• 제목/요약/키워드: Algal photosynthesis

검색결과 38건 처리시간 0.025초

MLSS와 미세조류가 광합성 산소기반 질산화에 미치는 영향 (Effect of MLSS and Micro-algae on Nitrification based Photosynthetic Oxygen)

  • 이지원;길경익
    • 한국습지학회지
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    • 제19권4호
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    • pp.508-514
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    • 2017
  • 부영양화로 인한 녹 적조류가 과잉 번식하여 다양한 환경문제를 야기해왔으나, 최근 조류를 에너지원으로 활용할 수 있는 바이오 디젤 연구가 활발하게 진행되고 있다. 특히 하수처리장의 산소공급을 위한 송풍에너지 절약을 위해 미세조류의 광합성 작용으로 발생하는 산소를 하수처리장에 적용시키는 연구도 다양하게 이루어지고 있다. 본 연구에서는 조류광합성 산소를 질산화에 필요한 산소로 활용하고자 실험실 규모의 조류-질산화 반응조를 운영하였으며, 운전구간은 크게 3구간으로 운전하였다. MLSS(Mixed Liquer Suspended Solid) 농도에 변화를 준 구간에서 24~38 %, Micro-algae 농도에 변화를 준 구간에서는 38~50%, 그리고 HRT(Hydraulic Retention Time)에 변화를 준 구간에서 61~80%의 암모니아성 질소 제거율이 나타났다. 연구결과 MLSS 가 감소함에 따라, Algae Biomass가 증가함에 따라 암모니아성 질소 제거율이 증가하는 경향을 보였으나, MLSS에 의한 영향보다 Algae biomass 에 의한 영향이 더 큰 것으로 나타났다.

광합성 측정기를 이용한 미세조류의 광합성 효율 측정 (Evaluation of the ETRmax in Microalgae Using the PHYTO-PAM Fluorometer)

  • 조은섭;이필용;오현주;최윤석;최양호;이삼근
    • 한국환경과학회지
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    • 제15권8호
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    • pp.727-735
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    • 2006
  • In this study, the PHYTO-PAM-fluorometric method was used to evaluate the ETR$_{max}$ in terms of sensitivity to DIN/DIP against 14 microalgae: Prorocentrum micans, Heterocapsa triquetra, Gymnodinium impudicum, Cymnodinium catenatum, Amphidinium caterae, Chlorella vulgaris, Chroococcus minutus, Microcystis aeruginosa, Chlorella ellipsoidea, Nannochloris oculata, Oocystis lacustris, Chroomonas salina, Gloeocystis gigas, and Prymnessium parvum. We found that P. micans, H. triquetra, and A. caterae exposed to the maximum level of DIN/DIP were significantly smaller in the ETR$_{max}$ than that of the minimum and moderate mixture. Unlikely the ETR$_{max}$, the initial slope alpha was not significantly different at the level of 60 DIN/DIP. In G. catenatum, the moderate levels of 15 and 20 in DIN/DIP were found to be significantly different from the ETR$_{max}$ at Chl-Ch4. Gymnodinium impudicum had a higher value than that of the ETR$_{max}$ than that of dinoflagellates used in this study, ranging from 306.1 (Ch4, DIN/DIP: 10) to 520.1 (Ch4, DIN/DIP: 30). The ETR$_{max}$ value obtained from other microalgae was similar to C. impudicum at any of the ratios of DIN/DIP and channels. Consequently, the influence of offshore water current assures us of the suppression of photosynthesis and electron transport rate in dinoflagellates. Gymnodinium impudicum has not been researched in the area of red tides in Korea, but it will be enough to creat the massive algal blooms in the future because of higher potential photochemical availability.

