Acta Agriculturae Zhejiangensis ›› 2025, Vol. 37 ›› Issue (1): 245-254.DOI: 10.3969/j.issn.1004-1524.20231229
• Review • Previous Articles
LIU Yuexuan1,2(), CHEN Yanling1, ZHANG Peiqiang1, YAN Peng2,*(
)
Received:
2023-10-31
Online:
2025-01-25
Published:
2025-02-14
CLC Number:
LIU Yuexuan, CHEN Yanling, ZHANG Peiqiang, YAN Peng. Research progress on soil acidification and its regulation in tea plantations[J]. Acta Agriculturae Zhejiangensis, 2025, 37(1): 245-254.
Add to citation manager EndNote|Ris|BibTeX
URL: http://www.zjnyxb.cn/EN/10.3969/j.issn.1004-1524.20231229
[1] | 杨国治. 土壤酸化[M]//中国农业百科全书:土壤卷. 北京: 中国农业出版社, 1996, 375. |
[2] | 于天仁, 陈志诚. 土壤发生中的化学过程[M]. 北京: 科学出版社, 1990. |
[3] | ZHU Q C, VRIES W D, LIU X J, et al. Enhanced acidification in Chinese croplands as derived from element budgets in the period 1980-2010[J]. The Science of the Total Environment, 2018, 618: 1497-1505. |
[4] | 廖万有. 我国茶园土壤的酸化及其防治[J]. 农业环境保护, 1998, 17(4): 178-180. |
LIAO W Y. Soil acidification in tea plantantion and its prevention and management in China[J]. Journal of Agro-Environment Science, 1998, 17(4): 178-180. (in Chinese) | |
[5] | 梁化学. 不同形态氧化铁对黄土性土壤表面性质及铅吸附解吸的影响[D]. 杨凌: 西北农林科技大学, 2016. |
LIANG H X. Effects of iron oxides on surface properties and adsorption-desorption of lead by several loessial soils[D]. Yangling: Northwest A & F University, 2016. (in Chinese with English abstract) | |
[6] | 王海斌, 陈晓婷, 丁力, 等. 土壤酸度对茶树根际土壤微生物群落多样性影响[J]. 热带作物学报, 2018, 39(3): 448-454. |
WANG H B, CHEN X T, DING L, et al. Effect of soil acidity on microbial diversity in rhizospheric soils of tea plants[J]. Chinese Journal of Tropical Crops, 2018, 39(3): 448-454. (in Chinese with English abstract) | |
[7] | 王海斌, 陈晓婷, 丁力, 等. 连作茶树根际土壤自毒潜力、酶活性及微生物群落功能多样性分析[J]. 热带作物学报, 2018, 39(5): 852-857. |
WANG H B, CHEN X T, DING L, et al. Analysis on autotoxic potential, enzyme activity and microbial community function diversity of the rhizosphere soils from tea plants with continuous cropping years[J]. Chinese Journal of Tropical Crops, 2018, 39(5): 852-857. (in Chinese with English abstract) | |
[8] | 范庆锋, 张玉龙, 陈重, 等. 保护地土壤酸度特征及酸化机制研究[J]. 土壤学报, 2009, 46(3): 466-471. |
FAN Q F, ZHANG Y L, CHEN Z, et al. Acidity characteristics and acidification mechanism of soils in protected fields[J]. Acta Pedologica Sinica, 2009, 46(3): 466-471. (in Chinese with English abstract) | |
[9] | 张淼. 土壤对重金属离子的吸附[J]. 山西水利, 2005, 21(1): 84-85. |
ZHANG M. Absorption of heavy metal ions by soil[J]. Shanxi Water Resources, 2005, 21(1): 84-85. (in Chinese) | |
[10] | 韩官运, 邓先保, 蒋诚, 等. 植物铝毒害的产生及防治研究进展[J]. 福建林业科技, 2007, 34(2): 174-179. |
HAN G Y, DENG X B, JIANG C, et al. The research progress on the cause and control of aluminum toxicity to plants[J]. Journal of Fujian Forestry Science and Technology, 2007, 34(2): 174-179. (in Chinese with English abstract) | |
[11] | 颜鹏, 韩文炎, 李鑫, 等. 中国茶园土壤酸化现状与分析[J]. 中国农业科学, 2020, 53(4): 795-813. |
YAN P, HAN W Y, LI X, et al. Present situation and analysis of soil acidification in Chinese tea garden[J]. Scientia Agricultura Sinica, 2020, 53(4): 795-813. (in Chinese with English abstract) | |
