LEMON Manuals: Even more car manuals for everyone
Home >> Mercedes Benz >> 2019 >> A220 Base >> Repair and Diagnosis >> External Pages >> Different car >> Section 27 (Overall Vehicle (4 Of 4) -- 118 Chassis) >> Capacities & Specifications >> Fatty Acid Methyl Ester (FAME) As Diesel Fuel - BB00.40-P-0135-00A

Fatty Acid Methyl Ester (FAME) As Diesel Fuel - BB00.40-P-0135-00A

WARNING: This page does not describe the selected car, but rather 12 other vehicles, including the 2023 Mercedes-Benz CLA45 AMG, 2023 Mercedes-Benz CLA35 AMG, 2023 Mercedes-Benz CLA250, 2022 Mercedes-Benz CLA45 AMG, and 2022 Mercedes-Benz CLA35 AMG. However, it is still accessible from the selected car via links, so may be relevant.

Model All (4xWD, CAR, Heavy transporter, Light transporter, smart) 

Sheet 135.0 

Preliminary remarks 

MB diesel engines are basically designed for diesel fuels which meet the respective national or European requirements. Other types of fuel are not generally planned for.

In the interest of using biomaterials and supporting domestic agriculture the past few years have entertained discussions on the possible application of "Bio-diesel fuels". In chemical terms these so-called "bio diesels" are mainly vegetable oils, which can be transformed as the result of a chemical reaction into appropriately mixed fatty acid methyl esters (FAME).

Because the most varied of abbreviations are used to describe bio-diesel fuels we have listed below a brief "glossary":

FAME Fatty acid methyl ester generic term, to be used in future in the EU standardization.

PME vegetable oil fatty acid - previously used methyl ester generic term in German linguistic area.

RME rape seed oil fatty acid - specific "organic methyl ester diesel fuel" made from rape seed oil.

Chemically unchanged vegetable oil  (e.g. rape seed oil, soybean oil, sunflower oil, etc.) may not be used in Mercedes-Benz diesel engines  . This applies irrespective of the degree of purity of the vegetable oil. Compared to conventional diesel fuel, vegetable oils have extremely large molecular weights, which result in several unfavorable properties:

The use of chemically unmodified vegetable oils can cause extremely serious damage to the engine in a short time. The main reasons for the engine damage are: signs of carbonization of the injection nozzles, the combustion chamber surfaces, the piston ring grooves, in the oil holes, etc.).

For the remainder of the text that deals with the transesterified substance, we will refer to "biodiesel fuel" in keeping with the European standard activities as "FAME" (fatty acid methyl ester), although our experience has shown that we basically tend more towards RME.

FAME may have a future as a niche fuel and be used where ecological advantages are required in particular (e.g. in water protection areas).

A distinction is to be made between operating with 100% FAME and mixtures of FAME with conventional diesel fuel. Items 1 to 3 listed below relate to 100% FAME, mixtures are dealt with in item 4.

  1. Approval status 

    A general approval for passenger cars is not possible due to material incompatibility. As of 8/99, for individual models, E 200/220 D or CDI, C 200/220 D or CDI - irrespective of the respective engine designation - FAME-compatible vehicle equipment is available as special equipment. The vehicles mentioned mainly contain other, consistent elastomers in the fuel and fuel injection system. However, in connection with emission stage EU 4, this FAME compatible special equipment cannot be used for reasons that have to do with exhaust aftertreatment.

    Further details, in particular on the replacement parts valid for this, can be obtained from Service Information 00.40-P0005A dated 30.3.2000.

    The approval of MB commercial vehicles and MB industrial engines for FAME operation is regulated by service information releases (STIN, e.g. No. 00.00S0028), which are available to the MB field organizations; they describe the approval status with regard to vehicle model, manufacture year, any possible conversion measures required, etc. for SK, MK, LK vehicles, buses, vans and Unimogs.

  2. Technical situation 
    1. Engine values 

      In comparison with diesel fuel operation the following applies to the engine values when operating with FAME:

      • The volumetric fuel consumption is slightly higher because of the lower calorific value.
      • The rated output is slightly lower due to the lower calorific value and higher viscosity.
      • The emissions are at a similar low level on direct injection engines (trucks, buses). The black smoke level is considerably lower. Slightly higher NOx values are monitored.

      In the event of unfavorable conditions, in particular where the engine idles for a long time, an unusual odor may result. The use of an oxidation catalytic converter will result in a significant reduction in HC, CO and particulate emissions as well as any odors.

