[1] 杨文浩, 李佩, 周碧青, 等. 生物炭缓解污染土壤中植物的重金属胁迫研究进展[J]. 福建农林大学学报(自然科学版), 2019, 48(6): 695 − 705.

YANG Wenhao, LI Pei, ZHOU Biqing, et al. Biochar-mediated alleviation of heavy metal stress in plants growing in contaminated soils: a review [J]. J Fujian Agric For Univ Nat Sci Ed, 2019, 48(6): 695 − 705.
[2] 程金金, 宋静, 陈文超, 等. 镉污染对红壤和潮土微生物的生态毒理效应[J]. 生态毒理学报, 2013, 8(4): 577 − 586.

CHENG Jinjin, SONG Jing, CHEN Wenchao, et al. The ecotoxicity effects of cadmium on microorganism in Udic-Ferrosols and Aquic-Cambosols [J]. Asian J Ecotoxicol, 2013, 8(4): 577 − 586.
[3] KHAN K S, XIE Zhengmiao, HUANG Changyong. Effect of cadmium, lead on size of microbial biomass in red soil [J]. Pedosphere, 1998, 8(1): 27 − 32.
[4] LEHMANN J, RILLIG M C, THIES J, et al. Biochar effects on soil biota: a review [J]. Soil Biol Biochem, 2011, 43(9): 1812 − 1836.
[5] ZHANG Xiaokai, WANG Haolong, HE Lizhi, et al. Using biochar for remediation of soils contaminated with heavy metals and organic pollutants [J]. Environ Sci Pollut Res, 2013, 20(12): 8472 − 8483.
[6] 戴志楠, 温尔刚, 陈翰博, 等. 施用原始及铁改性生物质炭对土壤吸附砷(Ⅴ)的影响[J]. 浙江农林大学学报, 2021, 38(2): 346 − 354.

DAI Zhinan, WEN Ergang, CHEN Hanbo, et al. Effect of raw and iron-modified biochar on the sorption of As (Ⅴ) by soils [J]. J Zhejiang A&F Univ, 2021, 38(2): 346 − 354.
[7] ZHU Xiaomin, CHEN Baoliang, ZHU Lizhong, et al. Effects and mechanisms of biochar-microbe interactions in soil improvement and pollution remediation: a review [J]. Environ Pollut, 2017, 227: 98 − 115.
[8] YU Z, CHEN L, PAN S, et al. Feedstock determines biochar-induced soil priming effects by stimulating the activity of specific microorganisms [J]. Eur J Soil Sci, 2018, 69(3): 521 − 534.
[9] JONES D L, ROUSK J, EDWARDS-JONES G, et al. Biochar-mediated changes in soil quality and plant growth in a three year field trial [J]. Soil Biol Biochem, 2012, 45: 113 − 124.
[10] GUO Kangying, ZHAO Yingzhi, LIU Yang, et al. Pyrolysis temperature of biochar affects ecoenzymatic stoichiometry and microbial nutrient-use efficiency in a bamboo forest soil[J/OL]. Geoderma, 2020, 363: 114162[2021-05-18]. doi: 10.1016/j.geoderma.2019.114162.
[11] 李鸿博, 钟怡, 张昊楠, 等. 生物炭修复重金属污染农田土壤的机制及应用研究进展[J]. 农业工程学报, 2020, 36(13): 173 − 185.

LI Hongbo, ZHONG Yi, ZHANG Haonan, et al. Mechanism for the application of biochar in remediation of heavy metal contaminated farmland and its research advances [J]. Trans Chin Soc Agric Eng, 2020, 36(13): 173 − 185.
[12] 鲁如坤. 土壤农业化学分析方法[M]. 北京: 中国农业科技出版社, 2000.

LU Rukun. The Analysis Method of Soil Agricultural Chemistry [M]. Beijing: China Agricultural Science and Technology Press, 2000.
[13] 吴愉萍. 基于磷脂脂肪酸(PLFA)分析技术的土壤微生物群落结构多样性的研究[D]. 杭州: 浙江大学, 2009.