[12] | 杨向德, 石元值, 伊晓云, 等. 茶园土壤酸化研究现状和展望[J]. 茶叶学报, 2015, 56(4): 189-197. |
YANG X D, SHI Y Z, YI X Y, et al. Research progress and prospects on soil acidification at tea plantations[J]. Acta Tea Sinica, 2015, 56(4): 189-197. (in Chinese with English abstract) | |
[13] | WANG X J, KATO T, TOKUDA S. Environmental problems caused by heavy application of nitrogen fertilisers in Japanese tea fields[M]//CONACHER A J. Land degradation. Dordrecht: Springer, 2001: 141-150. |
[14] | BARUAH B K, DAS B, MEDHI C, et al. Fertility status of soil in the tea garden belts of Golaghat District, Assam, India[J]. Journal of Chemistry, 2013, 2013: 983297. |
[15] | GOSWAMI G, DEKA P, DAS P, et al. Diversity and functional properties of acid-tolerant bacteria isolated from tea plantation soil of Assam[J]. Biotech, 2017, 7(3):229. |
[16] | GOGOI B B, BORGOHAIN A, KONWAR K, et al. National highway induced selected chemical properties of soils across tea bowl of India: scale and assessment[J]. International Journal of Environmental Science and Technology, 2022, 19(12): 12019-12038. |
[17] | GUO J H, LIU X J, ZHANG Y, et al. Significant acidification in major Chinese croplands[J]. Science, 2010, 327(5968): 1008-1010. |
[18] | YAN P, WU L G, WANG D H, et al. Soil acidification in Chinese tea plantations[J]. Science of The Total Environment, 2020, 715: 136963. |
[19] | 2017年全国各产茶省茶园面积、产量和产值统计[J]. 中国茶叶, 2018, 40(6): 27. |
Statistics on the area, yield and output value of tea plantations in tea-producing provinces in 2017[J]. China Tea, 2018, 40(6): 27. (in Chinese) | |
[20] | 吴洵. 茶园土壤酸化及防治[J]. 茶叶通讯, 1990, 17(4): 22-23. |
WU X. Soil acidification in tea plantations and its prevention[J]. Tea Communication, 1990, 17(4): 22-23. (in Chinese) | |
[21] | 杨冬雪, 钟珍梅, 陈剑侠, 等. 福建省茶园土壤养分状况评价[J]. 海峡科学, 2010(6): 129-131. |
YANG D X, ZHONG Z M, CHEN J X, et al. Evaluation on soil nutrient status of tea gardens in Fujian Province, China[J]. Straits Science, 2010(6): 129-131. (in Chinese) | |
[22] | 吴志丹, 江福英, 尤志明, 等. 亚热带茶园土壤酸度特征研究: 以福建省武夷山市为例[J]. 中国环境科学, 2016, 36(1): 181-189. |
WU Z D, JIANG F Y, YOU Z M, et al. Acidic characteristics of subtropical tea garden soil: a case study in Wuyishan City, Fujian Province, Southeast China[J]. China Environmental Science, 2016, 36(1): 181-189. (in Chinese with English abstract) | |
[23] | 穆聪, 黄梓璨, 苏达, 等. 铁观音茶园土壤酸化与交换性镁的现状[J]. 中国土壤与肥料, 2021(2): 39-43. |
MU C, HUANG Z C, SU D, et al. Status of soil acidification and exchangeable magnesium in Tieguanyin tea garden[J]. Soil and Fertilizer Sciences in China, 2021(2): 39-43. (in Chinese with English abstract) | |
[24] | 张小琴, 陈娟, 高秀兵, 等. 贵州重点茶区茶园土壤pH值和主要养分分析[J]. 西南农业学报, 2015, 28(1): 286-291. |
ZHANG X Q, CHEN J, GAO X B, et al. Analysis on pH and major soil nutrients of tea gardens in key tea producing areas of Guizhou[J]. Southwest China Journal of Agricultural Sciences, 2015, 28(1): 286-291. (in Chinese with English abstract) | |
[25] | 黄运湘, 曾希柏, 张杨珠, 等. 湖南省丘岗茶园土壤的酸化特征及其对土壤肥力的影响[J]. 土壤通报, 2010, 41(3): 633-638. |
