首页 分享 Meta分析有机肥施用对中国北方农田土壤CO2排放的影响

Meta分析有机肥施用对中国北方农田土壤CO2排放的影响

来源:花匠小妙招 时间:2024-11-29 13:00

摘要: 为了探明中国北方地区不同气候类型、施肥措施、有机肥类型和试验年限下,有机肥施用(单施有机肥、有机无机肥配施)对生育期农田土壤CO2排放量的影响,该研究以不施肥、施用无机肥分别作为对照,根据已发表的相关田间试验数据,采用Meta分析方法,定量研究有机肥、有机肥配施无机肥对农田土壤CO2排放量的影响。结果表明:与不施肥、施用无机肥相比,有机肥施用总体上显著提高了农田土壤CO2排放量,分别提高了50.6%和36.3%;有机肥施用下,农田土壤CO2排放量依次减少的顺序为:单施有机肥、有机无机配施、无机肥+有机肥+缓释肥;采用有机肥+无机肥+缓释肥配施,土壤CO2排放量未显著增加;相比牛粪、猪粪和商品有机肥,鸡粪类有机肥对土壤CO2排放正效应最大;有机肥施用下,灰漠土农田土壤CO2排放量相对高;农田土壤CO2排放量与年均气温正相关,与年均降水量负相关。从环境的角度考虑,建议在中国北方采用无机肥+有机肥+缓释肥配施技术,不建议鸡粪大量施用及在灰漠土农田大量施用有机肥。该研究成果可为有机肥替代部分化肥在中国北方地区的推广应用提供参考。

关键词: 呼吸  /  土壤  /  肥料  /  北方  /  Meta  

Abstract: Abstract: This paper was aimed to investigate the effects of organic fertilizer application (single application of organic fertilizer and organic-inorganic fertilizer combination) on the CO2 emission in farmland soil during crop growth period, under different climate types, fertilization measures, organic fertilizer types and experiment years in Northern China. Non-fertilizer and inorganic fertilizer application were used as control treatments. Based on the published data of relevant experiment and the Meta-analysis method, the quantitative effects on application of organic fertilizer and organic-inorganic fertilizer combination on CO2 emission in farmland soil were studied. A total of 534 measurements were obtained including 89 pairs of data from 21 literatures. The experiments lasted from 1980 to 2017. The effects were determined by effect size by Meta-analysis method. The important factors affecting CO2 emission were selected by finding out those with important values higher than 0.8. The results showed that the organic fertilizer application significantly generally increased the CO2 emission in farmland soil than the non-fertilizer and inorganic fertilizer application, with an increment of 50.6% and 36.3%, respectively. No publication bias was found because the fail-safe number was far higher than the critical values by the fail-safe method. There was not significantly different among regions (P>0.05). Under the application of organic fertilizer, the CO2 emission of farmland soil decreased successively in the following order: single application of organic fertilizer, organic-inorganic fertilizer combination, and combined application of inorganic fertilizer, organic fertilizer and slow-release fertilizer. Soil CO2 emission did not significantly increase under the combined application of organic fertilizer, inorganic fertilizer and slow-release fertilizer. Compared with non-fertilizer, cow manure, pig manure and commercial organic manure, chicken manure had the greatest positive effects on soil CO2 emission. Under the application of organic fertilizer, the CO2 emission of farmland soil in gray desert was relatively high. The CO2 emission of farmland soil was positively correlated with the annual average temperature and negatively correlated with the annual average precipitation. The annual average temperature and annual average precipitation could explain about 11%-16% and 10%-12% change in effect size of CO2 emission, respectively. From the perspective of environment, it was suggested to apply the combined application of inorganic fertilizer, organic fertilizer and slow-release fertilizer in Northern China. Meanwhile, the chicken manure should not be applied in large quantities and organic fertilizer should not be used in grey desert farmland. The results of this study can provide valuable information for the popularization and application of organic fertilizer replacing partial chemical fertilizer in Northern China.