Ascophyllum nodosum and its symbionts: XI. The epiphyte Vertebrata lanosa performs better photosynthetically when attached to Ascophyllum than when alone

  • Garbary, David J.;Miller, Anthony G.;Scrosati, Ricardo A.
    • ALGAE
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    • 제29권4호
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    • pp.321-331
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    • 2014
  • Vertebrata lanosa is an abundant and obligate red algal epiphyte of Ascophyllum nodosum that forms part of a complex and highly integrated symbiotic system that includes the ascomycete, Mycophycias ascophylli. As part of ongoing studies to resolve interactions among species in the symbiosis, we used pulse amplitude modulation fluorimetry of chlorophyll a fluorescence, from photosystem II (PSII), to measure the maximum quantum yield ($F_v/F_m$) of PSII [$QY(II)_{max}$] and relative photosynthetic electron transport rates (rETR), as a function of light intensity, in order to evaluate the photosynthetic capacity of the two algal symbionts in the field and in the laboratory under different treatments. Our primary question was 'Is the ecological integration of these species reflected in a corresponding physiological integration involving photosynthetic process?' In the laboratory we measured changes in $QY(II)_{max}$ in thalli of V. lanosa and A. nodosum over one week periods when maintained together in either attached or detached treatments or when maintained separated from each other. While the $QY(II)_{max}$ of PSII of A. nodosum remained high and showed no significant variation among treatments, V. lanosa showed decreasing performance in the following conditions: V. lanosa attached to A. nodosum, V. lanosa in the same culture, but not attached to A. nodosum, and V. lanosa alone. These results are consistent with observations in which rETR was reduced in V. lanosa maintained alone versus attached to A. nodosum. Values for $QY(II)_{max}$ in V. lanosa measured in the field in fully submerged thalli were similar to those measured in the laboratory when V. lanosa was attached to it obligate host A. nodosum. Our results provide evidence of a physiological association of the epiphyte and its host that reflects the known ecology.

Flocculation Effect of Alkaline Electrolyzed Water (AEW) on Harvesting of Marine Microalga Tetraselmis sp.

  • Lee, Su-Jin;Choi, Woo-Seok;Park, Gun-Hoo;Kim, Tae-Ho;Oh, Chulhong;Heo, Soo-Jin;Kang, Do-Hyung
    • Journal of Microbiology and Biotechnology
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    • 제28권3호
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    • pp.432-438
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    • 2018
  • Microalgae hold promise as a renewable energy source for the production of biofuel, as they can convert light energy into chemical energy through photosynthesis. However, cost-efficient harvest of microalgae remains a major challenge to commercial-scale algal biofuel production. We first investigated the potential of electrolytic water as a flocculant for harvesting Tetraselmis sp. Alkaline electrolyzed water (AEW) is produced at the cathode through water electrolysis. It contains mineral ions such as $Na^+$, $K^+$, $Ca^{2+}$, and $Mg^{2+}$ that can act as flocculants. The flocculation activity with AEW was evaluated via culture density, AEW concentration, medium pH, settling time, and ionic strength analyses. The flocculation efficiency was 88.7% at 20% AEW (pH 8, 10 min) with a biomass concentration of 2 g/l. The initial biomass concentration and medium pH had significant influences on the flocculation activity of AEW. A viability test of flocculated microalgal cells was conducted using Evans blue stain, and the cells appeared intact. Furthermore, the growth rate of Tetraselmis sp. in recycled flocculation medium was similar to the growth rate in fresh F/2 medium. Our results suggested that AEW flocculation could be a very useful and affordable methodology for fresh biomass harvesting with environmentally friendly easy operation in part of the algal biofuel production process.

광합성율과 생물량에 기초한 Sargassum confusum의 생산성 계산 모델 (An Estimation of the Algal Production of Sargassum confusum (Phaeophyta) on the Coast of Ohori, East Sea, Korea, by Mathematical Models Based on Photosynthetic Rates and Biomass Changes)

