Increasing accuracy of lake nutrient predictions in thousands of lakes by leveraging water clarity data

Aquatic scientists require robust, accurate information about nutrient concentrations and indicators of algal biomass in unsampled lakes in order to understand and predict the effects of global climate and land‐use change. Historically, lake and landscape characteristics have been used as predictor...

Celý popis

Uložené v:
Podrobná bibliografia
Vydané v:Limnology and oceanography letters Ročník 5; číslo 2; s. 228 - 235
Hlavní autori: Wagner, Tyler, Lottig, Noah R., Bartley, Meridith L., Hanks, Ephraim M., Schliep, Erin M., Wikle, Nathan B., King, Katelyn B. S., McCullough, Ian, Stachelek, Joseph, Cheruvelil, Kendra S., Filstrup, Christopher T., Lapierre, Jean Francois, Liu, Boyang, Soranno, Patricia A., Tan, Pang‐Ning, Wang, Qi, Webster, Katherine, Zhou, Jiayu
Médium: Journal Article
Jazyk:English
Vydavateľské údaje: Hoboken, USA John Wiley & Sons, Inc 01.04.2020
Wiley
Predmet:
ISSN:2378-2242, 2378-2242
On-line prístup:Získať plný text
Tagy: Pridať tag
Žiadne tagy, Buďte prvý, kto otaguje tento záznam!
Popis
Shrnutí:Aquatic scientists require robust, accurate information about nutrient concentrations and indicators of algal biomass in unsampled lakes in order to understand and predict the effects of global climate and land‐use change. Historically, lake and landscape characteristics have been used as predictor variables in regression models to generate nutrient predictions, but often with significant uncertainty. An alternative approach to improve predictions is to leverage the observed relationship between water clarity and nutrients, which is possible because water clarity is more commonly measured than lake nutrients. We used a joint‐nutrient model that conditioned predictions of total phosphorus, nitrogen, and chlorophyll a on observed water clarity. Our results demonstrated substantial reductions (8–27%; median = 23%) in prediction error when conditioning on water clarity. These models will provide new opportunities for predicting nutrient concentrations of unsampled lakes across broad spatial scales with reduced uncertainty.
Bibliografia:ObjectType-Article-1
SourceType-Scholarly Journals-1
ObjectType-Feature-2
content type line 14
ISSN:2378-2242
2378-2242
DOI:10.1002/lol2.10134