[1] 吴瑞娟,王迎春,朱平,等. 长期施肥对东北中部春玉米农田土壤呼吸的影响[J]. 植物营养与肥料学报,2018,24(1):44-52.Wu Ruijuan, Wang Yingchun, Zhu Ping, et al. Effects of long-term fertilization on soil respiration in spring maize field[J]. Journal of Plant Nutrition and Fertilizers, 2018, 24(1): 44-52. (in Chinese with English abstract) [2] 温延臣,李燕青,袁亮,等. 长期不同施肥制度土壤肥力特征综合评价方法[J]. 农业工程学报,2015,31(7):91-99.Wen Yanchen, Li Yanqing, Yuan Liang, et al. Comprehensive assessment methodology of characteristics of soil fertility under different fertilization regimes in north china[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2015, 31(7): 91-99. (in Chinese with English abstract) [3] 张运龙. 有机肥施用对冬小麦—夏玉米产量和土壤肥力的影响[D]. 北京:中国农业大学,2017.Zhang Yunlong. Effects of Organic Manure Application on Yield and Soil Fertility of Winter Wheat and Summer Maize[D]. Beijing: China Agricultural University, 2017. (in Chinese with English abstract) [4] 宋震震,李絮花,李娟,等. 有机肥和化肥长期施用对土壤活性有机氮组分及酶活性的影响[J]. 植物营养与肥料学报,2014,20(3):525-533.Song Zhenzhen, Li Xuhua, Li Juan, et al. Effects of long term application of organic manure and chemical fertilizer on soil active organic nitrogen components and enzyme activities[J]. Journal of Plant Nutrition and Fertilizers, 2014, 20(3): 525-533. (in Chinese with English abstract) [5] 陶磊,褚贵新,刘涛,等. 有机肥替代部分化肥对长期连作棉田产量、土壤微生物数量及酶活性的影响[J]. 生态学报,2014,34(21):6137-6146.Tao Lei, Chu Guixin, Liu Tao, et al. Impacts of organic manure partial substitution for chemical fertilizer on cotton yield, soil microbial community and enzyme activities in mono-cropping system in drip irrigation condition[J]. Acta Ecologica Sinica, 2014, 34(21) : 6137-6146. (in Chinese with English abstract) [6] 沈仕洲,王风,薛长亮,等. 施用有机肥对农田温室气体排放影响研究进展[J]. 中国土壤与肥料,2015,4(6):1-8.Shen Shizhou, Wang Feng, Xue Changliang, et al. Research progress on effects of organic fertilizer on greenhouse gas emissions in farmland[J]. Soil and Fertilizer in China, 2015, 4(6): 1-8. (in Chinese with English abstract) [7] 张玉铭,胡春胜,张佳宝,等. 农田土壤主要温室气体(CO2、CH4、N2O)的源/汇强度及其温室效应研究进展[J]. 中国生态农业学报,2011,19(4):966-975.Zhang Yuming, Hu Chunsheng, Zhang Jiabao, et al. Research advances on source/sink intensities and greenhouse effects of CO2, CH4 and N2O in agricultural soils[J]. Chinese Journal of Eco-Agriculture, 2018, 19(4): 966-975. (in Chinese with English abstract) [8] 贺美,王立刚,王迎春,等. 长期定位施肥下黑土呼吸的变化特征及其影响因素[J]. 农业工程学报,2018,34(4):151-161.He Mei, Wang Ligang, Wang Yingchun, et al. Characteristics and influencing factors of black soil respiration under long term fertilization[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2018, 34(4): 151-161. (in Chinese with English abstract) [9] 李燕青,唐继伟,车升国,等. 长期施用有机肥与化肥氮对华北夏玉米N2O和CO2排放的影响[J]. 中国农业科学,2015,48(21):4381-4389.Li Yanqing, Tang Jiwei, Che Shengguo, et al. Effects of long-term application of organic manure and fertilizer nitrogen on N2O and CO2 emissions from summer maize in north china[J]. Scientia Agricultura Sinica, 2015, 48(21): 4381-4389. (in Chinese with English abstract) [10] 孙海妮,岳善超,王仕稳,等. 有机肥及补充灌溉对旱地农田温室气体排放的影响[J]. 