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5-Chloro-1,3-xylene | CAS:556-97-8
5-Chloro-1,3-xylene
  • 名称:3,5-二甲基氯苯 | 5-Chloro-1,3-xylene
  • CAS号:556-97-8
  • 别名:3,5-Dimethylchlorobenzene; 5-Chloro-m-xylene
  • 分子式:C8H9Cl
  • 分子量:140.61
  • EINESC号:

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Chemical Engineering Journal, 318, 247-253 (2017) Assessing the impact of chloroacetanilide herbicides and their metabolites on periphyton in the Leyre River (SW France) via short term growth inhibition tests on autochthonous diatoms.Vincent Roubeix et al.Journal of environmental monitoring : JEM, 14(6), 1655-1663 (2012-05-17) Multiple stressor effects of predation by rotifers and herbicide pollution on different Chlamydomonas strains and potential impacts on population dynamics.Beat B Fischer et al.Environmental toxicology and chemistry, 31(12), 2832-2840 (2012-09-22) Buffer strip effect on terbuthylazine, desethyl-terbuthylazine and S-metolachlor runoff from maize fields in Northern Italy.Marco Milan et al.Environmental technology, 34(1-4), 71-80 (2013-03-28) Sorption of metolachlor and atrazine in fly ash amended soils: comparison of optimized isotherm models.Rakesh K Ghosh et al.Journal of environmental science and health. Part. 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The 30-kDa N-terminal fragment is not required for lysyl hydroxylase activity.Kati Rautavuoma et al.The Journal of biological chemistry, 277(25), 23084-23091 (2002-04-17) Enantioselective binding interaction of the metolachlor pesticide enatiomers with bovine serum albumin--a spectroscopic analysis study.Yongnian Ni et al.Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy, 97, 753-761 (2012-08-18) Metolachlor photodegradation study in aqueous media under natural and simulated solar irradiationDimou.DA, et al. Journal of Agricultural and Food Chemistry, 53(3), 694- 701 (2005) Metolachlor photocatalytic degradation using TiO 2 photocatalystsSakkas.A.V Applied Catalysis. B, Environmental, 49(3), 195-205 (2004) Sorption and dissipation of aged metolachlor residues in eroded and rehabilitated soils.Alegría Cabrera et al.Pest management science, 68(9), 1272-1277 (2012-04-21) Use of diatom motility features as endpoints of metolachlor toxicity.Nathalie Coquillé et al.Aquatic toxicology (Amsterdam, Netherlands), 158, 202-210 (2014-12-08) Detection of seven pesticides in cucumbers using hollow fibre-based liquid-phase microextraction and ultra-high pressure liquid chromatography coupled to tandem mass spectrometry.Jianfeng Wang et al.Journal of chromatography. A, 1247, 10-17 (2012-06-12) Phytotoxicity of atrazine, S-metolachlor, and permethrin to Typha latifolia (Linneaus) germination and seedling growth.M T Moore et al.Bulletin of environmental contamination and toxicology, 89(2), 292-295 (2012-06-02) Biotransformation of atrazine and metolachlor within soil profile and changes in microbial communities.Zisis Vryzas et al.Chemosphere, 89(11), 1330-1338 (2012-06-29) Risk assessment of pesticides detected in surface water of the Alqueva reservoir (Guadiana basin, southern of Portugal).P Palma et al.The Science of the total environment, 488-489, 208-219 (2014-05-20) Comparative responses of two species of marine phytoplankton to metolachlor exposure.Megha Thakkar et al.Aquatic toxicology (Amsterdam, Netherlands), 126, 198-206 (2012-12-12) Ultra-high performance liquid chromatography-quadrupole time-of-flight mass spectrometry to identify contaminants in water: an insight on environmental forensics.Ana Masiá et al.Journal of chromatography. 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