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Scientific Papers Series A. Agronomy

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for the decline is the growing number of period<br />

due to of 12 hours darkness /12 bright.<br />

Figure 34. Depending on the type of intensity values<br />

Palmellopsis muralis changes in the number of cells<br />

Conductivity analysis of the data of the light<br />

intensity, as well as the influence on the<br />

number of cells is the effect on conductivity<br />

and conductivity increased with increasing light<br />

intensity (Figure 35) (Demirba, 2010; Demir<br />

et al., 2007; Eliçin at al., 2009).<br />

Palmellopsis muralis light intensity for the type<br />

of experiment, the effects of light intensity<br />

were not detected significant in pH changes<br />

value (Gökpınar 1983; Scragg et al., 2002)<br />

(Figure 36).<br />

Figure 35. Palmellopsis muralis changes in conductivity,<br />

depending of the light intensity<br />

Figure 36. Palmellopsis muralis changes in light<br />

intensity, depending on the type of pH values<br />

442<br />

CONCLUSIONS<br />

To optain the highest cell density culture of<br />

microalgea in per unit is objective of the<br />

operation. Culture technique used for<br />

production process of determining in addition<br />

to many factors limiting the process, the culture<br />

economy should be noted that an important<br />

factor as well. Different production techniques<br />

are applied depending on ecologic and<br />

economic conditions. For his reason,<br />

production enterprises must choose the best<br />

methods according to culture purposes.<br />

As a result, Dunaliella salina sp. species at<br />

relatively high temperatures, salinity, loving<br />

and very susceptible to ambient conditions and<br />

the external environment, rather than rapidly in<br />

closed environments need to be raised because<br />

it is contaminated. Show the best growth in the<br />

low tempered Palmellopsis muralis type and<br />

ambient conditions Dunaliella salina sp. To be<br />

less affected by the contaminated due to the<br />

low risk were grown outdoors more<br />

comfortable.<br />

REFERENCES<br />

Agra I.B., Warnijati S., Wiratni F., 1996. Two steps<br />

ethanolysis of castor oil using sulfiric acid as catalyst<br />

to producer motor oil. World Renewable Energy<br />

Congress, p., 1025, June 15 – 21, Colorado.<br />

Brown M.R., Jeffrey S.W., Garland C.D., 1989.<br />

Nutritional aspects of microalgae used in mariculture:<br />

a literature review. CSIRO Mar. Lab. Rep. 205, p. 44.<br />

Chisti Y., 2007. Biodiesel from microalgae<br />

Biotechnology Advances 25, p. 294–306.<br />

Demir N., Kırkaaç U.M., Topçu A., Zencir Ö., Pulatsü<br />

S., ve Benli K.Ç., 2007. Sarısu-Mamuca Göleti<br />

(Eskisehir) Su Kalitesi ve Besin Düzeyinin<br />

Belirlenmesi. Ankara Üniversitesi Tarım Bilimleri<br />

Dergisi. Sayı 13(4), p. 385-390.<br />

Demirba A., 2010. Use of algae as biofuel sources.<br />

Journal of Energy Conversion and Management.<br />

Volume 51, pp: 2738-2749.<br />

Eliçin A.K., Saçılık K., ve ERDOAN D., 2007. Haha<br />

Yaı Esterlerinin Bir Diesel Motorda Kullanım<br />

Olanaklarının Belirlenmesi. Tarımsal Mekanizasyon<br />

24. Ulusal Kongresi Bildiri Kitabı, 5-6 Eylül,<br />

Kahramanmara.<br />

Eliçin A.K., Kılıçkan A., ve Avcıolu A.O., 2009.<br />

Mikroalglerden Biyodizel Üretimi. 25. Tarımsal<br />

Mekanizasyon Ulusal Kongresi Bildiri Kitabı, Sayfa<br />

273-278, Isparta.<br />

Gökpınar ., 1983. Observations on the culture of a<br />

marine diyatom Phaeodactylum tricornitum Bohlinin<br />

different nutrient and salinity concentration. Ege Ü.<br />

Fac. of Science, Volume 6, p. 77-86.

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