GB 33654-2017 PDF in English
GB 33654-2017 (GB33654-2017) PDF English
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The norm of energy consumption per unit throughput of gypsum plaster
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GB 33654-2017: PDF in English GB/T 33654-2017
GB
NATIONAL STANDARD OF THE
PEOPLE’S REPUBLIC OF CHINA
ICS 27.010
F 01
The Norm of Energy Consumption
Per Unit Throughput of Gypsum Plaster
ISSUED ON. MAY 12, 2017
IMPLEMENTED ON. JUNE 1, 2018
Issued by. General Administration of Quality Supervision, Inspection and
Quarantine of the People's Republic of China;
Standardization Administration of the People's Republic of
China.
3. No action is required - Full-copy of this standard will be automatically &
immediately delivered to your EMAIL address in 0~60 minutes.
Table of Contents
Foreword ... 3
1 Application Scope ... 4
2 Normative References ... 4
3 Terms and Definitions ... 4
4 Energy Consumption Norm Grades ... 6
5 Specifications ... 6
6 Statistical Scope and Statistical Method ... 7
7 Calculation Method ... 7
Annex A (Informative) Reference Coefficients of All Kinds of Energy Sources
Converted into Standard Coal ... 10
Annex B (Normative) Relationships between the Attached Water and Purity
of Gypsum and the Corrected Energy Consumption Kc Value ... 12
Foreword
This Standard was drafted in accordance with the rules given in GB/T 1.1-2009.
This Standard was proposed by National Development and Reform Commission
Resource Conservation and Environmental Protection Division and Ministry of Industry
and Information Technology Energy Saving and Comprehensive Utilization Division.
This Standard shall be under the jurisdiction of the National Standardization Technical
Committee on Energy Base and Control (SAC/TC 20) and China Building Materials
Federation.
The drafting organizations of this Standard. China New Building Materials Design and
Research Institute, Beijing New Building Material (Group) Co., Ltd., Knauf New
Building Material (Wuhu) Co., Ltd., Tai Shan Gypsum Co., Ltd., Boluo Gypsum Building
Material (Shanghai) Co., Ltd., Saint-Gobain Gypsum Building Material (Shanghai) Co.,
Ltd., Shandong Baier Building Material Co., Ltd., Jason Gypsum Board (Jiaxing) Co.,
Ltd., Huangshi Building Material and Energy-saving Equipment Factory.
The main drafters of this Standard. Wei Chaoping, Hao Xiaodong, Wang Yufeng, Wang
Yongsheng, Liu Tong, Wang Jianqiang, Chen Yong, Ren Xulian, Li Jing, Liu Yue, Xu
Huixian, Shi Peike, Yu Chuan, Zhang Hao, Sun Fengyuan, Xu Qiang, Yang Chengwen,
Guo Taimin, Yang Nianlong.
The Norm of Energy Consumption
Per Unit Throughput of Gypsum Plaster
1 Application Scope
This Standard specifies the terms and definitions, specifications, statistical scope and
method, and calculation method of the norm of energy consumption per unit throughput
of gypsum plaster (hereinafter referred to as energy consumption).
This Standard applies to the calculation, management and assessment of the energy
consumption for gypsum plaster production of the gypsum plaster production
enterprises and gypsum plaster products production enterprises, and the energy
consumption control for the new or renovation and extension projects.
2 Normative References
The following referenced documents are indispensable for the application of this
document. For dated references, only the edition dated applies to this document. For
undated references, the latest edition of the referenced documents (including all
amendments) applies to this Standard.
GB/T 213, Determination of Calorific Value of Coal
GB/T 384, Determination of Calorific Value of Petroleum Products
GB/T 2589, General Principles for Calculation of the Comprehensive Energy
Consumption
GB/T 9776, Calcined Gypsum
GB/T 12723, General Principles for Establishing Allowance of Energy Consumption
Per Unit Throughput
GB/T 17608, Division of Variety and Grading for Coal Products
GB 17820, Natural Gas
3 Terms and Definitions
For the purposes of this document, those defined in GB/T 12723 and the following
terms and definitions apply.
3.1
gypsum
The material whose main constituent is calcium sulphate dihydrate (CaSO4·2H2O)
containing two crystal waters, including natural gypsum and industrial by-product
gypsum.
NOTE Also known as plaster stone.
3.2
industrial by-product gypsum
The by-product which is produced by chemical reactions during the industrial
production process and contains much calcium sulphate dihydrate, such as flue gas
desulfurization gypsum, phosphorous gypsum, fluorine gypsum, titanium gypsum and
citrate gypsum.
3.3
purity of gypsum
The mass fraction (%) of calcium sulphate dihydrate in unit mass of a material after
attached water is removed.
3.4
gypsum plaster
The powdery cementing material which is made by calcining gypsum, with β semi-
hydrated gypsum (β-CaSO4·1/2H2O) as the main constituent and without adding any
additives, including natural gypsum plaster and industrial by-product gypsum plaster.
3.5
natural gypsum plaster
Gypsum plaster which is made of natural gypsum.
3.6
gypsum plaster from industrial by-product
Gypsum plaster which is made of industrial by-product gypsum.
3.7
comprehensive energy consumption for gypsum plaster
The total of all kinds of energy sources consumed in the production process of gypsum
plaster during the period of statistics.
6 Statistical Scope and Statistical Method
6.1 The energy consumption per unit throughput for gypsum plaster shall be
accounted based on the accounting unit of the per unit throughput of acceptable
products conforming to GB/T 9776.
6.2 The comprehensive energy consumption per unit throughput for gypsum plaster
shall be calculated in accordance with all energy sources consumed during the
production process specified in GB/T 2589, including the energy consumption of main
production system, auxiliary production system and subsidiary production system.
6.3 The loss of fuel in storage shall be reckoned in.
6.4 The following energy consumption shall be deducted in the energy consumption.
a) office energy consumption;
b) domestic energy consumption.
6.5 The statistical scope of energy consumption per unit throughput for gypsum
plaster covers the whole production process from the raw materials entering the factory
area to the gypsum plaster leaving factory or the gypsum plaster entering finished
goods warehouse.
6.6 The calorific values of fuels are determined respectively. The calorific values of
solid fuels are determined as specified in GB/T 213, and they may also be determined
as specified in GB/T 17608; the calorific values of liquid fuels are determined as
specified in GB/T 384; the calorific value of natural gas is determined as specified in
GB 17820. The enterprises may refer to Annex A when they are unable to determine
the calorific values of fuels.
6.7 In this statistical method, the calculation basis of gypsum is the purity 92% and
attached water content 3%, and the attached water content is on an as-received basis.
NOTE The mass fraction of attached water content = (material mass on an as-
received basis – material mass on a dry basis)/material mass on an as-received basis
× 100%.
7 Calculation Method
7.1 Energy consumption for gypsum plaster
7.1.1 The comprehensive energy consumption for gypsum plaster shall be calculated
in accordance with Formula (1).
...... Source: Above contents are excerpted from the PDF -- translated/reviewed by: www.chinesestandard.net / Wayne Zheng et al.
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