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home > dihexa stability ph degradation pathways Di-(2-ethylhexyl) phthalate-degrading functional microorganisms were identified in black soil based on high throughput analysis > dihexa stability ph degradation pathways Di-(2-ethylhexyl) phthalate-degrading functional microorganisms were identified in black soil based on high throughput analysis
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Full article: Di n octyl phthalate degradation by a halotolerant bacterial consortium LF and its application in soil Enhanced Electrokinetic Remediation of Polychlorinated biphenyls in Transformer Oil Contaminated Soils: Synergistic Application of Surfactants and Oxidants for PCBs Removal Water, Air, & Soil Pollution Springer Nature Link Efficient biodegradation of di (2 ethylhexyl) phthalate by a novel strain Nocardia asteroides LMB 7 isolated from electronic waste soil Scientific Reports Lipid coated mesoporous silica microparticles for the controlled delivery of galactosidase into intestines Journal of Materials Chemistry B (RSC Publishing) DOI:10.1039 C8TB01114A
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dihexa stability ph degradation pathways Di-(2-ethylhexyl) phthalate-degrading functional microorganisms were  identified in black soil based on high throughput analysis
dihexa stability ph degradation pathways Di-(2-ethylhexyl) phthalate-degrading functional microorganisms were  identified in black soil based on high throughput analysis
dihexa stability ph degradation pathways Di-(2-ethylhexyl) phthalate-degrading functional microorganisms were  identified in black soil based on high throughput analysis
dihexa stability ph degradation pathways Di-(2-ethylhexyl) phthalate-degrading functional microorganisms were  identified in black soil based on high throughput analysis

dihexa stability ph degradation pathways Di-(2-ethylhexyl) phthalate-degrading functional microorganisms were identified in black soil based on high throughput analysis

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