WU Yuping. Studies on Soil Microbial Community Structure Based on Phospholipid Fatty Acid (PLFA) Analysis[D]. Hangzhou: Zhejiang University, 2009.
[14] ZELLES L. Phospholipid fatty acid profiles in selected members of soil microbial communities [J]. Chemosphere, 1997, 35(1/2): 275 − 294.
[15] SERRA-WITTLING C, HOUOT S, BARRIUSO E. Soil enzymatic response to addition of municipal solid-waste compost [J]. Biol Fert Soil, 1995, 20: 226 − 236.
[16] UCHIMIYA M, CHANG S C, KLASSON K T. Screening biochars for heavy metal retention in soil: role of oxygen functional groups [J]. J Hazardous Mater, 2013, 190(1): 432 − 441.
[17] 张迪, 李婷, 方炫, 等. 钝化剂对土壤镉铅有效性和微生物群落多样性影响[J]. 农业环境科学学报, 2019, 38(12): 2729 − 2737.

ZHANG Di, LI Ting, FANG Xuan, et al. Effects of passivating agents on the availability of Cd and Pb and functional diversity of the microbial community in contaminated soils [J]. J Agro-Environ Sci, 2019, 38(12): 2729 − 2737.
[18] LIU Yang, GUO Kangying, ZHAO Yingzhi, et al. Change in composition and function of microbial communities in an acid bamboo (Phyllostachys praecox) plantation soil with the addition of three different biochars[J/OL]. For Ecol Manage, 2020, 473(2): 118336[2021-05-05]. doi:10.1016/j.foreco.2020.118336.
[19] YUAN Jinhua, XU Renkou, ZHANG Hong. The forms of alkalis in the biochar produced from crop residues at different temperatures [J]. Bioresour Technol, 2011, 102(3): 3488 − 3497.
[20] 包骏瑶, 赵颖志, 严淑娴, 等. 不同农林废弃物生物质炭对雷竹林酸化土壤的改良效果[J]. 浙江农林大学学报, 2018, 35(1): 43 − 50.

BAO Junyao, ZHAO Yingzhi, YAN Shuxian, et al. Soil amelioration with biochars pyrolyzed from different feedstocks of an acidic bamboo (Phyllostachys violascens) plantation [J]. J Zhejiang A&F Univ, 2018, 35(1): 43 − 50.
[21] TAGHIZADEH-TOOSI A, CLOUGH T J, SHERLOCK R R, et al. Biochar adsorbed ammonia is bioavailable [J]. Plant Soil, 2012, 350(1): 57 − 69.
[22] PALANSOORIYA K N, WONG J T F, HASHIMOTO Y, et al. Response of microbial communities to biochar-amended soils: a critical review [J]. Biochar, 2019, 1(1): 3 − 22.
[23] 包建平, 袁根生, 董方圆, 等. 生物质炭与秸秆施用对红壤有机碳组分和微生物活性的影响[J]. 土壤学报, 2020, 57(3): 721 − 729.

BAO Jianping, YUAN Gensheng, DONG Fangyuan, et al. Effects of biochar application and straw returning on organic carbon fractionations and microbial activities in a red soil [J]. Acta Pedol Sin, 2020, 57(3): 721 − 729.
[24] WARNOCK D D, LEHMANN J, KUYPER T W, et al. Mycorrhizal responses to biochar in soil: concepts and mechanisms [J]. Plant Soil, 2007, 300(1): 9 − 20.
[25] 黄家庆, 赖永翔, 翁伯琦, 等. 花生壳生物炭对镉污染菜园土壤细菌群落结构的影响[J]. 应用与环境生物学报, 2020, 26(5): 1115 − 1128.

HUANG Jiaqing, LAI Yongxiang, WENG Boqi, et al. Effect of peanut shell biochar on the bacterial community structure in cadmium-containing vegetable soil [J]. Chin J Appl Environ Biol, 2020, 26(5): 1115 − 1128.
[26] BAILEY V L, FANSLER S J, SMITH J L, et al. Reconciling apparent variability in effects of biochar amendment on soil enzyme activities by assay optimization [J]. Soil Biol Biochem, 2011, 43(2): 296 − 301.
[27] ZHENG Jufeng, CHEN Junhui, PAN Genxing, et al. Biochar decreased microbial metabolic quotient and shifted community composition four years after a single incorporation in a slightly acid rice paddy from southwest China [J]. Sci Total Environ, 2016, 571: 206 − 217.
[28] CHEN Junhui, HE Feng, ZHANG Xuhui, et al. Heavy metal pollution decreases microbial abundance, diversity and activity within particle-size fractions of a paddy soil [J]. FEMS Microbiol Ecol, 2014, 87(1): 164 − 181.
[29] GILLER K E, WITTER E, MCGRATH S P. Heavy metals and soil microbes [J]. Soil Biol Biochem, 2009, 41(10): 2031 − 2037.