| [1]Cheng X,Zhang L,Zhao C,et al.Spatial distribution and driving
factors of soil selenium on the Leizhou Peninsula,southern China
[J].Environmental Geochemistry and Health,2025,47 (2):
39-48.
[2]Shi Z,Pan P,Feng Y,et al.Environmental water chemistry and
possible correlation with Kaschin -Beck Disease KBD in
northwestern Sichuan,China [J).Environment Intemational,
2017,99(1):282-292.
[3]Tan J A,Zhu W,Wang W,et al.Selenium in soil and endemic
diseases in China [J].Science of The Total Environment,2002,
284(1-3):227-235.
[4]Pang Y,He J,Niu X,et al.Enrichment mechanisms of selenium
in topsoil and subsoil of alluvial and lacustrine basins in Northeast
China [J].Environmental Pollution,2025,384 (1):126-141.
[5]Liu H,Wang X,Zhang B,et al.Concentration and distribution
of selenium in soils of mainland China,and implications for human
health J].Journal of Geochemical Exploration,2021,220
(1):1054-1066.
[6]Navarro-Alarcon M,Cabrera-Vique C.Selenium in food and the
human body:a review [J].Science of The Total Environment,
2008,400(1-3):115-141.
[7]Chen J-P,Qin J,Xing Y,et al.Exogenous jasmonic acid and
salicylic acid enhance selenium uptake and mitigate cadmium
accumulation in pak choi Brassica chinensis L.)grown in
selenium-rich,high -cadmium soil J].Frontiers in Plant
Science,2025,16(1):1519-1528.
[8]Yang J,Li K,Gao J,et al.Integrated assessment and agricultural
planning in selenium-rich hilly soils:A case study on land use,
heavy metal contamination,and nutrient element distribution [J].
L.and,2024,13(11):1798-1806.
[9]Zhang J,Ge W,Xing C,et al.Ecological risk assessment of
potentially toxic elements in selenium-rich soil with different land-
use types [J ]Environmental Geochemistry and Health,2023,
45(7):5323-5341.
[10]Guo S,Chen X,Lin Z,et al.Spatial Distribution and the Key
Impact Factors of Soil Selenium of Cultivated Land in Lianyuan
Ciy,Chin[J].Agriculture,2024,14(5):686-694.[11]Zhang L,Yu T,Zheng G,et al.Using machine learning to
predict selenium content in crops:Implications for soil health and
agricultural land utilization in longevity regions [J].Science of
The Total Environment,2025,964 (1):178-186.
12]Dai Z-H,Zeng J-Y,Zhang C,et al.Migration characteristics
and bioaccessibility of selenium in soil -crop -human system
depending on parent rocks and soil types [J ]Science of The
Total Environment,2025,980(1):179-187.
[13]杨晋炜,刘强,任衍斌,等.江苏海安里下河地区富硒土壤
分布特征及成因[J].地质通报,2025,44(01):173-184.
[14]Zhang H,Ouyang Z,Li M,et al.Spatial distribution and main
drivers of soil selenium in Taihu Lake Basin,Southeast China
[J].Joumal of Hazardous Materials,2024,465 (1):133-141.
[15]Pan S-F,Ji X-H,Xie Y-H,et al.Influence of soil properties
on cadmium accumulation in vegetables:thresholds,prediction
and pathway models based on big data[J].Environmental
Pollution,2022,304(1):119-127.
[16]Bo B,Zhao R-B,Wang Y,et al.Effect of crop type shift on
soil C:N P stoichiometry in a typical Yellow River irrigateddistrict [J].Scientific Reports,2025,15 (1):301-336.
[17]全国国土资源标准化技术委员会(SC/TC93).土地质量地
球化学评价规范:DZ/T0295-2016[S].地质出版社,2016.
[18 Ren H,Shang Y,Zhang S.Measuring the spatiotemporal
variations of vegetation net primary productivity in Inner Mongolia
using spatial autocorrelation J].Ecological Indicators,2020,
112(1):106-118.
[19 Hu X,Ma C,Huang P,et al.Ecological vulnerability
assessment based on AHP-PSR method and analysis of its single
parameter sensitivity and spatial autocorrelation for ecological
protection-A case of Weifang City,China J].Ecological
Indicators,2021,125(1):107-115.
[20]Lee S,Na S,Rogers O G,et al.Quantifying surface morphology
of manufactured activated carbon and the waste coffee grounds
using the Getis-Ord-Gi statistic and Ripley's K function [J].
Scientific Reports,2021,11 (1):75-83.
[21]Kumar S,Parida B R.Hydroponic farming hotspot analysis using
the Getis-Ord Gi'statistic and high-resolution satellite data of
Majuli Island,India [J ]Remote Sensing Letters,2021,12
(4):408-418.
[22]Al-Kindi K M,Alkharusi A,Alshukaili D,et al.Spatiotemporal
assessment of COVID-19 spread over Oman using GIS techniques
[J].Earth Systems and Environment,2020,4 (4):797-811.
[23]崔晓丹,华明,黄顺生,等。江苏典型富硒区表层土壤硒空
间分布及影响因素分析[J].Joumal of Agro-Environment
Science,2023,42(11):23-57.
[24]奚小环,侯青叶,杨忠芳,等。基于大数据的中国土壤背景
值与基准值及其变化特征研究[J].物探与化探,2021,45
(05):66-70.
[25]全国自然资源与国土空间规划标准化技术委员会(SAC/T℃
93).天然富硒土地划定与标识:DZ/T0380-2021[S].地质
出版社,2021.[26]Pan Z,Feng Y,Wang M,et al.Geochemical characteristics of
soil selenium and evaluation of selenium-rich land resources in
Guiyang area [J].Frontiers in Geochemistry,2023,1 (1):
1094-4107.
[27]Jiang K,Qi H-W,Hu R -Z.Element mobilization and
redistribution under extreme tropical weathering of basalts from the
Hainan Island,South China [J].Journal of Asian Earth
Sciences,2018,158(1):80-102.
[28]Wang X,Wang Y,Xu M,et al.Temporal and spatial variations
of soil Se in China over the past half century and its influencing
factors [J].Environmental Geochemistry and Health,2025,47
(2):55-65.
[29 Farooq M R,Zhang Z,Yuan L,et al.Influencing factors on
bioavailability and spatial distribution of soil selenium in dry semi-
arid area [J].Agriculture,2023,13 (3):576-884.
[30]Wan H-S,Zhang W-C,Wu W,et al.The controlling factors of
soil selenium content in a selenium-deficient area in Southwest
China[J].Agronomy,2023,13(4):1031-1039. |