环境科学学报,2018,38(5):2055-2065.Sun Haini, Yue Shanchao, Wang Shiwen, et al. Effects of organic fertilizers and supplementary irrigation on greenhouse gas emissions from drylands[J]. Acta Scientiae Circumstantiae, 2018, 38(5): 2055-2065. (in Chinese with English abstract) [11] Dong Wenjun, Guo Jia, Xu Lijun, et al. Water regime-nitrogen fertilizer incorporation interaction: Field study on methane and nitrous oxide emissions from a rice agroecosystem in Harbin, China[J]. Journal of Environmental Sciences, 2018, 64(2): 289-297. [12] 白雪原,红梅,杨彦明,等. 施肥对河套灌区土壤CO2和N2O排放的影响[J]. 灌溉排水学报, 2017,36(7):66-70.Bai Xueyuan, Hong Mei, Yang Yanming, et al. Effects of fertilization on soil CO2 and N2O emissions in Hetao Irrigated Area[J]. Journal of Irrigation and Drainage, 2017, 36(7): 66-70. (in Chinese with English abstract) [13] Hang Xiaoning, Zhang Xin, Song Chunlian, et al. Differences in rice yield and CH4 and N2O emissions among mechanical planting methods with straw incorporation in Jianghuai area, china[J]. Soil and Tillage Research, 2014, 144(7): 205-210. [14] 刘东雪. 施肥对冬小麦—夏玉米轮作生态系统温室气体排放的影响[D]. 青岛:山东农业大学,2013.Liu Dongxue. Effects of Fertilization on Greenhouse Gas Emissions from Winter Wheat-Summer Maize Rotation Ecosystem[D]. Qingdao: Shandong Agricultural University, 2013. (in Chinese with English abstract) [15] 薛晓辉. 典型旱作区施肥对农田氮淋溶以及温室气体排放的影响[D]. 杨凌:中国科学院研究生院,2010.Xue Xiaohui. Effects of Fertilization on Nitrogen Leaching and Greenhouse Gas Emissions in Typical Rainfed Areas[D]. Yangling: Graduate University of Chinese Academy of Sciences, 2010. (in Chinese with English abstract) [16] 史培. 长期施肥对黄土旱塬小麦产量及土壤CO2和N2O排放的影响[D]. 杨凌:西北农林科技大学,2011.Shi Pei. Effects of Long-term Fertilization on Wheat Yield and Soil CO2 and N2O Emissions in Loess Plateau[D]. Yangling: Northwest A&F University, 2011. (in Chinese with English abstract) [17] 郭芸. 长期施肥下旱地塿土CO2和CH4排放特征的研究[D]. 杨凌:西北农林科技大学,2017.Guo Yun. Emission Characteristics of CO2 and CH4 from Upland Soil under Long-term Fertilization[D]. Yangling: Northwest A&F University, 2017. (in Chinese with English abstract) [18] Chen Zengming, Xu Yehong, Fan Jianling, et al. Soil autotrophic and heterotrophic respiration in response to different N fertilization and environmental conditions from a cropland in northeast China[J]. Soil Biology and Biochemistry, 2017, 110(6): 103-115. [19] Chen Haixin, Liu Jingjing, Zhang Afeng, et al. Effects of straw and plastic film mulching on greenhouse gas emissions in loess plateau, china: A field study of consecutive wheat-maize rotation cycles[J]. Science of the Total Environment, 2017, 579(2): 814-824. [20] Htun Yinmin, Tong Yanan, Gao Pengcheng, et al. Coupled effects of straw and nitrogen management on N2O and CH4 emissions of rainfed agriculture in northwest China[J]. Atmospheric Environment, 2017, 157(10): 156-166. [21] 王玉英,李晓欣,董文旭,等. 华北平原农田温室气体排放与减排综述[J]. 中国生态农业学报,2018,26(2):167-174.Wang Yuying, Li Xiaoxin, Dong Wenxu, et al. Review on greenhouse gas emission and reduction in wheat-maize double cropping system in the north china plain[J]. Chinese Journal of Eco-Agriculture, 2018, 26(2): 167-174. (in Chinese with English abstract) [22] 雷强. 有机肥化肥配施对华北高产农田土壤温室气体排放的影响[D]. 太谷:山西农业大学,2015.Lei Qiang. Effects of Combined Application of Organic Fertilizer and Chemical Fertilizer on Greenhouse Gas Emission from High Yield Farmland in north china[D]. Taigu: Shanxi Agricultural University, 2015. (in Chinese with English abstract) [23] 郭俊娒. 不同施肥模式对东北春玉米氮素利用与农田温室气体排放的影响[D]. 