ACIKEL U, KUTSAL T. Investigation  of  simultaneous   237-244.
                 biosorption of copper(Ⅱ) and chromium(Ⅵ)  on dried Chlorella   [40]  WANG C (汪纯).The synthesis of La-modified mesoporous silica for
                 vulgaris from binary metal mixtures: Application of multicomponent   phosphate removal[D]. Zhenjiang: Jiangsu University (江苏大学),
                 adsorption isotherms[J]. Separation Science and  Technology, 1999,   2017.


            (上接第 1869 页)                                       [27] LI  L(李莉),ZHANG S(张赛),HE Q(何强),et al. Application of
                                                                   response surface methodology in experiment design and
            [20]  CHEN  L H, DOU J Z, MA Q L,  et al. Rapid and  near-complete   optimization[J].Research and Exploration in Laboratory (实验室研
                 dissolution  of wood lignin at  ≤ 80  ℃  by a recyclable acid   究与探索),2015,34(8):41-45.
                 hydrotrope[J]. Science Advances, 2017, 3(9): 1-11.   [28]  HAN H J (韩洪晶), GE Q (葛芹), CHEN Y G (陈彦广),  et al.
            [21]  WANG J (王君), FAN  Y M (樊永明), GUO F H (郭奉华),et al.   Production of phenolic compounds from bagasse lignin via catalytic
                 Structural changes of lignin in formic acid cooking of wheat straw[J].   pyrolysis of Ca 1xPr xFeO 3[J]. Chemical Journal of Chinese Universities
                 Transactions of China Pulp and  Paper (中国造纸学报), 2005,   (高等学校化学学报), 2020, 41(2): 331-340.
                 20(S1): 267-271.                              [29]  DENG J W (邓嘉雯), YANG H Y (杨海艳), SHI Z J (史正军), et al.
            [22]  SUN Y S (孙优善). Research on improving biodegradability of corn   Characterization  of lignin fractions  isolated from  dendrocalamussinicus
                 stalk by ensiling and hydrothermal pretreatment method[D]. Tianjin:   with organic-inorganic sequential extraction[J]. Biomass  Chemical
                 Tianjin University (天津大学), 2011.                  Engineering (生物质化学工程), 2016, 50(3): 1-7.
            [23]  Wu Y L, SAEED H A M, LI T F, et al. Organic solvent isolation and   [30]  NAIR V, VINU R. Production of guaiacols via catalytic fast pyrolysis
                 structural characterization of willow lignin[J]. Bioresources, 2018,   of alkali lignin using titania, zirconia and ceria[J]. Journal of Analytical &
                 13(4): 7957-7968.                                 Applied Pyrolysis, 2016, 119: 31-39.
            [24]  SUN M L (孙茉莉), LIU J (刘钧), FU Y (付严), et al. Fractionation   [31]  BOERIU C G, BRAVO D, GOSSELINK R J A, et al. Characterisation of
                 of bamboo  in ionic liquid-ethanol-H 2O system by hydrothermal   structure-dependent functional properties of lignin with infrared
                 method[J]. The Chinese Journal of Process Engineering (过程工程学  spectroscopy[J]. Industrial Crops and Products, 2004, 20(2): 205-218.
                 报), 2016, 16(1): 86-92.                       [32]  XIE H B, PENG C, CHEN Q, et al. Effects of extraction methods on
            [25]  CHANG J (常杰), LIU J (刘钧), GUO S J (郭姝君),  et al.   structure and valorization of corn stover lignin by a Pd/C catalyst[J].
                 Investigation into selective separation of lignin in novel deep eutectic   ChemCatChem, 2017, 9(6): 1135-1143.
                 solvent[J]. Journal of South China University of Technology   [33]  LI C Z, GUO H W, ZHANG B, et al. Valorization of lignin to simple
                 ( Natural  Science Edition  ) (华南理工大学学报:  自然科学版),   phenolic compounds over tungsten carbide: impact of lignin
                 2016, 44(6): 14-20, 26.                           structure[J]. ChemSusChem, 2017, 10(3): 523-532.
            [26]  LI L F(李利芬). Extraction, modification and degradation of lignin   [34]  BRANDT A, CHEN L, DONGEN B E V, et al. Structural changes in
                 with choline chloride-basede deep eutectic solvents[D]. Harbin:   lignins isolated using an acidic ionic liquid water mixture[J]. Green
                 Northeast Forestry University (东北林业大学), 2015.     Chemistry, 2015, 17(11): 5019-5034.
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