Liquid Biofuels

Здесь есть возможность читать онлайн «Liquid Biofuels» — ознакомительный отрывок электронной книги совершенно бесплатно, а после прочтения отрывка купить полную версию. В некоторых случаях можно слушать аудио, скачать через торрент в формате fb2 и присутствует краткое содержание. Жанр: unrecognised, на английском языке. Описание произведения, (предисловие) а так же отзывы посетителей доступны на портале библиотеки ЛибКат.

Liquid Biofuels: краткое содержание, описание и аннотация

Предлагаем к чтению аннотацию, описание, краткое содержание или предисловие (зависит от того, что написал сам автор книги «Liquid Biofuels»). Если вы не нашли необходимую информацию о книге — напишите в комментариях, мы постараемся отыскать её.

Compiled by a well-known expert in the field,
provides a profound knowledge to researchers about biofuel technologies, selection of raw materials, conversion of various biomass to biofuel pathways, selection of suitable methods of conversion, design of equipment, selection of operating parameters, determination of chemical kinetics, reaction mechanism, preparation of bio-catalyst: its application in bio-fuel industry and characterization techniques, use of nanotechnology in the production of biofuels from the root level to its application and many other exclusive topics for conducting research in this area.
Written with the objective of offering both theoretical concepts and practical applications of those concepts,
can be both a first-time learning experience for the student facing these issues in a classroom and a valuable reference work for the veteran engineer or scientist. The description of the detailed characterization methodologies along with the precautions required during analysis are extremely important, as are the detailed description about the ultrasound assisted biodiesel production techniques, aviation biofuels and its characterization techniques, advance in algal biofuel techniques, pre-treatment of biomass for biofuel production, preparation and characterization of bio-catalyst, and various methods of optimization.
The book offers a comparative study between the various liquid biofuels obtained from different methods of production and its engine performance and emission analysis so that one can get the utmost idea to find the better biofuel as an alternative fuel. Since the book covers almost all the field of liquid biofuel production techniques, it will provide advanced knowledge to the researcher for practical applications across the energy sector.
A valuable reference for engineers, scientists, chemists, and students, this volume is applicable to many different fields, across many different industries, at all levels. It is a must-have for any library.

Liquid Biofuels — читать онлайн ознакомительный отрывок

Ниже представлен текст книги, разбитый по страницам. Система сохранения места последней прочитанной страницы, позволяет с удобством читать онлайн бесплатно книгу «Liquid Biofuels», без необходимости каждый раз заново искать на чём Вы остановились. Поставьте закладку, и сможете в любой момент перейти на страницу, на которой закончили чтение.

Тёмная тема
Сбросить

Интервал:

Закладка:

Сделать

75. Santin, C.M., Michelin, S., Scherer, R.P., Valério, A., di Luccio, M., Oliveira, D., Oliveira, J. V., Comparison of macauba and soybean oils as substrates for the enzymatic biodiesel production in ultrasound–assisted system. Ultrason. Sonochem. , 35, 525–528, 2017.

76. Bhangu, S.K., Gupta, S., Ashokkumar, M., Ultrasonic enhancement of lipase–catalysed transesterification for biodiesel synthesis. Ultrason. Sonochem. , 34, 305–309, 2017.

77. Adewale, P., Dumont, M.J., Ngadi, M., Enzyme-catalyzed synthesis and kinetics of ultrasonic assisted methanolysis of waste lard for biodiesel production. Chem. Eng. J. , 284, 158–165, 2016.

78. Adewale, P., Dumont, M.J., Ngadi, M., Enzyme-catalyzed synthesis and kinetics of ultrasonic-assisted biodiesel production from waste tallow. Ultrason. Sonochem. , 27, 1–9, 2015.

79. Subhedar, P.B., Botelho, C., Ribeiro, A., Castro, R., Pereira, M.A., Gogate, P.R., Cavaco-Paulo, A., Ultrasound intensification suppresses the need of methanol excess during the biodiesel production with Lipozyme TL–IM. Ultrason. Sonochem. , 27, 530–535, 2015.