北京:中国农业科学院,2015.Guo Junmu. Effects of Different Fertilization Modes on Nitrogen Use and Greenhouse Gas Emissions from Spring Maize in Northeast China[D]. Beijing: Chinese Academy of Agricultural Sciences, 2015. (in Chinese with English abstract) [24] 李海波,韩晓增. 不同土地利用和施肥方式下黑土碳平衡的研究[J]. 中国生态农业学报,2014,22(1):16-21.Li Haibo, Han Xiaozeng. Carbon balance in black soil under different land use and fertilization methods[J]. Chinese Journal of Eco-Agriculture, 2014, 22(1): 16-21. (in Chinese with English abstract) [25] 高洪军. 长期不同施肥对东北玉米产量和土壤肥力及温室气体排放的影响研究[D]. 南京:南京农业大学,2015.Gao Hongjun. Effects of Long-term Fertilization on Maize Yield, Soil Fertility and Greenhouse Gas Emissions in Northeast China[D]. Nanjing: Nanjing Agricultural University, 2015. (in Chinese with English abstract) [26] Li Qiang, Li Hongbing, Zhang Li, et al. Mulching improves yield and water-use efficiency of potato cropping in china: a meta-analysis[J]. Field Crops Research, 2018, 221(5): 50-60. [27] Feng Jinfei, Chen Changqing, Zhang Yi, et al. Impacts of cropping practices on yield-scaled greenhouse gas emissions from rice fields in china: A meta-analysis[J]. Agriculture, Ecosystems & Environment, 2013, 164(1): 220-228. [28] 任凤玲,张旭博,孙楠,等. 施用有机肥对中国农田土壤微生物量影响的整合分析[J]. 中国农业科学,2018,51(1):119-128.Ren Fengling, Zhang Xubo, Sun Nan, et al. Integrated analysis of effects of organic manure application on soil microbial biomass in china[J]. Scientia Agricultura Sinica, 2018, 51(1): 119-128. (in Chinese with English abstract) [29] Borenstein Michael, Higgins Julian P T, Hedges Larry V, et al. Basics of meta-analysis: I2 is not an absolute measure of heterogeneity[J]. Research Synthesis Methods, 2017, 8(1): 5-18. [30] 朱利群,王春杰,杨曼君,等. 施肥对长江中下游稻田温室气体排放的影响—基于Meta分析[J]. 资源科学,2017,39(1):105-115.Zhu Liqun, Wang Chunjie, Yang Manjun, et al. Effects of fertilization on greenhouse gas emissions from paddy fields in the middle and lower reaches of Yangtze river based on meta-analysis[J]. Resources Science, 2017, 39(1): 105-115. (in Chinese with English abstract) [31] 银敏华,李援农,申胜龙,等. 中国可降解膜覆盖对玉米产量效应的Meta分析[J]. 农业工程学报,2017,33(19):1-9.Yin Minhua, Li Yuannong, Shen Shenglong, et al. Meta analysis of the effect of degradable film mulching on maize yield in china[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2017, 33(19): 1-9. (in Chinese with English abstract) [32] 郑侃,何进,李洪文,等. 中国北方地区深松对小麦玉米产量影响的Meta分析[J]. 农业工程学报,2015,31(22):7-15.Zheng Kan, He Jin, Li Hongwen, et al. Effects of subsoiling on wheat and maize yield in northern china in meta analysis[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2015, 31(22): 7-15. (in Chinese with English abstract) [33] 张冉,赵鑫,濮超,等. 中国农田秸秆还田土壤N2O排放及其影响因素的Meta分析[J]. 农业工程学报,2015,31(22):1-6.Zhang Ran, Zhao Xin, Pu Chao, et al. Soil N2O emission and its influencing factors in straw returning field in china in meta analysis[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2015, 31(22): 1-6. (in Chinese with English abstract) [34] Michael Borenstein, Larry V Hedges, Julian P T Higgins, et al. Introduction to Meta-Analysis[M]. Chichester: John Wiley, 2009: 20. [35] 张鹏鹏. 秸秆管理和施肥措施对绿洲农田土壤碳库及碳循环影响的研究[D]. 