200 results on '"Shi, Jiyan"'
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2. Research progress on activated persulfate by biochar: Soil and water environment remediation, mechanism exploration and simulation calculation
3. The colonization of Penicillium oxalicum SL2 on rice root surface increased Pb interception capacity of iron plaque and decreased Pb uptake by roots
4. Penicillium oxalicum SL2-enhanced nanoscale zero-valent iron effectively reduces Cr(VI) and shifts soil microbiota
5. More effective than direct contact: Nano hydroxyapatite pre-treatment regulates the growth and Cd uptake of rice (Oryza sativa L.) seedlings
6. Aerobic degradation of bisphenol A by Pseudomonas sp. LM-1: characteristic and pathway
7. Halophyte Vegetation Influences Soil Microbial Community of Coastal Salt Marsh
8. Effects of different growth patterns of Tamarix chinensis on saline-alkali soil: implications for coastal restoration and management
9. Nano hydroxyapatite pre-treatment effectively reduces Cd accumulation in rice (Oryza sativa L.) and its impact on paddy microbial communities
10. Enhanced natural degradation of cyanide tailings: Integrated application of solar drying system and UV irradiation
11. Toluene-mercuric modified USEPA Method 3060A to eliminate interference of sulfide-based reductants with Cr(VI) determination
12. Synergy among extracellular adsorption, bio-precipitation and transmembrane transport of Penicillium oxalicum SL2 enhanced Pb stabilization
13. Effects of Fe3O4 nanoparticles and nano hydroxyapatite on Pb and Cd stressed rice (Oryza sativa L.) seedling
14. Production of singlet oxygen from photosensitizer erythrosine for facile inactivation of coronavirus on mask
15. Enhanced Cd efflux capacity and physiological stress resistance: The beneficial modulations of Metarhizium robertsii on plants under cadmium stress
16. Long-term and high-bioavailable potentially toxic elements (PTEs) strongly influence the microbiota in electroplating sites
17. Removal of hexavalent chromium from wastewater by Cu/Fe bimetallic nanoparticles
18. Ca2+ and SO42− accelerate the reduction of Cr(VI) by Penicillium oxalicum SL2
19. Dynamic influence of S fertilizer on Cu bioavailability in rice (Oryza sativa L.) rhizosphere soil during the whole life cycle of rice plants
20. A novel single-parameter approach for forecasting algal blooms
21. Action learning helps talent development and problem solving in Chinese companies.
22. Ecological restoration of tidal flat and its effects on soil characteristic and bacterial community.
23. Effects of ferrous sulfate amendment and water management on rice growth and metal(loid) accumulation in arsenic and lead co-contaminated soil
24. Continuous-release beads of natural allelochemicals for the long-term control of cyanobacterial growth: Preparation, release dynamics and inhibitory effects
25. Determination of the accumulation, spatial distribution and reduction of Cr in unsaturated Pseudochrobactrum saccharolyticum LY10 biofilms by X-ray fluorescence and absorption methods
26. Cr(VI) Reduction and Fe(II) Regeneration by Penicillium oxalicum SL2-Enhanced Nanoscale Zero-Valent Iron.
27. Impact of S fertilizers on pore-water Cu dynamics and transformation in a contaminated paddy soil with various flooding periods
28. Lead phytoavailability change driven by its speciation transformation after the addition of tea polyphenols (TPs): Combined selective sequential extraction (SSE) and XANES analysis
29. Soil Chromium Accumulation in Industrial Regions across China: Pollution and Health Risk Assessment, Spatial Pattern, and Temporal Trend (2002–2021).
30. Distribution and Speciation of Cu in the Root Border Cells of Rice by STXM Combined with NEXAFS
31. Impact of sulfur (S) fertilization in paddy soils on copper (Cu) accumulation in rice (Oryza sativa L.) plants under flooding conditions
32. Isolation and Analysis of Cell Wall Proteome in Elsholtzia splendens Roots Using ITRAQ with LC–ESI–MS/MS
33. Tracing Intracellular Localization and Chemical Forms of Copper in Elsholtzia splendens with Cluster Analysis
34. Spatial variability of bacteria in the rhizosphere of Elsholtzia splendens under Cu contamination
35. Effects and Mechanisms of Copper Oxide Nanoparticles with Regard to Arsenic Availability in Soil–Rice Systems: Adsorption Behavior and Microbial Response.
36. Ferrous ions inhibit Cu uptake and accumulation via inducing iron plaque and regulating the metabolism of rice plants exposed to CuO nanoparticles.
37. Controlling Factors and Prediction of Lead Uptake and Accumulation in Various Soil–Pepper Systems.
38. Long-Term Manure Application Changes Bacterial Communities in Rice Rhizosphere and Arsenic Speciation in Rice Grains.
39. Simultaneous removal of multiple heavy metals from soil by washing with citric acid and ferric chloride.
40. Does sulfur fertilizer influence Cu migration and transformation in colloids of soil pore water from the rice (Oryza sativa L.) rhizosphere?
41. The interaction between particulate organic matter and copper, zinc in paddy soil.
42. Iron Plaque: A Barrier Layer to the Uptake and Translocation of Copper Oxide Nanoparticles by Rice Plants.
43. Characterization of Penicillium oxalicum SL2 isolated from indoor air and its application to the removal of hexavalent chromium.
44. Mechanism study of sulfur fertilization mediating copper translocation and biotransformation in rice (Oryza sativa L.) plants.
45. Removal of Cd2+ ions from aqueous solution using cassava starch-based superabsorbent polymers.
46. Fate and Transformation of CuO Nanoparticles in the Soil-Rice System during the Life Cycle of Rice Plants.
47. Sulfur speciation in two typical soil samples using X-ray absorption near-edge structure spectroscopy and chemical fractionation.
48. Tracking fluorescent dissolved organic matter in multistage rivers using EEM-PARAFAC analysis: implications of the secondary tributary remediation for watershed management.
49. Natural organic matter-induced alleviation of the phytotoxicity to rice ( Oryza sativa L.) caused by copper oxide nanoparticles.
50. Multi-element pollution in soil, ground and surface water from abandoned chromate chemical plants: a case study in Hangzhou, China.
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