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第 5 期 夏晓阳 等:改性生物炭特征及其对盐碱化土壤改良的研究进展 17
under saline⁃sodic conditions[J].Journal of plant nutrition and from water[J].Bioresource technology,2015,178:119-125.
soil science,2013,176(3):344-354. [16] WU L P,ZHANG S R,WANG J,et al.Phosphorus retention
[6] HU L X,ZHANG P P,JIANG Y,et al.Metabolomic analysis using iron (II/III) modified biochar in saline-alkaline soils:ad⁃
revealed differential adaptation to salinity and alkalinity stress sorption,column and field tests[J/OL].Environmental pollu⁃
in Kentucky bluegrass (Poa pratensis)[J].Plant molecular bi⁃ tion,2020,261:114223 [2023-02-06]. http://doi. org/
ology reporter,2015,33(1):56-68. 10.1016/j.envpol.2020.114223.
[7] 丛铭,张梦阳,夏浩,等 . 施用生物炭对红壤中不同形态钾含 [17] ZHANG P,XUE B,JIAO L,et al.Preparation of ball-milled
量及小白菜生长的影响[J]. 华中农业大学学报,2020,39 red phosphorus-loaded biochar and its highly effective remedia⁃
(4):22-28.CONG M,ZHANG M Y,XIA H,et al.Effect of tion for Cd- and Pb-contaminated alkaline soil[J/OL]. The
biochar application on potassium content of different forms in science of the total environment,2022,13:152648[2023-02-
red soil and the growth of pakchoi[J].Journal of Huazhong Ag⁃ 06].http://doi.org/10.1016/j.scitotenv.2021.152648.
ricultural University,2020,39(4):22-28(in Chinese with Eng⁃ [18] WANG R Z,HUANG D L,LIU Y G, et al.Synergistic re⁃
lish abstract). moval of copper and tetracycline from aqueous solution by
[8] 刘强,袁延飞,刘一帆,等 . 生物炭对盐渍化土壤改良的研究 steam-activated bamboo-derived biochar[J/OL]. Journal of
进展[J]. 地球科学进展,2022,37(10):1005-1024.LIU Q, hazardous materials,2020,384:121470[2023-02-06].http://
YUAN Y F,LIU Y F,et al.Research progress:the application doi.org/10.1016/j.jhazmat.2019.121470.
of biochar in the remediation of salt-affected soils[J].Advanc⁃ [19] PENG Z Y,ZHAO H,LÜ H H,et al.UV modification of bio⁃
es in earth science,2022,37(10):1005-1024(in Chinese with char for enhanced hexavalent chromium removal from aqueous
English abstract). solution.[J].Environmental science and pollution research in⁃
[9] 张进红,吴波,王国良,等 . 生物炭对盐渍土理化性质和紫花 ternational,2018,25(11):10808-10819.
苜蓿生长的影响[J]. 农业机械学报,2020,51(8):285-294. [20] WU J W,WANG T,ZHANG Y S,et al.The distribution of
ZHANG J H,WU B,WANG G L,et al.Effects and evalua⁃ Pb(II)/Cd(II) adsorption mechanisms on biochars from aque⁃
tion of biochar on physical-chemical properties of coastal sa⁃ ous solution:considering the increased oxygen functional
line soil and alfalfa growth[J]. Transactions of the CSAM, groups by HCl treatment[J/OL]. Bioresource technology,
2020,51(8):285-294(in Chinese with English abstract). 2019,291:121859[2023-02-06]. http://doi. org/10.1016/j.
[10] 申书伟,张丹丹,王敏鸽,等 . 木醋液酸化生物炭与氮素配施 biortech.2019.121859.
对盐渍土壤活性氮及氨挥发的影响[J]. 环境科学,2022,43 [21] 刘舒蕾,彭慧君,杨佳怡,等 . 水生植物生物质炭去除水体中
(5):2779-2787.SHEN S W,WANG D D,WANG M G,et 氮磷性能[J]. 环境科学,2019,40(11):4980-4986.LIU S L,
al. Effects of combined application of wood vinegar-acidified PENG H J,YANG J Y,et al.Removal of nitrogen and phos⁃
biochar and nitrogen on active nitrogen and ammonia volatiliza⁃ phorus from water by biomass carbon of aquatic plants[J].En⁃
tion in saline soil[J]. Environmental science,2022,43(5): vironmental science,2019,40(11):4980-4986(in Chinese
2779-2787(in Chinese with English abstract). with English abstract).
[11] 刘国欢 .改性生物炭对盐碱地改良及冬小麦生长特征影响的 [22] SHEN Y F,YUAN R. Pyrolysis of agroforestry bio-wastes
研究[D]. 西安 :西安理工大学 ,2021.LIU G H.Effects of with calcium/magnesium oxides or carbonates-focusing on bio⁃
modified biochar on saline alkali soil improvement and growth char as soil conditioner[J/OL].Biomass and bioenergy,2021,
characteristics of winter wheat[D].Xi’an:Xi’an University of 155:106277[2023-02-06].http://doi.org/10.1016/j.biombi⁃
Technology,2021(in Chinese with English abstract). oe.2021.106277.
[12] WANG W,MA X L,SUN J,et al.Adsorption of enrofloxacin [23] LI B Q,GONG J X,FANG J Z,et al.Cysteine chemical modi⁃
on acid/alkali-modified corn stalk biochar[J].Spectroscopy let⁃ fication for surface regulation of biochar and its application for
ters,2019,52(7):367-375. polymetallic adsorption from aqueous solutions.[J]. Environ⁃
[13] PENG H B,GAO P,CHU G,et al.Enhanced adsorption of Cu mental science and pollution research,2020,28(1):1061-
(II) and Cd(II) by phosphoric acid-modified biochars[J].En⁃ 1071.
vironmental pollution,2017,229:846-853. [24] MA Y,LIU W J,ZHANG N,et al.Polyethylenimine modified
[14] GHASSEMI-GOLEZANI K,FARHANGI-ABRIZ S. Bio⁃ biochar adsorbent for hexavalent chromium removal from the
char-based metal oxide nanocomposites of magnesium and aqueous solution[J]. Bioresource technology,2014,169:
manganese improved root development and productivity of saf⁃ 403-408.
flower (Carthamus tinctorius L.) under salt stress[J/OL].Rhi⁃ [25] ZHANG L X,TANG S Y,HE F X,et al.Highly efficient and
zosphere,2021,19:100416[2023-02-06]. http://doi. org/ selective capture of heavy metals by poly(acrylic acid) grafted
10.1016/j.rhisph.2021.100416. chitosan and biochar composite for wastewater treatment[J/
[15] REN J,LI N,LI L,et al.Granulation and ferric oxides loading OL].Chemical engineering journal,2019,378:122215[2023-
enable biochar derived from cotton stalk to remove phosphate 02-06].http://doi.org/10.1016/j.cej.2019.122215.

