Showing posts with label diesel. Show all posts
Showing posts with label diesel. Show all posts

Thursday, 19 January 2023

Analysis of Exhaust Emissions with Low Heat Loss Diesel Engine with Alternate Fuels| Chapter 3 | Techniques and Innovation in Engineering Research Vol. 7

 Gaseous fuel is an efficient and environmentally-friendly energy source over traditional fuels and are highly combustible and produce a lot of energy per unit volume.  It provides  a high energy density per unit volume and  little toxic by-products when combusted which reduces air pollution problems. Gaseous fuel help to reduce air pollution and greenhouse gas emissions. For these reasons, gaseous fuel is becoming increasingly popular and is likely to continue to be used more and more in the future. Biodiesel is a form of diesel fuel derived from plants, consisting of long-chain fatty acid esters. It is a renewable and clean-burning fuel that is made from waste vegetable oils, animal fats, or recycled restaurant grease for use in diesel vehicles. Biodiesel produces less toxic pollutants and greenhouse gases than petroleum diesel and it improves engine lubrication and increases engine life since it is virtually sulfur-free.The drawbacks associated with use of vegetable oils in diesel engines such as high viscosity and low volatility can be reduced to some extent by converting them into biodiesel. However, they cause combustion problems in diesel engine, due to their moderate viscosity, and hence call for low heat rejection (LHR) engine, which can burn low calorific value fuel, give high heat release rate and faster rate of combustion. The concept of ceramic coated engine is to minimize heat loss to the coolant, thereby increasing thermal efficiency. LHR engine in this investigation consisted of ceramic coated diesel engine.They are many methods to induct gaseous fuels such as port injection, carburetion technique, injection of gaseous fuel at the near end of compression stroke etc,.Investigations were carried out with biogas gas as primary fuel inducted by port injection and cottonseed biodiesel was injected into the engine in conventional manner. Particulate matter (PM), oxides of nitrogen (NOx), carbon mono oxide (CO) levels and un-burnt hydro carbons (UBHC) are the exhaust emissions from a diesel engine. They also cause environmental effects like green-house effect and global warming. Hence control of these emissions is an immediate effect and an urgent step. The pollutants of PM, NOx,CO and UBHC were determined at full load operation of the engine with varied injection timing such as recommended injection timing and optimum injection timing. NOx levels were reduced with provision of exhaust gas recirculation (EGR) at optimum flow rate of 10%. The maximum induction of biogas with conventional engine (CE) was 35% of total mass of biodiesel as full load operation, while it was 45% with ceramic coated diesel engine (LHR). Particulate emissions were determined by AVL Smoke meter, while other emissions were measured by Netel Chromatograph multi-gas analyzer at full load operation. These pollutants were drastically reduced with induction of biogas and further reduced with advanced injection timing.  

Author(s) Details:

B. Rama Krishna,
Mechatronics Engineering Department, Mahatma Gandhi Institute of Technology, Gandipet, Hyderabad, India.

M. V. S. Murali Krishna,
Mechanical Engineering Department, Chaitanya Bharathi Institute of Technology, Gandipet, Hyderabad, India.

P. Usha Sri,
Mechanical Engineering Department, College of Engineering, Osmania University, Hyderabad, India.

Please see the link here: https://stm.bookpi.org/TAIER-V7/article/view/9118


Monday, 28 November 2022

Emulsified Fuel: An Alluring Fuel for Power Generation| Chapter 3 | Current Overview on Science and Technology Research Vol. 9

 Emulsion fuel is an attractive elective fuel that has the potential to lower particulate emissions in condensation ignition turbines and stationary engines. In this review, we will review different types of oil fuel and their working principles. Exceptional emphasis is put on the components basic to the expected trade use of these emulsion fuels. The impact of the fuel on motor performance, durability, and diffusions is also captured into account. A critical determinant in ensuring fuel unity with engines is the expression of additives to straighten out certain key properties and uphold stability. Maintaining tool safety accompanying these emulsions, however, may make necessary fuel tank modifications. More research is wanted to specify acceptable fuel traits, confirm complete effects on engine grit, and ensure security in handling and storage. Fuel emulsions are a system of reducing contaminant emissions from the combustion of liquid oil fuels. The introduction concerning this type of fuel onto the market is depicted by the draft of fuel emulsions with high cohesion and improved flow traits. The results were helpful for both the concern of the thermo-chemical possessions of the tested fuels and the computations of a chemical balance model.

Author(s) Details:

Harshal Patil,
Department of Oils, Oleo-chemicals & Surfactants Technology, Institute of Chemical Technology, Matunga, Mumbai-400019, India.

Jyotsna Waghmare,
Department of Oils, Oleo-chemicals & Surfactants Technology, Institute of Chemical Technology, Matunga, Mumbai-400019, India.

Please see the link here: https://stm.bookpi.org/COSTR-V9/article/view/8760

Monday, 29 November 2021

Determining the Performance of Ultra Low Sulphur Diesel Fuel Additives and Its Side Effects | Chapter 4 | New Visions in Science and Technology Vol. 10

 Fuel additives have sparked interest due to the demand for ultra-low sulphur diesel fuel and the high cost of additions. It is the cleanest diesel fuel available today, and it is used in automobile engines all over the world. To meet the criteria of the specification, cetane improver (CI) and lubricity additive (LA) are regularly added to ultra-low Sulphur diesel (ULSD) fuel. Additives are always more expensive than diesel fuel, and their price is determined by their performance. Additives can sometimes have unintended consequences on the fuel's other qualities. As a result, when employing additions, the performance of the additive as well as its negative impact on other fuel qualities are critical considerations.

The Nayara Energy Research and Development team conducted a laboratory size experiment to assess the performance and side effects of several ULSD fuel additives, such as cetane improvers and acid and ester based lubricity additives.

The following are the aspects of ULSD fuel that have been investigated:

1) Use different cetane improvers.

2) The effectiveness of cetane improvers.

3) The effect of a cetane improver on ULSD fuel lubricity.

4) Lubricity additive performance in the presence of cetane improvers.

5) The impact of a cetane improver on twenty other diesel fuel characteristics.

6) A two-month stability research was conducted on critical Diesel fuel qualities.

The findings of an experimental investigation are both fascinating and valuable. The findings clearly show that cetane improvers can degrade fuel lubricity and interfere with the efficacy of lubricity additives. 2EHN raises the total nitrogen content of the fuel, resulting in more NOx being produced during combustion. When compared to acid-based lubricity additives, ester-based lubricity additives perform better. As a result, the research will be extremely valuable to petroleum refineries in determining the optimal chemicals and combinations of additives to utilise in the production of ULSD gasoline. Manufacturers of additives for ULSD fuel will also need to design and create the best additives. This experimental investigation will be useful to research and analytical scientists in evaluating the performance of additives and their adverse effects. It will give consumers with information on alternative additives and improvers.

The findings of numerous laboratory experiments, the performance assessment data of cetane improvers, the adverse effects of cetane improvers, and the performance of lubricity additives (acid and ester based) in the presence of cetane improvers are all included in the study report. The results of a two-month stability trial and information from a literature review are also included in the study report.

Author(S) Details

Dhiraj Gondaliya
General Manager of Laboratory, Nayara Energy Limited, India.

Narhar Deshpande
Joint General Manager of Laboratory, Nayara Energy Limited, India.

Ashok Maghodiya
Manager of R&D Laboratory, Nayara Energy Limited, India.

View Book:- https://stm.bookpi.org/NVST-V10/article/view/4883