委员会实施决定(EU) 2016/362,依据欧洲议会和理事会条例(EC) No 443/2009,就降低客车二氧化碳排放量的创新技术,关于批准MAHLE Behr GmbH & Co公司的焓储罐

技术法规类型:欧盟Eurlex法规 来源:tbtmap

EURLEX ID:32016D0362

OJ编号:OJ L 67, 12.3.2016, p. 59-68

中文标题:委员会实施决定(EU) 2016/362,依据欧洲议会和理事会条例(EC) No 443/2009,就降低客车二氧化碳排放量的创新技术,关于批准MAHLE Behr GmbH & Co公司的焓储罐

原文标题:Commission Implementing Decision (EU) 2016/362 of 11 March 2016 on the approval of the MAHLE Behr GmbH & Co. KG enthalpy storage tank as an innovative technology for reducing CO2 emissions from passenger cars pursuant to Regulation (EC) No 443/2009 of the European Parliament and of the Council (Text with EEA relevance)

分类:13.30.10_机动车;15.10.20.30_大气污染监测

文件类型:二级立法 Decision|决定

生效日期:2016-04-01

法规全文:查看欧盟官方文件

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12.3.2016   

EN

Official Journal of the European Union

L 67/59


COMMISSION IMPLEMENTING DECISION (EU) 2016/362

of 11 March 2016

on the approval of the MAHLE Behr GmbH & Co. KG enthalpy storage tank as an innovative technology for reducing CO2 emissions from passenger cars pursuant to Regulation (EC) No 443/2009 of the European Parliament and of the Council

(Text with EEA relevance)

THE EUROPEAN COMMISSION,

Having regard to the Treaty on the Functioning of the European Union,

Having regard to Regulation (EC) No 443/2009 of the European Parliament and of the Council of 23 April 2009 setting emissions performance standards for new passenger cars as part of the Community's integrated approach to reduce CO2 emissions from light-duty vehicles (1), and in particular Article 12(4) thereof,

Whereas:

(1)

The supplier MAHLE Behr GmbH & Co. KG (the ‘Applicant’) submitted an application for the approval of an enthalpy storage tank as an innovative technology on 29 April 2015. The completeness of that application was assessed in accordance with Article 4 of Commission Implementing Regulation (EU) No 725/2011 (2). The Commission identified certain relevant information as missing in the original application and requested the Applicant to complete it. The Applicant provided the required information on 27 May 2015. The application was found to be complete and the period for the Commission's assessment of the application started on the day following the date of official receipt of the complete information, i.e. 28 May 2015.

(2)

The application has been assessed in accordance with Article 12 of Regulation (EC) No 443/2009, Implementing Regulation (EU) No 725/2011 and the Technical Guidelines for the preparation of applications for the approval of innovative technologies pursuant to Regulation (EC) No 443/2009 (the Technical Guidelines, version February 2013) (3).

(3)

The application refers to an enthalpy storage tank that reduces the CO2 emissions and fuel consumption after a cold start of an internal combustion engine due to a faster engine warm-up.

(4)

The Commission finds that the information provided in the application demonstrates that the conditions and criteria referred to in Article 12 of Regulation (EC) No 443/2009 and in Articles 2 and 4 of Implementing Regulation (EU) No 725/2011 have been met.

(5)

The Applicant has demonstrated that enthalpy storage tanks were not fitted in 3 % or more of the new passenger cars registered in the reference year 2009 in accordance with Article 2(2)(a) of Implementing Regulation (EU) No 725/2011.

(6)

The Applicant has used a comprehensive testing procedure in accordance with the Technical Guidelines, and defined the baseline vehicle as the vehicle fitted with a deactivated enthalpy storage tank.

(7)

The Applicant has provided a methodology for testing the CO2 reductions. The Commission considers that the testing methodology will provide testing results that are verifiable, repeatable and comparable and that it is capable of demonstrating in a realistic manner the CO2 emissions benefits of the innovative technology with strong statistical significance in accordance with Article 6 of Implementing Regulation (EU) No 725/2011.

(8)

Against that background the Applicant has demonstrated satisfactorily that the emission reduction achieved by the enthalpy storage tank is at least 1 g CO2/km.