  • 고철환;조성억
    • 한국해양학회지
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    • 제26권2호
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    • pp.108-116
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    • 1991
  • 동해안 오호리에 서식하는 Sargassum confusum을 대상으로 광합성율과 생물량의 시간에 따른 변화를 조사하여 해조류의 년생산성을 예측하는 모델을 구성하였다. 즉 년생산량 P/SUB yr/를 P/SUB yr/ = .int.P/SUB t/·B/SUB t/dt (이때 P/SUB t/와 B/SUB t/는 주어진 시간에서의 광합성율과 생물량을 나타낸다)의 식을 설정하여 구하 였다. P/SUB t/는 수온과 광량의 함수로 보아 서로 다른 수온과 광도의 조건에서 광합 성을 측정하여 P/SUB t/에 대입하였다. 수온과 Sargassum confusum이 서식하는 수심 3 m를 기준으로 하였다. 모델에 의한 모의 결과는 수온이 일차생산량을 결정하는 가장 중요한 요인임을 보여주었다. 구름을 가정하여 30%의 광량을 무작위로 감소시켰을 때 해조류의 년생산량은 5%감소하였다.

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경상남도 사천시 진주층에서 산출되는 막대기형 스트로마톨라이트 (Rod-shaped Stromatolites from the Jinju Formation, Sacheon, Gyeongsangnam-do, Korea)

  • 최종걸
    • 한국지구과학회지
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    • 제28권1호
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    • pp.54-63
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    • 2007
  • 경상남도 사천시의 백악기 육성퇴적층인 진주층에서는 다양한 종류(막대기형, 멍울형, 층형, 작은 기둥형)의 스트로마톨라이트(stromatolite)가 산출된다. 세계적 산출 경향과는 달리 막대기형 스트로마톨라이트가 대량으로 발견되었다. 이는 나뭇가지에 부착 서식하던 미세조류에 의하여 탄산염 광물이 침전하여 동심원 모앙의 엽층리를 형성하여 생성된 구조이다. EPMA를 이용하여 구성광물, 속성작용, 풍화과정의 진행을 확인했다 일반적인 스트로마톨라이트는 내지성 화석이지만 막대기형 스트로마톨라이트는 외지성 화석으로도 산출될 수 있다는 점에서 특이하다. 전형적인 스트로마톨라이트의 미세 엽층리는 막대기의 포위 부분에 있으며, 여기서 최소 두 종류의 사상체 남조세균(평균 $2.2{\mu}m$$7.8{\mu}m$ 녹조류(평균 $32.3{\mu}m$ 발견하였으며, 이 때 남조세균은 피막 건설자이고, 녹조류는 피막 보조자로 판단되었다. 일부 박테리아에서는 세포사를 발견할 수 있었다.

Photosynthesis-Irradiance Relationship and Primary Production of Phytoplankton in Lake Gocheonam

  • Jung, Min-Kyung;Lee, Ok-Hee;Cho, Kyung-Je
    • 환경생물
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    • 제22권4호
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    • pp.524-531
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    • 2004
  • Photosynthetic activities and primary production of phytoplankton were investigated in Lake Gocheonam from October 1999 to August 2000. As an estuary lake with a barrage in the Southwestern coast of the Korean peninsula, the lake has received more attention after it became known as the habitat of large population of rare and endangered bird- Baikal Teal. As the lake had high algal biomass ranging from $20\mu{g}\;chl-aL^{-1}\;to\;125\mu{g}\;chl-aL^{-1}$ in average values and rich eutrophication indicator species, the freshwaters were in a very productive or hypertrophic state. In the results obtained from the phytoplankton incubation in the laboratory, the maximum photosynthetic rate $(P_{max})$ varied according to seasons and sampling stations. Photo- synthetic activities were higher during the warm season than the cold seasons and the serial order of $P_{max}$ was August dominated with Microcystis, April with Chlamydomonas and Nitzschia, October with Chlamydomonas and January with Stephanodiscus. The water of the lake was persistently turbid throughout the year due to strong winds from the adjacent sea. Despite the water turbidity, the phytoplankton productions estimated from a mathematical model had very broad range from 18mg C $m^{-2}day^{-1}\;to\;10,300mg\;C\;m^{-2}day^{-1}$.

