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Determination of Sliced Pineapple Drying Characteristics in a Closed Loop Heat Pump Assisted Drying System Image
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Determination of Sliced Pineapple Drying Characteristics in a Closed Loop Heat Pump Assisted Drying System

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Scale Up Sediment Microbial Fuel Cell for Powering Led Lighting Image

Scale Up Sediment Microbial Fuel Cell for Powering Led Lighting

Automatic and Online Detection of Rotor Fault State Image
Automatic and Online Detection of Rotor Fault State Image

Automatic and Online Detection of Rotor Fault State

2D Numerical Simulation and Sensitive Analysis of H\u002DDarrieus Wind Turbine Image
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2D Numerical Simulation and Sensitive Analysis of H-Darrieus Wind Turbine

Aerodynamic Analysis of Backward Swept in HAWT Rotor Blades Using CFD Image
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Aerodynamic Analysis of Backward Swept in HAWT Rotor Blades Using CFD

Thermal Decomposition and Kinetic Studies of Pyrolysis of Spirulina Platensis Residue Image
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Thermal Decomposition and Kinetic Studies of Pyrolysis of Spirulina Platensis Residue

2D Numerical Simulation and Sensitive Analysis of H\u002DDarrieus Wind Turbine Image
2D Numerical Simulation and Sensitive Analysis of H\u002DDarrieus Wind Turbine Image
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2D Numerical Simulation and Sensitive Analysis of H-Darrieus Wind Turbine

Aerodynamic Analysis of Backward Swept in HAWT Rotor Blades Using CFD Image
Aerodynamic Analysis of Backward Swept in HAWT Rotor Blades Using CFD Image
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Aerodynamic Analysis of Backward Swept in HAWT Rotor Blades Using CFD

Thermal Decomposition and Kinetic Studies of Pyrolysis of Spirulina Platensis Residue Image
Thermal Decomposition and Kinetic Studies of Pyrolysis of Spirulina Platensis Residue Image
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Thermal Decomposition and Kinetic Studies of Pyrolysis of Spirulina Platensis Residue

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Production of Solid Fuel by Torrefaction Using Coconut Leaves as Renewable Biomass Image
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Production of Solid Fuel by Torrefaction Using Coconut Leaves as Renewable Biomass

The reserves of non-renewable energy sources such as coal, crude oil and natural gas are not limitless, they gradually get exhausted and their price continually increases. In the last four decades, researchers have been focusing on alternate fuel resources to meet the ever increasing energy demand and to avoid dependence on crude oil. Amongst different sources of renewable energy, biomass residues hold special promise due to their inherent capability to store solar energy and amenability to subsequent conversion to convenient solid, liquid and gaseous fuels. At present, among the coconut farm wastes such as husks, shell, coir dust and coconut leaves, the latter is considered the most grossly under-utilized by in situ burning in the coconut farm as means of disposal. In order to utilize dried coconut leaves and to improve its biomass properties, this research attempts to produce solid fuel by torrefaction using dried coconut leaves for use as alternative source of energy. Torrefaction is a thermal method for the conversion of biomass operating in the low temperature range of 200oC-300oC under atmospheric conditions in absence of oxygen. Dried coconut leaves were torrefied at different feedstock conditions. The key torrefaction products were collected and analyzed. Physical and combustion characteristics of both torrefied and untorrefied biomass were investigated. Torrefaction of dried coconut leaves significantly improved the heating value compared to that of the untreated biomass. Proximate compositions of the torrefied biomass also improved and were comparable to coal. The distribution of the products of torrefaction depends highly on the process conditions such as torrefaction temperature and residence time. Physical and combustion characteristics of torrefied biomass were superior making it more suitable for fuel applications.Article History: Received June 24th 2016; Received in revised form August 16th 2016; Accepted 27th 2016; Available onlineHow to Cite This Article: Pestaño, L.D.B. and Jose, W.I. (2016) Production of Solid Fuel by Torrefaction Using Coconut Leaves As Renewable Biomass. Int. Journal of Renewable Energy Development, 5(3), 187-197.http://dx.doi.org/10.14710/ijred.5.3.187-197
Potency of Solar Energy Applications in Indonesia Image
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Potency of Solar Energy Applications in Indonesia

