
Chinese Agricultural Science Bulletin ›› 2026, Vol. 42 ›› Issue (10): 171-178.doi: 10.11924/j.issn.1000-6850.casb2025-0778
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GUO Jialong1(
), HU Feng2, YANG Zhangqing2, ZHANG Jie2, ZANG Hezang2, CHANG Baofang1, LI Guoqiang2,3(
), XIN Yinping4
Received:2025-09-09
Revised:2026-04-11
Online:2026-05-25
Published:2026-05-27
CLC Number:
GUO Jialong, HU Feng, YANG Zhangqing, ZHANG Jie, ZANG Hezang, CHANG Baofang, LI Guoqiang, XIN Yinping. Research Progress on Soil Nutrient Detection Sensors Based on Bibliometrics[J]. Chinese Agricultural Science Bulletin, 2026, 42(10): 171-178.
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URL: https://www.casb.org.cn/EN/10.11924/j.issn.1000-6850.casb2025-0778
| 排名 | WoS学科类别 | 发文量/篇 | 占比/% |
|---|---|---|---|
| 1 | Environmental Sciences(环境科学) | 107 | 17.89 |
| 2 | Chemistry Analytical(分析化学) | 100 | 16.72 |
| 3 | Agronomy(农学) | 74 | 12.37 |
| 4 | Plant Sciences(植物科学) | 70 | 11.70 |
| 5 | Instruments Instrumentation(仪器仪表) | 57 | 9.53 |
| 6 | Soil Science(土壤科学) | 56 | 9.36 |
| 7 | Water Resources(水资源) | 55 | 9.19 |
| 8 | Engineering Electrical Electronic(电子电气工程) | 47 | 7.85 |
| 9 | Agriculture Multidisciplinary(多学科农业) | 40 | 6.68 |
| 10 | Chemistry Multidisciplinary(多学科化学) | 35 | 5.85 |
| 排名 | WoS学科类别 | 发文量/篇 | 占比/% |
|---|---|---|---|
| 1 | Environmental Sciences(环境科学) | 107 | 17.89 |
| 2 | Chemistry Analytical(分析化学) | 100 | 16.72 |
| 3 | Agronomy(农学) | 74 | 12.37 |
| 4 | Plant Sciences(植物科学) | 70 | 11.70 |
| 5 | Instruments Instrumentation(仪器仪表) | 57 | 9.53 |
| 6 | Soil Science(土壤科学) | 56 | 9.36 |
| 7 | Water Resources(水资源) | 55 | 9.19 |
| 8 | Engineering Electrical Electronic(电子电气工程) | 47 | 7.85 |
| 9 | Agriculture Multidisciplinary(多学科农业) | 40 | 6.68 |
| 10 | Chemistry Multidisciplinary(多学科化学) | 35 | 5.85 |
| 排名 | 期刊名称 | 发文量/篇 | 篇均被引频次/次 | 2024年影响因子 |
|---|---|---|---|---|
| 1 | Sensors(《传感器》) | 23 | 14.78 | 7.7 |
| 2 | Precision agriculture(《精准农业》) | 16 | 23.25 | 6.6 |
| 3 | Agronomy (Basel)(《农学(巴塞尔)》) | 14 | 20.29 | 3.4 |
| 4 | Science of the total environment(《整体环境科学》) | 14 | 31.71 | 8.0 |
| 5 | Agricultural water management(《农业水资源管理》) | 13 | 28.15 | 6.5 |
| 6 | IEEE Sensors journal(《IEEE传感器杂志》) | 13 | 18.00 | 4.5 |
| 7 | Sensors and actuators B: Chemical(《传感器与执行器B辑:化学》) | 12 | 36.17 | 7.7 |
| 8 | Computers and electronics in agriculture(《农业计算机与电子技术》) | 11 | 22.73 | 8.9 |
| 9 | Geoderma(《土壤圈》) | 11 | 41.27 | 6.6 |
| 10 | Talanta(《塔兰塔》) | 10 | 14.40 | 6.1 |
| 排名 | 期刊名称 | 发文量/篇 | 篇均被引频次/次 | 2024年影响因子 |
|---|---|---|---|---|
| 1 | Sensors(《传感器》) | 23 | 14.78 | 7.7 |
| 2 | Precision agriculture(《精准农业》) | 16 | 23.25 | 6.6 |
| 3 | Agronomy (Basel)(《农学(巴塞尔)》) | 14 | 20.29 | 3.4 |
| 4 | Science of the total environment(《整体环境科学》) | 14 | 31.71 | 8.0 |
| 5 | Agricultural water management(《农业水资源管理》) | 13 | 28.15 | 6.5 |
