Results 151 to 160 of about 7,567 (165)
Some of the next articles are maybe not open access.
2015
?????????????????????? ???????????????????? ???????????????? ?????????????????? ?????????????????????????????? ?? ???????????????????? ????????????, ?? ?????????? ???????????????????? ?????????????????? ?? Chlorella vulgaris ?????? ???????????????? ???????????????? ???????????? ?? ???????????????????????? Se?????? 0,5; 5 ?? 20 ????/??????. ?? ???????? ?
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?????????????????????? ???????????????????? ???????????????? ?????????????????? ?????????????????????????????? ?? ???????????????????? ????????????, ?? ?????????? ???????????????????? ?????????????????? ?? Chlorella vulgaris ?????? ???????????????? ???????????????? ???????????? ?? ???????????????????????? Se?????? 0,5; 5 ?? 20 ????/??????. ?? ???????? ?
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2014
???????????????????? ?????????? ???????????????????? ???? ?????????????????????? ???????????????????????????? ??????????????????????????????. ???????????????? ???????????? ?????????????????? ???????????????? CO??? ?? ?????????? ?????????????? ?? Chlorella vulgaris Buitenzorg ???????????? ?????????? ???????????????????? ???? ?????????????????????? ??????
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???????????????????? ?????????? ???????????????????? ???? ?????????????????????? ???????????????????????????? ??????????????????????????????. ???????????????? ???????????? ?????????????????? ???????????????? CO??? ?? ?????????? ?????????????? ?? Chlorella vulgaris Buitenzorg ???????????? ?????????? ???????????????????? ???? ?????????????????????? ??????
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การสกัดน้ำมันจาก Chlorella vulgaris โดยใช้อัลตราซาวด์
งานวิจัยนี้เป็นการศึกษาการสกัดน้ำมันจากสาหร่าย Chlorella vulgaris ความเข้มข้นประมาณ 1x109 เซลล์/มิลลิลิตร โดยใช้อ่างอัลตราซาวด์ ความถี่ 40 กิโลเฮิรตซ์ ระดับพลังงาน 80, 100, 120 และ 150 วัตต์ พบว่า ที่ 150 วัตต์ นาน 40 นาที ทำให้เซลล์สาหร่ายแตกมากที่สุด และมีปริมาณน้ำมันมากที่สุดคือ 17.3 มิลลิกรัม/กรัมของเซลล์สาหร่ายแห้ง อย่างไรก็ตามเมื่อวัดปริมาณกรดไขมัopenaire +1 more source
Active Hexose Transport in Chlorella vulgaris
1974When photosynthetic phosphorylation was studied in vivo by following light-dependent glucose assimilation of Chlorella vulgaris, it was observed (TANNER and KANDLER, 1967; TANNER, 1969) that glucose uptake in this organism is an inducible process. Fig.
W. Tanner +5 more
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2018
We investigated the concentration and timing characteristics of chromium (Cr?????) absorption in the presence of selenium (Se??????) inside the cells as well as in lipids of Chlorella vulgaris microalgae. Discovered patterns of chromium accumulation had a pronounced fluctuation, which can be divided into four phases: cells' adaptation to the new factor,
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We investigated the concentration and timing characteristics of chromium (Cr?????) absorption in the presence of selenium (Se??????) inside the cells as well as in lipids of Chlorella vulgaris microalgae. Discovered patterns of chromium accumulation had a pronounced fluctuation, which can be divided into four phases: cells' adaptation to the new factor,
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Genome analysis of Chlorella Vulgaris
In this study, we first investigated the differential chlorophyll content between wild type and chlorophyll-deficient mutants. One wild and four mutants were sequenced with short reads and long reads. We performed the nuclear genome assembly, genetic variation and gene expression analysis, resulting in a high-quality assembly for each genome with ...openaire +1 more source
Fermentation of Glucose by Chlorella vulgaris
Nature, 1958IT has been shown recently that the chief products of glucose fermentation by Chlorella vulgaris (Pearsall's strain) are acetic acid, lactic acid, hydrogen and a little carbon dioxide1. It was of interest to study the fermentation of glucose labelled with carbon-14 in particular carbon atoms since, from a determination of the distribution of carbon-14 ...
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Phycoremediation of Greywater Using Chlorella vulgaris
World Environmental and Water Resources Congress 2021, 2021S Mohan, Manthapuri Vineeth
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АНТИМІКРОБНА АКТИВНІСТЬ КУЛЬТУРАЛЬНОЇ РІДИНИ CHLORELLA VULGARIS
Біотехнологія XXI століття, 2022Сучасні альгологічні дослідження показують, що мікроводорості характеризуються високою антибактеріальною, протираковою та противірусною активністю. Це зумовлено широким спектром біологічно активних речовин, що продукуються біомасою водоростей.
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