Photodynamic Action by Endogenous Non-Chlorophyll Sensitizer As a Cause of Photoinhibition

  • Suh, Hwa-Jin;Kim, Chang-Sook;Jin Jung
    • Journal of Photoscience
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    • 제7권3호
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    • pp.87-95
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    • 2000
  • As sunlight not always optimized for every terrestrial plant in terms of light quality, quantity and duration, some plants suffer detrimental effects of sunlight exposure under certain conditions. Photoinhibition of photosynthesis is a typical phenomenon representing harmful light effects, commonly observed in many photosynthetic organisms. It is generally accepted that functional, structural loss of photosystem II complex(PSII) is the primary event of photoinhibition. Accumulating data also suggest that singlet oxygen($^1$O$_2$) is the main toxic species directly involved in it. There are two different views on the specific site and mechanism of $^1$O$_2$ production in the photosynthetic membrane. One of them favors the PSII reaction center, where the primary charge pairs recombination occurs as a prerequisite for the generation of $^1$O$_2$, and the other inclines to photosensitized $^1$O$_2$ formation by a substance located outside PSII. This article describes how we, as the advocators of the latter concept, have arrived at the conclusion that $^1$O$_2$ immediately involved in PSII photodamage is largely generated from the Rieske center of the cytochrome b$_{6}$/f complex and diffuses into PSII, attacking the reaction center subunits.s.

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Chlorella 의 물질대사에 미치는 미양원소의 결핍효과 1 (제 1 ) -생 및 광합성 에 관하여- (Effect of micronutritional-element deficienies on the metabolism of Chlorella cells. (I) -On the growth rate, respiation and photosynthesis-)

  • 이영록;진평;심웅섭
    • 미생물학회지
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    • 제5권1호
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    • pp.15-19
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    • 1967
  • Chlorella ellipsoidea cells were cultured in an iron, copper, zinc, manganese, molybdenum or boron-free medium. Physiological activities such as growth rate, reproduction, endogenous and glucose respiration, photosynthetic activity and biosythesis of chlorophyll of the micro-element definition cells were measured. It generally, growth rate, respiratory and photosynthetic activities, and biosynthesis of chlorophyll of the micro-element deficient cells decreased more or less, compared with those of the normal cells. The growth of the algal cells in an iron-free medium were retarded severely with the chlorosis, and the photosynthetic activity of the cells decreased remarkably even though the low content of chlorophyll in the cells owing to the iron-deficiency is considered. Therefore, it is deduced that iron takes part in the photosynthetic process itself, possibly by its participation in the photo phosphorylation coupled with electron transport. Respiratory activity of boron-deficient cells showed the most severe decrease whereas those of the molybdenum-deficient cells showed very slight decrease in spite of severe growth retardation.

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Synergistic effects of elevated carbon dioxide and sodium hypochlorite on survival and impairment of three phytoplankton species

  • Kim, Keunyong;Kim, Kwang Young;Kim, Ju-Hyoung;Kang, Eun Ju;Jeong, Hae Jin;Lee, Kitack
    • ALGAE
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    • 제28권2호
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    • pp.173-183
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    • 2013
  • Sodium hypochlorite (NaOCl) is widely used to disinfect seawater in power plant cooling systems in order to reduce biofouling, and in ballast water treatment systems to prevent transport of exotic marine species. While the toxicity of NaOCl is expected to increase by ongoing ocean acidification, and many experimental studies have shown how algal calcification, photosynthesis and growth respond to ocean acidification, no studies have investigated the relationship between NaOCl toxicity and increased $CO_2$. Therefore, we investigated whether the impacts of NaOCl on survival, chlorophyll a (Chl-a), and effective quantum yield in three marine phytoplankton belonging to different taxonomic classes are increased under high $CO_2$ levels. Our results show that all biological parameters of the three species decreased under increasing NaOCl concentration, but increasing $CO_2$ concentration alone (from 450 to 715 ${\mu}atm$) had no effect on any of these parameters in the organisms. However, due to the synergistic effects between NaOCl and $CO_2$, the survival and Chl-a content in two of the species, Thalassiosira eccentrica and Heterosigma akashiwo, were significantly reduced under high $CO_2$ when NaOCl was also elevated. The results show that combined exposure to high $CO_2$ and NaOCl results in increasing toxicity of NaOCl in some marine phytoplankton. Consequently, greater caution with use of NaOCl will be required, as its use is widespread in coastal waters.