HUANG Y X, ZENG X B, ZHANG Y Z, et al. Tea garden soil acidification and its impact on soil fertility in hillock of Hunan Province[J]. Chinese Journal of Soil Science, 2010, 41(3): 633-638. (in Chinese with English abstract) | |
[26] | 杨普香, 阮建云, 尹晓云, 等. 江西省茶叶主产县茶园土壤养分现状分析[J]. 江西农业学报, 2013, 25(9): 66-70. |
YANG P X, RUAN J Y, YIN X Y, et al. Current situation analysis of soil nutrient of main tea gardens in Jiangxi[J]. Acta Agriculturae Jiangxi, 2013, 25(9): 66-70. (in Chinese with English abstract) | |
[27] | 林小兵, 孙永明, 江新凤, 等. 江西省茶园土壤肥力特征及其影响因子[J]. 应用生态学报, 2020, 31(4): 1163-1174. |
LIN X B, SUN Y M, JIANG X F, et al. Soil fertility characteristics and their influencing factors in tea plantations of Jiangxi Province, China[J]. Chinese Journal of Applied Ecology, 2020, 31(4): 1163-1174. (in Chinese with English abstract) | |
[28] | 张祖光, 吴云, 谢德体. 重庆茶园土壤酸化特征研究[J]. 西南农业大学学报(自然科学版), 2004, 26(1): 15-17. |
ZHANG Z G, WU Y, XIE D T. On acidification of tea garden soils in Chongqing[J]. Journal of Southwest Agricultural University, 2004, 26(1): 15-17. (in Chinese with English abstract) | |
[29] | 张倩. 江苏省典型茶园土壤酸化动态及调控措施研究[D]. 南京: 南京农业大学, 2011. |
ZHANG Q. The study on soil acidification dynamic and adjustment measures of typical tea gardens in Jiangsu Province[D]. Nanjing: Nanjing Agricultural University, 2011. (in Chinese with English abstract) | |
[30] | YAN P, SHEN C, FAN L C, et al. Tea planting affects soil acidification and nitrogen and phosphorus distribution in soil[J]. Agriculture, Ecosystems & Environment, 2018, 254: 20-25. |
[31] | 罗敏. 江苏省茶园土壤酸化现状及其影响因素研究[D]. 南京: 南京农业大学, 2006. |
LUO M. Study on soil acidification status and influence factors of tea plantations in Jiangsu Province[D]. Nanjing: Nanjing Agricultural University, 2006. (in Chinese with English abstract) | |
[32] | 徐仁扣, 赵安珍, 姜军. 酸化对茶园黄棕壤CEC和黏土矿物组成的影响[J]. 生态环境学报, 2011, 20(10): 1395-1398. |
XU R K, ZHAO A Z, JIANG J. Effect of acidification on CEC and mineral compositions of yellow brown soils in tea gardens[J]. Ecology and Environmental Sciences, 2011, 20(10): 1395-1398. (in Chinese with English abstract) | |
[33] | 张永利, 孙力. 茶园土壤酸化及其改良措施[J]. 茶业通报, 2011, 33(4): 158-161. |
ZHANG Y L, SUN L. Soil acidification in tea garden and its improvement measures[J]. Journal of Tea Business, 2011, 33(4): 158-161. (in Chinese) | |
[34] | 廖万有. 茶生物圈中铝的生物学效应及其研究展望[J]. 福建茶叶, 1995, 17(4): 13-17. |
LIAO W Y. Biological effects of aluminum in tea biosphere and its research progress[J]. Tea In Fujian, 1995, 17(4): 13-17. (in Chinese) | |
[35] | 王效举. 土壤植茶的环境效应[J]. 土壤通报, 1995, 26(2): 91-93. |
WANG X J. Environmental effects of tea planting[J]. Chinese Journal of Soil Science, 1995, 26(2): 91-93. (in Chinese) | |
[36] | 石锦芹, 丁瑞兴, 刘友兆, 等. 尿素和茶树落叶对土壤的酸化作用[J]. 茶叶科学, 1999, 19(1): 7-12. |
SHI J Q, DING R X, LIU Y Z, et al. Acidification of soil by urea and fallen tea leaves[J]. Journal of Tea Science, 1999, 19(1): 7-12. (in Chinese) | |
[37] | LI S Y, LI H X, YANG C L, et al. Rates of soil acidification in tea plantations and possible causes[J]. Agriculture, Ecosystems & Environment, 2016, 233: 60-66. |
