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Environmental Sciences

D-Index
35
Citations
8835
World Ranking
9221
National Ranking
3309

Overview

Michelle L. Haddix is affiliated with Colorado State University in the United States. Their research primarily focuses on various aspects of soil science, environmental science, and agricultural and biological sciences. The scientist's work extensively covers the dynamics of soil carbon and nitrogen, wetlands ecology, and soil nutrient processes.

The main fields of study include:

  • Agricultural and Biological Sciences
  • Environmental Science

Subfields of specialization consist of:

  • Soil Science
  • Ecology
  • Plant Science
  • Environmental Chemistry
  • Environmental Engineering

Key topics addressed in their research are:

  • Soil Carbon and Nitrogen Dynamics
  • Peatlands and Wetlands Ecology
  • Soil and Water Nutrient Dynamics
  • Soil Geostatistics and Mapping
  • Plant nutrient uptake and metabolism
  • Legume Nitrogen Fixing Symbiosis
  • Climate change and permafrost

Notable recent publications include:

  • "Different climate sensitivity of particulate and mineral-associated soil organic matter", 2021, Nature Geoscience
  • "Climate, carbon content, and soil texture control the independent formation and persistence of particulate and mineral-associated organic matter in soil", 2020, Geoderma
  • "The role of plant input physical-chemical properties, and microbial and soil chemical diversity on the formation of particulate and mineral-associated organic matter", 2022, Soil Biology and Biochemistry
  • "Contrasting properties of soil organic matter fractions isolated by different physical separation methodologies", 2024, Geoderma
  • "Divergent belowground carbon allocation patterns of winter wheat shape rhizosphere microbial communities and nitrogen cycling activities", 2021, Soil Biology and Biochemistry

Frequent publication venues for their work include:

  • Geoderma
  • Soil Biology and Biochemistry
  • Nature Geoscience
  • Zenodo (CERN European Organization for Nuclear Research)
  • Frontiers in Environmental Science

Frequent co-authors collaborating with this scientist are:

  • M. Francesca Cotrufo
  • Jocelyn M. Lavallee
  • Meagan E. Schipanski
  • Emanuele Lugato
  • Sam J. Leuthold

Best Publications

  • Formation of soil organic matter via biochemical and physical pathways of litter mass loss

    M. Francesca Cotrufo;Jennifer L. Soong;Andrew J. Horton;Eleanor E. Campbell

  • Soil carbon storage informed by particulate and mineral-associated organic matter

    M. Francesca Cotrufo;Maria Giovanna Ranalli;Michelle L. Haddix;Johan Six

  • Isolating organic carbon fractions with varying turnover rates in temperate agricultural soils : a comprehensive method comparison

    Christopher Poeplau;Axel Don;Johan Six;Michael Kaiser;Michael Kaiser

  • Sensitivity of organic matter decomposition to warming varies with its quality

    Richard T. Conant;Rhae A. Drijber;Michelle L. Haddix;William J. Parton

  • Different climate sensitivity of particulate and mineral-associated soil organic matter

    Emanuele Lugato;Jocelyn M. Lavallee;Michelle L. Haddix;Panos Panagos

  • Soil greenhouse gas fluxes and global warming potential in four high‐yielding maize systems

    M. A. A. Adviento-Borbe;M. L. Haddix;D. L. Binder;D. T. Walters

  • Experimental warming shows that decomposition temperature sensitivity increases with soil organic matter recalcitrance

    Richard T. Conant;J. Megan Steinweg;Michelle L. Haddix;Eldor A. Paul

  • Biological, chemical and thermal indices of soil organic matter stability in four grassland soils

    Alain F. Plante;José M. Fernández;Michelle L. Haddix;J. Megan Steinweg

  • The role of plant input physical-chemical properties, and microbial and soil chemical diversity on the formation of particulate and mineral-associated organic matter

    Unknown

  • Climate, carbon content, and soil texture control the independent formation and persistence of particulate and mineral-associated organic matter in soil

    Michelle L. Haddix;Edward G. Gregorich;Bobbi L. Helgason;Henry Janzen

  • Fine-resolution mapping of soil organic carbon based on multivariate secondary data

    Gregorio C. Simbahan;Achim Dobermann;Pierre Goovaerts;Jianli Ping

  • Litter decomposition in grasslands of Central North America (US Great Plains).

    Eliana E. Bontti;Joseph P. Decant;Seth M. Munson;Mark A. Gathany

  • Dual, differential isotope labeling shows the preferential movement of labile plant constituents into mineral-bonded soil organic matter.

    Michelle L. Haddix;Eldor A. Paul;M. Francesca Cotrufo

  • Diffuse-Reflectance Fourier-Transform Mid-Infrared Spectroscopy as a Method of Characterizing Changes in Soil Organic Matter

    Francisco Calderón;Michelle Haddix;Richard Conant;Kimberly Magrini-Bair

  • Litter chemistry changes more rapidly when decomposed at home but converges during decomposition–transformation

    Matthew D. Wallenstein;Michelle L. Haddix;Edward Ayres;Edward Ayres;Heidi Steltzer

  • The role of soil characteristics on temperature sensitivity of soil organic matter

    Michelle L. Haddix;Alain F. Plante;Richard T. Conant;Johan Six

  • Decomposition temperature sensitivity of isolated soil organic matter fractions

    Alain F. Plante;Richard T. Conant;Jenny Carlson;Rebecca Greenwood

  • A litter-slurry technique elucidates the key role of enzyme production and microbial dynamics in temperature sensitivity of organic matter decomposition

    Matthew D. Wallenstein;Michelle L. Haddix;Daniel D. Lee;Richard T. Conant;Richard T. Conant

  • Accumulation of aliphatic compounds in soil with increasing mean annual temperature

    Oliva Pisani;Katherine M. Hills;Denis Courtier-Murias;Michelle L. Haddix

  • Interactions between aged biochar, fresh low molecular weight carbon and soil organic carbon after 3.5 years soil-biochar incubations

    Xinyu Jiang;Xiangping Tan;Jiong Cheng;Michelle L. Haddix

  • Experimental warming shows that decomposition temperature sensitivity increases with soil organic matter recalcitrance.

    Richard E L Paul;Richard T Conant;Michelle L Haddix;Jessica A. Plante

  • The role of soil characteristics on temperature sensitivity of soil organic matter

    Michelle L Haddix;Alain F. Plante;Richard T. Conant;Eldor A. Paul

Frequent Co-Authors

Richard T. Conant
Richard T. Conant Colorado State University
Eldor A. Paul
Eldor A. Paul Colorado State University
M. Francesca Cotrufo
M. Francesca Cotrufo Colorado State University
Johan Six
Johan Six ETH Zurich
Alain F. Plante
Alain F. Plante University of Pennsylvania
Matthew D. Wallenstein
Matthew D. Wallenstein Colorado State University
Diana H. Wall
Diana H. Wall Colorado State University
Emanuele Lugato
Emanuele Lugato University of Padua
Rhae A. Drijber
Rhae A. Drijber University of Nebraska–Lincoln
William J. Parton
William J. Parton Colorado State University

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