| 6 | IEEE Sensors journal(《IEEE传感器杂志》) | 13 | 18.00 | 4.5 |
| 7 | Sensors and actuators B: Chemical(《传感器与执行器B辑:化学》) | 12 | 36.17 | 7.7 |
| 8 | Computers and electronics in agriculture(《农业计算机与电子技术》) | 11 | 22.73 | 8.9 |
| 9 | Geoderma(《土壤圈》) | 11 | 41.27 | 6.6 |
| 10 | Talanta(《塔兰塔》) | 10 | 14.40 | 6.1 |
| 排名 | 国家或地区 | 发文量/篇 | 占比/% | 篇均被引频次/次 |
|---|---|---|---|---|
| 1 | United States of America(美国) | 161 | 26.92 | 22.76 |
| 2 | People’s Republic of China(中国) | 92 | 15.38 | 21.15 |
| 3 | India(印度) | 78 | 13.04 | 19.55 |
| 4 | Germany(德国) | 33 | 5.51 | 26.33 |
| 5 | Spain(西班牙) | 30 | 5.01 | 32.87 |
| 6 | Canada(加拿大) | 28 | 4.68 | 17.11 |
| 7 | Brazil(巴西) | 25 | 4.18 | 20.36 |
| 8 | United Kingdom(英国) | 24 | 4.01 | 21.38 |
| 9 | South Korea(韩国) | 23 | 3.84 | 14.35 |
| 10 | Australia(澳大利亚) | 21 | 3.51 | 66.38 |
| 排名 | 国家或地区 | 发文量/篇 | 占比/% | 篇均被引频次/次 |
|---|---|---|---|---|
| 1 | United States of America(美国) | 161 | 26.92 | 22.76 |
| 2 | People’s Republic of China(中国) | 92 | 15.38 | 21.15 |
| 3 | India(印度) | 78 | 13.04 | 19.55 |
| 4 | Germany(德国) | 33 | 5.51 | 26.33 |
| 5 | Spain(西班牙) | 30 | 5.01 | 32.87 |
| 6 | Canada(加拿大) | 28 | 4.68 | 17.11 |
| 7 | Brazil(巴西) | 25 | 4.18 | 20.36 |
| 8 | United Kingdom(英国) | 24 | 4.01 | 21.38 |
| 9 | South Korea(韩国) | 23 | 3.84 | 14.35 |
| 10 | Australia(澳大利亚) | 21 | 3.51 | 66.38 |
| 排名 | 机构名称 | 发文量/篇 | 篇均被引频次/次 | 所属国家或地区 |
|---|---|---|---|---|
| 1 | United States Department of Agriculture(美国农业部) | 21 | 19.38 | 美国 |
| 2 | Chinese Academy of Sciences(中国科学院) | 18 | 24.67 | 中国 |
| 3 | State University of Florida(佛罗里达州立大学) | 18 | 22.33 | 美国 |
| 4 | Kle Inst Technol[印度理工学院(卡勒格布尔校区)] | 16 | 34.00 | 印度 |
| 5 | Iowa State University[爱荷华州立大学(总校)] | 15 | 45.13 | 美国 |
| 6 | Indian Institute of Technology(印度理工学院) | 14 | 12.36 | 印度 |
| 7 | University of Florida[佛罗里达大学(主校区)] | 14 | 21.36 | 美国 |
| 8 | Ghent University(根特大学) | 13 | 11.23 | 比利时 |
| 9 | Kle Technological University(印度卡勒格布尔理工大学) | 12 | 26.33 | 印度 |
| 10 | Turkish Academy of Sciences(土耳其科学院) | 11 | 9.45 | 土耳其 |
| 排名 | 机构名称 | 发文量/篇 | 篇均被引频次/次 | 所属国家或地区 |
|---|---|---|---|---|
| 1 | United States Department of Agriculture(美国农业部) | 21 | 19.38 | 美国 |
| 2 | Chinese Academy of Sciences(中国科学院) | 18 | 24.67 | 中国 |
| 3 | State University of Florida(佛罗里达州立大学) | 18 | 22.33 | 美国 |
| 4 | Kle Inst Technol[印度理工学院(卡勒格布尔校区)] | 16 | 34.00 | 印度 |
| 5 | Iowa State University[爱荷华州立大学(总校)] | 15 | 45.13 | 美国 |
| 6 | Indian Institute of Technology(印度理工学院) | 14 | 12.36 | 印度 |
| 7 | University of Florida[佛罗里达大学(主校区)] | 14 | 21.36 | 美国 |
| 8 | Ghent University(根特大学) | 13 | 11.23 | 比利时 |
| 9 | Kle Technological University(印度卡勒格布尔理工大学) | 12 | 26.33 | 印度 |
| 10 | Turkish Academy of Sciences(土耳其科学院) | 11 | 9.45 | 土耳其 |
| 序号 | 论文题目 | 来源期刊 | 被引次数/次 | 发表年份 |
|---|---|---|---|---|
| 1 | Root exudation of primary metabolites: Mechanisms and their roles in plant responses to environmental stimuli | Frontiers in plant science | 667 | 2019 |