[38] | CHEN C, XIAO W Y, CHEN H Y H. Mapping global soil acidification under N deposition[J]. Global Change Biology, 2023, 29(16): 4652-4661. |
[39] | YANG Y H, JI C J, MA W H, et al. Significant soil acidification across Northern China’s grasslands during 1980s-2000s[J]. Global Change Biology, 2012, 18(7): 2292-2300. |
[40] | ZHANG M, FAN D M, ZHU Q, et al. Contribution of high accumulated polyphenols to C stabilization in soil of tea gardens[M]//XU J, WU J, HE Y. Functions of natural organic matter in changing environment. Dordrecht: Springer, 2013: 397-400. |
[41] | 母媛, 袁大刚, 兰永生, 等. 植茶年限对土壤pH值、有机质与酚酸含量的影响[J]. 中国土壤与肥料, 2016(4): 44-48. |
MU Y, YUAN D G, LAN Y S, et al. Effects of tea planting age on soil pH value, contents of organic matter and phenolic acids[J]. Soil and Fertilizer Sciences in China, 2016(4): 44-48. (in Chinese with English abstract) | |
[42] | 苏有健, 王烨军, 张永利, 等. 不同植茶年限茶园土壤pH缓冲容量[J]. 应用生态学报, 2014, 25(10): 2914-2918. |
SU Y J, WANG Y J, ZHANG Y L, et al. Soil pH buffer capacity of tea garden with different planting years[J]. Chinese Journal of Applied Ecology, 2014, 25(10): 2914-2918. (in Chinese with English abstract) | |
[43] | 苏有健. 皖南茶园土壤酸化特征及其调控机制的研究[D]. 杭州: 浙江大学, 2018. |
SU Y J. Study on soil acidification characteristics and regulation mechanism of tea gardens in southern Anhui Province[D]. Hangzhou: Zhejiang University, 2018. (in Chinese with English abstract) | |
[44] | YAN F, SCHUBERT S, MENGEL K. Soil pH changes during legume growth and application of plant material[J]. Biology and Fertility of Soils, 1996, 23(3): 236-242. |
[45] | TANG C, UNKOVICH M J, BOWDEN J W. Factors affecting soil acidification under legumes Ⅲ: acid production by N2-fixing legumes as influenced by nitrate supply[J]. The New Phytologist, 1999, 143(3): 513-521. |
[46] | DONG D M, XIE Z L, DU Y G. The bioavailability of Al in soils to tea plants[J]. Applied Geochemistry, 2001, 16(11/12): 1413-1418. |
[47] | RUAN J Y, MA L F, SHI Y Z. Aluminium in tea plantations: mobility in soils and plants, and the influence of nitrogen fertilization[J]. Environmental Geochemistry and Health, 2006, 28(6): 519-528. |
[48] | 钟正燕, 陈炳发, 宋雁辉, 等. 根分泌物有机酸的研究方法[J]. 环境科学导刊, 2019, 38(S1): 12-18. |
ZHONG Z Y, CHEN B F, SONG Y H, et al. Research methods on organic acids in root exudates[J]. Environmental Science Survey, 2019, 38(S1): 12-18. (in Chinese) | |
[49] | 刘腾腾, 郜红建, 宛晓春, 等. 铝对茶树根细胞膜透性和根系分泌有机酸的影响[J]. 茶叶科学, 2011, 31(5): 458-462. |
LIU T T, GAO H J, WAN X C, et al. Impacts of aluminum on root cell membrane permeability and organic acids in root exudates of tea plant[J]. Journal of Tea Science, 2011, 31(5): 458-462. (in Chinese with English abstract) | |
[50] | 胡红青, 廖丽霞, 王兴林. 低分子量有机酸对红壤无机态磷转化及酸度的影响[J]. 应用生态学报, 2002, 13(7): 867-870. |
HU H Q, LIAO L X, WANG X L. Effect of low molecular weight organic acids on inorganic phosphorus transformation in red soil and its acidity[J]. Chinese Journal of Applied Ecology, 2002, 13(7): 867-870. (in Chinese) | |
