figshare + Loughborough Research Repository + GRANTS Data + UP Research Data Repository2026 · Astronomical catalogue
Field bioremediation trial data and identifiability analysis code for petroleum-contaminated soil, Kyzylorda region, Kazakhstan<p dir="ltr">This deposit contains the raw field data and the complete analysis code behind the study of kinetic model identifiability in field-scale bioremediation of petroleum-contaminated soil.</p><p dir="ltr">The field trial was carried out between April and June 2026 at an oil-waste treatment site in the Kyzylorda region, Kazakhstan (45°42′ N, 65°28′ E). Six plots of 2 × 2 m, each holding 200
ZivaHub + Deakin Research Online + DMU Figshare + HKU DataHub + Swinburne Figshare + DaYta Ya Rona + SUNScholarData + figshare + Loughborough Research Repository + GRANTS Data + UP Research Data Repository2026 · Astronomical catalogue
Supplementary file 1_Exploration of novel ecological niches for pigmented bacteria with dye bioremediation potential.docxIntroduction<p>This study explores the comparative bioremediation potential of pigmented bacteria isolated from diverse ecological niches. Three distinct isolates were identified: Shewanella xiamenensis (U2f, from goldfish gills), Paracoccus sp. (THN1, a rose thorn endophyte), and Kocuria sp. (YC, an incidental laboratory isolate).</p>Methods<p>The isolated bacterial pigments were characterized us
ZivaHub + Deakin Research Online + DMU Figshare + HKU DataHub + Swinburne Figshare + DaYta Ya Rona + SUNScholarData + figshare + Loughborough Research Repository + GRANTS Data + UP Research Data Repository2026 · Astronomical catalogue
Data and analysis code supporting “The Plant Detoxosphere Molecular Mechanisms and Global Dynamics of Cross-Kingdom Detoxification at the Plant–Microbe–Pollutant Interface”<p dir="ltr">This repository contains the source data and R analysis code supporting the curated quantitative evidence synthesis presented in “The Plant Detoxosphere: Molecular Mechanisms and Global Dynamics of Cross-Kingdom Detoxification at the Plant–Microbe–Pollutant Interface.” The deposited materials include source-attributed rhizosphere–bulk-soil gene-abundance contrasts, per-gene estimates,
figshare + Loughborough Research Repository2026 · Astronomical catalogue
Divergent responses of bacterial, fungal, and archaeal communities to wine-storage disturbance in a karst cave<p dir="ltr">Human activities can alter the microclimate, chemistry, and physical structure of caves, reducing the stability and diversity of cave microbial communities and affecting geomorphic processes and ecosystem services. To elucidate the mechanisms of human influence on cave microecosystems, this study selected a typical karst wine-storage cave in Guilin, China, dividing it into strong, med
figshare2026 · Astronomical catalogue
Supplementary file 1_Bioremediation of complex chlorinated-solvent impacted groundwater.docx<p>Enhanced in situ bioremediation is a widely adopted and sustainable means of remediating chlorinated contaminant impacted groundwater utilizing organohalide respiring bacteria. These bacteria utilize chlorinated compounds as terminal electron acceptors to harvest energy, producing partially or fully dechlorinated end products. A barrier to successful remediation utilizing organohalide respiring
figshare2026 · Astronomical catalogue
Supplementary file 1_Bioremediation of complex chlorinated-solvent impacted groundwater.docx<p>Enhanced in situ bioremediation is a widely adopted and sustainable means of remediating chlorinated contaminant impacted groundwater utilizing organohalide respiring bacteria. These bacteria utilize chlorinated compounds as terminal electron acceptors to harvest energy, producing partially or fully dechlorinated end products. A barrier to successful remediation utilizing organohalide respiring
figshare2026 · Astronomical catalogue
Supplementary file 2_Bioremediation of complex chlorinated-solvent impacted groundwater.xlsx<p>Enhanced in situ bioremediation is a widely adopted and sustainable means of remediating chlorinated contaminant impacted groundwater utilizing organohalide respiring bacteria. These bacteria utilize chlorinated compounds as terminal electron acceptors to harvest energy, producing partially or fully dechlorinated end products. A barrier to successful remediation utilizing organohalide respiring
figshare2026 · Astronomical catalogue
Supplementary file 2_Bioremediation of complex chlorinated-solvent impacted groundwater.xlsx<p>Enhanced in situ bioremediation is a widely adopted and sustainable means of remediating chlorinated contaminant impacted groundwater utilizing organohalide respiring bacteria. These bacteria utilize chlorinated compounds as terminal electron acceptors to harvest energy, producing partially or fully dechlorinated end products. A barrier to successful remediation utilizing organohalide respiring
figshare2026 · Astronomical catalogue
Isolation and characterization of multitrait Bacillus spp. that exhibit <i>in vitro</i> bioremediation of heavy metals and pesticides<p>Soil health and agricultural productivity are severely threatened by agrochemical pollution and heavy metal accumulation. This study aimed to isolate, characterize, and construct a multi-strain Bacillus spp. consortium possessing simultaneous plant growth-promoting rhizobacteria (PGPR) traits, heavy metal tolerance, and pesticide degradation capabilities to serve as a sustainable bioremediation
figshare2026 · Astronomical catalogue
Supplementary file 1_Diversity and functional genomic insights into antimicrobial resistance and aromatic hydrocarbon degradation genes in the Red Sea coast microbial community.docxIntroduction<p>The Red Sea is a unique oligotrophic marine ecosystem characterized by high salinity, elevated temperatures, and increasing anthropogenic pressures along its coastal regions. However, coastal sediment-associated microbial communities and their functional potential, particularly regarding antimicrobial resistance and aromatic compound degradation, remain insufficiently explored.</p>M
Repositorio Institucional de la Universidad de Burgos2025 · Crystal structure
UBU-Polymers Research Group 21032024This work presents a new polymeric material in the form of a film (FLAC) containing immobilized laccase enzyme through diazo bonds, designed for the degradation of indigo carmine dye, which is highly toxic and commonly found in wastewater from the textile industry. The immobilization of the enzyme in the film was characterized by SEM, FT-IR, DSC, TGA and EDXS. The degradation of the dye by FLAC in