Asset Details
MbrlCatalogueTitleDetail
Do you wish to reserve the book?
Estimation of Coastal Wetland Soil Organic Carbon Content in Western Bohai Bay Using Remote Sensing, Climate, and Topographic Data
by
Li, Fuping
, Song, Jingru
, Tian, Di
, Kou, Caiyao
, Liu, Mingyue
, Lu, Chunyan
, Zhang, Yongbin
, Song, Tanglei
, Li, Xiang
, Man, Weidong
, Zhang, Qingwen
in
Aquatic ecosystems
/ Artificial intelligence
/ Carbon content
/ Carbon cycle
/ Carbon neutrality
/ Carbon sequestration
/ climate
/ Climatic data
/ Coasts
/ Comparative analysis
/ CW-SOC content inversion
/ Deforestation
/ Ecosystem conservation
/ ecosystems
/ Environmental aspects
/ Environmental protection
/ extreme gradient boosting
/ gradient boosting machine
/ Machine learning
/ meteorological data
/ Model accuracy
/ model validation
/ Organic carbon
/ Organic soils
/ Precipitation
/ prediction
/ Predictions
/ Radar imaging
/ random forest
/ Remote sensing
/ Sentinel-1A
/ Sentinel-2A
/ soil organic carbon
/ Soils
/ Spatial distribution
/ Synthetic aperture radar
/ Testing
/ Topography
/ Vegetation
/ wetland soils
/ Wetlands
2023
Hey, we have placed the reservation for you!
By the way, why not check out events that you can attend while you pick your title.
You are currently in the queue to collect this book. You will be notified once it is your turn to collect the book.
Oops! Something went wrong.
Looks like we were not able to place the reservation. Kindly try again later.
Are you sure you want to remove the book from the shelf?
Estimation of Coastal Wetland Soil Organic Carbon Content in Western Bohai Bay Using Remote Sensing, Climate, and Topographic Data
by
Li, Fuping
, Song, Jingru
, Tian, Di
, Kou, Caiyao
, Liu, Mingyue
, Lu, Chunyan
, Zhang, Yongbin
, Song, Tanglei
, Li, Xiang
, Man, Weidong
, Zhang, Qingwen
in
Aquatic ecosystems
/ Artificial intelligence
/ Carbon content
/ Carbon cycle
/ Carbon neutrality
/ Carbon sequestration
/ climate
/ Climatic data
/ Coasts
/ Comparative analysis
/ CW-SOC content inversion
/ Deforestation
/ Ecosystem conservation
/ ecosystems
/ Environmental aspects
/ Environmental protection
/ extreme gradient boosting
/ gradient boosting machine
/ Machine learning
/ meteorological data
/ Model accuracy
/ model validation
/ Organic carbon
/ Organic soils
/ Precipitation
/ prediction
/ Predictions
/ Radar imaging
/ random forest
/ Remote sensing
/ Sentinel-1A
/ Sentinel-2A
/ soil organic carbon
/ Soils
/ Spatial distribution
/ Synthetic aperture radar
/ Testing
/ Topography
/ Vegetation
/ wetland soils
/ Wetlands
2023
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Estimation of Coastal Wetland Soil Organic Carbon Content in Western Bohai Bay Using Remote Sensing, Climate, and Topographic Data
by
Li, Fuping
, Song, Jingru
, Tian, Di
, Kou, Caiyao
, Liu, Mingyue
, Lu, Chunyan
, Zhang, Yongbin
, Song, Tanglei
, Li, Xiang
, Man, Weidong
, Zhang, Qingwen
in
Aquatic ecosystems
/ Artificial intelligence
/ Carbon content
/ Carbon cycle
/ Carbon neutrality
/ Carbon sequestration
/ climate
/ Climatic data
/ Coasts
/ Comparative analysis
/ CW-SOC content inversion
/ Deforestation
/ Ecosystem conservation
/ ecosystems
/ Environmental aspects
/ Environmental protection
/ extreme gradient boosting
/ gradient boosting machine
/ Machine learning
/ meteorological data
/ Model accuracy
/ model validation
/ Organic carbon
/ Organic soils
/ Precipitation
/ prediction
/ Predictions
/ Radar imaging
/ random forest
/ Remote sensing
/ Sentinel-1A
/ Sentinel-2A
/ soil organic carbon
/ Soils
/ Spatial distribution
/ Synthetic aperture radar
/ Testing
/ Topography
/ Vegetation
/ wetland soils
/ Wetlands
2023
Please be aware that the book you have requested cannot be checked out. If you would like to checkout this book, you can reserve another copy
We have requested the book for you!
Your request is successful and it will be processed during the Library working hours. Please check the status of your request in My Requests.
Oops! Something went wrong.
Looks like we were not able to place your request. Kindly try again later.
Estimation of Coastal Wetland Soil Organic Carbon Content in Western Bohai Bay Using Remote Sensing, Climate, and Topographic Data
Journal Article
Estimation of Coastal Wetland Soil Organic Carbon Content in Western Bohai Bay Using Remote Sensing, Climate, and Topographic Data
2023
Request Book From Autostore
and Choose the Collection Method
Overview
Coastal wetland soil organic carbon (CW-SOC) is crucial for wetland ecosystem conservation and carbon cycling. The accurate prediction of CW-SOC content is significant for soil carbon sequestration. This study, which employed three machine learning (ML) methods, including random forest (RF), gradient boosting machine (GBM), and extreme gradient boosting (XGBoost), aimed to estimate CW-SOC content using 98 soil samples, SAR images, optical images, and climate and topographic data. Three statistical metrics and leave-one-out cross-validation were used to evaluate model performance. Optimal models using different ML methods were applied to predict the spatial distribution of CW-SOC content. The results showed the following: (1) The models built using optical images had higher predictive accuracy than models built using synthetic aperture radar (SAR) images. The model that combined SAR images, optical images, and climate data demonstrated the highest prediction accuracy. Compared to the model using only optical images and SAR images, the prediction accuracy was improved by 0.063 and 0.115, respectively. (2) Regardless of the combination of predictive variables, the XGBoost method achieved higher prediction accuracy than the RF and GBM methods. (3) Optical images were the main explanatory variables for predicting CW-SOC content, explaining more than 65% of the variability. (4) The CW-SOC content predicted by the three ML methods showed similar spatial distribution characteristics. The central part of the study area had higher CW-SOC content, while the southern and northern regions had lower levels. This study accurately predicted the spatial distribution of CW-SOC content, providing data support for ecological environmental protection and carbon neutrality of coastal wetlands.
This website uses cookies to ensure you get the best experience on our website.