[51] | JUO A S R, DABIRI A, FRANZLUEBBERS K. Acidification of a kaolinitic Alfisol under continuous cropping with nitrogen fertilization in West Africa[J]. Plant and Soil, 1995, 171(2): 245-253. |
[52] | BOUMAN O T, CURTIN D, CAMPBELL C A, et al. Soil acidification from long-term use of anhydrous ammonia and urea[J]. Soil Science Society of America Journal, 1995, 59(5): 1488-1494. |
[53] | 尤志明, 吴志丹, 章明清, 等. 福建茶园化肥减施增效技术研究思路[J]. 茶叶学报, 2017, 58(3): 91-95. |
YOU Z M, WU Z D, ZHANG M Q, et al. Reduction and improvement on chemical fertilizer utilization at tea plantations in Fujian[J]. Acta Tea Sinica, 2017, 58(3): 91-95. (in Chinese with English abstract) | |
[54] | ROGERI D A, ERNANI P, LOURENÇO K S, et al. Mineralization and nitrification of nitrogen from poultry litter applied to soil[J]. Revista Brasileira De Engenharia Agricola e Ambiental, 2015, 19: 534-540. |
[55] | CHIEN S H, GEARHART M M, COLLAMER D J. The effect of different ammonical nitrogen sources on soil acidification[J]. Soil Science, 2008, 173(8): 544-551. |
[56] | PENG X L, MAHARJAN B, YU C L, et al. A laboratory evaluation of ammonia volatilization and nitrate leaching following nitrogen fertilizer application on a coarse-textured soil[J]. Agronomy Journal, 2015, 107(3): 871-879. |
[57] | 张倩, 高明, 徐畅, 等. 施氮对紫色土硝酸根和盐基离子耦合迁移的影响[J]. 水土保持学报, 2013, 27(1): 111-115. |
ZHANG Q, GAO M, XU C, et al. Influence of nitrogen fertilizer on the coupling migration of nitrate and base cations in purple soil[J]. Journal of Soil and Water Conservation, 2013, 27(1): 111-115. (in Chinese with English abstract) | |
[58] | 徐仁扣, 李九玉, 周世伟, 等. 我国农田土壤酸化调控的科学问题与技术措施[J]. 中国科学院院刊, 2018, 33(2): 160-167. |
XU R K, LI J Y, ZHOU S W, et al. Scientific issues and controlling strategies of soil acidification of croplands in China[J]. Bulletin of Chinese Academy of Sciences, 2018, 33(2): 160-167. (in Chinese with English abstract) | |
[59] | 张帅, 户杉杉, 潘荣艺, 等. 茶园土壤酸化研究进展[J]. 茶叶, 2019, 45(1): 17-23. |
ZHANG S, HU S S, PAN R Y, et al. Research progress on soil acidification of tea garden[J]. Journal of Tea, 2019, 45(1): 17-23. (in Chinese with English abstract) | |
[60] | 朱悦蕊, 林慧凌, 张誉龄, 等. 钾、镁配施改良茶园土壤酸化的效果及其作用路径[J]. 生态学杂志, 2023, 42(7): 1554-1560. |
ZHU Y R, LIN H L, ZHANG Y L, et al. Effects of combined application of potassium and magnesium in ameliorating soil acidification of tea garden[J]. Chinese Journal of Ecology, 2023, 42(7): 1554-1560. (in Chinese with English abstract) | |
[61] | 王峰, 陈玉真, 尤志明, 等. 不同施氮量对两种茶园土壤硝化作用和pH值的影响[J]. 茶叶科学, 2015, 35(1): 82-90. |
WANG F, CHEN Y Z, YOU Z M, et al. Effects of different nitrogen application rates on nitrification and pH of two tea garden soil[J]. Journal of Tea Science, 2015, 35(1): 82-90. (in Chinese with English abstract) | |
[62] | 宁建美, 李贵松, 吴林土. 松阳县茶园土壤酸化的现状及改良措施[J]. 茶叶, 2009, 35(3): 169-171. |
NING J M, LI G S, WU L T. Tea soil acidification and its improvement measures in Songyang County[J]. Journal of Tea, 2009, 35(3): 169-171. (in Chinese with English abstract) | |
