Sophie L Nixon

Sophie L Nixon

Manchester University

H-index: 10

North America-United States

About Sophie L Nixon

Sophie L Nixon, With an exceptional h-index of 10 and a recent h-index of 9 (since 2020), a distinguished researcher at Manchester University, specializes in the field of Environmental Microbiology, Microbial Ecology, Geochemistry, Biotechnology.

His recent articles reflect a diverse array of research interests and contributions to the field:

Ammonium-Enhanced Arsenic Mobilization from Aquifer Sediments

Microbial communities in freshwater used for hydraulic fracturing are unable to withstand the high temperatures and pressures characteristic of fractured shales

New microbiological insights from the Bowland shale highlight heterogeneity of the hydraulically fractured shale microbiome

Linking microbial community composition to arsenic mobilization in the western Hetao Basin: Potential importance of ammonium as an electron donor

67 Linking microbial community composition to arsenic mobilization in the western Hetao Basin: Potential importance of ammonium as an electron donor

Guar Gum Stimulates Biogenic Sulfide Production in Microbial Communities Derived from UK Fractured Shale Production Fluids

Limitations of microbial iron reduction under extreme conditions

Genome-resolved metagenomic analysis of groundwater: insights into arsenic mobilization in biogeochemical interaction networks

Sophie L Nixon Information

University

Position

___

Citations(all)

362

Citations(since 2020)

269

Cited By

169

hIndex(all)

10

hIndex(since 2020)

9

i10Index(all)

11

i10Index(since 2020)

9

Email

University Profile Page

Google Scholar

Sophie L Nixon Skills & Research Interests

Environmental Microbiology

Microbial Ecology

Geochemistry

Biotechnology

Top articles of Sophie L Nixon

Ammonium-Enhanced Arsenic Mobilization from Aquifer Sediments

Environmental Science & Technology

2024/2/5

Microbial communities in freshwater used for hydraulic fracturing are unable to withstand the high temperatures and pressures characteristic of fractured shales

Access Microbiology

2023/4

Sophie L Nixon
Sophie L Nixon

H-Index: 7

New microbiological insights from the Bowland shale highlight heterogeneity of the hydraulically fractured shale microbiome

Environmental Microbiome

2023/2/28

Wei Xiu
Wei Xiu

H-Index: 11

Sophie L Nixon
Sophie L Nixon

H-Index: 7

Linking microbial community composition to arsenic mobilization in the western Hetao Basin: Potential importance of ammonium as an electron donor

2023

67 Linking microbial community composition to arsenic mobilization in the western Hetao Basin: Potential importance of ammonium as an electron donor

2023

Guar Gum Stimulates Biogenic Sulfide Production in Microbial Communities Derived from UK Fractured Shale Production Fluids

Microbiology spectrum

2022/12/21

Sophie L Nixon
Sophie L Nixon

H-Index: 7

Limitations of microbial iron reduction under extreme conditions

2022/11

Sophie L Nixon
Sophie L Nixon

H-Index: 7

Genome-resolved metagenomic analysis of groundwater: insights into arsenic mobilization in biogeochemical interaction networks

Environmental Science & Technology

2022/6/27

Shaping of the present-day deep biosphere at Chicxulub by the impact catastrophe that ended the Cretaceous

Frontiers in Microbiology

2021/6/24

The microbiology of shale gas extraction

2021

Organic materials and their microbial fate in radioactive waste

2021/1/1

Metagenomic analysis reveals rapid development of soil biota on fresh volcanic ash

Scientific Reports

2020/12/8

Linking microbial community composition to hydrogeochemistry in the western Hetao Basin: potential importance of ammonium as an electron donor during arsenic mobilization

Environment international

2020/3/1

Identification of persistent sulfidogenic bacteria in shale gas produced waters

Frontiers in Microbiology

2020/2/21

Sophie L Nixon
Sophie L Nixon

H-Index: 7

See List of Professors in Sophie L Nixon University(Manchester University)