80. Michelin, S., Penha, F.M., Sychoski, M.M., Scherer, R.P., Treichel, H., Valério, A., Di Luccio, M., de Oliveira, D., Oliveira, J. V., Kinetics of ultrasound–assisted enzymatic biodiesel production from Macauba coconut oil. Renew. Energy , 76, 388–393, 2015.

81. Trentin, C.M., Popiolki, A.S., Batistella, L., Dalla Rosa, C., Treichel, H., de Oliveira, D., Oliveira, J. V., Enzyme-catalyzed production of biodiesel by ultrasound-assisted ethanolysis of soybean oil in solvent-free system. Bioprocess Biosyst. Eng. , 38(3), 437–448, 2015.

82. Karimi, M., Keyhani, A., Akram, A., Rahman, M., Jenkins, B., Stroeve, P., Hybrid response surface methodology-genetic algorithm optimization of ultrasound–assisted transesterification of waste oil catalysed by immobilized lipase on mesoporous silica/iron oxide magnetic core-shell nanoparticles. Environ. Technol. , 34(13–14), 2201–2211, 2013.

83. Batistella, L., Lerin, L.A., Brugnerotto, P., Danielli, A.J., Trentin, C.M., Popiolski, A., Treichel, H., Oliveira, J. V., de Oliveira, D., Ultrasound-assisted lipase-catalyzed transesterification of soybean oil in organic solvent system. Ultrason. Sonochem. , 19(3), 452–458, 2012.

84. Kumar, G., Kumar, D., Johari, R., Singh, C., Enzymatic transesterification of Jatropha curcas oil assisted by ultrasonication. Ultrason. Sonochemistry, 18(5), 923–927, 2011.

85. Yu, D., Tian, L., Wu, H., Wang, S., Wang, Y., Ma, D., Fang, X., Ultrasonic irradiation with vibration for biodiesel production from soybean oil by Novozym 435. Process Biochem. , 45(4), 519–525, 2010.

86. Gogate, P.R., Sutkar, V.S., Pandit, A.B., Sonochemical reactors: Important design and scale up considerations with a special emphasis on heterogeneous systems. Chem. Eng. J. , 166(3), 1066–1082, 2011.

87. Gogate, P.R., Shirgaonkar, I.Z., Sivakumar, M., Senthilkumar, P., Vichare, N.P., Pandit, A.B., Cavitation reactors: Efficiency assessment using a model reaction. AIChE J. , 47(11), 2526–2538, 2001.

88. Panda, D., Saharan, V.K., Manickam, S., Controlled Hydrodynamic Cavitation: A Review of Recent Advances and Perspectives for Greener Processing. Processes , 8, 220, 2020.

89. Gogate, P.R., Tatake, P.A., Kanthale, P.M., Pandit, A.B., Mapping of sonochemical reactors: Review, analysis, and experimental verification. AIChE J. , 48(7), 1542–1560, 2002.

90. Sharma, A., Gogate, P.R., Mahulkar, A., Pandit, A.B., Modeling of hydrodynamic cavitation reactors based on orifice plates considering hydrodynamics and chemical reactions occurring in bubble. Chem. Eng. J. , 143(1–3), 201–209, 2008.

91. Patil, A., Baral, S.S., Dhanke, P., Kore, V., Biodiesel production using prepared novel surface functionalised TiO2 nano-catalyst in hydrodynamic cavitation reactor. Mater. Today Proc. , 27(1), 198–203, 2020.

92. Khan, I.A., Prasad, N., Pal, A., Yadav, A.K., Efficient production of biodiesel from Cannabis sativa oil using intensified transesterification (hydrodynamic cavitation) method. Energy Sources, Part A Recover. Util. Environ. Eff. , 1–10, 2019.

93. Bargole, S., George, S., Saharan, V.K., Improved rate of transesterification reaction in biodiesel synthesis using hydrodynamic cavitating devices of high throat perimeter to flow area ratios. Chem. Eng. Process. Intensif. , 139, 1–13, 2019.