[63] | BUTTERLY C R, BALDOCK J A, TANG C. The contribution of crop residues to changes in soil pH under field conditions[J]. Plant and Soil, 2013, 366(1): 185-198. |
[64] | RUKSHANA F, BUTTERLY C R, XU J M, et al. Organic anion-to-acid ratio influences pH change of soils differing in initial pH[J]. Journal of Soils and Sediments, 2014, 14(2): 407-414. |
[65] | CAI A D, ZHANG W J, XU M G, et al. Soil fertility and crop yield after manure addition to acidic soils in South China[J]. Nutrient Cycling in Agroecosystems, 2018, 111(1): 61-72. |
[66] | 吕焕哲, 王凯荣, 谢小立, 等. 有机物料对酸性红壤铝毒的缓解效应[J]. 植物营养与肥料学报, 2007, 13(4): 637-641. |
LÜ H Z, WANG K R, XIE X L, et al. Alleviation of organic manure on aluminum toxicity in acid red soil[J]. Plant Nutrition and Fertilizer Science, 2007, 13(4): 637-641. (in Chinese with English abstract) | |
[67] | 陆欣, 谢英荷. 土壤肥料学[M]. 2版. 北京: 中国农业大学出版社, 2011. |
[68] | 曾婕, 张德全, 闻禄, 等. 长期不同施肥模式对茶叶产量与土壤肥力的影响[J]. 安徽农业科学, 2020, 48(3): 161-166. |
ZENG J, ZHANG D Q, WEN L, et al. Effects of different long-term fertilization patterns on yield of tea and soil fertility[J]. Journal of Anhui Agricultural Sciences, 2020, 48(3): 161-166. (in Chinese with English abstract) | |
[69] | 花东文, 李娟, 李劲彬. 不同培肥模式对陕南地区幼龄茶园土壤养分的影响[J]. 茶叶通讯, 2022, 49(3): 310-316. |
HUA D W, LI J, LI J B. Effects of different fertilization modes on soil nutrients in young tea gardens in southern Shaanxi[J]. Journal of Tea Communication, 2022, 49(3): 310-316. (in Chinese with English abstract) | |
[70] | 吴志丹, 江福英, 尤志明, 等. 配施生物基质肥料对茶园土壤酸度的改良效应[J]. 茶叶科学, 2015, 35(2): 196-202. |
WU Z D, JIANG F Y, YOU Z M, et al. Effects of biological manure fertilizer application on ameliorating acidity of tea garden soil[J]. Journal of Tea Science, 2015, 35(2): 196-202. (in Chinese with English abstract) | |
[71] | 钱莲文, 余甜甜, 梁旭军, 等. 茶园土壤酸化改良中生物炭应用5a后的稳定性研究[J]. 生态环境学报, 2022, 31(7): 1442-1447. |
QIAN L W, YU T T, LIANG X J, et al. Stability of biochar after application for 5 years in the amendment of acidified tea garden soil[J]. Ecology and Environmental Sciences, 2022, 31(7): 1442-1447. (in Chinese with English abstract) | |
[72] | YUAN J H, XU R K, WANG N, et al. Amendment of acid soils with crop residues and biochars[J]. Pedosphere, 2011, 21(3): 302-308. |
[73] | 李荣林, 黄继超, 黄欣卫, 等. 生物炭对茶园土壤酸性和土壤元素有效性的调节作用[J]. 江苏农业科学, 2012, 40(12): 345-347. |
LI R L, HUANG J C, HUANG X W, et al. Effects of biochar on soil acidity and soil element availability in tea plantations[J]. Jiangsu Agricultural Sciences, 2012, 40(12): 345-347. (in Chinese) | |
[74] | 李昌娟, 杨文浩, 周碧青, 等. 生物炭基肥对酸化茶园土壤养分及茶叶产质量的影响[J]. 土壤通报, 2021, 52(2): 387-397. |
LI C J, YANG W H, ZHOU B Q, et al. Effects of biochar based fertilizer on soil nutrients, tea output and quality in an acidified tea field[J]. Chinese Journal of Soil Science, 2021, 52(2): 387-397. (in Chinese with English abstract) | |
[75] | 孙贇, SHAABAN M, 何志龙, 等. 生物质炭对茶园土壤改良及茶叶品质的影响[J]. 中国土壤与肥料, 2017(6): 9-14. |
SUN Y, SHAABAN M, HE Z L, et al. Effects of biochar on tea garden soil amelioration and tea quality[J]. Soil and Fertilizer Sciences in China, 2017(6): 9-14. (in Chinese with English abstract) | |
