[1] 杨杰文,钟来源,郭荣发,等. 有机酸对砖红壤的溶解及固定态磷素的活化[J]. 环境化学, 2010,29(6):1063-1067. YANG J W, ZHONG L Y, GUO R F, et al. Dissolution of latosol and the release of immobilized phosphorus promoted by organic acids[J]. Environmental Chemistry, 2010, 29(6):1063-1067(in Chinese).
[2] 占丽平,丛日环,李小坤,等. 低分子量有机酸对红壤和黄褐土K+吸附动力学的影响[J]. 土壤学报,2012,49(6):1147-1157. ZHAN L P, CONG R H, LI X K, et al. Effect of low-molecular-weight organic acids on K+ and adsorption kinetics of red soil and yellow-cinnamon soil[J]. Acta Pedologica Sinica, 2012,49(6):1147-1157(in Chinese).
[3] 杨杰文,钟来源,郭荣发. 有机酸溶解砖红壤过程中Mn(Ⅱ)的释放规律[J]. 环境化学, 2011,30(7):1348-1353. YANG J W, ZHONG L Y, GUO R F. Release of Mn(Ⅱ) during organic acid promoted dissolution of Latosol[J]. Environmental Chemistry, 2011, 30(7):1348-1353(in Chinese).
[4] 梁金利,蔡焕兴,段雪梅,等.有机酸土柱淋洗法修复重金属污染土壤[J]. 环境工程学报, 2012,6(9):3339-3343. LIANG J L, CAI H X, DUAN X M, et al. Remediation of heavy metal-polluted soils using organic acid washing[J]. Chinese Journal of Environmental Engineering, 2012, 6(9):3339-3343(in Chinese).
[5] 杨海琳,廖柏寒. 低分子有机酸去除土壤中重金属条件的研究[J]. 农业环境科学学报, 2010,29(12):2330-2337. YANG H L, LIAO B H. Extraction condition for heavy metals from contaminated soil by using low molecular organic acids[J]. Journal of Agro-Environment Science, 2010, 29(12):2330-2337(in Chinese).
[6] 党红交,孙瑞,刘娟,等. 低分子量有机酸作用下土壤中菲和芘的残留与及形态[J]. 土壤学报, 2012,49(3):499-506. DANG H J, SUN R, LIU J, et al. Effect of low molecular weight organic acids on residues and forms of phenanthrene and pyrene in soil[J]. Acta Pedologica Sinica, 2012, 49(3):499-506(in Chinese).
[7] 杨丽华,龚道新,袁雅洁,等. 低分子量有机酸对赤铁矿吸附二氯喹啉酸的影响及机理[J]. 农业环境科学学报, 2015,34(7):1301-1310. YANG L H, GONG D X, YUAN Y J, et al. Effect of low molecular weight organic acids on adsorption of quinclorac by hematite[J]. Journal of Agro-Environment Science, 2015, 34(7):1301-1310(in Chinese).
[8]
[9] 张根柱. 外源柠檬酸对塿土养分、酶活性及微生物活性的影响[D]. 杨凌:西北农林科技大学硕士学位论文, 2011:41-57. ZHANG G Z. Effects of exogenous citric acid on soil nutrients and enzyme activities and microbial activity of old manured loessal soil[D]. Yangling:Thesis for Master Degree of Northwest A&F University, 2011:41 -57(in Chinese).
[10] 马云华,王秀峰,魏珉,等. 黄瓜连作土壤酚酸类物质积累对土壤微生物和酶活性的影响[J]. 应用生态学报, 2005,16(11):2149-2153. MA Y H, WANG X F, WEI M, et al. Accumulation of phenolic acids in continuously cropped cucumber soil and their effects on soil microbes and enzyme activities[J]. Chinese Journal of Applied Ecology, 2005,16(11):2149-2153(in Chinese).