    2. Fuel 

      Items 1 to 3 of this sheet apply to pure FAME, not to mixtures of FAME with diesel fuel. In vehicles approved for FAME operation it is however permissible to use FAME or diesel fuel alternately, without the need for any additional measures. For mixtures of FAME with diesel fuel, see Item 4.

      The fuel, also in the case of mixtures, must meet the requirements of the standard draft EN 14214.

      It is particularly important to pay attention to complying with EN 14214 as operating with fuel of lower quality can result in malfunctions and damage.

    3. Engine oil 

      With regard to its disposal the following applies in general:

      Not every producer of rerefined engine oils is in a position to process engine oils, which exhibit a specific FAME content. The customer should ask at his/her used oil dealership.

      1. PASSENGER CAR 

        The same oil change intervals apply here as for diesel fuel.

        Replace the fuel filter at 1000 to 5000 km as well as every 30, 000 km.

        When diesel fuel is used for longer periods (> 10, 000 km), the fuel filter must be changed shortly after converting to FAME (at 1000 - 2000 km).

        Vehicles, which are converted to FAME and which are shut down for more than 2 weeks are to be converted to diesel fuel beforehand and driven for at least 30 minutes.

        When temperatures drop to below -10°C it is advisable to change to commercial winter diesel fuel.

      2. CVs 

        In FAME operation (B100), engine oils are to be used in accordance with MB Specifications for Operating Fluids 228.3/.31/.5/.51. The reduced oil change intervals for FAME operation are specified in the Service Information SI 00.40-N-0008A dated 12.05.2009 for all commercial vehicle engines.

    4. FAME resistance of components 

      Passenger cars:

      The material in elastomer hoses and seals in the fuel supply system has to be converted to fluorocaoutchouc; the availability of such parts is permissible for specific models only (see "Approval status"). More details are given in the service information releases as listed under 1).

      Commercial vehicles:

      In some vehicle models not all components, particularly those made from elastomer material, are resistant to FAME when subject to continuous operation. Suitability for FAME operation has to be checked for each individual vehicle model for reasons of road and operating safety and may be provided by means of specific modifications in some cases, if necessary. More details are given in the service information releases as listed under 1).

    5. Miscellaneous 

      The question regarding winter capability/cold starting has not been solved. Depending upon the vehicle and the engine it may be necessary to install a fuel preheater system to cope with minus temperatures.

      FAME is an excellent solvent. Therefore any contact with the paint should be avoided when refueling.

  3. Legal situation 
    1. Fuel standard 

      Valid for FAME as a diesel fuel is the standard EN 14214 Issue 02/2009.

    2. General operating permit 

      When in FAME mode the rated output as specified by the manufacturer may drop by more than 5 %. This does not invalidate the general operating permit.

  4. Mixtures of FAME with mineral oil diesel fuel 
    1. Normative information 

      From a political aspect (EU commission) the use of bio fuels in the EU is to be favored. This is why the currently valid revision of EN 590 from 2009 in the German DIN 51628 and Austrian uNORM 1590 expressly permitted the admixture of up to 7% by vol. FAME  in accordance with EN 14214.

    2. Technical implications 

      The regulations described in 4.1 presuppose that all vehicles on the European market withstand continuous operation with up to 7% by vol. FAME without disadvantages for the customer or environment. This cannot be assured completely.

      According to a statement by the ACEA (Association of the European automotive industry), a concentration of 7% by vol. of FAME can be tolerated, although there are certain risks with older vehicles. The mixture, however, must fully conform to EN 590:2009 and the FAME share to EN 14214. Higher concentrations of FAME must be noted and should be avoided on vehicles which have not been adapted.

    3. Situation outside the EU 

      As a consequence of the increase in the cost of primary energy (crude oil prices), the option of vegetable oil-based fuels is more and more evaluated as being positive in many markets. However, outside Europe the raw material is usually based on vegetable oils such as palm oil, soybean oil or the like; in addition, ethanol is sometimes used for transesterification instead of methanol. The resulting methyl esters or ethyl esters usually have different fuel properties than rape seed oil methyl ester. Furthermore, EN 14214 only applies in the EU, the analog ASTM 6751 (USA) does not describe the quality in a comparable way, and we have not tested the resulting mixtures. Mandatory additives in an American state (Minnesota) caused considerable problems in the field.

    4. Further development within the EU 

      In accordance with the relevant EU recommendation, attempts are being made to increase the 10% proportion of regenerative constituents (energy recovery) in fuel within the EU.