[76] | 于翔宇. 施用石灰与生物炭对酸性土壤竹豆生长及养分吸收的影响[D]. 重庆: 西南大学, 2018. |
YU X Y. The effects of applying lime and biochar on the growth and nutrient uptake of Phaseotus calcaltus Roxb in acid soils[D]. Chongqing: Southwest University, 2018. (in Chinese with English abstract) | |
[77] | 张祥, 王典, 姜存仓, 等. 生物炭对我国南方红壤和黄棕壤理化性质的影响[J]. 中国生态农业学报, 2013, 21(8): 979-984. |
ZHANG X, WANG D, JIANG C C, et al. Effect of biochar on physicochemical properties of red and yellow brown soils in the South China Region[J]. Chinese Journal of Eco-Agriculture, 2013, 21(8): 979-984. (in Chinese with English abstract) | |
[78] | 郑慧芬, 吴红慧, 翁伯琦, 等. 施用生物炭提高酸性红壤茶园土壤的微生物特征及酶活性[J]. 中国土壤与肥料, 2019(2): 68-74. |
ZHENG H F, WU H H, WENG B Q, et al. Improved soil microbial characteristics and enzyme activities with wheat straw biochar addition to an acid tea plantation in red soil[J]. Soil and Fertilizer Sciences in China, 2019(2): 68-74. (in Chinese with English abstract) | |
[79] | 孙玉平, 谢小芳, 李建华, 等. 石灰用量对不同酸度等级稻田土壤理化性状及产量的影响[J]. 湖北农业科学, 2019, 58(2): 50-53. |
SUN Y P, XIE X F, LI J H, et al. Effect of lime dosage on soil physicochemical properties and yield of rice fields with different acidity grades[J]. Hubei Agricultural Sciences, 2019, 58(2): 50-53. (in Chinese with English abstract) | |
[80] | PRIETZEL J, REHFUESS K E, STETTER U, et al. Changes of soil chemistry, stand nutrition, and stand growth at two Scots pine (Pinus sylvestris L.) sites in Central Europe during 40 years after fertilization, liming, and lupine introduction[J]. European Journal of Forest Research, 2008, 127(1): 43-61. |
[81] | BRENNAN R F, BOLLAND M D A, BELL R W. Increased risk of zinc deficiency in wheat on soils limed to correct soil acidity[J]. Soil Research, 2005, 43(5): 647. |
[82] | 杨文俪. 福建省安溪县茶园土壤酸化速率与改良技术[J]. 茶叶学报, 2021, 62(2): 89-93. |
YANG W L. Remedy for soil acidification at tea plantations in Anxi, Fujian[J]. Acta Tea Sinica, 2021, 62(2): 89-93. (in Chinese with English abstract) | |
[83] | 苏有健, 王烨军, 张永利, 等. 茶园土壤酸化阻控与改良技术[J]. 中国茶叶, 2018, 40(3): 9-11. |
SU Y J, WANG Y J, ZHANG Y L, et al. Soil acidification control and improvement technology in tea garden[J]. China Tea, 2018, 40(3): 9-11. (in Chinese) |
[1] | LI Qiuru, CAI Jingjing, LI Hua, YU Haiping, QIU Gaoyang, LIU Junli, GUO Bin. Comparison of adsorption and passivation effects of inorganic and organic materials on cadmium [J]. Acta Agriculturae Zhejiangensis, 2024, 36(12): 2774-2783. |
[2] | XU Junyan, QIU Gaoyang, LIU Junli, GUO Bin, LI Hua, CHEN Xiaodong, WANG Yuan, FU Qinglin. Effects of montmorillonite, kaolinite and basalt on soil carbon sequestration [J]. Acta Agriculturae Zhejiangensis, 2024, 36(8): 1867-1877. |
[3] | FU Zhiqiang, LIU Zhen, MA Chunhua, WEN Mengling, XI Ruchun. Effects of biochar and biochar-based fertilizers on soil quality and plant growth [J]. Acta Agriculturae Zhejiangensis, 2024, 36(7): 1634-1645. |
[4] | XIAO Yinrun, MA Jiping, WANG Yunping, WANG Suzhen, ZHONG Guoxiang, XIONG Xiaowen, ZHANG Cheng. Effects of passivators on contents of heavy metals in soil and morel fruiting body [J]. Acta Agriculturae Zhejiangensis, 2024, 36(7): 1646-1656. |
