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Featured researches published by H. Miyamoto.


Bioresource Technology | 2014

A usage of CO2 hydrate: convenient method to increase CO2 concentration in culturing algae.

Sho Nakano; Kwang-Hyeon Chang; Atsushi Shijima; H. Miyamoto; Yukio Sato; Yuji Noto; Jin-Yong Ha; Masaki Sakamoto

The addition of CO2 to algal culture systems can increase algal biomass effectively. Generally, gas bubbling is used to increase CO2 levels in culture systems; however, it is difficult to quantitatively operate to control the concentration using this method. In this study, we tested the usability of CO2 hydrate for phytoplankton culture. Specifically, green algae Pseudokirchneriella subcapitata were cultured in COMBO medium that contained dissolved CO2 hydrate, after which its effects were evaluated. The experiment was conducted according to a general bioassay procedure (OECD TG201). CO2 promoted algae growth effectively (about 2-fold relative to the control), and the decrease in pH due to dissolution of the CO2 in water recovered soon because of photosynthesis. Since the CO2 hydrate method can control a CO2 concentration easily and quantitatively, it is expected to be useful in future applications.


The Journal of Chemical Thermodynamics | 2015

Experimental measurements of carbon dioxide solubility in aqueous tetra-n-butylammonium bromide solutions

Sanehiro Muromachi; Atsushi Shijima; H. Miyamoto; Ryo Ohmura


The Journal of Chemical Thermodynamics | 2008

The (p, ρ, T, x) properties for {xNH3 + (1 − x)H2O} at T = (450 and 500) K over the pressure range from (10 to 200) MPa

Sanehiro Muromachi; H. Miyamoto; M. Uematsu


The Journal of Chemical Thermodynamics | 2008

Measurements of the critical parameters for {xNH3+(1−x)H2O} with x=(0.9098,0.7757,0.6808)

A. Sakabe; D. Arai; H. Miyamoto; M. Uematsu


The Journal of Chemical Thermodynamics | 2008

Measurements of saturated-liquid densities for isobutane at T = (280 to 407) K

H. Miyamoto; T. Koshi; M. Uematsu


The Journal of Chemical Thermodynamics | 2008

The (p, ρ, T, x) properties for (propane + n-butane + isobutane) ternary mixtures over the temperature range from (280 to 440) K at pressures from (1 to 200) MPa

H. Miyamoto; T. Koshi; M. Uematsu


The Journal of Chemical Thermodynamics | 2008

The (p, ρ, T, x) properties for (x1 n-butane + x2 isobutane) with x1 = (0.2625, 0.4913, and 0.7508) in the temperature range from (280 to 440) K at pressures from (1 to 200) MPa

H. Miyamoto; T. Koshi; M. Uematsu


International Journal of Thermophysics | 2014

Measurement of the (p, \(\rho \), T) Properties for Pure Hydrocarbons at Temperatures up to 600 K and Pressures up to 200 MPa

T. Ito; Y. Nagata; H. Miyamoto


The Journal of Chemical Thermodynamics | 2011

The precise measurement of the (vapour + liquid) equilibrium properties for (CO2 + isobutane) binary mixtures ☆

Y. Nagata; K. Mizutani; H. Miyamoto


The Journal of Chemical Thermodynamics | 2011

(p, ρ, T, x) properties for CO2/isobutane binary mixtures at T = (280 to 440) K and (3 to 200) MPa

T. Sugiyama; S. Orita; H. Miyamoto

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Atsushi Shijima

Toyama Prefectural University

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T. Matsumoto

Toyama Prefectural University

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Y. Nagata

Toyama Prefectural University

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