石河子:石河子大学,2017.Zhang Pengpeng. Effect of Straw Management and Fertilization on Soil Carbon Storage and Carbon Cycle in Oasis Farmland[D]. Shihezi: Shihezi University, 2017. (in Chinese with English abstract) [36] 田康,赵永存,刑喆,等. 中国保护性耕作农田土壤有机碳变化速率研究—基于长期试验点的Meta分析[J]. 土壤学报,2013,50(3):433-440.Tian Kang, Zhao Yongcun, Xing Zhe, et al. A meta-analysis of long-term experiment data for characterizing the topsoil organic carbon changes under different conservation tillage in cropland of china[J]. Acta Pedologica Sinica, 2013, 50(3): 433-440. (in Chinese with English abstract) [37] Meng Qingfeng, Hou Peng, Wu Liang, et al. Understanding production potentials and yield gaps in intensive maize production in china[J]. Field Crops Research, 2013, 143(3): 91-97. [38] Burda Brittany U, O'Connor Elizabeth A, Webber Elizabeth M, et al. Estimating data from figures with a web-based program: Considerations for a systematic review[J]. Research Synthesis Methods, 2017, 8(3): 258-262. [39] Gordon A Fox, Simoneta Negrete-Yankelevich, Vinicio J Sosa. Ecological Statistics: Contemporary Theory and Application[M]. Oxford: Oxford University Press, 2015: 40. [40] Nicole L Kinlock, Lisa Prowant, Emily M Herstoff, et al. Explaining global variation in the latitudinal diversity gradient: meta-analysis confirms known patterns and uncovers new ones[J]. Global Ecology and Biogeography, 2017, 4(1): 125-128. [41] Borenstein Michael, Hedges Larry V, Julian P T Higgins, et al. A basic introduction to fixed-effect and random-effects models for meta-analysis[J]. Research Synthesis Methods, 2010, 1(2): 97-111. [42] Zhang Haiyang, Lv Xiaotao, Hartmann Henrik, et al. Foliar nutrient resorption differs between arbuscular mycorrhizal and ectomycorrhizal trees at local and global scales[J]. Global Ecology and Biogeography, 2018, 27(4): 1-7. [43] Wolfgang Viechtbauer. Conducting meta-analyses in R with the metafor package[J]. Journal of Statistical Software, 2010, 36: 1-48. [44] 张瑞,张贵龙,姬艳艳,等. 不同施肥措施对土壤活性有机碳的影响[J]. 环境科学,2013,34(1):277-282.Zhang Rui, Zhang Guilong, Ji Yanyan, et al. Effects of different fertilizer application on soil active organic carbon[J]. Environmental Science, 2013, 34(1): 277-282. (in Chinese with English abstract) [45] 王利辉. 不同来源有机肥及其配合施用对土壤性质的影响[D]. 长春:吉林农业大学,2007.Wang Lihui. Effects of Organic Fertilizers from Different Sources and Their Combined Application on Soil Properties[D]. Changchun: Jilin Agricultural University, 2007. (in Chinese with English abstract) [46] 胡诚,曹志平,罗艳蕊,等. 长期施用生物有机肥对土壤肥力及微生物生物量碳的影响[J]. 中国生态农业学报,2007,15(3):48-51.Hu Cheng, Cao Zhiping, Luo Yanrui, et al. Effects of long-term application of bio-organic fertilizers on soil fertility and microbial biomass carbon[J]. Chinese Journal of Eco-Agriculture, 2007, 15(3): 48-51. (in Chinese with English abstract) [47] 臧逸飞. 长期不同轮作施肥土壤微生物学特性研究及生物肥力评价[D]. 杨凌:西北农林科技大学,2016.Zang Yifei. Soil Microbiological Characteristics and Biological Fertility Evaluation under Different Long-term Rotation Fertilization[D]. Yangling: Northwest A&F University, 2016. (in Chinese with English abstract) [48] 朱新玉,董志新,况福虹,等. 长期施肥对紫色土农田土壤动物群落的影响[J]. 生态学报, 2013,33(2) : 464-474.Zhu Xinyu, Dong Zhixin, Kuang Fuhong, et al. Effects of fertilization regimes on soil faunal communities in cropland of purple soil, China[J]. Acta Ecologica Sinica, 2013, 33(2): 464-474. (in Chinese with English abstract) [49] 王亚飞. 