[5] | YU Chao, WANG Yinyu, LIU Qizhen, WANG Yun, SHEN Hong, FENG Ying. Effects of application of biochar from different raw materials combined with inorganic amendments on cadmium accumulation in pakchoi shoots and soil cadmium inactivation [J]. Acta Agriculturae Zhejiangensis, 2024, 36(3): 613-621. |
[6] | YANG Xifan, GUO Bin, QIU Gaoyang, LIU Junli, TONG Wenbin, YANG Haijun, ZHU Weidong, MAO Congyan. Inhibiting effects of immobilization agents on cadmium, lead and arsenic in rice production [J]. Acta Agriculturae Zhejiangensis, 2024, 36(1): 1-8. |
[7] | CHAI Guanqun, ZHOU Wei, LIANG Hong, FAN Feifei, ZHU Dayan, FAN Chengwu. Effect of foliar spraying of zinc fertilizer and citric acid on yield, quality and Cd absorption and transport ation of pepper [J]. Acta Agriculturae Zhejiangensis, 2023, 35(5): 1069-1079. |
[8] | WANG Weiwei, MEI Yi, WU Yongcheng, WAN Hongjian, CHEN Changjun, ZHENG Qingsong, ZHENG Jiaqiu. Effects of corncob biochar application on soil characteristics and pepper growth under continuous cropping [J]. Acta Agriculturae Zhejiangensis, 2023, 35(1): 156-163. |
[9] | GAO Zhiyuan, YANG Shuna, WANG Zhaoli, WANG Zhihao, XI Xinyan, HE Juan, JIA Huijuan. Effects of different fumigation on continuous cropping soil in peach orchard [J]. Acta Agriculturae Zhejiangensis, 2022, 34(10): 2251-2258. |
[10] | HUANG Feng, XING Jianping, FU Shaohuai, PAN Pan, WU Lin, LIU Beibei, CHEN Miao. Effects of different safe utilization technologies on cadmium reduction in rice-vegetable rotation system in northern Hainan, China [J]. Acta Agriculturae Zhejiangensis, 2022, 34(8): 1725-1733. |
[11] | ZHOU Wenzhi, LI Suyan, SUN Xiangyang, LI Xiaochong, ZHA Guichao, WEI Ningxian. Effects of different materials on leaching characteristics of salinity in coastal saline-alkali soil [J]. Acta Agriculturae Zhejiangensis, 2022, 34(7): 1485-1492. |
[12] | LOU Fei, FU Tianling, DAI Liangyu, ZHOU Kai, LIN Dasong, HE Tengbing. Effects of soil conditioners on Cd translocation and accumulation and yield of rice in central Guizhou Province, China [J]. Acta Agriculturae Zhejiangensis, 2022, 34(7): 1493-1501. |
[13] | CHEN De, ZHAO Shouping, YE Xuezhu, ZHANG Qi, XIAO Wendan, RUAN Yifei, WU Shaofu. Effects of soil amendments on Cd uptake and accumulation in red pepper [J]. Acta Agriculturae Zhejiangensis, 2021, 33(10): 1921-1930. |
[14] | CHEN Gui, ZHOU Jiewen, LI Haiping, ZHANG Faming, LI Chunshun, LIU Li, ZHANG Y. Effects of soil conditioner application on pH value of acidified soil and root characteristics of flue-cured tobacco [J]. Acta Agriculturae Zhejiangensis, 2021, 33(7): 1275-1282. |
[15] | ZHU Yun, GUO Bin, LIN Yicheng, FU Qinglin, LIU Chen, LI Ningyu, LI Hua. Effects of self-developed soil conditioner on soil physiochemical properties and rice yield in coastal saline soil [J]. Acta Agriculturae Zhejiangensis, 2021, 33(5): 885-892. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||