(9)

Since the enthalpy storage tank is not activated during the CO2 emissions type approval test referred to in Regulation (EC) No 715/2007 of the European Parliament and of the Council (4) and Commission Regulation (EC) No 692/2008 (5), the Commission is satisfied that the technology in question is not covered by the standard test cycle.

(10)

The activation of the enthalpy storage tank is not dependant on the choice of the driver. On that basis the Commission finds that the manufacturer should be considered accountable for the CO2 emission reduction due to the use of the innovative technology.

(11)

The Commission finds that the verification report has been prepared by TÜV SÜD Auto Service GmbH which is an independent and certified body and that the report supports the findings set out in the application.

(12)

Against that background, the Commission finds that no objections should be raised as regards the approval of the innovative technology in question.

(13)

For the purposes of determining the general eco-innovation code to be used in the relevant type approval documents in accordance with Annexes I, VIII and IX to Directive 2007/46/EC of the European Parliament and of the Council (6), the individual code to be used for the innovative technology approved through this Decision should be specified,

HAS ADOPTED THIS DECISION:

Article 1

1.   The enthalpy storage tank described in the application of MAHLE Behr GmbH & Co. KG is approved as an innovative technology within the meaning of Article 12 of Regulation (EC) No 443/2009.

2.   The CO2 emissions reduction from the use of the enthalpy storage tank shall be determined using the methodology set out in the Annex.

3.   The individual eco-innovation code to be entered into type approval documentation to be used for the innovative technology approved through this Implementing Decision shall be ‘18’.

Article 2

This Decision shall enter into force on the twentieth day following that of its publication in the Official Journal of the European Union.

Done at Brussels, 11 March 2016.

For the Commission

The President

Jean-Claude JUNCKER


(1)  OJ L 140, 5.6.2009, p. 1.

(2)  Commission Implementing Regulation (EU) No 725/2011 of 25 July 2011 establishing a procedure for the approval and certification of innovative technologies for reducing CO2 emissions from passenger cars pursuant to Regulation (EC) No 443/2009 of the European Parliament and of the Council (OJ L 194, 26.7.2011, p. 19).

(3)  https://circabc.europa.eu/w/browse/42c4a33e-6fd7-44aa-adac-f28620bd436f

(4)  Regulation (EC) No 715/2007 of the European Parliament and of the Council of 20 June 2007 on type approval of motor vehicles with respect to emissions from light passenger and commercial vehicles (Euro 5 and Euro 6) and on access to vehicle repair and maintenance information (OJ L 171, 29.6.2007, p. 1).

(5)  Commission Regulation (EC) No 692/2008 of 18 July 2008 implementing and amending Regulation (EC) No 715/2007 of the European Parliament and of the Council on type-approval of motor vehicles with respect to emissions from light passenger and commercial vehicles (Euro 5 and Euro 6) and on access to vehicle repair and maintenance information (OJ L 199, 28.7.2008, p. 1).

(6)  Directive 2007/46/EC of the European Parliament ad of the Council of 5 September 2007 establishing a framework for the approval of motor vehicles and their trailers, and of systems, components and separate technical units intended for such vehicles (Framework Directive (OJ L 263, 9.10.2007, p. 1).


ANNEX

METHODOLOGY TO DETERMINE THE CO2 SAVINGS OF THE ENTHALPY STORAGE TANK TECHNOLOGY

1.   INTRODUCTION

In order to determine the CO2 reduction that can be attributed to the use of the enthalpy storage tank technology (EST system), it is necessary to establish the following:

(a)

the testing procedure to be followed for determining the cool-down curves of the baseline vehicle (the vehicle fitted with a deactivated enthalpy storage tank) and the eco-innovation vehicle;

(b)

the testing procedure to be followed for determining the CO2 emission at different engine coolant start temperature;

(c)

the testing procedure to be followed for determining the theoretical temperature of the engine after discharging the EST system;

(d)

the testing procedure to be followed for determining the Hot start benefit;

(e)

the formulae to be used for determining the CO2 savings;

(f)

the formulae to be used for determining the statistical error and significance of the results.

2.   SYMBOLS AND ABBREVIATIONS

Latin symbols

BTA

CO2 emission of the vehicle under type approval conditions [g CO2/km]

Formula

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