[1]王成己,唐莉娜,胡忠良,等.生物炭和炭基肥在烟草农业的应用及展望[J].核农学报,2021,35(04):997-1007.
[2]严陶招,高婷,周之林,等.基于文献计量的生物炭土壤效应分析[J].江苏农业科学,2021,49(04):191-199.
[3]何绪生,耿增超,余雕,等。生物炭生产与农用的意义及国内外动态[J].农业工程学报,2011,27(02):1-7.
[4]冯慧球,徐辰生,何欢挥,等.生物炭对土壤酶活和细菌群落的影响及其作用机制[J].环境科学,2021,42(01):422-432.
[5]Ren T,Chen N,Wan Mahari W A,et al.Biochar for cadmiumpollution mitigation and stress resistance in tobacco growth [J].En-vironmental Research,2021,192:110273.
[6]李鸿博,钟怡,张吴楠,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.
[7]葛少华,阁海涛,陈奇,等。生物质炭与化肥氮配施对植烟上壤徵生物功能多样性的影响[J].土壤,2019,51(04):708-714.
[8]朱永官,彭静静,韦中,等.土壤微生物组与土壤健康[J].中国科学:生命科学,2021,51(01):1-11.
[9]刘慧屿,娄春荣,韩英祚,等。秸秆生物炭与减量氨肥配施对玉米氮素利用率及土壤结构的影响[J].土壤通报,2020,51(05):1180-1188.
[10]张伟明,陈温福,孟军,等。东北地区秸秆生物炭利用潜力、产业模式及发展战路研究[J].中国农业科学,2019,2(14):2406-2424.
[11]李译媛,郑军。我国农作物秸秆还田的研究脉络和趋势探析一基于CiteSpace知识图谱[J].中国农业资源与区划,2021,42(09):16-26.
[12]Phandanouvong-Lozano V,Sun W,Sanders J M,et al.Biochardoes not attenuate triclosan's impact on soil bacterial communities[J].Chemosphere,2018,213:215-225.
[13]Wang D,Jiang P,Zhang H,et al.Biochar production and ap-plications in agro and forestry systems:A review [J].Science ofThe Total Environment,2020,723:137775.
[14]Li X,Wang T,Chang S X,et al.Biochar increases soil microbi-al biomass but has variable effects on microbial diversity:A meta-analysis J].Science of The Total Environment,2020,749:141593.
[15]Kazemi Shariat Panahi H,Dehhaghi M,Ok Y S,et al.A com-prehensive review of engineered biochar:Production,characteris-tics,and environmental applications [J].Journal of Cleaner Pro-duction,2020,270:122462.
[16]周在峰,周秋菊,樊永明.基于文献计量的再生纤维制浆造纸技术领域研究热点及发展态势分析[J].中国造纸学报,2021,36(03):68-80.
[17]愿佳佳,赵耀,陈甜倩,冯苗,赵华甫,吴克宁.基于生态系统服务改进的中国各地农业生态效率研究[J].中国农业资源与区划,2021,42(07):200-209. |