| 2 | Fate of nitrogen in agriculture and environment: Agronomic, eco-physiological and molecular approaches to improve nitrogen use efficiency | Biological research | 413 | 2020 |
| 3 | Plant nitrogen assimilation and its regulation: A complex puzzle with missing pieces | Current opinion in plant biology | 339 | 2015 |
| 4 | The cbl-interacting protein kinase cipk23 regulates hak5-mediated high-affinity K+ uptake in Arabidopsis roots | Plant physiology | 232 | 2015 |
| 5 | A review of methods to improve nitrogen use efficiency in agriculture | Sustainability | 217 | 2018 |
| 6 | Black phosphorus quantum dots as the ratiometric fluorescence probe for trace mercury ion detection based on inner filter effect | Acs sensors | 179 | 2017 |
| 7 | Spectral libraries for quantitative analyses of tropical brazilian soils: Comparing vis-nir and mid-ir reflectance data | Geoderma | 169 | 2015 |
| 8 | Natural bacterial communities serve as quantitative geochemical biosensors | Mbio | 166 | 2015 |
| 9 | Nitrates in the environment: A critical review of their distribution, sensing techniques, ecological effects and remediation | Chemosphere | 160 | 2022 |
| 10 | Two decades of chemical imaging of solutes in sediments and soils- A review | Analytica chimica acta | 156 | 2015 |
| 序号 | 论文题目 | 来源期刊 | 被引次数/次 | 发表年份 |
|---|---|---|---|---|
| 1 | Root exudation of primary metabolites: Mechanisms and their roles in plant responses to environmental stimuli | Frontiers in plant science | 667 | 2019 |
| 2 | Fate of nitrogen in agriculture and environment: Agronomic, eco-physiological and molecular approaches to improve nitrogen use efficiency | Biological research | 413 | 2020 |
| 3 | Plant nitrogen assimilation and its regulation: A complex puzzle with missing pieces | Current opinion in plant biology | 339 | 2015 |
| 4 | The cbl-interacting protein kinase cipk23 regulates hak5-mediated high-affinity K+ uptake in Arabidopsis roots | Plant physiology | 232 | 2015 |
| 5 | A review of methods to improve nitrogen use efficiency in agriculture | Sustainability | 217 | 2018 |
| 6 | Black phosphorus quantum dots as the ratiometric fluorescence probe for trace mercury ion detection based on inner filter effect | Acs sensors | 179 | 2017 |
| 7 | Spectral libraries for quantitative analyses of tropical brazilian soils: Comparing vis-nir and mid-ir reflectance data | Geoderma | 169 | 2015 |
| 8 | Natural bacterial communities serve as quantitative geochemical biosensors | Mbio | 166 | 2015 |
| 9 | Nitrates in the environment: A critical review of their distribution, sensing techniques, ecological effects and remediation | Chemosphere | 160 | 2022 |
| 10 | Two decades of chemical imaging of solutes in sediments and soils- A review | Analytica chimica acta | 156 | 2015 |
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