[11] 吕卫光,沈其荣,余廷园,等. 酚酸化合物对土壤酶活性和土壤养分的影响[J]. 植物营养与肥料学报, 2006,12(6):845-849. LYU W G, SHEN Q R, YU T Y, et al. The effect of added phenolic acids on soil enzyme activities and nutrients[J]. Plant Nutrition and Fertilizer Science, 2006,12(6):845-849(in Chinese).
[12] 黄玉茜, 韩晓日, 杨劲峰,等. 花生根系分泌物对土壤微生物学特性及群落功能多样性的影响[J]. 沈阳农业大学学报, 2015(1):48-54. HUANG Y Q, HAN X R, YANG J F, et al. Effect of peanut root exudates on soil microbial characteristics and community functional diversity[J]. Journal of Shenyang Agricultural University, 2015 (1):48-54(in Chinese).
[13] 刘纯, 黄红娟, 张朝贤,等. 假高粱根系分泌物对土壤细菌群落多样性的影响[J]. 生态环境学报, 2013(7):1124-1128. LIU C, HUANG H J, ZHANG C X, et al. Effects of root exudates from Johnsongrass on soil bacteria community diversity[J]. Ecology and Environment Sciences, 2013 (7):1124-1128(in Chinese).
[14] SHI S, RICHARDSON A E, O'CALLAGHAN M, et al. Effects of selected root exudate components on soil bacterial communities[J]. Fems Microbiology Ecology, 2011, 77(3):600-610.
[15] CAMPBELL C D, CHAPMAN S J, CAMERON C M, et al. A rapid microtiter plate method to measure carbon dioxide evolved from carbon substrate amendments so as to determine the physiological profiles of soil microbial communities by using whole soil[J]. Applied and Environmental Microbiology, 2003, 69(6):3593-3599.
[16] 江玉梅,谢晶,曹广泮,等. 江西退化红壤人工重建森林土壤微生物土壤碳源代谢功能研究[J]. 土壤学报,2014,51(1):158-165. JIANG Y M, XIE J, CAO G B, et al. Metabolic function of soil microbe to carbon sources under reestablished forests on degraded red soil in Jiangxi Province[J]. Acta Pedologica Sinica, 2014,51(1):158-165(in Chinese).
[17] 陈晓娟,吴小红,刘守龙,等. 不同耕地利用方式下土壤微生物活性及群落结构特性分析:基于PLFA和MicroRespTM 方法[J]. 环境科学,2013,34(6):2375-2382. CHEN X J, WU X H, LIU S L, et al. Microbial activity and community structure analysis under the different land use patterns in farmland soils:Based on the methods PLFA and MicroRespTM[J]. Environmental Science, 2013,34(6):2375-2382(in Chinese).
[18] 王娟,张丽君,姚槐应. 添加秸秆和黑炭对水稻土碳氮转化及土壤微生物代谢图谱的影响[J]. 中国水稻科学,2013,27(1):97-104. WANG J, ZHANG L J, YAO H Y. Effects of straw and black carbon addition on C-N transformation and microbial metabolism profile in paddy soil[J]. Chinese Journal of Rice Science,2013,27(1):97-104(in Chinese).
[19] YU J, STEINBERGER Y. Soil microbial metabolic profiles in two geomorphological units in a semistable sand-dune ecosystem[J]. Soil Biology & Biochemistry,2012, 45(2):71-78.
[20] 孔涛, 刘民, 淑敏, 等. 低分子量有机酸对土壤微生物数量和酶活性的影响[J]. 环境化学,2016,35(2):348-354. KONG T, LIU M, SHU M, et al. Effect of low molecular weight organic acid on soil microbe number and soil enzyme activities[J]. Environmental Chemistry, 2016,35(2):348-354(in Chinese).
[21] 栗方亮, 李忠佩, 刘明, 等. 添加葡萄糖及硫酸铵对水稻土微生物生物量和功能多样性的影响[J]. 中国农业科学, 2012, 45(11):2199-2208. LI F L,LI Z P,LIU M,et al.Effects of glucose and ammonium sulfate addition on paddy soil microbial biomass and functional diversity[J]. Scientia Agricultura Sinica, 2012, 45(11):2199-2208(in Chinese).
