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1. Changes in profile distribution and chemical properties of natural nanoparticles in paddy soils as affected by long-term rice cultivation

2. Soil fungal taxonomic and functional community composition as affected by biochar properties

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4. Metallic micronutrients are associated with the structure and function of the soil microbiome.

5. Three source-partitioning of CO 2 fluxes based on a dual-isotope approach to investigate interactions between soil organic carbon, glucose and straw.

6. Effects of magnetic biochar-microbe composite on Cd remediation and microbial responses in paddy soil.

7. Changes in microbial community structure due to chronic trace element concentrations in different sizes of soil aggregates.

8. Performance and mechanisms for remediation of Cd(II) and As(III) co-contamination by magnetic biochar-microbe biochemical composite: Competition and synergy effects.

9. Elevated temperature shifts soil N cycling from microbial immobilization to enhanced mineralization, nitrification and denitrification across global terrestrial ecosystems.

10. Response of soil native microbial community to Eschericia coli O157:H7 invasion.

11. Maize straw biochar addition inhibited pentachlorophenol dechlorination by strengthening the predominant soil reduction processes in flooded soil.

12. Long-term nutrient inputs shift soil microbial functional profiles of phosphorus cycling in diverse agroecosystems.

13. Assembly of root-associated microbiomes of typical rice cultivars in response to lindane pollution.

14. Remediation of heavy metal contaminated soils by biochar: Mechanisms, potential risks and applications in China.

15. Synchronous response in methanogenesis and anaerobic degradation of pentachlorophenol in flooded soil.

16. Co-transport of phenanthrene and pentachlorophenol by natural soil nanoparticles through saturated sand columns.

17. Sorption of pentachlorophenol and phenanthrene by humic acid-coated hematite nanoparticles.

18. Soil available phosphorus content drives the spatial distribution of archaeal communities along elevation in acidic terrace paddy soils.

19. Changes in nitrogen related functional genes along soil pH, C and nutrient gradients in the charosphere.

20. A comprehensive mitigation strategy for heavy metal contamination of farmland around mining areas - Screening of low accumulated cultivars, soil remediation and risk assessment.

21. Nitrate supply and sulfate-reducing suppression facilitate the removal of pentachlorophenol in a flooded mangrove soil.

22. Effects of Cd, Cu, Zn and their combined action on microbial biomass and bacterial community structure.

23. Combined application of biochar and nitrogen fertilizer benefits nitrogen retention in the rhizosphere of soybean by increasing microbial biomass but not altering microbial community structure.

24. Genetic correlation network prediction of forest soil microbial functional organization.

25. Differences in transport behavior of natural soil colloids of contrasting sizes from nanometer to micron and the environmental implications.

26. Microplastics play a minor role in tetracycline sorption in the presence of dissolved organic matter.

27. Long-term nitrogen fertilization decreases bacterial diversity and favors the growth of Actinobacteria and Proteobacteria in agro-ecosystems across the globe.

28. Chemical speciation and risk assessment of Cu and Zn in biochars derived from co-pyrolysis of pig manure with rice straw.

29. The sorption kinetics and isotherms of sulfamethoxazole with polyethylene microplastics.

30. The effects of different types of crop straw on the transformation of pentachlorophenol in flooded paddy soil.

31. Reconstruction of microbial community structures as evidences for soil redox coupled reductive dechlorination of PCP in a mangrove soil.

32. Contrasting effects of composting and pyrolysis on bioavailability and speciation of Cu and Zn in pig manure.

33. Bacterial Community Composition Associated with Pyrogenic Organic Matter (Biochar) Varies with Pyrolysis Temperature and Colonization Environment.

34. Potential role of biochars in decreasing soil acidification - A critical review.

35. Distinct Biogeographic Patterns for Archaea, Bacteria, and Fungi along the Vegetation Gradient at the Continental Scale in Eastern China.

36. Sensitive responders among bacterial and fungal microbiome to pyrogenic organic matter (biochar) addition differed greatly between rhizosphere and bulk soils.

37. Geographic patterns of co-occurrence network topological features for soil microbiota at continental scale in eastern China.

38. Assessment of Bacterial Communities and Predictive Functional Profiling in Soils Subjected to Short-Term Fumigation-Incubation.

39. Arbuscular Mycorrhizal Fungal Hyphae Alter Soil Bacterial Community and Enhance Polychlorinated Biphenyls Dissipation.

40. Engineering soil organic matter quality: Biodiesel Co-Product (BCP) stimulates exudation of nitrogenous microbial biopolymers.

41. Responses of soil microeukaryotic communities to short-term fumigation-incubation revealed by MiSeq amplicon sequencing.

42. Natural soil mineral nanoparticles are novel sorbents for pentachlorophenol and phenanthrene removal.

43. Effects of inorganic and organic amendments on the uptake of lead and trace elements by Brassica chinensis grown in an acidic red soil.

44. Opportunities for Phytoremediation and Bioindication of Arsenic Contaminated Water Using a Submerged Aquatic Plant:Vallisneria natans (lour.) Hara.

45. Increased agronomic and environmental value provided by biochars with varied physiochemical properties derived from swine manure blended with rice straw.

46. Bacterial degradation of Aroclor 1242 in the mycorrhizosphere soils of zucchini (Cucurbita pepo L.) inoculated with arbuscular mycorrhizal fungi.

47. Vertical profiles of pentachlorophenol and the microbial community in a paddy soil: influence of electron donors and acceptors.

48. The combined effects of urea application and simulated acid rain on soil acidification and microbial community structure.

49. Arsenic species uptake and subcellular distribution in Vallisneria natans (Lour.) Hara as influenced by aquatic pH.

50. Enhanced abiotic and biotic contributions to dechlorination of pentachlorophenol during Fe(III) reduction by an iron-reducing bacterium Clostridium beijerinckii Z.