Currently, 80% of conventional energy is used to fulfill general public's needs andindustries. The depletion of oil and gas reserves and rapid growth in conventional energyconsumption have continuously forced us to discover renewable energy sources, like solar, wind,biomass, and hydropower, to support economic development in the future. Solar energy travels at aspeed of 186,000 miles per second. Only a small part of the radiant energy that the sun emits intospace ever reaches the Earth, but that is more than enough to supply all our energy demand.Indonesia is a tropical country and located in the equator line, so it has an abundant potential ofsolar energy. Most of Indonesian area get enough intensity of solar radiation with the average dailyradiation around 4 kWh/m2. Basically, the solar systems use solar collectors and concentrators forcollecting, storing, and using solar radiation to be applied for the benefit of domestics, commercials,and industrials. Common applications for solar thermal energy used in industry are the SWHs, solardryers, space heating, cooling systems and water desalination.
Biogas Production From Cow Manure Image
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Biogas Production From Cow Manure

Pre\u002Dtreatment of Used\u002DCooking Oil as Feed Stocks of Biodiesel Production by Using Activated Carbon and Clay Minerals Image
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Pre-treatment of Used-Cooking Oil as Feed Stocks of Biodiesel Production by Using Activated Carbon and Clay Minerals

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Modeling and PSO Optimization of Humidifier-Dehumidifier Desalination

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Study of Gasohol as Alternative Fuel for Gasoline Substitution: Characteristics and Performances

Biogas Production From Cow Manure Image
Biogas Production From Cow Manure Image
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Biogas Production From Cow Manure

Pre\u002Dtreatment of Used\u002DCooking Oil as Feed Stocks of Biodiesel Production by Using Activated Carbon and Clay Minerals Image
Pre\u002Dtreatment of Used\u002DCooking Oil as Feed Stocks of Biodiesel Production by Using Activated Carbon and Clay Minerals Image
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Pre-treatment of Used-Cooking Oil as Feed Stocks of Biodiesel Production by Using Activated Carbon and Clay Minerals

Modeling and PSO Optimization of Humidifier\u002DDehumidifier Desalination Image
Modeling and PSO Optimization of Humidifier\u002DDehumidifier Desalination Image
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Modeling and PSO Optimization of Humidifier-Dehumidifier Desalination

Study of Gasohol as Alternative Fuel for Gasoline Substitution: Characteristics and Performances Image
Study of Gasohol as Alternative Fuel for Gasoline Substitution: Characteristics and Performances Image
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Study of Gasohol as Alternative Fuel for Gasoline Substitution: Characteristics and Performances

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Influence of the Determination Methods of K and C Parameters on the Ability of Weibull Distribution to Suitably Estimate Wind Potential and Electric Energy Image
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Influence of the Determination Methods of K and C Parameters on the Ability of Weibull Distribution to Suitably Estimate Wind Potential and Electric Energy

The modeling of the wind speed distribution is of great importance for the assessment of wind energy potential and the performance of wind energy conversion system. In this paper, the choice of two determination methods of Weibull parameters shows theirs influences on the Weibull distribution performances. Because of important calm winds on the site of Ngaoundere airport, we characterize the wind potential using the approach of Weibull distribution with parameters which are determined by the modified maximum likelihood method. This approach is compared to the Weibull distribution with parameters which are determined by the maximum likelihood method and the hybrid distribution which is recommended for wind potential assessment of sites having nonzero probability of calm. Using data provided by the ASECNA Weather Service (Agency for the Safety of Air Navigation in Africa and Madagascar), we evaluate the goodness of fit of the various fitted distributions to the wind speed data using the Q – Q plots, the Pearson's coefficient of correlation, the mean wind speed, the mean square error, the energy density and its relative error. It appears from the results that the accuracy of the Weibull distribution with parameters which are determined by the modified maximum likelihood method is higher than others. Then, this approach is used to estimate the monthly and annual energy productions of the site of the Ngaoundere airport. The most energy contribution is made in March with 255.7 MWh. It also appears from the results that a wind turbine generator installed on this particular site could not work for at least a half of the time because of higher frequency of calm. For this kind of sites, the modified maximum likelihood method proposed by Seguro and Lambert in 2000 is one of the best methods which can be used to determinate the Weibull parameters.
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Biodiesel Production From the Microalgae Nannochloropsis by Microwave Using CaO and MgO Catalysts

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Effect of Hydrothermal Treatment Temperature on the Properties of Sewage Sludge Derived Solid Fuel

Effect of Hydrothermal Treatment Temperature on the Properties of Sewage Sludge Derived Solid Fuel Image
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