[22] 周文杰, 张鹏, 秦嗣军,等. 添加葡萄糖和淀粉对盆栽甜樱桃根区土壤碳代谢及根功能的影响[J]. 应用生态学报, 2015, 26(11):3300-3308. ZHOU W J, ZHANG P, QIN S J, et al. Effects of exogenous glucose and starch on soil carbon metabolism of root zone and root function in potted sweet cherry[J]. Chinese Journal of Applied Ecology, 2015, 26(11):3300-3308(in Chinese).
[23] HARCH B D,CORRELL R L,MEECH W,et al. Using the Gini coefficient with BIOLOG substrate utilization data to provide an alternative quantitative measure for comparing bacterial soil communities[J]. Journal of Microbiological Methods,1997,30(1):91-101.
[24] 孙艳, 钱世钧. 芳香族化合物生物降解的研究进展[J]. 中国生物工程杂志, 2001, 21(1):42-46. SUN Y, QIAN S J. Advance on the Studies of biodegradation of aromatic compounds[J]. Progress in Biotechnology, 2001, 21(1):42-46(in Chinese).
[25] KONG T, XU H, WANG Z, et al. Effect of a residue after evaporation from industrial vitamin C fermentation on chemical and microbial properties of alkali-saline soil[J]. Pakistan Journal of Pharmaceutical Sciences, 2014, 27(4 Suppl):1069-1074.
[26] 程存刚, 赵德英, 吕德国, 等. 植物源有机物料对果园土壤微生物群落多样性的影响[J]. 植物营养与肥料学报, 2014,20(4):913-922. CHENG C G, ZHAO D Y, LYU D G, et al. Effects of plant-derived organic materials and humification driving forces on soil microbial community diversity in orchards[J]. Plant Nutrition and Fertilizer Science, 2014, 20(4):913-922(in Chinese).
[27] 杜毅飞, 方凯凯, 王志康,等. 生草果园土壤微生物群落的碳源利用特征[J]. 环境科学, 2015, 36(11):4260-4267. DU Y F, FANG K K, WANG Z K, et al. Carbon source utilization characteristics of soil microbial community for apple orchard with interplanting herbage[J]. Environmental Science, 2015, 36(11):4260-4267(in Chinese).
[28] 孙玉青, 张莘, 吴照祥,等. 雄黄矿区不同砷污染土壤中微生物群落结构及碳源利用特征[J]. 环境科学学报, 2015, 35(11):3669-3678. SUN Y Q, ZHANG S, WU Z X, et al. Soil microbial community structure and carbon source metabolic diversity in the Realgar mining area[J]. Acta Scientiae Circumstantiae, 2015, 35(11):3669-3678(in Chinese).
[29] 王文鹏, 毛如志, 陈建斌,等. 种植方式对玉米不同生长期土壤微生物群落功能多样性的影响[J]. 中国生态农业学报, 2015, 23(10):1293-1301. WANG W P, MAO R Z, CHEN J B, et al. Analysis of functional diversity of soil microbial communities under different cultivation patterns at different growth stages of maize[J]. Chinese Journal of Eco-Agriculture, 2015, 23(10):1293-1301(in Chinese).
[30] 鲁顺保,郭晓敏,芮亦超,等. 澳大利亚亚热带不同森林土壤微生物群落对碳源的利用[J].生态学报,2012,32(9):2819-2826. LU S B, GUO X M, RUI Y C, et al. Utilization of carbon sources by the soil microbial communities of different forest types in subtropical Australia[J]. Acta Ecologica Sinica, 2012,32(9):2819-2826(in Chinese).
[31] 刘强, 姚拓, 马晖玲. 菌肥与柠檬酸互作对石灰性土壤生物学特性及草坪质量的影响[J]. 草业学报, 2014, 23(5):223-230. LIU Q, YAO T, MA H L. Combined effects of bio-fertilizer and citric acid on turf quality and soil biology on a calcareous soil[J]. Acta Prataculturae Sinica, 2014, 23(5):223-230(in Chinese).