Biochemistry of plant litter types drives differentiation into particulate and mineral-associated soil organic matter and determines the magnitude of priming effect

Research output: Contribution to conferenceConference abstract for conferenceResearch

Standard

Biochemistry of plant litter types drives differentiation into particulate and mineral-associated soil organic matter and determines the magnitude of priming effect. / Almeida, Luís Fernando Januário; Hurtarte, Luis Carlos Colocho; Teixeira, Pedro Paulo; Inagaki, Thiago M.; Souza, Ivan Francisco de; Silva, Ivo Ribeiro da; Mueller, Carsten W.

2020. Abstract from EGU General Assembly 2020.

Research output: Contribution to conferenceConference abstract for conferenceResearch

Harvard

Almeida, LFJ, Hurtarte, LCC, Teixeira, PP, Inagaki, TM, Souza, IFD, Silva, IRD & Mueller, CW 2020, 'Biochemistry of plant litter types drives differentiation into particulate and mineral-associated soil organic matter and determines the magnitude of priming effect', EGU General Assembly 2020, 04/05/2020 - 08/05/2020. https://doi.org/10.5194/egusphere-egu2020-11168

APA

Almeida, L. F. J., Hurtarte, L. C. C., Teixeira, P. P., Inagaki, T. M., Souza, I. F. D., Silva, I. R. D., & Mueller, C. W. (2020). Biochemistry of plant litter types drives differentiation into particulate and mineral-associated soil organic matter and determines the magnitude of priming effect. Abstract from EGU General Assembly 2020. https://doi.org/10.5194/egusphere-egu2020-11168

Vancouver

Almeida LFJ, Hurtarte LCC, Teixeira PP, Inagaki TM, Souza IFD, Silva IRD et al. Biochemistry of plant litter types drives differentiation into particulate and mineral-associated soil organic matter and determines the magnitude of priming effect. 2020. Abstract from EGU General Assembly 2020. https://doi.org/10.5194/egusphere-egu2020-11168

Author

Almeida, Luís Fernando Januário ; Hurtarte, Luis Carlos Colocho ; Teixeira, Pedro Paulo ; Inagaki, Thiago M. ; Souza, Ivan Francisco de ; Silva, Ivo Ribeiro da ; Mueller, Carsten W. / Biochemistry of plant litter types drives differentiation into particulate and mineral-associated soil organic matter and determines the magnitude of priming effect. Abstract from EGU General Assembly 2020.2 p.

Bibtex

@conference{23d6bd738fef4283991eff0f14643f65,
title = "Biochemistry of plant litter types drives differentiation into particulate and mineral-associated soil organic matter and determines the magnitude of priming effect",
author = "Almeida, {Lu{\'i}s Fernando Janu{\'a}rio} and Hurtarte, {Luis Carlos Colocho} and Teixeira, {Pedro Paulo} and Inagaki, {Thiago M.} and Souza, {Ivan Francisco de} and Silva, {Ivo Ribeiro da} and Mueller, {Carsten W.}",
year = "2020",
month = mar,
day = "23",
doi = "10.5194/egusphere-egu2020-11168",
language = "English",
note = "EGU General Assembly 2020 : Online ; Conference date: 04-05-2020 Through 08-05-2020",
url = "https://www.egu2020.eu/",

}

RIS

TY - ABST

T1 - Biochemistry of plant litter types drives differentiation into particulate and mineral-associated soil organic matter and determines the magnitude of priming effect

AU - Almeida, Luís Fernando Januário

AU - Hurtarte, Luis Carlos Colocho

AU - Teixeira, Pedro Paulo

AU - Inagaki, Thiago M.

AU - Souza, Ivan Francisco de

AU - Silva, Ivo Ribeiro da

AU - Mueller, Carsten W.

PY - 2020/3/23

Y1 - 2020/3/23

U2 - 10.5194/egusphere-egu2020-11168

DO - 10.5194/egusphere-egu2020-11168

M3 - Conference abstract for conference

T2 - EGU General Assembly 2020

Y2 - 4 May 2020 through 8 May 2020

ER -

ID: 283135906