94. Chitsaz, H., Omidkhah, M., Ghobadian, B., Ardjmand, M., Optimization of hydrodynamic cavitation process of biodiesel production by response surface methodology. J. Environ. Chem. Eng. , 6(2), 2262–2268, 2018.

95. Kolhe, N.S., Gupta, A.R., Rathod, V.K., Production and purification of biodiesel produced from used frying oil using hydrodynamic cavitation. Resour. Technol. , 3(2), 198–203, 2017.

96. Bokhari, A., Chuah, L.F., Yusup, S., Klemeš, J.J., Akbar, M.M., Kamil, R.N.M., Cleaner production of rubber seed oil methyl ester using a hydrodynamic cavitation: optimisation and parametric study. J. Clean. Prod. , 136, 31–41, 2016.

97. Mohod, A. V., Gogate, P.R., Viel, G., Firmino, P., Giudici, R., Intensification of biodiesel production using hydrodynamic cavitation based on high speed homogenizer. Chem. Eng. J. , 316, 751–757, 2017.

98. Chuah, L.F., Yusup, S., Abd Aziz, A.R., Bokhari, A., Abdullah, M.Z., Cleaner production of methyl ester using waste cooking oil derived from palm olein using a hydrodynamic cavitation reactor. J. Clean. Prod. , 112, 4505–4514, 2016.

99. Chuah, L.F., Yusup, S., Abd Aziz, A.R., Bokhari, A., Klemeš, J.J., Abdullah, M.Z., Intensification of biodiesel synthesis from waste cooking oil (Palm Olein) in a Hydrodynamic Cavitation Reactor: Effect of operating parameters on methyl ester conversion. Chem. Eng. Process. Process Intensif. , 95, 235–240, 2015.

100. Gole, V.L., Naveen, K.R., Gogate, P.R., Hydrodynamic cavitation as an efficient approach for intensification of synthesis of methyl esters from sustainable feedstock. Chem. Eng. Process. Process Intensif. , 71, 70–76, 2013.

101. Pal, A., Verma, A., Kachhwaha, S.S., Maji, S. Biodiesel production through hydrodynamic cavitation and performance testing. Renew. Energy , 35(3), 619–624, 2010.

102. Pawar, S.K., Mahulkar, A.V., Pandit, A.B., Roy, K., Moholkar, V.S., Sonochemical effect induced by hydrodynamic cavitation: Comparison of venturi/orifice flow geometries. AIChE J. , 63(10), 4705–4716, 2017.

103. Karthikeyan, M., Renganathan, S., Baskar, G., Production of biodiesel from waste cooking oil using MgMoO4–supported TiO2 as a heterogeneous catalyst. Energy Sources, Part A Recover. Util. Environ. Eff. , 39(21), 2053–2059, 2017.

104. Kanthale, P.M., Gogate, P.R., Pandit, A.B., Wilhelm, A.M., Dynamics of cavitational bubbles and design of a hydrodynamic cavitational reactor: Cluster approach. Ultrason. Sonochem. , 12(6), 441–452, 2005.

105. Keller, J.B., Miksis, M.J., Bubble oscillations of large amplitude. J. Acoust. Soc. Am. , 68, 628–633, 1980.

106. Krishnan, S.J., Dwivedi, P., Moholkar, V.S., Numerical investigation into the chemistry induced by hydrodynamic cavitation. Ind. Eng. Chem. Res. , 45, 1493–1504, 2006.

Читать дальше
Тёмная тема
Сбросить

Интервал:

Закладка:

Сделать

Похожие книги на «Liquid Biofuels»

Представляем Вашему вниманию похожие книги на «Liquid Biofuels» списком для выбора. Мы отобрали схожую по названию и смыслу литературу в надежде предоставить читателям больше вариантов отыскать новые, интересные, ещё непрочитанные произведения.


Отзывы о книге «Liquid Biofuels»

Обсуждение, отзывы о книге «Liquid Biofuels» и просто собственные мнения читателей. Оставьте ваши комментарии, напишите, что Вы думаете о произведении, его смысле или главных героях. Укажите что конкретно понравилось, а что нет, и почему Вы так считаете.

x