不同畜禽粪便堆肥过程中可培养微生物数量及腐殖质含量和酶活性的变化[D]. 兰州:甘肃农业大学,2016.Wang Yafei. Changes of Culturable Microorganisms, Humus Content and Enzyme Activities in Composting of Four Kinds of Livestock Dung[D]. Lanzhou: Gansu Agricultural University, 2016. (in Chinese with English abstract) [50] 梁斌,周建斌,杨学云,等. 长期施肥对土壤微生物量碳、氮及矿质氮含量动态变化的影响[J]. 植物营养与肥料学报,2010,16(2):321-326.Liang Bin, Zhou Jianbin, Yang Xueyun, et al. Changes of microbial biomass carbon and nitrogen, and mineral nitrogen after a long-term different fertilization[J]. Journal of Plant Nutrition and Fertilizers, 2010, 16(2): 321-326. (in Chinese with English abstract) [51] 王建林,钟志明,王忠红,等. 青藏高原高寒草原生态系统土壤碳氮比的分布特征[J]. 生态学报,2014,34(22):6678-6691.Wang Jianlin, Zhong Zhiming, Wang Zhonghong, et al. Soil C/N distribution characteristics of alpine steppe ecosystem in Qinhai-Tibetan Plateau[J]. Acta Ecologica Sinica, 2014, 34(22): 6678-6691. (in Chinese with English abstract) [52] 赵兵. 有机肥生产使用手册[M]. 北京:金盾出版社,2014:23-50. [53] 阎佩云. 黄土旱塬旱作玉米农田不同栽培模式温室气体排放特征及影响因素[D]. 杨凌:西北农林科技大学,2013.Yan Peiyun. Characteristics and Influencing Factors of Greenhouse Gas Emissions from Different Cultivation Models of Maize Farmland in Dryland of Loess Plateau[D]. Yangling: Northwest A&F University, 2013. (in Chinese with English abstract) [54] 朱新萍,贾宏涛,周建勤,等. 降雨对干旱半干旱区湿地和农田土壤CO2短期释放的影响[J]. 农业资源与环境学报,2017,34(1): 54-58.Zhu Xinping, Jia Hongtao, Zhou Jianqin, et al. Effects of rainfall on short-term release of CO2 from wetland and farmland soils in arid and semi-arid areas[J]. Journal of Agricultural Resources and Environment, 2017, 34(1): 54-58. (in Chinese with English abstract) [55] 张俊丽. 耕作和施氮措施下旱作夏玉米田土壤呼吸与土壤碳平衡研究[D]. 杨凌:西北农林科技大学,2014.Zhang Junli. Soil Respiration and Soil Carbon Balance in Rainfed Summer Maize Field under Tillage and Nitrogen Application[D]. Yangling: Northwest A&F University, 2014. (in Chinese with English abstract) [56] 徐咏文,段萍,罗志华. 浅析中国土壤分类的发生与现状[J]. 安徽农业科学,2005,33(10):225-226.Xu Yongwen, Duan Ping, Luo Zhihua. Analysis on the occurrence and current situation of soil classification in china[J]. Journal of Anhui Agricultural Sciences, 2005, 33(10): 225-226. (in Chinese with English abstract) [57] Burton A J, Pregitzer K S, Crawford J N, et al. Simulated chronic NO3- deposition reduces soil respiration in northern hardwood forests[J]. Global Ecology and Biology, 2004, 10(7): 1080-1091. [58] 熊正琴,张晓旭. 氮肥高效施用在低碳农业中的关键作用[J]. 植物营养与肥料学报,2017,23(6):1433-1440.Xiong Zhengqin, Zhang Xiaoxu. Key role of efficient nitrogen application in low carbon agriculture[J]. Journal of Plant Nutrition and Fertilizer, 2017, 23(6): 1433-1440. (in Chinese with English abstract) [59] Liu Shuwei, Ji Cheng, Wang Cong, et al. Climatic role of terrestrial ecosystem under elevated CO2: A bottom-up greenhouse gases budget[J]. Ecology Letters, 2018, 21(1): 1108-1118.

相关知识

有机肥化肥配施对华北高产农田土壤温室气体排放的影响
旱地土壤温室气体排放影响因子及减排增汇措施分析
农田土壤呼吸对大气CO2浓度升高的响应
施肥对农田温室气体排放的影响研究
秸秆不同还田模式对玉米田温室气体排放和碳固定的影响
不同有机肥替代比例对橘园土壤及果实品质影响研究
有机肥和化肥长期施用对土壤活性有机氮组分及酶活性的影响 Long
有机肥资源利用现状调查与施用有机肥对土壤环境的影响
秸秆还田与氮肥配施对中南地区稻田土壤固碳和温室气体排放的影响
土壤孔隙特征对氧化亚氮排放和硝态氮释放的影响

网址: Meta分析有机肥施用对中国北方农田土壤CO2排放的影响 https://www.huajiangbk.com/newsview773377.html

所属分类:花卉
上一篇: 施用有机无机复混肥对盐碱地紫花苜
下一篇: 有机肥对镉胁迫下不同类型水稻生长

推荐分享