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日期:2022/6/20瀏覽:510次
滬鼎產(chǎn)品文獻(xiàn):微生物單酚氧化酶 微生物酚氧化酶 微生物單加氧酶和雙加氧酶引用文獻(xiàn)
【文獻(xiàn)標(biāo)題】Removal pathway quantification and co-metabolic mechanism evaluation of alkylphenols from synthetic wastewater by phenolic root exudates in the rhizosphere of Phragmites australis
【作者】Ni-Chen Zhang a, Zhi-Feng Hong a, Rong-Liang Qiu
【作者單位】 中山大學(xué)(Sun Yat-sen University)
【文獻(xiàn)中引用產(chǎn)品】
微生物單酚氧化酶
微生物酚氧化酶
微生物單加氧酶
雙加氧酶
【關(guān)鍵詞】Schematic diagram (left) and photo (right) of bench-scale reed beds. Common reed (Phragmites australis) was planted in beds 1–6.
【DOI】doi.10.1016/j.jhazmat.2021.127269.
【影響因子(IF)】10.5
【出版期刊】《Journal of Hazardous Materials》
【產(chǎn)品原文引用】
PTBP-related degrading enzymes, i.e. monophenol oxidase, poly-
phenol oxidase, monooxygenase, and dioxygenase, were collected with soil samples from the planted or unplanted beds. Soil samples were treated using a specific ELISA kit (Shanghai Huding Biotechnology, China) according to the manufacturer’s instructions, and then their corresponding enzyme activities were determined using a microplate reader (SpectraMax M2, Molecular Devices, USA) at 450 nm.
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【產(chǎn)品文獻(xiàn)支持】
影響因子(IF)= 10.5 monophenol oxidase, poly-phenol oxidase, monooxygenase, and dioxygenase, were collected with soil samples from the planted or unplanted beds. 標(biāo)題:中山大學(xué)(Sun Yat-sen University)